EP1065166B1 - Telescopic crane - Google Patents
Telescopic crane Download PDFInfo
- Publication number
- EP1065166B1 EP1065166B1 EP00250210A EP00250210A EP1065166B1 EP 1065166 B1 EP1065166 B1 EP 1065166B1 EP 00250210 A EP00250210 A EP 00250210A EP 00250210 A EP00250210 A EP 00250210A EP 1065166 B1 EP1065166 B1 EP 1065166B1
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- EP
- European Patent Office
- Prior art keywords
- guy
- boom
- telescopic crane
- crane according
- boom structure
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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- 230000007704 transition Effects 0.000 claims description 3
- 230000005855 radiation Effects 0.000 claims 1
- 238000004873 anchoring Methods 0.000 description 4
- 238000005452 bending Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 230000036316 preload Effects 0.000 description 2
- 230000002787 reinforcement Effects 0.000 description 2
- 230000006978 adaptation Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 125000006850 spacer group Chemical group 0.000 description 1
- 230000000087 stabilizing effect Effects 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66C—CRANES; LOAD-ENGAGING ELEMENTS OR DEVICES FOR CRANES, CAPSTANS, WINCHES, OR TACKLES
- B66C23/00—Cranes comprising essentially a beam, boom, or triangular structure acting as a cantilever and mounted for translatory of swinging movements in vertical or horizontal planes or a combination of such movements, e.g. jib-cranes, derricks, tower cranes
- B66C23/62—Constructional features or details
- B66C23/82—Luffing gear
- B66C23/821—Bracing equipment for booms
- B66C23/826—Bracing equipment acting at an inclined angle to vertical and horizontal directions
- B66C23/828—Bracing equipment acting at an inclined angle to vertical and horizontal directions where the angle is adjustable
Definitions
- the invention relates to a telescopic crane which consists of an undercarriage, one rotatable thereon arranged superstructure, a counterweight and a boom, which in turn a main boom with a basic box and at least one in and extendable telescopic shot.
- the invention further relates to a Guy device for attachment to a boom of a telescopic crane of the previous Art.
- Telescopic cranes of the aforementioned type are known.
- DE 29 17 829 A1 shows one Mobile crane with telescopic boom that can be swiveled on a rotating superstructure is articulated.
- the lifting capacity of the crane should can be increased by placing one on the superstructure of the mobile crane Pick-up and lifting device is provided for an additional counterweight.
- the Pick-up and lifting device can have a rearward-projecting support which expediently directed obliquely backwards and upwards and for receiving the Additional counterweight can be lowered.
- a similar mobile crane with telescopic boom is described in DE 31 39 853 A1.
- a counterweight is provided, which by means of a superstructure on the vehicle attached, to the rear placed, in its inclination changeable mast on a appropriate projection can be brought.
- the counterweight is unloaded in Dependence on the change in the center of gravity of the device as a result of Controllable swiveling of the boom.
- DE 38 38 975 C2 also shows a telescopic crane with a swing-out mast for a counterweight attached to a hanging device.
- the mast is up on itself the mast cylinder supporting the superstructure can be erected.
- the mast itself has one Telescopic extension, at the tip of which a pivot point for a length-adjustable Hanging device and a length-adjustable guy for the adjustable boom is available.
- Telescopic cranes of the type described above are depending on when extended Angle of attack exposed to loads of different sizes.
- the angles of attack are those that occur in the clamping of the extended telescopic sections
- Loads are an important criterion for the maximum load.
- superlift operation has been developed to relieve stress Service.
- DE 31 13 763 A1 describes a basic configuration of a Telescopic crane, which allows a superlift operation, discloses. In the area of articulation a The luffing cylinder for the main boom is on the basic box according to DE 31 13 763 A1 anchoring bracket extending transversely to the boom.
- this guy stand is over ropes or rope strands with the end of one of the telescopic shots and connected to the foot of the main boom.
- the Clamping bracket made up of both sides of the basic box, which extend upwards There are struts that are rigidly connected.
- the Guy rack can be folded into a transport position on the basic box.
- the connection between the guy stand and the boom foot is also considered to be unchangeable in length proposed.
- a winch arrangement is provided to the length of the to change the rope provided between the guy stand and the telescopic boom.
- a control device for the winches to apply a predetermined rope force the guy stand and the guy wires connected to it can be provided.
- the luffing level is the level in which the boom moves when it is pivoted about its horizontal pivot axis.
- the luffing plane is therefore perpendicular to the luffing axis of the boom.
- a realized telescopic crane with a "superlift” is from, for example Company brochure: Mannesmann Demag printechnik; Demag AC 1600; 04/96, pages 5, 17 and 27 or also known from DE 38 40 408 C2. So is to increase the load capacity and Reduction of the deflection of the extended main boom on the basic box of the The main boom has a guy stand that can be placed on the basic box.
- This Tensioning bracket is with an almost unchangeable tensioning with the foot area of the main boom on the one hand and with a further bracing, which as a rule is adjustable in length, with the head or collar of one of the inner telescopic sections on the other hand connected.
- This stiffening arrangement is applicable to the basic device alone, but also in connection with the arrangement of one formed from lattice tower parts rigid or luffing jib.
- the telescopic boom shown here includes a rope at the lower end of the boom attacks and via an associated with the boom base, in its angular position adjustable device is guided in the manner of a guy stand. So that should be as Guy rope used return rope to pull in the various telescopic shots of such a telescopic boom serves a stabilizing effect on the boom exercise and, in particular, to prevent an inadmissible deflection of the telescopic boom.
- the guy device taking over the function of a guy stand comprises a Linkage around a pivot point on the telescopic boom or its basic box is pivotable.
- a piston-cylinder device is available for installation. It is emphasized that this linkage in its angular position relative to the telescopic boom is changeable, i.e. so in the seesaw plane. This will deflect the boom in the Rocker level prevents, but not a side deflection.
- This crane boom in Shell construction is known.
- This crane boom consists of a single torsionally rigid Support body with a preferably circular cross section.
- the support body is over and / or trussed.
- all-round overvoltage is provided, what happens to spars.
- This star girder and the spars form on the crane boom a spatially fixed tension.
- this crane boom is for Tower cranes provided.
- a boom with horizontal rope bracing is known from DE 37 34 919 A1.
- the swiveling boom shown has a plurality that extends parallel to the swiveling axis Trusses that are braced on ropes. The trusses are ultimately the shown boom design nothing more than a braced beam with fixed Traverses. Incidentally, this type of boom is suitable for, for example, crawlers Support frame provided.
- a boom of a crane for container operation is known from DE 1 531 155. It will particularly dealt with the special problem of handling containers.
- a luffing jib of a double-link luffing crane is disclosed, in which two the outer part of the boom forming beak-like spreadable arms are present wear two head rolls or head roll groups. The arms are in such a spread position ascertainable at what distance the centers of the two roles or role groups from each other, approximately equal to the distance between the centers of the Container traverse carrying lifting rope sling is. The two arms are in the coupled together stiffened against each other and are positive and shear resistant connected. The spreadable arms themselves are again, as already explained, against Deflected by means of a guy stand.
- the technical problem underlying the invention is a telescopic crane To provide the increased load capacity, especially in the steep positions of the boom can absorb less lateral deformation.
- a telescopic crane with undercarriage, rotatable superstructure arranged thereon, counterweight and a boom that one Main boom with a basic box and at least one that can be pushed in and pushed out Telescopic shot, with at least one guy support arranged on the boom is present, which extends substantially in the longitudinal direction of the boom Clamping means is connected and the inclination to the seesaw level can be changed.
- the inclination of the guy support is in one plane changeable transversely and / or longitudinally to the longitudinal direction of the boom.
- the Guy support is in different planes perpendicular to the luffing plane reclining when lying down.
- the change in the inclination of the luffing plane can be gradual or continuous Swiveling the at least one guy support can be adjustable.
- An easy one Embodiment provides that only several different levels of inclinations to Rocker level are ingestible.
- Another embodiment can provide that the inclination is adjustable in the range of greater than 0 ° to 90 ° with respect to the seesaw level, which is a more precise Adaptation to the respective steep position of the boom and the foreseeable loads allows.
- the The angle of the guy support is selected so that it acts on the boom lateral or partial load is completely absorbed by the guying becomes.
- the inclination of the guy support can be transverse to the longitudinal direction or in Longitudinal direction or superimposed transversely to and in the longitudinal direction of the boom.
- both Guy braces are provided, usually the angular inclination of both Guy supports are the same. But depending on the direction of the boom attacking forces may also be different.
- the foot ends of both guy supports can be connected to the top of the boom at a common location, but also offset from each other.
- the foot end of at least one guy support in the transition area between Top side or respective side wall connected to the boom.
- there is also the possibility to cross the foot end of at least one guy support To arrange the longitudinal axis of the boom and overhanging this beam.
- the exemplary arrangement has the advantage that, depending on the angular position Guy supports: the amount of guy force that acts in the lateral direction, can be changed continuously or continuously.
- Guy supports the amount of guy force that acts in the lateral direction
- the two guy supports in parallel are the same Effect in the sense of a superlift operation like the well-known guy stand.
- ⁇ 90 ° to> 0 ° for the two guy supports will be the effective one Clamping force divided into a superlift operation component and a component lateral guying.
- the two guy supports In the second extreme position, i.e. H. in the horizontal position, the two guy supports only reinforce in both directions.
- the respective free head end of the guy support is over a first clamping device optionally with the undercarriage, the uppercarriage, the foot area of the boom, the fixed or separately guided counterweight or the floor in the direction Foot end of the boom and a further clamping device with a selected one Place the boom connected in the direction of the boom head.
- the one you want Angular position of the guy supports can be gradual or continuous Swiveling the guy supports can be adjusted. That is also one asymmetrical angle adjustment possible. This means that when attacking Lateral force only on one side the respective guy support more towards the side Guy is inclined while the second guy support is in a central position remains.
- the clamping devices can be used as a rope or as a rod be trained.
- the clamping device or the clamping device can be with and without Preload can be arranged. In the case of a preload and one
- the clamping device can be readjusted with a clamping device together. This is preferably a winch or a piston-cylinder unit. But also the angle adjustment and / or the change in length of the guy support can in Can be used as a tensioning device.
- the jigs are either on the guy supports, on the boom, on the superstructure or undercarriage or on Counterweight can be arranged.
- the guy supports on the main boom are preferably in the area of the Basic box arranged, especially in the front area between the Linkage of the luffing cylinder and the front bearing.
- For continuous Adjustment of the guy supports is preferably every guy support with one on the piston-cylinder unit supported on the basic box.
- the equipment of the telescopic boom can be supplemented with the arrangement a rigid or luffing jib made of lattice boom parts. Also on the proposed lateral bracing can be attached to these cantilever elements become.
- Side guying can be used particularly effectively if the Crane with a measuring device to record the lateral deformation of the boom is provided. If the deformation exceeds a specified permissible value, the tensioning device connected to the guying is activated and the guying tightened.
- the degree of lateral deformation can be direct or indirect Crane sizes can be determined. For example, these are the rope tension, the rope length and rope elongation. But also in terms of the forces acting on the boom the side wind, the sun and the boom prevailing temperatures can make a statement about the degree of lateral Deformation can be made.
- An anchoring device that can be attached to a telescopic crane with jib in particular on both sides of a boom guy supports in a desired inclination can be brought relative to the luffing plane, and thus the advantages of the aforementioned type can be realized even better, includes a frame to be arranged on the boom and two guy supports, each for connecting to one essentially in Longitudinal direction of the boom extending clamping means is designed.
- One of the two Bracing supports are seen on the frame in the longitudinal direction of the boom right side pivoted, and the other guy support is on the Frame seen in the longitudinal direction of the boom pivotable to the left arranged.
- a piston-cylinder unit is preferred for lateral pivoting provided with which the guy support is then connected. This is particularly one any inclination of one of the guy supports with respect to the luffing level of the boom on which the guy is to be fixed, adjustable.
- the Frame of the guy device includes a swivel joint, so that for the Transport of the telescopic crane, the two spacers can be put down on the boom.
- a convenient transport position achieved Anchoring device does not have to be brought separately to the place of use of a telescopic crane become.
- each guy support with a winch which acts as a tensioning device for the serves essentially in the longitudinal direction of the boom clamping means.
- Each guy support can be designed to be the largest possible Swiveling to the side is supported on the foot side of the boom.
- each guy support has two spars that extend over Cross struts are connected.
- the inner spar of a guy support on the foot side End up a joint that allows pivoting to the side.
- the frame of the Anchoring device via fastening straps on a basic box of a main boom attachable to a telescopic crane.
- FIGS. 1a-c the possible arrangement of one another is shown as a basic sketch the guy support inclined.
- the guy support 2 is preferably on the top 3 of a symbolically shown here Cantilever element 1 arranged.
- This boom element 1 can be a basic box or a shot from a main boom of a telescopic crane or that Lattice mast element of a rigid or luffing jib.
- the in Cantilever element 1 center axis 4 is also ideally the luffing plane of the boom.
- the guy support 2 is in relation to the luffing plane inclined at an angle ⁇ > 0.
- the dashed representation of the guy support 2 ' should make it clear that the guy support 2 can also be tilted towards the other side.
- the free end 5 of the guy support 2 is preferably with a clamping means 6.7 connected to a rope.
- the connection of the clamping means 6, 7 is not shown here a fixed location on the boom or a clamping device such as Piston cylinder unit or winch. Tensioning the clamping means 6,7 can can also be reached without a clamping device. Firstly, in such a way that the clamping device 6.7 can be arranged at a smaller or larger angle ⁇ and then the Guy support 2 is further inclined. Alternatively, it is also possible to use the guy support 2 telescopic and a degree of tension by changing the length to reach.
- FIG 2 is also a schematic diagram of the arrangement of two guy supports 2.1, 2.2 shown.
- the peculiarity of this arrangement is that both Guy supports 2.1,2.2 with only a single foot end 8 on the top 3 of the Cantilever element 1 are arranged.
- the respective angle of inclination ⁇ 1, ⁇ 2 can be the same or different.
- FIG 5 is a practical in a front and a side view Embodiment shown.
- the cantilever element is a in this example Basic box 13 of a main boom of a telescopic crane. Parallel to the top 14 of the base box 13, a frame 15 is pivotally arranged, which Fastening tabs 16, 16 'is connected to the basic box 13. At the bottom Carrier 17 of the frame 15 is inclined to the side in the respective end region Guy support 18.1,18.2 arranged. The continuous inclination is done by means of one on the respective guy support 18.1,18.2 and on the upper support 19 of the Frame 15 arranged piston-cylinder unit 20.1.20.2.
- Each guy support 18.1,18.2 has two Spars 21.1,21.2,22.1,22.2, which are approximately parallel in the lower area and in the upper area Area run slightly to each other.
- the two spars are connected via Cross struts 23.1,23.2.
- the spar 21.2, 22.2 which is on the inside, points to an end 24.1, 24.2 on the foot end.
- the outer spar 21.1,22.1 comes at the greatest inclination of the guy supports 18.1.18.2 at the top of the Side wall 25.25 'of the base box 13 for the system. This particular anchor point the side wall 25, 25 'is reinforced by a sheet 26, 26'.
- Between the spars 21.1,22.1,21.2,22.2 is one in the lower area of the respective guy support 18.1,18.2 Winch 27.1.27.2 arranged.
- the frame 15 is pivotally arranged, so for the transportation of the telescopic crane parallel to the two guy supports 18.1,18.2 Top 14 of the base box 13 can be stored.
- To rebuild is as Set-up aid each provided a piston-cylinder unit 28.1.28.2, which at one end the side wall 25 and with the other end in half the area of the respective Guy support 18.1 is arranged.
- the tensioning means each with a rope 29.1, is at one end via a rope thimble 31.1 Head area of the guy support 18.1 attached. From there it runs towards Boom head arranged deflection point (also not shown here) and runs back via a deflection roller 30.1 and. arranged in the head region of the guy support 18.1 thence to the winch 27.1.
- Guy strap 32.1 On the rear side in the head area of the guy support 18.1 is one Guy strap 32.1 is arranged, which is the rear fuse for the respective Guy support 18.1 represents.
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Abstract
Description
Die Erfindung betrifft einen Teleskopkran, der aus einem Unterwagen, einem drehbar darauf angeordneten Oberwagen, einem Gegengewicht und einem Ausleger besteht, der wiederum einen Hauptausleger mit einem Grundkasten und mindestens einen darin ein- und ausschiebbaren Teleskopschuss aufweist. Ferner betrifft die Erfindung eine Abspannvorrichtung zur Befestigung an einem Ausleger eines Teleskopkranes der zuvor genannten Art.The invention relates to a telescopic crane which consists of an undercarriage, one rotatable thereon arranged superstructure, a counterweight and a boom, which in turn a main boom with a basic box and at least one in and extendable telescopic shot. The invention further relates to a Guy device for attachment to a boom of a telescopic crane of the previous Art.
Teleskopkrane der zuvor genannten Art sind bekannt. So zeigt die DE 29 17 829 A1 einen Fahrzeugkran mit Teleskopausleger, der an einem drehbaren Oberwagen schwenkbar angelenkt ist. Bei dem hier vorgestellten Fahrzeugkran soll das Tragvermögen des Krans gesteigert werden, indem eine auf dem Oberwagen des Fahrzeugkrans angeordnete Aufnahme- und Anhebeeinrichtung für ein Zusatzgegengewicht vorgesehen wird. Die Aufnahme- und Anhebeeinrichtung kann eine nach hinten ausladende Stütze aufweisen, die zweckmäßigerweise schräg nach hinten und oben gerichtet und für die Aufnahme des Zusatzgegengewichtes absenkbar ist. Es wird herausgestellt, dass es von besonderem Vorteil wäre, wenn die Stütze mit dem Teleskopausleger oberhalb dessen Anlenkung am Oberwagen verbunden ist, da hierdurch eine Biege- und Knickentlastung des Teleskopauslegers bewirkt wird. Zur Verbindung der Stütze und des Teleskopauslegers ist insbesondere ein Spannseil vorgeschlagen. Telescopic cranes of the aforementioned type are known. DE 29 17 829 A1 shows one Mobile crane with telescopic boom that can be swiveled on a rotating superstructure is articulated. In the mobile crane presented here, the lifting capacity of the crane should can be increased by placing one on the superstructure of the mobile crane Pick-up and lifting device is provided for an additional counterweight. The Pick-up and lifting device can have a rearward-projecting support which expediently directed obliquely backwards and upwards and for receiving the Additional counterweight can be lowered. It is pointed out that it is particularly beneficial would be if the support with the telescopic boom above its articulation on the superstructure is connected, as this results in a relief of bending and buckling of the telescopic boom becomes. A tension cable is used in particular to connect the support and the telescopic boom proposed.
Ein ähnlicher Fahrzeugkran mit Teleskopausleger ist in der DE 31 39 853 A1 beschrieben. Wiederum ist ein Gegengewicht vorgesehen, das mittels eines am Oberwagen des Fahrzeuges angebrachten, nach hinten gestellten, in seiner Neigung veränderbaren Mastes auf eine entsprechende Ausladung bringbar ist. Die Ausladung des Gegengewichtes ist in Abhängigkeit von der Veränderung der Schwerpunktlage des Gerätes infolge der Verschwenkung des Auslegers steuerbar.A similar mobile crane with telescopic boom is described in DE 31 39 853 A1. Again, a counterweight is provided, which by means of a superstructure on the vehicle attached, to the rear placed, in its inclination changeable mast on a appropriate projection can be brought. The counterweight is unloaded in Dependence on the change in the center of gravity of the device as a result of Controllable swiveling of the boom.
Die DE 38 38 975 C2 zeigt ebenfalls einen Teleskopkran mit einem ausschwenkbaren Mast für ein an einer Hängevorrichtung befestigtes Gegengewicht. Der Mast ist von einem sich auf dem Oberwagen abstützenden Mastzylinder aufrichtbar. Der Mast selbst besitzt eine Teleskopverlängerung, an deren Spitze ein Anlenkpunkt für eine längenveränderbare Hängevorrichtung und eine längenveränderbare Abspannvorrichtung für den längenveränderbaren Ausleger vorhanden ist.DE 38 38 975 C2 also shows a telescopic crane with a swing-out mast for a counterweight attached to a hanging device. The mast is up on itself the mast cylinder supporting the superstructure can be erected. The mast itself has one Telescopic extension, at the tip of which a pivot point for a length-adjustable Hanging device and a length-adjustable guy for the adjustable boom is available.
Teleskopkrane der zuvor erläuterten Bauart sind im ausgefahrenen Zustand je nach Anstellwinkel unterschiedlich großen Belastungen ausgesetzt. Bei flachen und mittleren Anstellwinkeln sind die in der Einspannung der ausgefahrenen Teleskopschüsse auftretenden Belastungen ein wesentliches Kriterium für die maximale Traglast. Für einen solchen Belastungsfall ist als Momentenentlastung ein sogenannter Superliftbetrieb entwickelt worden. So ist aus der DE 31 13 763 A1 eine grundsätzliche Ausgestaltung eines Teleskopkrans, der einen Superliftbetrieb erlaubt, offenbart. Im Bereich der Anlenkung eines Wippzylinders für den Hauptausleger ist gemäß der DE 31 13 763 A1 am Grundkasten ein sich quer zum Ausleger nach oben erstreckender Abspannbock angeordnet. Das freie Ende dieses Abspannbocks ist über Seile oder Seilstränge mit dem Ende eines der Teleskopschüsse und dem Fuß des Hauptauslegers verbunden. Eine Detaillösung sieht vor, dass der Abspannbock aus beidseitig vom Grundkasten beabstandeten, sich nach oben erstreckenden Streben besteht, die starr miteinander verbunden sind. Ferner ist ausgeführt, dass der Abspannbock in eine Transportstellung an den Grundkasten anklappbar ist. Die Verbindung zwischen Abspannbock und Auslegerfuß wird auch als in der Länge unveränderbar vorgeschlagen. Darüber hinaus ist eine Windenanordnung vorgesehen, um die Länge des zwischen Abspannbock und Teleskopausleger vorgesehenen Seiles zu verändern. Außerdem kann eine Steuereinrichtung für die Winden zur Aufbringung einer vorgegebenen Seilkraft auf den Abspannbock und die hiermit verbundenen Abspannungen vorgesehen sein. Es ist in der Beschreibung erwähnt, dass durch die Ausbildung mit sich vom Grundkasten nach oben erstreckenden Streben, die einen festen Abstand zueinander aufweisen und nur wie ein Abspannbock in der Wippebene verschwenkbar ist, auch seitliche Biegeverformungen des Auslegersystems verringern lassen, die beispielsweise durch Windkräfte oder Lastpendeln entstehen können.Telescopic cranes of the type described above are depending on when extended Angle of attack exposed to loads of different sizes. For flat and medium The angles of attack are those that occur in the clamping of the extended telescopic sections Loads are an important criterion for the maximum load. For one A so-called superlift operation has been developed to relieve stress Service. DE 31 13 763 A1 describes a basic configuration of a Telescopic crane, which allows a superlift operation, discloses. In the area of articulation a The luffing cylinder for the main boom is on the basic box according to DE 31 13 763 A1 anchoring bracket extending transversely to the boom. The free end this guy stand is over ropes or rope strands with the end of one of the telescopic shots and connected to the foot of the main boom. A detailed solution provides that the Clamping bracket made up of both sides of the basic box, which extend upwards There are struts that are rigidly connected. It is also stated that the Guy rack can be folded into a transport position on the basic box. The connection between the guy stand and the boom foot is also considered to be unchangeable in length proposed. In addition, a winch arrangement is provided to the length of the to change the rope provided between the guy stand and the telescopic boom. Moreover can a control device for the winches to apply a predetermined rope force the guy stand and the guy wires connected to it can be provided. It is in the Description mentions that by training with yourself from the basic set up extending struts that are at a fixed distance from each other and only like one Guy stand is pivotable in the seesaw plane, including lateral bending deformations of the Have the boom system reduced, for example by wind forces or load swaying can arise.
Der guten Ordnung halber ist hierzu anzumerken, dass die Wippebene diejenige Ebene ist, in der sich der Ausleger bewegt, wenn er um seine horizontale Schwenkachse verschwenkt wird. Die Wippebene steht also senkrecht zur Wippachse des Auslegers.For the sake of good order, it should be noted that the luffing level is the level in which the boom moves when it is pivoted about its horizontal pivot axis. The luffing plane is therefore perpendicular to the luffing axis of the boom.
Ein realisierter Teleskopkran mit einem "Superlift" ist beispielsweise aus dem
Firmenprospekt: Mannesmann Demag Fördertechnik; Demag AC 1600; 04/96, Seiten 5, 17
und 27 oder auch aus DE 38 40 408 C2 bekannt. So ist zur Erhöhung der Traglast und zur
Minderung der Durchbiegung des ausgefahrenen Hauptauslegers am Grundkasten des
Hauptauslegers ein auf den Grundkasten ablegbarer Abspannbock angeordnet. Dieser
Abspannbock ist mit einer nahezu längenunveränderbaren Abspannung mit dem Fußbereich
des Hauptauslegers einerseits und mit einer weiteren Abspannung, die im Regelfall
längenveränderbar ist, mit dem Kopf bzw. Kragen eines der inneren Teleskopschüsse
andererseits verbunden. Diese versteifende Anordnung ist anwendbar für das Grundgerät
allein, aber auch in Verbindung mit der Anordnung eines aus Gittermastteilen gebildeten
starren oder wippbaren Hilfsauslegers. A realized telescopic crane with a "superlift" is from, for example
Company brochure: Mannesmann Demag Fördertechnik; Demag AC 1600; 04/96,
Eine dem Superliftbetrieb ähnliche Ausgestaltung ist in der DE 297 20 972 U1 beschrieben. Der hier gezeigte teleskopierbare Ausleger umfasst ein Seil, das am unteren Auslegerende angreift und über eine dem Auslegergrundkörper zugeordnete, in ihrer Winkellage verstellbaren Vorrichtung nach Art eines Abspannbockes geführt ist. Damit soll das als Abspannseil benutzte Rückholseil, das zum Einholen der verschiedenen Teleskopschüsse eines solchen Teleskopauslegers dient, eine stabilisierende Wirkung auf den Ausleger ausüben und insbesondere eine unzulässige Durchbiegung des Teleskopauslegers verhindern. Das die Funktion eines Abspannbockes übernehmende Abspannvorrichtung umfasst ein Gestänge, das um einen Anlenkpunkt am Teleskopausleger bzw. dessen Grundkasten verschwenkbar ist. Zum Aufstellen ist eine Kolben-Zylinder-Einrichtung vorhanden. Es ist herausgestellt, dass dieses Gestänge in seiner Winkellage gegenüber dem Teleskopausleger veränderbar ist, d.h. also in der Wippebene. Damit wird ein Durchbiegen des Auslegers in der Wippebene verhindert, eine seitliche Durchbiegung allerdings nicht.A design similar to superlift operation is described in DE 297 20 972 U1. The telescopic boom shown here includes a rope at the lower end of the boom attacks and via an associated with the boom base, in its angular position adjustable device is guided in the manner of a guy stand. So that should be as Guy rope used return rope to pull in the various telescopic shots of such a telescopic boom serves a stabilizing effect on the boom exercise and, in particular, to prevent an inadmissible deflection of the telescopic boom. The guy device taking over the function of a guy stand comprises a Linkage around a pivot point on the telescopic boom or its basic box is pivotable. A piston-cylinder device is available for installation. It is emphasized that this linkage in its angular position relative to the telescopic boom is changeable, i.e. so in the seesaw plane. This will deflect the boom in the Rocker level prevents, but not a side deflection.
Abschließend ist noch anzumerken, dass aus der DE 1 751 383 ein Kranausleger in
Schalenbauweise bekannt ist. Dieser Kranausleger besteht aus einem einzigen torsionssteifen
Tragkörper mit vorzugsweise kreisförmigem Querschnitt. Der Tragkörper ist über- und/oder
unterspannt. Als besondere Ausführungsform ist eine allseitige Überspannung vorgesehen,
was mit Holmen geschieht. Insbesondere sind am Kranausleger ein oder mehrere Sternträger
vorgesehen, an deren radial außenstehenden Enden die Holme angebracht sind und sich längs
des Kranauslegers erstrecken. Dieser Sternträger und die Holme bilden an dem Kranausleger
eine räumlich feststehende Verspannung. Offensichtlich ist dieser Kranausleger für
Turmdrehkrane vorgesehen.Finally, it should be noted that from
Eine der DE 1 751 383 gleichende Ausgestaltung eines Mastes eines Turmdrehkranes bzw.
hier eines Derrick-Kranes ist aus der Zeitschrift "Deutsche Hebe- und Fördertechnik", 1972,
Seiten 576 - 580 bekannt. Hier sind auch sowohl an einem Gitterturm als auch einem
Gittermast realisierte feste Verspannungen und Verstrebungen gezeigt. An embodiment of a mast of a tower crane which is similar to
Ein Ausleger mit horizontaler Seilabspannung ist aus der DE 37 34 919 A1 bekannt. Der hier gezeigte schwenkbare Ausleger weist mehrere, parallel zur Schwenkachse verlaufende Traversen auf, die über Seile abgespannt sind. Die Traversen sind schlussendlich ist die gezeigte Auslegerausgestaltung nichts anderes als ein verspannter Träger mit festen Traversen. Im Übrigen ist diese Art von Ausleger für beispielsweise auf Raupen fahrbaren Tragrahmen vorgesehen.A boom with horizontal rope bracing is known from DE 37 34 919 A1. This here The swiveling boom shown has a plurality that extends parallel to the swiveling axis Trusses that are braced on ropes. The trusses are ultimately the shown boom design nothing more than a braced beam with fixed Traverses. Incidentally, this type of boom is suitable for, for example, crawlers Support frame provided.
Ein Ausleger eines Kranes für Containerbetrieb ist aus der DE 1 531 155 bekannt. Es wird
insbesondere auf die spezielle Problematik bei der Handhabung von Containern eingegangen.
Offenbart wird ein Spitzenausleger eines Doppellenker-Wippkranes, bei dem zwei den
äußeren Teil des Auslegers bildende, schnabelartige spreizbare Arme vorhanden sind, die
zwei Kopfrollen oder Kopfrollengruppen tragen. Die Arme sind in einer solchen Spreizlage
feststellbar, in welcher der Abstand, den die Mitten der beiden Rollen oder Rollengruppen
voneinander haben, etwa gleich der Entfernung zwischen den Mitten der die
Containertraverse tragenden Hubseilgehänge ist. Die beiden Arme sind im
zusammengekuppelten Zustand gegeneinander versteift und sind formschlüssig und schubfest
verbunden. Die spreizbaren Arme selbst sind wieder, wie bereits zuvor erläutert, gegen
Durchbiegen über einen Abspannbock abgespannt.A boom of a crane for container operation is known from
Es hat sich nun gezeigt, dass Teleskopkrane der zuvor erläuterten Art in Steilstellung auch unter Einsatz der zuvor erläuterten Superlift-Technologie nur eine begrenzte Traglast aufnehmen können. It has now been shown that telescopic cranes of the type explained above also in a steep position using the previously explained Superlift technology only a limited load be able to record.
Das der Erfindung zugrunde liegende technische Problem besteht darin, einen Teleskopkran bereitzustellen, der gerade auch in Steilstellungen des Auslegers eine erhöhte Traglast bei geringerer seitlicher Verformung aufnehmen kann.The technical problem underlying the invention is a telescopic crane To provide the increased load capacity, especially in the steep positions of the boom can absorb less lateral deformation.
Dieses technische Problem wird gelöst durch einen Teleskopkran mit Unterwagen, drehbar darauf angeordnetem Oberwagen, Gegengewicht und einem Ausleger, der einen Hauptausleger mit einem Grundkasten und mindestens einem darin ein- und ausschiebbaren Teleskopschuss aufweist, wobei mindestens eine am Ausleger angeordnete Abspannstütze vorhanden ist, die mit einem im Wesentlichen in Längsrichtung des Auslegers verlaufenden Spannmittel verbunden ist und deren Neigung zur Wippebene veränderbar ist.This technical problem is solved by a telescopic crane with undercarriage, rotatable superstructure arranged thereon, counterweight and a boom that one Main boom with a basic box and at least one that can be pushed in and pushed out Telescopic shot, with at least one guy support arranged on the boom is present, which extends substantially in the longitudinal direction of the boom Clamping means is connected and the inclination to the seesaw level can be changed.
Es wird, insbesondere individuell angepasst an die jeweilige Wippstellung des Auslegers, eine Erhöhung der Traglast erzielt, insbesondere in einer Steilstellung, weil, wie sich gezeigt hat, in diesem Fall oftmals die seitliche Verformung des Auslegers das traglastbegrenzende Kriterium ist, nun aber durch die in der Neigung zur Wippebene veränderbare Abspannstütze auch gezielt seitliche Kräfte, die auf den Ausleger wirken, aufgenommen werden können. Insbesondere kann eine derartige Ausbildung auch eine Doppelfunktion haben, nämlich dahingehend, dass in einer Betriebsstellung ein normaler Superliftbetrieb und in einer anderen Betriebsstellung eine Kombination aus Superlift und seitlicher Abspannung durchführbar ist. Bei normalem Superliftbetrieb befindet sich die erfindungsgemäße neue Abspannstütze in der Wippebene bzw. verläuft parallel hierzu. Bei der Kombination aus Superlift und seitlicher Abspannung nimmt die Abspannstütze eine Winkelstellung zur Wippebene ein.In particular, it is individually adapted to the respective luffing position of the boom Increased load capacity, especially in a steep position, because, as has been shown, in this case the lateral deformation of the boom often limits the load The criterion is, however, now that the guy support can be changed in inclination to the luffing plane lateral forces that act on the boom can also be absorbed. In particular, such a design can also have a double function, namely in that a normal superlift operation in one operating position and in another Operating position, a combination of superlift and lateral guying is feasible. In normal superlift operation, the new guy support according to the invention is in the Rocker level or runs parallel to it. With the combination of superlift and side The guy support takes up an angle to the luffing plane.
Bei einer beispielhaften Ausführungsform ist die Neigung der Abspannstütze in einer Ebene quer und/oder längs zur Längsrichtung des Auslegers veränderbar. Mit anderen Worten, die Abspannstütze ist gegenüber der Wippebene in verschieden senkrecht dazu stehenden Ebenen liegend neigbar.In an exemplary embodiment, the inclination of the guy support is in one plane changeable transversely and / or longitudinally to the longitudinal direction of the boom. In other words, the Guy support is in different planes perpendicular to the luffing plane reclining when lying down.
Die Veränderung der Neigung der Wippebene kann stufenweise oder kontinuierlich über ein Verschwenken der mindestens einen Abspannstütze einstellbar sein. Eine einfache Ausführungsform sieht vor, dass nur mehrere verschiedene Stufen von Neigungen zur Wippebene einnehmbar sind. Eine andere Ausführungsform kann vorsehen, dass die Neigung im Bereich von größer 0° bis 90° gegenüber der Wippebene einstellbar ist, was eine genauere Anpassung an die jeweilige Steilstellung des Auslegers und die abzusehenden Belastungen zulässt. The change in the inclination of the luffing plane can be gradual or continuous Swiveling the at least one guy support can be adjustable. An easy one Embodiment provides that only several different levels of inclinations to Rocker level are ingestible. Another embodiment can provide that the inclination is adjustable in the range of greater than 0 ° to 90 ° with respect to the seesaw level, which is a more precise Adaptation to the respective steep position of the boom and the foreseeable loads allows.
Beispielsweise am Ausleger mindestens eine gegenüber der Wippebene geneigte Abspannstütze angeordnet, die mit einem im Wesentlichen in Längsrichtung des Auslegers verlaufenden Spannmittel verbunden ist, wobei die Neigung der Abspannstütze so gewählt ist, dass die auf den Ausleger wirkende seitliche Belastung teilweise oder vollständig durch die Abspannung aufgenommen wird. Die Neigung der Abspannstütze kann quer zur Längsrichtung oder in Längsrichtung oder überlagernd quer zur und in Längsrichtung des Auslegers erfolgen.For example on the boom at least one opposite the Rocker plane inclined guy support arranged with a substantially in Longitudinal direction of the boom extending clamping means is connected, the The angle of the guy support is selected so that it acts on the boom lateral or partial load is completely absorbed by the guying becomes. The inclination of the guy support can be transverse to the longitudinal direction or in Longitudinal direction or superimposed transversely to and in the longitudinal direction of the boom.
Vorzugsweise sind auf der Oberseite des jeweiligen Auslegerelementes zwei geneigte Abspannstützen vorgesehen, wobei im Regelfall die Winkelneigung beider Abspannstützen gleich ist. Sie kann aber je nach Richtung der am Ausleger angreifenden Kräfte auch verschieden sein. Die Fußenden beider Abspannstützen können an einer gemeinsamen Stelle mit der Oberseite des Auslegers verbunden sein, aber ebenso auch versetzt zueinander. Nach einem weiteren Merkmal der Erfindung ist das Fußende wenigstens einer Abspannstütze im Übergangsbereich zwischen Oberseite oder jeweiliger Seitenwand mit dem Ausleger verbunden. Alternativ gibt es auch die Möglichkeit, das Fußende wenigstens einer Abspannstütze auf einen quer zur Längsachse des Auslegers und über diesen hinauskragenden Träger anzuordnen.Preferably, two are inclined on the top of the respective boom element Guy braces are provided, usually the angular inclination of both Guy supports are the same. But depending on the direction of the boom attacking forces may also be different. The foot ends of both guy supports can be connected to the top of the boom at a common location, but also offset from each other. According to a further feature of the invention is the foot end of at least one guy support in the transition area between Top side or respective side wall connected to the boom. Alternatively there is also the possibility to cross the foot end of at least one guy support To arrange the longitudinal axis of the boom and overhanging this beam.
Die beispielhafte Anordnung hat den Vorteil, dass je nach Winkelstellung der Abspannstützen der Anteil der Abspannkraft, der in die Seitenrichtung wirksam wird, stufenlos oder kontinuierlich verändert werden kann. Im Falle der Anordnung von zwei versetzt angeordneten Abspannstützen bedeutet dies, dass in der einen Extremlage, d. h. in der Vertikalstellung, die beiden parallel stehenden Abspannstützen die gleiche Wirkung im Sinne eines Superliftbetriebes haben wie der bekannte Abspannbock. In einer Winkelstellung <90° bis >0° für die beiden Abspannstützen wird die wirksame Spannkraft aufgeteilt in eine Komponente Superliftbetrieb und eine Komponente seitliche Abspannung. In der zweiten Extremlage, d. h. in der Horizontalstellung, bewirken die beiden Abspannstützen nur eine Verstärkung in beide Seitenrichtungen.The exemplary arrangement has the advantage that, depending on the angular position Guy supports: the amount of guy force that acts in the lateral direction, can be changed continuously or continuously. In the case of the arrangement of two this means that in one extreme position, d. H. in the vertical position, the two guy supports in parallel are the same Effect in the sense of a superlift operation like the well-known guy stand. In an angular position <90 ° to> 0 ° for the two guy supports will be the effective one Clamping force divided into a superlift operation component and a component lateral guying. In the second extreme position, i.e. H. in the horizontal position, the two guy supports only reinforce in both directions.
Das jeweilig freie Kopfende der Abspannstütze ist über ein erstes Spannmittel wahlweise mit dem Unterwagen, dem Oberwagen, dem Fußbereich des Auslegers, dem festen oder separat geführten Gegengewicht oder dem Boden in Richtung Fußende des Auslegers und über ein weiteres Spannmittel mit einer ausgewählten Stelle des Auslegers in Richtung Auslegerkopf verbunden. Die jeweils gewünschte Winkelstellung der Abspannstützen kann stufenweise oder kontinuierlich über ein Verschwenken der Abspannstützen eingestellt werden. Damit ist auch eine asymmetrische Winkeleinstellung möglich. Dies bedeutet, dass bei einer angreifenden Seitenkraft nur an einer Seite die jeweilige Abspannstütze mehr in Richtung seitlicher Abspannung geneigt wird, während die zweite Abspannstütze in einer Mittellage verbleibt.The respective free head end of the guy support is over a first clamping device optionally with the undercarriage, the uppercarriage, the foot area of the boom, the fixed or separately guided counterweight or the floor in the direction Foot end of the boom and a further clamping device with a selected one Place the boom connected in the direction of the boom head. The one you want Angular position of the guy supports can be gradual or continuous Swiveling the guy supports can be adjusted. That is also one asymmetrical angle adjustment possible. This means that when attacking Lateral force only on one side the respective guy support more towards the side Guy is inclined while the second guy support is in a central position remains.
Da auch der Abstand der Spannmittel vom Ausleger Einfluss auf die gewünschte Verstärkung hat, ist vorgesehen, die Länge der Abspannstützen in Stufen oder kontinuierlich zu verändern. Die Spannmittel können als Seil oder als Stange ausgebildet sein. Das Spannmittel bzw. die Spannmittel können mit und ohne Vorspannung angeordnet werden. Im Falle einer Vorspannung und eines nachregulierbaren Spanngrades wirkt das Spannmittel mit einer Spannvorrichtung zusammen. Vorzugsweise ist dies eine Winde oder eine Kolben-Zylinder-Einheit. Aber auch die Winkelverstellung und/oder die Längenänderung der Abspannstütze kann im Sinne einer Spannvorrichtung genutzt werden. Die Spannvorrichtungen sind wahlweise an den Abspannstützen, am Ausleger, am Ober- oder Unterwagen oder am Gegengewicht anordenbar.Since the distance between the clamping devices and the boom also influences the desired Reinforcement has been provided, the length of the guy supports in steps or to change continuously. The clamping devices can be used as a rope or as a rod be trained. The clamping device or the clamping device can be with and without Preload can be arranged. In the case of a preload and one The clamping device can be readjusted with a clamping device together. This is preferably a winch or a piston-cylinder unit. But also the angle adjustment and / or the change in length of the guy support can in Can be used as a tensioning device. The jigs are either on the guy supports, on the boom, on the superstructure or undercarriage or on Counterweight can be arranged.
Vorzugsweise werden die Abspannstützen am Hauptausleger im Bereich des Grundkastens angeordnet, insbesondere im vorderen Bereich zwischen der Anlenkung des Wippzylinders und der vorderem Lagerung. Zur kontinuierlichen Verstellung der Abspannstützen ist vorzugsweise jede Abspannstütze mit einer auf dem Grundkasten sich abstützenden Kolben-Zylinder-Einheit verbunden. Zur Anordnung der Winde weist nach einem weiteren Merkmal der Erfindung die Abspannstütze zwei Holme auf, zwischen denen die Winde anordenbar ist. The guy supports on the main boom are preferably in the area of the Basic box arranged, especially in the front area between the Linkage of the luffing cylinder and the front bearing. For continuous Adjustment of the guy supports is preferably every guy support with one on the piston-cylinder unit supported on the basic box. to Arrangement of the winch has a further feature of the invention Guy support on two spars, between which the winch can be arranged.
Die Ausrüstung des Teleskopauslegers kann noch ergänzt werden mit der Anordnung eines aus Gittermastteilen gebildeten starren oder wippbaren Hilfsauslegers. Auch an diese Auslegerelemente kann die vorgeschlagene seitliche Abspannung angebracht werden.The equipment of the telescopic boom can be supplemented with the arrangement a rigid or luffing jib made of lattice boom parts. Also on the proposed lateral bracing can be attached to these cantilever elements become.
Besonders wirkungsvoll kann die seitliche Abspannung eingesetzt werden, wenn der Kran mit einem Messmittel zur Erfassung der seitlichen Verformung des Auslegers versehen ist. Überschreitet die Verformung einen festgelegten zulässigen Wert, wird das mit der Abspannung verbundene Spannmittel aktiviert und die Abspannung nachgespannt. Der Grad der seitlichen Verformung kann direkt oder indirekt über Krangrößen ermittelt werden. Beispielsweise sind dies die Seilspannung, die Seillänge und Seildehnung. Aber auch über die an den Ausleger angreifenden Kräfte in Form des seitlich auftretenden Windes, der Sonneneinstrahlung sowie der im Ausleger vorherrschenden Temperaturen kann eine Aussage über den Grad der seitlichen Verformung gemacht werden. Side guying can be used particularly effectively if the Crane with a measuring device to record the lateral deformation of the boom is provided. If the deformation exceeds a specified permissible value, the tensioning device connected to the guying is activated and the guying tightened. The degree of lateral deformation can be direct or indirect Crane sizes can be determined. For example, these are the rope tension, the rope length and rope elongation. But also in terms of the forces acting on the boom the side wind, the sun and the boom prevailing temperatures can make a statement about the degree of lateral Deformation can be made.
Eine an einem Teleskopkran mit Ausleger anbringbare Abspannvorrichtung, mit der insbesondere beidseitig eines Auslegers Abspannstützen in eine gewünschte Neigung gegenüber der Wippebene bringbar sind, und damit die Vorteile der zuvor genannten Bauart noch besser verwirklicht werden, umfasst ein am Ausleger anzuordnendes Rahmengestell und zwei Abspannstützen, wovon jede zum Verbinden mit einem im Wesentlichen in Längsrichtung des Auslegers verlaufenden Spannmittel ausgestaltet ist. Eine der beiden Abspannstützen ist an dem Rahmengestell in Längsrichtung des Auslegers gesehen zur rechten Seite verschwenkbar angeordnet, und die andere Abspannstütze ist an dem Rahmengestell in Längsrichtung des Auslegers gesehen zur linken Seite verschwenkbar angeordnet.An anchoring device that can be attached to a telescopic crane with jib in particular on both sides of a boom guy supports in a desired inclination can be brought relative to the luffing plane, and thus the advantages of the aforementioned type can be realized even better, includes a frame to be arranged on the boom and two guy supports, each for connecting to one essentially in Longitudinal direction of the boom extending clamping means is designed. One of the two Bracing supports are seen on the frame in the longitudinal direction of the boom right side pivoted, and the other guy support is on the Frame seen in the longitudinal direction of the boom pivotable to the left arranged.
Vorzugsweise werden zur seitlichen Verschwenkung jeweils eine Kolben-Zylinder-Einheit vorgesehen, mit der die Abspannstütze dann verbunden ist. Damit ist insbesondere eine beliebige Neigung eine der Abspannstützen gegenüber der Wippebene des Auslegers, an dem die Abspannvorrichtung zu befestigen ist, einstellbar.A piston-cylinder unit is preferred for lateral pivoting provided with which the guy support is then connected. This is particularly one any inclination of one of the guy supports with respect to the luffing level of the boom on which the guy is to be fixed, adjustable.
Eine weitere beispielhafte Ausführungsform der vorliegenden Erfindung sieht vor, dass das Rahmengestellt der Abspannvorrichtung ein Schwenkgelenk umfasst, so dass für den Transport des Teleskopkranes die beiden Abstandsstützen am Ausleger ablegbar sind. Damit wird, wie beim bekannten Superliftbetrieb, eine zweckmäßige Transportstellung erzielt, die Abspannvorrichtung muss nicht separat zum Einsatzort eines Teleskopkranes gebracht werden.Another exemplary embodiment of the present invention provides that the Frame of the guy device includes a swivel joint, so that for the Transport of the telescopic crane, the two spacers can be put down on the boom. In order to is, as in the known superlift operation, a convenient transport position achieved Anchoring device does not have to be brought separately to the place of use of a telescopic crane become.
Vorzugsweise ist am Rahmengestell zum Aufrichten des Rahmengestells mit den zwei daran schwenkbar angeordneten Abspannstützen mindestens eine Befestigungseinrichtung für eine Kolben-Zylinder-Einheit vorgesehen. Ähnlich zu der zuvor erläuterten Ausgestaltung ist vorzugsweise jede Abspannstütze mit einer Winde versehen, die als Spannvorrichtung für das im Wesentlichen in Längsrichtung des Auslegers verlaufenden Spannmittels dient. Is preferably on the frame for erecting the frame with the two on it pivoting guy supports at least one fastening device for one Piston-cylinder unit provided. It is similar to the configuration explained above preferably each guy support with a winch, which acts as a tensioning device for the serves essentially in the longitudinal direction of the boom clamping means.
Jede Abspannstütze kann so ausgestaltet werden, dass sie bei der größtmöglichen Verschwenkung zur Seite sich fußseitig am Ausleger abstützt.Each guy support can be designed to be the largest possible Swiveling to the side is supported on the foot side of the boom.
Bei einer beispielhaften Ausführungsform weist jede Abspannstütze zwei Holme auf, die über Querstreben verbunden sind.In an exemplary embodiment, each guy support has two spars that extend over Cross struts are connected.
Vorzugsweise weist der jeweils innenliegende Holm einer Abspannstütze am fußseitigen Ende ein Gelenk auf, das die Verschwenkung zur Seite erlaubt.Preferably, the inner spar of a guy support on the foot side End up a joint that allows pivoting to the side.
Weiter vorzugsweise ist im unteren Bereich der Abspannstütze zwischen den Holmen eine Winde angeordnet.Further preferred is in the lower area of the guy support between the bars Arranged winch.
Schließlich ist bei einer beispielhaften Ausführungsform das Rahmengestell der Abspannvorrichtung über Befestigungslaschen an einem Grundkasten eines Hauptauslegers eines Teleskopkranes anbringbar.Finally, in an exemplary embodiment, the frame of the Anchoring device via fastening straps on a basic box of a main boom attachable to a telescopic crane.
Im Folgenden sind zur weiteren Erläuterung und zum besseren Verständnis mehrere Ausführungsbeispiele der Erfindung unter Bezugnahme auf die beigefügten Zeichnungen näher beschrieben. Es zeigt:
- Fig.1a-1c
- als Prinzipskizze die mögliche Anordnung einer gegenüber der Wippebene geneigten Abspannstütze
Figur 2- als Prinzipskizze die Anordnung zweier geneigter Abspannstützen mit einem gemeinsamen Fußende.
- Figur3a-3d
- als Prinzipskizze die mögliche Anordnung zweier geneigter Abspannstützen mit getrennten Fußenden
- Figur 4
- als Prinzipskizze die Anordnung einer quer liegenden Abspannstütze
- Figur 5a
- in einer Vorderansicht ein praktisches Ausführungsbeispiel mit zwei neigbaren Abspannstützen.
- Figur 5b
- eine Seitenansicht von Figur 5a.
- 1a-1c
- as a basic sketch, the possible arrangement of a guy support inclined to the luffing plane
- Figure 2
- as a basic sketch, the arrangement of two inclined guy supports with a common foot end.
- Figur3a 3d
- as a basic sketch, the possible arrangement of two inclined guy supports with separate foot ends
- Figure 4
- as a basic sketch, the arrangement of a transverse guy support
- Figure 5a
- in a front view a practical embodiment with two inclinable guy supports.
- Figure 5b
- a side view of Figure 5a.
In den Figuren 1a-c sind als Prinzipskizze die mögliche Anordnung einer gegenüber
der Wippebene geneigten Abspannstütze dargestellt. Die Abspannstütze 2 ist
vorzugsweise auf der Oberseite 3 eines hier symbolhaft dargestellten
Auslegerelementes 1 angeordnet. Dieses Auslegerelement 1 kann ein Grundkasten
oder ein Schuss eines Hauptauslegers eines Teleskopkranes oder das
Gittermastelement eines starren oder wippbaren Hilfsauslegers sein. Die im
Auslegerelement 1 eingezeichnete Mittelachse 4 ist im Idealfall auch die Wippebene
des Auslegers. Erfindungsgemäß ist die Abspannstütze 2 gegenüber der Wippebene in
einem Winkel α>0 geneigt. Die gestrichelte Darstellung der Abspannstütze 2' soll
verdeutlichen, dass die Abspannstütze 2 auch nach der anderen Seite hin neigbar ist.
Das freie Ende 5 der Abspannstüzte 2 ist mit einem Spannmittel 6,7 vorzugsweise
einem Seil verbunden. Nicht dargestellt ist hier die Verbindung der Spannmittel 6,7 mit
einer am Ausleger angeordneten Fixstelle oder einer Spannvorrichtung wie
Kolbenzylinder-Einheit oder Winde. Ein Spannen der Spannmittel 6,7 kann man aber
auch ohne Spannvorrichtung erreichen. Zum einen in der Weise, dass die Spannmittel
6,7 bei einem kleineren oder größeren Winkel α angeordnet werden und danach die
Abspannstütze 2 weitergeneigt wird. Alternativ ist es auch möglich, die Abspannstütze
2 teleskopartig auszubilden und durch Längenveränderung einen Spanngrad zu
erreichen.In FIGS. 1a-c, the possible arrangement of one another is shown as a basic sketch
the guy support inclined. The
Im Teilbild b ist die Möglichkeit dargestellt die Abspannstütze 2 auch in der anderen
Ebene in einem Winkel β>0 zu neigen. Teilbild c zeigt die Möglichkeit, die
Abspannstütze 2 überlappend in beiden Ebenen zu neigen.In part b, the possibility of the
In Figur 2 ist ebenfalls in einer Prinzipskizze die Anordnung zweier Abspannstützen
2.1, 2.2 dargestellt. Die Besonderheit bei dieser Anordnung ist, dass beide
Abspannstützen 2.1,2.2 mit nur einem einzigen Fußende 8 auf der Oberseite 3 des
Auslegerelementes 1 angeordnet sind. Der jeweilige Neigungswinkel α1, α2 kann
gleich oder verschieden sein.In Figure 2 is also a schematic diagram of the arrangement of two guy supports
2.1, 2.2 shown. The peculiarity of this arrangement is that both
Guy supports 2.1,2.2 with only a
In Teilbildern a-d von Figur 3 sind ebenfalls als Prinzipskizze die Möglichkeit der
Anordnung zweier Abspannstützen 2.1,2.2 dargestellt, die ein getrenntes Fußende
8.1,8.2 aufweisen. Im ersten Teilbild a befinden sich die Fußenden 8.1,8.2 im Bereich
der Oberseite 3 des Auslegerelementes 1, während im Teilbild b die Fußenden 8.1,8.2
im Übergangsbereich von der Oberseite 3 zur jeweiligen Seitenwand 9,9' sich
befinden.In partial images a-d of FIG. 3 there is also the possibility of a schematic diagram
Arrangement of two guy supports 2.1.2.2 shown, which have a separate foot end
8.1.8.2 have. In the first drawing a, the foot ends 8.1, 8.2 are in the area
the
Im Teilbild c ist die Möglichkeit dargestellt zumindestens ein Fußende 8.1 außerhalb
des Auslegerelementes 1 anzuordnen. Dazu ist auf der Oberseite 3 ein hier nach
rechts sich erstreckender Träger 10 angeordnet, an dessen Ende das Fußende 8.1
der sich hier nach rechts neigenden Abspannstütze 2.1 sich befindet. Im Teilbild d
kragt der Träger 11 nach beiden Seiten über, so dass beide Fußenden 8.1,8.2 der
beiden Abspannstützen 2.1,2.2 außerhalb des Auslegerelementes 1 liegen.In the partial picture c the possibility is shown at least one foot end 8.1 outside
to arrange the
Ein Sonderfall ist in Figur 4 dargestellt. Hier bildet der querliegende Träger 12 selber
die beiden nach rechts und nach links sich erstreckenden Abspannstützen. Diese
Sonderform ist gedanklich ableitbar, wenn man dazu in Figur 2 die beiden
Neigungswinkel α1 und α 2 auf 90° anwachsen lässt.A special case is shown in Figure 4. Here the
In Figur 5 ist in einer Vorder- und einer Seitenansicht ein praktisches
Ausführungsbeispiel dargestellt. Das Auslegerelement ist in diesem Beispiel ein
Grundkasten 13 eines Hauptauslegers eines Teleskopkranes. Parallel zur Oberseite
14 des Grundkastens 13 ist schwenkbar ein Rahmengestell 15 angeordnet, das über
Befestigungslaschen 16,16' mit dem Grundkasten 13 verbunden ist. Am unteren
Träger 17 des Rahmengestells 15 ist im jeweiligen Endbereich eine zur Seite neigbare
Abspannstütze 18.1,18.2 angeordnet. Die kontinuierliche Neigbarkeit erfolgt mittels
einer an der jeweiligen Abspannstütze 18.1,18.2 und am oberen Träger 19 des
Rahmengestells 15 angeordneten Kolben-Zylinder-Einheit 20.1,20.2. Die hier gezeigte
Darstellung zeigt den'Sonderfall, dass die rechts angeordnete Abspannstütze 18.1
vertikal steht, vergleichbar wie ein Abspannbock, während die linke Abspannstütze
18.2 die größte neigbare Stellung aufweist. Jede Abspannstütze 18.1,18.2 weist zwei
Holme 21.1,21.2,22.1,22.2, die im unteren Bereich in etwa parallel und im oberen
Bereich etwas zueinander laufen. Die Verbindung der beiden Holme erfolgt über
Querstreben 23.1,23.2. Der jeweils innen liegende Holm 21.2,22.2 weist am
fußseitigen Ende ein Gelenk 24.1,24.2 auf. Der jeweils außenliegende Holm 21.1,22.1
kommt bei der größten Neigung der Abspannstützen 18.1,18.2 am oberen Bereich der
Seitenwand 25,25' des Grundkastens 13 zur Anlage. Diese jeweilige Anschlagstelle an
der Seitenwand 25,25' ist durch ein Blech 26,26' verstärkt. Zwischen den Holmen
21.1,22.1,21.2,22.2 ist im unteren Bereich der jeweiligen Abspannstütze 18.1,18.2 eine
Winde 27.1,27.2 angeordnet.In Figure 5 is a practical in a front and a side view
Embodiment shown. The cantilever element is a in this example
Wie schon zuvor erwähnt, ist das Rahmengestell 15 schwenkbar angeordnet, damit für
den Transport des Teleskopkranes die beiden Abspannstützen 18.1,18.2 parallel zur
Oberseite 14 des Grundkastens 13 ablegbar sind. Zum Wiederaufrichten ist als
Rüsthilfe je eine Kolben-Zylinder-Einheit 28.1,28.2 vorgesehen, die an einem Ende an
der Seitenwand 25 und mit dem anderen Ende im hälftigen Bereich der jeweiligen
Abspannstütze 18.1 angeordnet ist.As previously mentioned, the frame 15 is pivotally arranged, so for
the transportation of the telescopic crane parallel to the two guy supports 18.1,18.2
Das Spannmittel, je ein Seil 29.1 ist mit einem Ende über eine Seilkausche 31.1 am Kopfbereich der Abspannstütze 18.1 befestigt. Von dort läuft es zum in Richtung Auslegerkopf angeordneten Umlenkpunkt (auch hier nicht dargestellt) und läuft zurück über ein im Kopfbereich der Abspannstütze 18.1 angeordneten Umlenkrolle 30.1 und von dort zur Winde 27.1.The tensioning means, each with a rope 29.1, is at one end via a rope thimble 31.1 Head area of the guy support 18.1 attached. From there it runs towards Boom head arranged deflection point (also not shown here) and runs back via a deflection roller 30.1 and. arranged in the head region of the guy support 18.1 thence to the winch 27.1.
Auf der rückwärtigen Seite im Kopfbereich der Abspannstütze 18.1 ist eine Abspannspange 32.1 angeordnet, die die rückseitige Sicherung für die jeweilige Abspannstütze 18.1 darstellt. On the rear side in the head area of the guy support 18.1 is one Guy strap 32.1 is arranged, which is the rear fuse for the respective Guy support 18.1 represents.
Claims (42)
- A telescopic crane, comprising:a carrier;a superstructure being rotatably mounted thereon;a counterweight;a boom structure (1) comprising a main boom having a boom base (13) and at least one telescope section being displaceable therein between retracted and extended positions, andat least one guy support (2; 2.1, 2.2; 18.1, 18.2) being arranged at the boom structure (1), wherein the guy support (2; 2.1, 2.2; 18.1, 18.2) is connected to a tension means (6, 7; 29.1, 29.2, 32.1, 32.2) extending substantially in a longitudinal direction of the boom structure (1) and the inclination (α, β) of which is variable with respect to the luffing plane (4).
- The telescopic crane according to claim 1,
characterized in that the inclination (α, β) of the guy support (2; 2.1, 2.2; 18.1, 18.2) is variable transversely and/or along the longitudinal direction of the boom structure (1). - The telescopic crane according to claim 1 or 2,
characterized in that the inclination (α, β) of the guy support (2; 2.1, 2.2; 18.1, 18.2) is adjustable transversely and/or along the longitudinal axis of the boom structure (1) step-by-step or continuously by means of rotation of the at least one guy support (1). - The telescopic crane according to any of the preceding claims,
characterized in that the foot end (8.1) of at least one guy support (2.1) is arranged on a support (10) being arranged transversely to the longitudinal direction of the boom structure (1) and extending beyond the boom structure (1). - The telescopic crane according to any of the preceding claims,
characterized in that the free top end (5) of a guy support (2.1, 2.2; 18.1, 18.2) is optionally connected via a first tension means (7; 32.1, 32.2) to at least one of the superstructure, the carrier, the base area of the boom structure (1), a counterweight being fixedly or separately arranged, or the ground in direction of the base end of the boom structure (1) and via a further tension means (6; 29.1, 29.2) to a selected position of the main boom (1) or a component of an extension of the boom structure in the direction of the top of the boom structure (1). - The telescopic crane according to claim 5,
characterized in that the free top end of the at least one guy support (18.1, 18.2) is connected via a tension means (6; 29.1, 29.2) to the head or to the collar of one of the inner telescopic sections. - The telescopic crane according to claim 5,
characterized in that the free top end of the at least one guy support (18.1, 18.2) is connected via a tension means (6; 29.1, 29.2) to a part of a fixed or teetering jib boom made in the form of lattice tower parts. - The telescopic crane according to any of the preceding claims,
characterized in that the length of the guy support (2; 2.1, 2.2; 18.1, 18.2) is variable. - The telescopic crane according to claim 8,
characterized in that the length of the guy support (2; 2.1, 2.2; 18.1, 18.2) is variable step-by-step. - The telescopic crane according to claim 8,
characterized in that the length of the guy support (2; 2.1, 2.2; 18.1, 18.2) is variable continuously. - The telescopic crane according to any of the preceding claims,
characterized in that the tension means (6, 7) is a rope (29.1; 29.2) and/or a rod (32.1, 32.2). - The telescopic crane according to any of the preceding claims,
characterized in that the tension means (6, 7; 29.1, 29.2; 32.1, 32.2) interacts with a tensioning device (27.1; 27.2). - The telescopic crane according to any of the preceding claims,
characterized in that separately controllable tensioning devices (27.1, 27.2) are provided for the tension means (6, 7; 29.1, 29.2; 32.1, 32.2) of each guy support (2; 2.1, 2.2; 18.1, 18.2). - The telescopic crane according to claim 12 or 13,
characterized in that the at least one tensioning device (27.1; 27.2) is arranged at the guy support (18.1; 18.2), at the superstructure, at the carrier, at the main boom (1), at the counterweight or at a boom extension. - The telescopic crane according to claim 12, 13 or 14,
characterized in that the tensioning device is a winch (27.1, 27.2) or a piston-cylinder unit. - The telescopic crane according to any of the preceding claims,
characterized in that a variation of the inclination of a guy support (2; 2.1, 2.2;18.1, 18.2) can be used to tense the associated tension means (6, 7; 29.1; 29.2; 32.1, 32.2). - The telescopic crane according to any of the preceding claims,
characterized in that a variation of the length of the guy support (2; 2.1, 2.2;18.1, 18.2) can be used to tension the associated tension means (6, 7; 29.1; 29.2; 32.1, 32.2). - The telescopic crane according to any of the preceding claims,
characterized in that the at least one guy support (2) is arranged on a top side (3) of the boom structure (1). - The telescopic crane according to any of the preceding claims,
characterized in that at least one pair of guy supports (2.1, 2.2; 18.1, 18.2) is arranged at the boom structure (1), wherein at least one guy support (2.1; 18.1) can be inclined to one side of the boom structure (1) and where the other guy support (2.2; 18.2) can be inclined to the other side of the boom structure (1). - The telescopic crane according to claim 19,
characterized in that the at least one pair of guy supports (2.1, 2.2; 18.1, 18.2) is arranged at a predetermined position at a top side (3) of the boom structure (1). - The telescopic crane according to claim 19 or 20,
characterized in that the at least one pair of guy supports (18.1, 18.2) is arranged at the main boom in the area of the boom base (134). - The telescopic crane according to claim 21,
characterized in that the pair of guy supports (18.1, 18.2) is arranged in the forward region between the pivot mounting of a luffing cylinder and a forward bearing on the boom base (13). - The telescopic crane according to any of claims 19-22,
characterized in that the foot ends (8.1; 8.2) of both guy supports (2.1, 2.2; 18.1, 18.2) are connected at a common position with a top side (3) of the boom structure (1). - The telescopic crane according to any of claims 19-22,
characterized in that the foot ends (8.1; 8.2) of both guy supports (2.1, 2.2) are spatially displaced to each other connected with a top side (3) of the boom structure (1). - The telescopic crane according to any of the preceding claims,
characterized in that the foot end (8.1; 8.2) of the at least one guy support (2.1, 2.2; 18.1, 18.2) is connected to the boom structure (1) in the transition area between the top side (3) and the respective side wall (9, 9') of the boom base (13). - The telescopic crane according to any of the preceding claims,
characterized in that for implementing a lateral inclination the at least one guy support (18.1; 18.2) is connected with a piston-cylinder unit (20.1; 20.2) which is supported by the boom base (13). - The telescopic crane according to any of the preceding claims,
characterized in that the at least one guy support (18.1; 18.2) includes two poles (21.1; 22.1; 21.2; 22.2) being located in a approximate parallel disposition. - The telescopic crane according to claim 27,
characterized in that a winch (27.1; 27.2) is positioned between the poles (21.1; 22.1; 21.2; 22.2) of the respective guy supports (18.1; 18.2) to tension the tension means (6, 7; 29.1, 29.2, 32.1, 32.2). - The telescopic crane according to any of the preceding claims,
characterized in that a rigid jib boom made in the form of lattice tower parts is mounted to the head of the innermost telescope section. - The telescopic crane according to any of claims 1-28,
characterized in that a luffing fly jib made in the form of lattice tower parts is mounted by means of at least one slewed support to the head of the innermost telescope sections. - The telescopic crane according to any of claims 1-30,
characterized in that for determining the lateral deformation of the boom structure a measuring means is provided which is operatively linked to a tensioning mechanism which is capable of influencing the tautening degree of the lateral guying. - The telescopic crane according to claim 31,
characterized in that the lateral deformation can be determined, directly or indirectly, via crane parameters as for example rope tension, rope length, rope extension as well as the forces acting on the boom structure in form of lateral occurring winds, solar radiation as well as the temperatures prevailing at the main boom. - A guying device for attachment to a boom structure (1) of a telescopic crane comprising a frame (15) to be mounted to the boom structure and two guy supports (18.1, 18.2), wherein each of the guy supports is constructed for connecting to a tension means (6, 7; 29.1, 29.2; 32.1, 32.2) extending substantially along a longitudinal direction of the boom structure (1) and wherein one guy support (18.1) is arranged for lateral inclination to the right hand side (24.1) seen in longitudinal direction of the boom structure (1) and the other guy support (18.2) is arranged for lateral inclination to the left hand side (24.2) seen in longitudinal direction of the boom structure (1).
- The guying device according to claim 33,
characterized in that for lateral inclination the guy supports (18.1, 18.2) are respectively connected to a cylinder-piston unit (20.1, 20.2). - The guying device according to claim 33 or 34,
characterized in that the frame (15) comprises a lag-hinge (24.1, 24.2), such that the two guy supports (18.1, 18.2) can be folded to the boom structure (1) for the transport of the telescopic crane. - The guying device according to claim 35,
characterized in that the frame (15) is provided with at least a mounting unit for a cylinder-piston unit (20.1, 20.2) for erecting the frame (15) together with the two guy supports (18.1, 18.2) pivotally mounted thereon. - The guying device according to any of claims 33-36,
characterized in that each guy support (18.1, 18.2) is provided with a winch (27.1, 27.2), which serves as tensioning device for the tension means (6, 7; 29.1, 29.2; 32.1, 32.2) extending substantially in a longitudinal direction of the boom structure (1). - The guying device according to claim 37,
characterized in that each guy support (18.1, 18.2) is constructed to abut in the utmost lateral inclination angle at a foot side thereof to the boom structure (1). - The guying device according to any of claims 33-38,
characterized in that each guy support (18.1, 18.2) comprises two poles (21.1, 21.2, 22.1, 22.2) which are connected by means of cross-struts (23.1, 23.2). - The guying device according to claim 39,
characterized in that the respective inner pole (21.2, 21.2) of a guy support (18.1, 18.2) is provided with a joint (24.1, 24.2) at a foot side end thereof which allows the lateral inclination to a side. - The guying device according to claims 37 and 39,
characterized in that the winch (27.1, 27.2) is provided between the poles (21.1, 21.2, 22.1, 22.2) in a lower area of each guy support (18.1, 18.2). - The guying device according to any of claims 33-41,
characterized in that the frame (15) is attachable to a boom base (13) of a main boom of a telescopic crane by means of mounting links (16, 16').
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP03014531A EP1354842B1 (en) | 1999-06-28 | 2000-06-26 | Telescopic crane |
DE20018742U DE20018742U1 (en) | 1999-06-28 | 2000-06-26 | Telescopic crane |
DE20023223U DE20023223U1 (en) | 1999-06-28 | 2000-06-26 | telescopic crane |
Applications Claiming Priority (4)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE19930537 | 1999-06-28 | ||
DE19930537 | 1999-06-28 | ||
DE10022658A DE10022658B4 (en) | 1999-06-28 | 2000-04-28 | telescopic crane |
DE10022658 | 2000-04-28 |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP03014531A Division EP1354842B1 (en) | 1999-06-28 | 2000-06-26 | Telescopic crane |
Publications (4)
Publication Number | Publication Date |
---|---|
EP1065166A2 EP1065166A2 (en) | 2001-01-03 |
EP1065166A3 EP1065166A3 (en) | 2002-05-08 |
EP1065166B1 true EP1065166B1 (en) | 2003-08-13 |
EP1065166B2 EP1065166B2 (en) | 2009-02-18 |
Family
ID=26005614
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP00250210A Expired - Lifetime EP1065166B2 (en) | 1999-06-28 | 2000-06-26 | Telescopic crane |
Country Status (5)
Country | Link |
---|---|
EP (1) | EP1065166B2 (en) |
JP (1) | JP5013630B2 (en) |
AT (2) | ATE285980T1 (en) |
DE (2) | DE20022790U1 (en) |
ES (2) | ES2204452T3 (en) |
Families Citing this family (17)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE20020974U1 (en) * | 2000-12-12 | 2002-04-25 | Liebherr-Werk Ehingen Gmbh, 89584 Ehingen | mobile crane |
DE10128986A1 (en) * | 2001-06-11 | 2002-12-19 | Demag Mobile Cranes Gmbh | Mobile crane has load increasing device permanently connected to main jib part and with individual weight of telescopic extensions each reduced to avoid exceeding maximum permissible weight without having to reduce number of extensions |
DE20218971U1 (en) | 2002-12-06 | 2004-04-08 | Liebherr-Werk Ehingen Gmbh | Mobile crane with long arms |
DE10315989B4 (en) * | 2003-04-08 | 2007-10-25 | Grove U.S. Llc | Clamping system for a mobile telescopic crane |
JP2005162392A (en) * | 2003-12-02 | 2005-06-23 | Tadano Ltd | Mobile crane |
WO2005092775A1 (en) | 2004-03-26 | 2005-10-06 | Terex-Demag Gmbh & Co. Kg | Mobile crane sytsem comprising a mobile crane and an auxiliary device for assembly of a bracing device |
JP2006206233A (en) * | 2005-01-27 | 2006-08-10 | Tadano Ltd | Telescopic boom horizontal deflection restricting device for travelling crane |
JP2006306546A (en) * | 2005-04-27 | 2006-11-09 | Tadano Ltd | Crane device with jib |
DE202005016743U1 (en) * | 2005-10-25 | 2007-03-29 | Liebherr-Werk Ehingen Gmbh | Crane comprises a bracing device having two brace supports hinged on an auxiliary boom and inclined opposite a rocker surface |
AT10273U1 (en) * | 2007-05-03 | 2008-12-15 | Palfinger Ag | ADJUSTMENT MECHANISM FOR A WINCH |
DE202008006167U1 (en) | 2008-05-06 | 2008-07-17 | Terex-Demag Gmbh | Laterally strained lattice mast |
JP5271122B2 (en) * | 2009-03-11 | 2013-08-21 | 株式会社タダノ | Boom and jib lateral deflection suppressing device for boom working vehicle with jib |
NL1037444C2 (en) * | 2009-11-04 | 2011-05-11 | Bastiaan Jong | CRANE. |
JP5629160B2 (en) * | 2010-08-18 | 2014-11-19 | 株式会社タダノ | Mobile crane |
JP5635331B2 (en) * | 2010-08-18 | 2014-12-03 | 株式会社タダノ | Mobile crane |
JP5649870B2 (en) * | 2010-08-20 | 2015-01-07 | 株式会社タダノ | Mobile crane |
DE102020215260B4 (en) | 2020-12-03 | 2022-06-23 | Tadano Faun Gmbh | Method of operating a crane and crane |
Family Cites Families (12)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE1751383U (en) † | 1957-06-04 | 1957-08-29 | Horst Vesper | CRANE JIB IN SHELL CONSTRUCTION. |
JPS4737785Y1 (en) * | 1969-02-28 | 1972-11-15 | ||
DE3030820C2 (en) † | 1979-08-17 | 1987-01-29 | Coles Cranes Ltd., Sunderland, Tyne and Wear | Mobile crane with a telescopic boom |
DE3113763A1 (en) * | 1981-04-04 | 1982-10-28 | Mannesmann AG, 4000 Düsseldorf | Vehicle crane with telescopic jib |
JPS59164284A (en) * | 1983-03-07 | 1984-09-17 | Nissan Motor Co Ltd | Rig-structure of sailing vessel |
JPH0450304Y2 (en) * | 1987-09-02 | 1992-11-26 | ||
DE3840408A1 (en) † | 1988-03-23 | 1989-10-05 | Liebherr Werk Ehingen | Mobile crane with telescopic jib |
DE9311778U1 (en) † | 1993-08-06 | 1994-12-08 | Liebherr-Werk Ehingen Gmbh, 89584 Ehingen | Mobile crane |
DE4337415C2 (en) * | 1993-10-27 | 1996-09-26 | Mannesmann Ag | Crane, especially a large mobile crane |
DE19606109A1 (en) † | 1995-12-12 | 1997-06-19 | Liebherr Werk Ehingen | Mobile crane |
DE29720972U1 (en) † | 1997-11-26 | 1999-03-25 | Ec Engineering + Consulting Spezialmaschinen Gmbh, 89079 Ulm | Telescopic boom |
DE19802187C2 (en) † | 1998-01-16 | 1999-11-25 | Mannesmann Ag | Device for bracing a superlift device of a telescopic crane |
-
2000
- 2000-04-28 DE DE20022790U patent/DE20022790U1/en not_active Expired - Lifetime
- 2000-04-28 DE DE20023565U patent/DE20023565U1/en not_active Expired - Lifetime
- 2000-06-26 AT AT03014531T patent/ATE285980T1/en not_active IP Right Cessation
- 2000-06-26 ES ES00250210T patent/ES2204452T3/en not_active Expired - Lifetime
- 2000-06-26 ES ES03014531T patent/ES2235131T3/en not_active Expired - Lifetime
- 2000-06-26 AT AT00250210T patent/ATE247071T1/en not_active IP Right Cessation
- 2000-06-26 EP EP00250210A patent/EP1065166B2/en not_active Expired - Lifetime
- 2000-06-28 JP JP2000194127A patent/JP5013630B2/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
JP2001058791A (en) | 2001-03-06 |
DE20023565U1 (en) | 2004-11-25 |
ATE285980T1 (en) | 2005-01-15 |
EP1065166A2 (en) | 2001-01-03 |
JP5013630B2 (en) | 2012-08-29 |
ES2204452T3 (en) | 2004-05-01 |
EP1065166A3 (en) | 2002-05-08 |
ES2235131T3 (en) | 2005-07-01 |
ATE247071T1 (en) | 2003-08-15 |
EP1065166B2 (en) | 2009-02-18 |
DE20022790U1 (en) | 2002-07-04 |
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