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EP3215692B1 - Rollwagen für einen teleskopmast einer plattenhebevorrichtung, mit diesem wagen ausgestattete vorrichtung und implementierungsverfahren - Google Patents

Rollwagen für einen teleskopmast einer plattenhebevorrichtung, mit diesem wagen ausgestattete vorrichtung und implementierungsverfahren Download PDF

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Publication number
EP3215692B1
EP3215692B1 EP15788143.4A EP15788143A EP3215692B1 EP 3215692 B1 EP3215692 B1 EP 3215692B1 EP 15788143 A EP15788143 A EP 15788143A EP 3215692 B1 EP3215692 B1 EP 3215692B1
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EP
European Patent Office
Prior art keywords
plate
support
arms
axis
symmetry
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EP15788143.4A
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English (en)
French (fr)
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EP3215692A1 (de
Inventor
Lionel Marcon
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Pierre Grehal et Cie SA
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Pierre Grehal et Cie SA
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Priority to PL15788143T priority Critical patent/PL3215692T3/pl
Publication of EP3215692A1 publication Critical patent/EP3215692A1/de
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/18Implements for finishing work on buildings for setting wall or ceiling slabs or plates
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/18Implements for finishing work on buildings for setting wall or ceiling slabs or plates
    • E04F21/1805Ceiling panel lifting devices

Definitions

  • the invention relates to a rolling base for a telescopic mast of a plate lifting apparatus, an apparatus provided with such a base, and a method of implementation.
  • the invention relates to lifting and handling devices used during work, for the handling and positioning of heavy objects, such as sheets of material (plasterboard, wooden panels, etc.) for making false ceilings or installation under a ramp or on partitions.
  • heavy objects such as sheets of material (plasterboard, wooden panels, etc.) for making false ceilings or installation under a ramp or on partitions.
  • plate lifter This type of device, called plate lifter, has already been described, for example in the document FR2538437 .
  • a plate lifter The general structure of a plate lifter is as follows: a telescopic mast, controllable by a lifting mechanism, is mounted on a rolling base. A plate support, or “plate holder”, is pivotally mounted at the end of the mast by means of a pivot mechanism.
  • the telescopic mast comprises a first fixed element, and at least one mobile element telescopic relative to the fixed element.
  • the mast comprises two telescopic mobile elements.
  • These plate lifts have a rolling base comprising a fixed rolling arm, positioned on the mast opposite the side where the plate holder pivots vertically, and two arms mounted pivoting on the mast between a folded position when the device is not used, and a deployed position when the device is in use. In the deployed position, the arms form an angle between them which is large enough so that the arms do not touch the wall when the material plate is applied against the wall using the device.
  • the present invention therefore aims to provide a balanced plate lifter whatever the inclination (horizontal, angular or vertical of the plate support), safe (that is to say limiting the risk of tilting during the journey between the loading location and mounting location of the plate), ergonomic, and easily movable from one room to another.
  • the invention relates to a rolling base for a telescopic mast of a plate lifting device according to claim 1.
  • the invention also relates to a building plate lifting apparatus comprising a mast, a lifting mechanism, an adjustable plate support and a preceding rolling base, fixed to a base of the mast.
  • the method comprises, in place of step f1), a step f2) consisting in moving the device towards the vertical support until the wafers come into contact with the support vertical.
  • the figure 1 illustrates a plate lifter provided with a rolling base according to the invention, in the folded position.
  • the plate lifter 300 comprises a telescopic mast 200 at the upper end of which a plate support 400 is pivotally attached.
  • a base 201 on which the base 100 according to the invention is fixed.
  • the rolling base 100 comprises at least one pair of plates 10 intended to be fixed to the base 201 of the mast 200.
  • Each plate 10 has an axis of symmetry XX (see figure 2 ).
  • the rolling base also comprises three arms 20.30 each provided with an adjustable roller 21, 31, an arm 20 being fixed relative to the plates 10 and extending in the extension of the axis of symmetry XX of the plates.
  • Two arms 30 are pivotally mounted between the plates, symmetrically and on either side of the fixed arm 20.
  • the rolling base comprises two pairs of plates making it possible to ensure better stability of the base, in particular when the pivotally mounted arms 30 are each constituted by a coated U-shaped frame of which each branch 32 is pivotally mounted between two plates of a same pair.
  • the figure 2 illustrates a plate seen from above according to section II-II.
  • the pivoting arms 30 therefore comprise a storage position P0 ( figure 1 ) in which the lift polygon of the plate lifter is almost zero because the pivoting arms 30 are parallel to the fixed arm 20 and the angle between the arms is almost (due to the thickness of the arms) nonexistent.
  • This position P0 allows minimal bulk when the plate lifter is not used.
  • each plate further comprises, on each side of the axis of symmetry XX, a fourth means 43 for locking the pivoting arms 30 in a second intermediate angular position P3, called "de transport a vacuum ”.
  • each pivotally mounted arm 30 makes an angle ⁇ 3 with the axis of symmetry XX less than 90 ° and greater than the vertical fixing position P2.
  • the angular locking means are holes 40, 41, 42, 43 intended to be placed opposite the holes carried by each pivoting arm 30 is intended to receive a removable locking pin (not illustrated) .
  • Several holes per arm can be provided, which makes it possible to increase the distance between the holes and the pivot axis 34 of the pivoting arms 30, thereby improving the stability of the locking of the arms in the different angular positions.
  • This embodiment is illustrated in the figure 2 in which, for example, the hole 41 is further from the axis 34 than the hole 42.
  • the figure 3 illustrates a plate lifter whose base is in position P2 for empty transport. In this position, the two pivoting arms are spaced from each other by an angle less than 180 °.
  • the plate lifter rests on the ground by the three adjustable rollers 21,31 and by a roller 70 carried by the foot of the mast 200.
  • the plate lifter When passing from the loaded transport position P1 (or vertical fixing P2) to the empty transport position P3, the plate lifter is slightly unbalanced opposite the fixed arm 20 relative to the mast, up to what it rests on the wheel 70 of the mast.
  • the pivoting arms 30 being nevertheless spaced from each other, a support polygon forms between the wheels of the pivoting arms 30 and the caster wheel 70, sufficient for the plate lifter to be stable and to be possible to roll it between two parts, without having to dismantle it.
  • the caster 70 is fixed to the foot of the mast by an axis 71, perpendicular to the axis of symmetry XX of the plates 10.
  • This angle ⁇ depends on the length of the arms 30 and, in particular, on the distance between the caster 70 and the rollers 31 carried by the arms 30. It also depends on the diameter of the caster 70, so that those skilled in the art will be able to place the caster 70 at the foot of the mast 200 as a function of the diameter of the caster 70 which it has chosen and the distance between the caster 70 and the casters 31 which it has chosen.
  • the angle a3 is generally between 10 ° and 45 °, and its value depends on the length of the arms 30 chosen so that the plate lifter, in the empty transport position P3, has a wheelbase less than the width of the standard doors of a building.
  • the angle a3 is around 18 ° for arms of a length (taken between the pivot point and the free end of the arm) between 70 and 75 cm.
  • the figure 5 illustrates a plate lifter provided with a rolling base according to the invention in which the movable arms 30 have been deployed in the loaded transport position P1, that is to say that the arms 30 are angularly blocked by means of locking 41 at an angular opening ⁇ 1 relative to the axis of symmetry XX between 105 ° and 160 °.
  • the angle ⁇ 1 is chosen according to the structure of the plate lifter and the distribution of the masses within the plate lifter, so that the center of gravity of the plate lifter is located inside the determined support polygon by the rollers 30 and 20 in position P1.
  • the plate lifter is most stable in the loaded transport position P1
  • the angle ⁇ 1 is around 120 °.
  • the plate lifter is perfectly stable and it is possible to move it even when a material plate is placed on the plate holder 400.
  • the plate holder 400 is tilted in an angular position to load the plate lifter with a construction plate B.
  • the plate holder is then tilted in the vertical position as illustrated in figure 6 .
  • the pivoting arms 30 comprise a means for fixing a return means 50 intended to be removably fixed between the two pivoting arms 30, when the latter are in position transport load P1.
  • the return means is advantageously chosen from a spring or an elastic strap at the ends of which hooks are provided intended to cooperate with the fixing means (for example fixing hoops) carried by the arms 30.
  • the plate lifter is then moved to the vertical support M, on which the building plate must be fixed, until the rollers 31 come into contact with the vertical support M ( figure 6 ).
  • the locking means 41 are deactivated so as to allow free rotation of the arms 30.
  • At least one plate has an end-of-travel stop to limit a predefined maximum angular opening of the pivoting arms by relative to the axis of symmetry XX.
  • the user pushes the device against the vertical support so that the pivoting arms move apart in the direction of the arrow F1, against the means of reminder, until the material plate is pressed against the vertical support ( figure 7 ).
  • the pivoting arms are separated from one another according to the vertical fixing position. It is possible, for the user, to block the lifter in this position by actuating the locking means 41 or, preferably, a brake provided on the caster 21 of the fixed arm 20.
  • the construction plate can then be mounted using the plate lifter and then fixed on the vertical support M.
  • the user then moves the device away from the vertical support so that the pivoting arms are returned to the loaded transport position by the return means 50.
  • This reminder means thus makes it possible to automatically switch from position P1 to position P2 and then again to position P1 without the user having to manage the deployment of the mobile arms 30.
  • the angle ⁇ 2 between each pivoting arm 30 and the axis of symmetry XX in the vertical fixing position P2 is between 100 ° and 115 °, provided that this angle ⁇ 2 remains less than the angle ⁇ 1 of the transport position in load P1.
  • the angle a2 is chosen as a function of the length of the pivoting arms 30 and of the position of the plate support in vertical position, so that the material plate can be pressed against the vertical support M without the pivoting arms interfering with this. support.
  • a return means 50 therefore makes it possible to automatically modulate the angle ⁇ one and the angle ⁇ two as a function of the thickness of the plate of material to be fixed.
  • the two pivoting arms 30 therefore comprise a position P1 of angular opening maximizing the lift polygon of the plate lifter loaded with the fixed arm 20, and a position P2 of angular opening in which the two pivoting arms 30 separate the one from the other (direction of arrow F1) to allow the application of a plate against the vertical support M.
  • the support polygon is more restricted, but the plate lifter remains stable since is resting against the wall.
  • the base allows a very stable rolling of the plate lifter from its loading location to the wall because the arms are in the loaded transport position whose angular opening optimizes the support polygon, and a very stable rise of the plate since the plate lifter is pressing against the wall in the vertical fixing position.
  • the rolling base advantageously comprises wafers 60 rotatably mounted between each swivel castor 31 and each arm 30, perpendicular to the axis of rotation of the rollers 31.
  • Each pancake 60 has a maximum diameter D60 greater than the maximum diameter D31 of the adjustable rollers 31. This embodiment is illustrated in figure 8 .
  • the arms 30 move apart much more easily when the user pushes the lifter. -plate against the vertical support M. Indeed, when the user moves the device to the vertical support, it is the wafers 60 which come into contact with the vertical support and not the wheels. Since the axis of rotation of the pancakes 60 is parallel to the vertical support M, the spacing of the arms 30 in the direction of the arrow F1 (see figure 7 ) is very easy and the vertical support is not likely to be damaged by the friction of the wheels (as can be the case in the absence of wafers).
  • the rolling base according to the invention therefore allows very easy handling of the plate lifter, especially during the vertical fixing of plates. It also allows it to be moved very easily between two parts without having to dismantle it completely. Finally, it allows great stability when the plate lifter is not in the use position (position P1 and P3) while allowing the plate to be applied effectively against a vertical support for its attachment.
  • FIG 9 Another embodiment of a base 500 according to the invention is illustrated in figure 9 .
  • the pivoting arms 501 are pivotally mounted on the mast 200, for example by means of individual plates 502 (the plate or plates for fixing an arm is / are independent of the one or more fixing plates of the other arm).
  • the blocking means 503 consist of at least three holes 503a, 503b, 503c carried by each of the two pivotally mounted arms and by two hooks 504 carried by the fixed arm 505 or by the mast 200. In the figure, the hooks are carried by the fixed arm 505.
  • a fourth hole 503c is arranged on each arm corresponding to the second intermediate angular position P3 of vacuum transport, in which each pivotally mounted arm 501 makes an angle ⁇ 3 with the fixed arm 505 less than 90 ° and greater than the position storage, preferably between 15 ° and 45 °.
  • a return means can be provided between the two pivoting arms, in the same manner as described in Figures 5 to 7 .
  • the hooks 504 are released from the holes 503a in order to allow the free arms to pivot towards one another.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Forklifts And Lifting Vehicles (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Handcart (AREA)

Claims (10)

  1. Rollendes Fußgestell (100) für einen Teleskopmast (200) einer Plattenhebevorrichtung (300), das unter Bezug auf die Benutzungsstellung enthält:
    • mindestens ein Paar von Platinen (10), die dazu bestimmt sind, am Sockel (201) eines Hebevorrichtungsmasts befestigt zu werden, wobei jede Platine eine Symmetrieachse (XX) aufweist;
    • drei Arme (20, 30), die je mit einer ausrichtbaren Laufrolle (21, 31) ausgestattet sind, ein ortsfester Arm (20) und zwei zwischen zwei Platinen schwenkbare Arme (30), die symmetrisch und zu beiden Seiten des ortsfesten Arms (20) montiert sind;
    • wobei jede Platine zu beiden Seiten der Symmetrieachse mindestens drei Blockieröffnungen (40, 41, 42) aufweist, die dazu bestimmt sind, gegenüber von Löchern angeordnet zu werden, die von jedem Schwenkarm (30) getragen werden und dazu bestimmt sind, einen entfernbaren Blockierstift zum Blockieren der Schwenkarme in drei unterschiedlichen Winkelstellungen (P0, P1, P2) bezüglich der Symmetrieachse aufzunehmen:
    - eine erste Blockieröffnung (40) entsprechend einer so genannten minimalen "Lager"-Winkelstellung (P0), in der jeder schwenkbar montierte Arm parallel zum ortsfesten Arm und zur Symmetrieachse der Platinen ist;
    - eine zweite Blockieröffnung (41) entsprechend einer maximalen so genannten "Transport unter Last"-Winkelstellung (P1), in der jeder schwenkbar montierte Arm einen Winkel (α1) mit der Symmetrieachse von mehr als 105° bildet, vorzugsweise zwischen 110° und 160°, vorteilhafterweise etwa 120°;
    - eine dritte Blockieröffnung (42) entsprechend einer ersten so genannten "Senkrechtbefestigung"-Zwischenstellung (P2), in der jeder schwenkbar montierte Arm einen Winkel (α2) mit der Symmetrieachse von mehr als 90° und kleiner als die Stellung des Transports unter Last (P1) bildet, der vorzugsweise zwischen 100° und 115° liegt, vorausgesetzt, dieser Winkel bleibt kleiner als die Stellung des Transport unter Last (P1),
    dadurch gekennzeichnet, dass der ortsfeste Arm zwischen zwei Platinen in der Verlängerung der Symmetrieachse der Platinen und des Masts am Mast befestigt ist, und dass das zweite Blockierloch (41) weiter von der Achse (34) entfernt ist als das dritte Blockierloch (42).
  2. Rollendes Fußgestell nach Anspruch I, wobei jede Platine außerdem auf jeder Seite der Symmetrieachse eine vierte Blockiereinrichtung (43) der Schwenkarme in einer zweiten so genannten "Leertransport"-Zwischenwinkelstellung (P3) enthält, in der jeder schwenkbar montierte Arm einen Winkel (α3) mit der Symmetrieachse kleiner als 90° und größer als die Lagerstellung bildet, der vorzugsweise zwischen 15° und 45° liegt.
  3. Rollendes Fußgestell nach einem der Ansprüche I oder 2, das zwei Paare von Platinen enthält, wobei die Arme je aus einem Beschlag in Form eines liegenden U bestehen, von dem jeder Schenkel (32) zwischen zwei Platinen eines gleichen Paars schwenkbar montiert ist.
  4. Rollendes Fußgestell nach einem der Ansprüche 1 bis 3, das außerdem eine Rückstelleinrichtung (50) enthält, die dazu bestimmt ist, abmontierbar zwischen den zwei Schwenkarmen befestigt zu werden, wenn letztere in der Stellung des Transports unter Last sind.
  5. Rollendes Fußgestell nach einem der Ansprüche I bis 4, wobei auf jedem Schwenkarm eine drehbar montierte Scheibe (60) zwischen jede ausrichtbare Laufrolle (31) und jeden Arm (30) eingefügt ist, wobei jede Scheibe einen maximalen Durchmesser (D60) größer als ein maximaler Durchmesser (D31) der ausrichtbaren Laufrollen aufweist.
  6. Rollendes Fußgestell nach Anspruch 4, wobei mindestens eine Platine einen Endanschlag aufweist, um eine vordefinierte maximale Winkelöffnung der Schwenkarme bezüglich der Symmetrieachse zu begrenzen.
  7. Hebevorrichtung einer Bauplatte, die einen Mast, einen Hebemechanismus und einen ausrichtbaren Plattenträger enthält, dadurch gekennzeichnet, dass sie ein an einem Sockel des Masts befestigtes rollendes Fußgestell nach einem der Ansprüche I bis 6 enthält.
  8. Hebevorrichtung nach Anspruch 7, die ein rollendes Fußgestell nach Anspruch 2 und außerdem eine Laufrolle (70) enthält, die am Fuß des Masts durch eine Achse (71) lotrecht zur Symmetrieachse der Platinen befestigt ist, wobei der Durchmesser der Laufrolle und die Stellung ihrer Achse so gewählt werden, dass:
    • die Laufrolle nicht den Boden berührt, wenn die rollenden Schwenkarme in der Stellung Transport unter Last und in der senkrechten Befestigungsstellung ausgeklappt sind; und dass
    • die Laufrolle mit dem Boden in Kontakt kommt, wenn die Schwenkarme in der Stellung Leertransport ausgeklappt sind, wobei ein Kippwinkel (β) des Masts zwischen der Stellung Transport unter Last oder der senkrechten Befestigungsstellung und der Stellung Leertransport zwischen 1° und 4° liegt.
  9. Verfahren zur Positionierung und zur Befestigung einer Platte an einer senkrechten Träger mit Hilfe einer Hebevorrichtung nach einem der Ansprüche 7 oder 8 versehen mit einem Fußgestell nach Anspruch 4, das die folgenden Schritte enthält:
    a1) Bereitstellen einer Hebevorrichtung nach einem der Ansprüche 7 oder 8 versehen mit einem Fußgestell nach Anspruch 4;
    b1) Anordnen der Arme in der Stellung Transport unter Last;
    c1) Befestigen der Rückstelleinrichtung zwischen den Armen;
    d1) Platzieren einer Bauplatte auf dem Plattenträger;
    e1) senkrechtes Ausrichten des Plattenträgers, damit die Platte senkrecht ist;
    f1) Verschieben der Vorrichtung zum senkrechten Träger, bis die Laufrollen mit dem senkrechten Träger in Kontakt kommen;
    g1) Drücken der Vorrichtung gegen den senkrechten Träger, damit die Schwenkarme sich gegen die Rückstelleinrichtung spreizen, bis die Materialplatte gegen den senkrechten Träger in Anlage ist;
    h1) Befestigen der Platte;
    i1) Entfernen der Vorrichtung vom senkrechten Träger, damit die Schwenkarme von der Rückstelleinrichtung in die Stellung des Transports unter Last zurückgeholt werden.
  10. Verfahren zur Positionierung und zur Befestigung einer Platte auf einem senkrechten Träger mit Hilfe einer Hebevorrichtung nach einem der Ansprüche 7 oder 8 versehen mit einem Fußgestell nach Anspruch 5, das die folgenden Schritte enthält:
    a2) Bereitstellen einer Hebevorrichtung nach einem der Ansprüche 7 oder 8 versehen mit einem Fußgestell nach Anspruch 5;
    b2) Anordnen der Arme in der Stellung Transport unter Last;
    c2) Befestigen der Rückstelleinrichtung zwischen den Armen;
    d2) Platzieren einer Bauplatte auf dem Plattenträger;
    e2) senkrechtes Ausrichten des Plattenträgers, damit die Platte senkrecht ist;
    f2) Verschieben der Vorrichtung zum senkrechten Träger, bis die Scheiben mit dem senkrechten Träger in Kontakt kommen;
    g2) Drücken der Vorrichtung gegen den senkrechten Träger, damit die Schwenkarme sich gegen die Rückstelleinrichtung spreizen, bis die Materialplatte gegen den senkrechten Träger in Anlage ist;
    h2) Befestigen der Platte;
    i2) Entfernen der Vorrichtung vom senkrechten Träger, damit die Schwenkarme von der Rückstelleinrichtung in die Stellung des Transports unter Last zurückgeholt werden.
EP15788143.4A 2014-11-06 2015-10-02 Rollwagen für einen teleskopmast einer plattenhebevorrichtung, mit diesem wagen ausgestattete vorrichtung und implementierungsverfahren Active EP3215692B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15788143T PL3215692T3 (pl) 2014-11-06 2015-10-02 Ruchoma podstawa do teleskopowego masztu urządzenia do podnoszenia płyt, urządzenie wyposażone w taką podstawę, oraz sposób realizacji

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1460724A FR3028280B1 (fr) 2014-11-06 2014-11-06 Pietement roulant pour un mat telescopique d’un appareil de levage de plaques, appareil muni d’un tel pietement, et procede de mise en œuvre
PCT/FR2015/052661 WO2016071591A1 (fr) 2014-11-06 2015-10-02 Piètement roulant pour un mât télescopique d'un appareil de levage de plaques, appareil muni d'un tel piètement, et procédé de mise en œuvre

Publications (2)

Publication Number Publication Date
EP3215692A1 EP3215692A1 (de) 2017-09-13
EP3215692B1 true EP3215692B1 (de) 2020-02-12

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EP15788143.4A Active EP3215692B1 (de) 2014-11-06 2015-10-02 Rollwagen für einen teleskopmast einer plattenhebevorrichtung, mit diesem wagen ausgestattete vorrichtung und implementierungsverfahren

Country Status (16)

Country Link
US (1) US10550587B2 (de)
EP (1) EP3215692B1 (de)
JP (1) JP2017534011A (de)
CN (1) CN107002421B (de)
AU (1) AU2015341618A1 (de)
CA (1) CA2966965A1 (de)
DK (1) DK3215692T3 (de)
ES (1) ES2776368T3 (de)
FR (1) FR3028280B1 (de)
IL (1) IL252082A0 (de)
MX (1) MX2017005766A (de)
PL (1) PL3215692T3 (de)
PT (1) PT3215692T (de)
RU (1) RU2702673C2 (de)
SG (1) SG11201703664XA (de)
WO (1) WO2016071591A1 (de)

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CN107956277A (zh) * 2017-12-28 2018-04-24 开封宜家建筑材料有限公司 一种装饰用板材安装装置
DE102019104928A1 (de) * 2019-02-27 2020-08-27 Gerd Schulz Montagevorrichtung
US11391037B2 (en) * 2020-05-28 2022-07-19 Rbd Holdings Llc Lifting an assembled wall module into position for attachment to a building structure
CN113738077B (zh) * 2021-09-01 2023-05-12 安徽省高迪循环经济产业园股份有限公司 一种半内嵌式墙板的辅助安装设备

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Publication number Publication date
FR3028280B1 (fr) 2020-06-12
SG11201703664XA (en) 2017-06-29
ES2776368T3 (es) 2020-07-30
RU2702673C2 (ru) 2019-10-09
CN107002421B (zh) 2020-11-03
RU2017117891A (ru) 2018-12-06
US20180274248A1 (en) 2018-09-27
AU2015341618A1 (en) 2017-05-25
IL252082A0 (en) 2017-07-31
CN107002421A (zh) 2017-08-01
US10550587B2 (en) 2020-02-04
FR3028280A1 (fr) 2016-05-13
RU2017117891A3 (de) 2019-04-29
JP2017534011A (ja) 2017-11-16
PL3215692T3 (pl) 2020-06-29
EP3215692A1 (de) 2017-09-13
WO2016071591A1 (fr) 2016-05-12
MX2017005766A (es) 2018-01-15
PT3215692T (pt) 2020-03-23
CA2966965A1 (fr) 2016-05-12
DK3215692T3 (da) 2020-03-16

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