EP3556942B1 - Cutter for making a diaphragma wall and method of making such wall - Google Patents
Cutter for making a diaphragma wall and method of making such wall Download PDFInfo
- Publication number
- EP3556942B1 EP3556942B1 EP18167973.9A EP18167973A EP3556942B1 EP 3556942 B1 EP3556942 B1 EP 3556942B1 EP 18167973 A EP18167973 A EP 18167973A EP 3556942 B1 EP3556942 B1 EP 3556942B1
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- EP
- European Patent Office
- Prior art keywords
- flushing
- cutting
- milling
- discharge
- trench
- 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.)
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Classifications
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02D—FOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
- E02D17/00—Excavations; Bordering of excavations; Making embankments
- E02D17/13—Foundation slots or slits; Implements for making these slots or slits
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/18—Dredgers; Soil-shifting machines mechanically-driven with digging wheels turning round an axis, e.g. bucket-type wheels
- E02F3/22—Component parts
- E02F3/24—Digging wheels; Digging elements of wheels; Drives for wheels
- E02F3/248—Cleaning the wheels or emptying the digging elements mounted on the wheels, e.g. in combination with spoil removing equipment
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/08—Dredgers; Soil-shifting machines mechanically-driven with digging elements on an endless chain
- E02F3/10—Dredgers; Soil-shifting machines mechanically-driven with digging elements on an endless chain with tools that only loosen the material, i.e. with cutter-type chains
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F3/00—Dredgers; Soil-shifting machines
- E02F3/04—Dredgers; Soil-shifting machines mechanically-driven
- E02F3/18—Dredgers; Soil-shifting machines mechanically-driven with digging wheels turning round an axis, e.g. bucket-type wheels
- E02F3/20—Dredgers; Soil-shifting machines mechanically-driven with digging wheels turning round an axis, e.g. bucket-type wheels with tools that only loosen the material, i.e. mill-type wheels
- E02F3/205—Dredgers; Soil-shifting machines mechanically-driven with digging wheels turning round an axis, e.g. bucket-type wheels with tools that only loosen the material, i.e. mill-type wheels with a pair of digging wheels, e.g. slotting machines
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- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02F—DREDGING; SOIL-SHIFTING
- E02F5/00—Dredgers or soil-shifting machines for special purposes
- E02F5/02—Dredgers or soil-shifting machines for special purposes for digging trenches or ditches
- E02F5/08—Dredgers or soil-shifting machines for special purposes for digging trenches or ditches with digging wheels turning round an axis
Definitions
- the invention relates to a trench wall cutter for creating a milling slot in the ground with a milling frame, at least one pair of milling wheels which are rotatably mounted and driven on the milling frame, each milling wheel having a plurality of milling teeth along its outer circumference, and a discharge device with at least one discharge pump for discharging a milling fluid from the milling slot in the area of the milling wheels, according to the preamble of claim 1.
- the invention relates to a method for creating a milling slot in the ground with such a trench cutter, the milling wheels being driven in rotation in a milling operation and the trench cutter being sunk into the ground and ground material being milled, the milling slot being created in the ground, in accordance with the preamble of Claim 11.
- trench wall cutters are used to create so-called trench walls or sealing walls, which are required for securing or sealing construction pits, for example.
- a first milling slot is created, which is filled with a hardenable mass. This mass cures to form a diaphragm wall segment.
- a diaphragm wall of the desired size can be created.
- From the EP 1 452 645 A1 shows a trench cutter to create a trench wall in the floor.
- a feed device opens between the two pairs of milling wheels, by means of which a settable liquid can be introduced into the milling slot in the area between the milling wheels.
- the supplied settable liquid is mixed by the rotary movement of the milling wheels with the milled soil material to form a hardenable mass, which then harden to form the diaphragm wall segment can.
- the milled soil material is mixed directly in situ in the milling slot to form the hardenable mass.
- FIG DE 41 41 629 A1 forth Another method for producing a diaphragm wall segment in the floor is shown in FIG DE 41 41 629 A1 forth.
- a discharge device is provided between the cutter wheels, by means of which the milled soil material is sucked off immediately afterwards with the supporting liquid in the cutter slot.
- the suctioned-off suspension can be stripped of soil material in a separating device and returned to an upper area of the milling slot.
- the suspension can be prepared in such a way that it constitutes a hardenable mass which hardens in the milling slot to form the slot wall segment.
- the invention has for its object to provide a trench wall cutter and a method for creating a milling slot in the ground, with which a milling slot can be produced particularly efficiently.
- the trench wall cutter according to the invention is characterized in that a switchover device is provided, which is designed to switch the discharge device into a rinsing mode, in which a liquid flow generated by at least one discharge pump of the discharge device is generated on at least one milling wheel for flushing the milling wheel.
- a basic idea of the invention is to use the discharge device for removing the milling fluid, i.e. the milled soil material with the surrounding supporting fluid, at least partially for generating a fluid flow which is directed towards one, preferably all milling wheels in order to rinse them free of adhering soil material .
- a switchover device is provided with which the discharge device can be switched over to a rinsing operation.
- a preferred embodiment of the invention consists in that at least one discharge pump is designed as an adjustable pump, which can be adjusted from a milling operation, in which the discharge pump sucks milling liquid from the cutting wheels, into the flushing operation, in which the discharge pump reverses liquid to the Promotes milling wheels.
- the adjustable pump is also referred to as a so-called swivel pump, which can reverse the direction of delivery.
- the switchover device is essentially an electrical or electronic control device for changing the pump setting. This embodiment is structurally particularly simple.
- the discharge device has a discharge line which extends from the at least one discharge pump extends above, and that the switching device comprises a control valve on the discharge line, with the control valve opening a suction opening on the discharge line.
- the control valve first ensures that the discharge line is blocked at the top and that material that has already been conveyed upwards is not conveyed back downwards from the discharge line.
- the discharge line is used primarily to pump up the milled soil material together with the supporting liquid as a suspension, in particular over days, whereby the milling liquid can be filtered and processed and then returned to the slot.
- an intake opening is formed above the discharge pump with the control valve.
- milling fluid in the slot which is not or only barely mixed with milled soil material, can be sucked in and conveyed to the milling wheels by the switched-over discharge pump. In this way, the pump is protected.
- a suction element of the discharge device is arranged in the middle between the two milling wheels, and that liquid flows out of the suction element in the direction of the milling wheels in the flushing mode.
- the milling wheels are preferably rotatably mounted about a common axis of rotation.
- the axis of rotation is in particular arranged horizontally in milling operation.
- the axes of rotation of the two pairs are arranged in parallel or in the same axis.
- the discharge device is arranged in the middle between the two milling wheels, so that the milling fluid can be removed in the middle and then fed in the middle in the rinsing mode.
- a further preferred embodiment variant of the invention consists in that a flush line arrangement with at least one flush outlet is provided for flushing the at least one milling wheel.
- a special flushing line arrangement with at least one flushing outlet is therefore provided in addition to or instead of the existing discharge line.
- At least one rinsing outlet preferably a plurality of rinsing outlets, are preferably provided on all milling wheels. In this way, there is no need or no central inflow when flushing via the switched-over suction element. Rather, a flush line arrangement with a specific number of flush outlets can be provided in a targeted manner.
- the switchover device comprises a switchover valve which connects a discharge line of the discharge device to the flushing line arrangement in the flushing operation.
- the discharge pump can maintain its normal conveying direction of the milling operation.
- the changeover valve Through the changeover valve, the upward flow in the discharge device can be deflected into the flushing line arrangement, which then directs the liquid flow downward.
- a particularly good rinsing performance is achieved according to a development of the invention in that at least one second pump is provided which in the rinsing mode conveys liquid via the rinsing line arrangement to the at least one milling wheel.
- the at least one second pump or a plurality of pumps can be used to generate a particularly intensive rinsing flow, with which particularly reliably adhering soil material is rinsed free of the milling wheels.
- a particularly advantageous embodiment variant is achieved in that the second pump is connected to the discharge line and in the milling operation conveys up milling fluid and that in the flushing operation the second pump is connected to the flushing line arrangement via an adjustment valve of the switching device.
- the second pump can support the removal of milled soil material upwards through the discharge line.
- the second pump can be used specifically for flushing, this being achieved by means of a corresponding adjustable or swiveling pump or solely by means of an adjustment valve.
- a particularly good flushing is also achieved according to a development of the invention in that a plurality of flushing outlets are provided, which are arranged in a fan shape in the region of the at least one milling wheel.
- milling wheels are used in which the milling teeth are arranged in axially offset annular rows of milling teeth on the outer circumference of a milling wheel. Annular spaces are formed between the annular rows of milling teeth, into which the nozzle-like rinsing outlets are directed.
- the rinsing outlets can have one or more nozzle openings, so that targeted nozzle jets on the milling teeth and in particular the gaps can be directed between the rows of milling teeth.
- a large number of flushing outlets can be provided in a fan-like manner in accordance with the number of annular spaces.
- the flushing outlets can be fixed.
- the at least one rinsing outlet is designed as an adjustable nozzle.
- a ball nozzle can be provided, which can be clamped in a set position by means of a corresponding union nut.
- the method according to the invention is characterized in that, in a flushing operation, the trench wall cutter is raised and the cutting wheels are spaced apart from a cutting base of the floor and that in the raised position of the cutting wheels a flow of liquid is generated in the direction of the cutting wheels for flushing.
- the method can in particular be carried out with the trench wall cutter according to the invention described above. The advantages described above can be achieved.
- the cutter is raised to interrupt the milling operation and thereby spaced from the milling base. This means that the milling operation is interrupted. Subsequently, in the rinsing mode, in particular in the case of milling wheels rotating further, the liquid flow in the direction of the milling wheels can be generated, as a result of which the milling wheels are rinsed free of adhering soil material.
- a rope or a rod is attached to an upper end of the trench cutter, with which the trench cutter is suspended on a carrier device and adjusted vertically. This enables an efficient lifting movement of the trench cutter.
- an injection pressure and / or an injection quantity of the liquid to be flushed out of the cutting wheels by means of a control device in the flushing operation.
- the flushing can be effected in particular with an increased pressure which is between 2 bar and 40 bar. In principle, higher pressures can also be set depending on the soil material to be milled. By adjusting the injection pressure and / or the injection quantity, the milling wheels can be cleaned in the most efficient manner.
- the result of the flushing can be determined and checked by means of the control device by determining the change in the drive power required for the milling wheels.
- the control device can also transmit free drive power of the cutting wheels to the at least one pump in the flushing mode.
- the Fig. 1 shows an overall view of a trench cutter 10 according to the invention with a box-like milling frame 12, at the lower end of which two pairs of milling wheels 14 are arranged.
- the milling wheels 14 are rotating via a not shown Drive motor can be driven to rotate around horizontal axes of rotation that are parallel to one another.
- detachable milling teeth 16 are arranged in a known manner via plate-shaped holders, with which soil material present in the slot base can be milled off during milling operation.
- the milling slot is filled with a support liquid, which in Fig. 1 is not shown.
- the milled soil material is sucked off together with the surrounding supporting liquid as milling liquid via a suction element 24 of a discharge device 20 arranged centrally between the milling wheels 14.
- the suction element 24 is connected via a lower discharge line 26a to a discharge pump 22 of the discharge device 20 arranged on the frame.
- the discharge pump 22 generates the suction pressure for sucking in the milling fluid.
- the sucked-in milling fluid is then removed further upward from the milling slot via the discharge pump 22 via an upper discharge line 26c.
- the milling fluid can be prepared for days in a corresponding system, in particular de-milled from soil material.
- the processed milling fluid can then be returned to the slot as a supporting fluid.
- a holding device 18 is arranged at the upper end of the milling frame 20.
- the trench wall cutter 10 can be attached to a rope or a guide rod of a carrier device (not shown in any more detail) and in particular can thereby be moved vertically.
- Diaphragm wall milling machine 10 shown has, for example, a box-shaped milling frame 12 which is provided with lateral guide elements. This allows the trench cutter 10 to guide itself in the slot. Alternatively, the milling frame 12 can also be compact and essentially without guide elements for contact guidance. The guide then takes place via a guide rod attached to the holding device 18 from outside the milling slot via the carrier device.
- the trench wall cutter 10 is a switching device 40 is provided, with which, in the exemplary embodiment shown, the trench wall cutter 10 can be switched from a milling operation to a flushing operation for flushing out the milling wheels 14.
- the switching device 40 has a control valve 42 between a central discharge line 26b and the upper discharge line 26c of the discharge device 20.
- the upper discharge line 26c located above the control valve 42 is shut off by the control valve 42 and at the same time a suction opening 44 on the control valve 42 is opened.
- the suction opening 44 is preferably located above the discharge pump 22 in an upper region of the milling frame 12 spaced apart from the milling wheels 14.
- the discharge pump 22 is designed as an adjustable pump, also called a swiveling pump. Simultaneously with the actuation of the control valve 42, the discharge pump 22 is changed in its delivery direction.
- the discharge pump 22 is switched from a milling operation, in which the discharge pump 22 conveys milling liquid from the cutting wheels 14, as shown in FIG Fig. 2 is shown with arrows in a flushing operation according to Fig. 3 switched.
- milling liquid is sucked in via the central suction element 24 with openings 25 and pumped upward via the discharge line 26.
- the suction opening 44 is closed by the control valve 42.
- the converted discharge pump 22 When switching to the rinsing mode according to Fig. 3 is removed by the converted discharge pump 22 through the opened suction opening 44 milling fluid from an upper region of the milling slot and conveyed via the middle discharge line 26b and the lower discharge line 26a to the cutting wheels 14.
- the liquid exits at an adjustable pressure and an adjustable delivery rate through the openings 25 of the suction element 24 in both directions to the cutting wheels 14.
- the setting can be made via a control device in the carrier device.
- the trench wall cutter 10 is raised, so that the cutting wheels 14 are spaced apart from the existing slot base. If the cutting wheels 14 continue to rotate, which in particular rotate in opposite directions, so that the cutting teeth 16 move towards the suction element 24 from below, the liquid flowing out becomes adherent Soil material loosened on the outside of the cutting wheels 14.
- the control device can be used to switch back to the milling operation, in which case the milling machine is then lowered again onto the slot base for milling off further soil material.
- FIG. 4 A second embodiment of a trench cutter 10 according to the invention is shown. It shows Fig. 4 the trench cutter 10 in milling operation, in which the trench cutter 10 functions according to the previously described first embodiment. Soil material removed by the milling wheels 14 is sucked off by the discharge device 20 with the discharge pump 22 via the suction element 24 and conveyed upwards.
- the delivery direction of the discharge pump 22 remains in the rinsing mode, which in FIG Fig. 5 is shown schematically, unchanged.
- the switching device 40 has a switching valve 48.
- the changeover valve 48 blocks the upper discharge line 26c of the discharge device 20 and connects the middle discharge line 26b to a flushing line arrangement 60.
- the flushing line arrangement 60 has one or more flushing lines 62, which lead downward from the changeover valve 48 to the cutting wheels 14.
- the rinsing lines 62 end in nozzle-like rinsing outlets 64, with which the milling fluid conveyed by the discharge pump 22 is directed back to the milling wheels 14 in the region of the milling teeth 16 for loosening adhering soil material.
- a simple drainage pump 22 can continue to be used.
- FIG Fig. 6 A third embodiment of a trench wall cutter 10 according to the invention is shown in FIG Fig. 6 shown in a flushing operation.
- the trench cutter 10 functions in accordance with Fig. 6 like the two variants described above. Soil material removed from the cutting wheels 14 is sucked in together with the surrounding liquid via the suction element 24 by a discharge pump 22 of a discharge device 20 and discharged upward via a lower discharge line 26a via an upper discharge line 26c.
- the discharge pump 22 In the flushing mode according to Fig. 6 the discharge pump 22 according to the first embodiment according to the Figures 1 to 3 changed in their direction of funding.
- the discharge pump 22 is thus also designed as an adjustable or swiveling pump.
- liquid is now flushed out of an upper region of the slot or out of the processing system itself via the discharge pump 22 and the suction element 24 in the direction of the cutting wheels 14 via the discharge line 26.
- a second pump 30 is provided on the milling frame 12 in the third embodiment of a trench cutter 10 according to the invention.
- this second pump 30 can additionally convey liquid in the direction of the cutting wheels 14 via a flushing line arrangement 60 with a plurality of flushing lines 62 and flushing outlets 64 and free-flowing soil material can flow out.
- a flushing line arrangement 60 with a plurality of flushing lines 62 and flushing outlets 64 and free-flowing soil material can flow out.
- FIGS Figures 7 and 8th A fourth embodiment of a trench cutter 10 according to the invention is shown in FIGS Figures 7 and 8th shown.
- the trench cutter 10 is located according to FIG Fig. 7 in the milling operation, in which, similarly to the previously described embodiments, ground material milled off by the cutting wheels 14 together with liquid is sucked in via the suction element 24 by a discharge pump 22 of a discharge device 20 and upwards via a lower, middle and upper discharge line 26a, b, c is promoted.
- a second pump 30 is connected between the middle discharge line 26b and the upper discharge line 26c via a lower additional line 28a and an adjustment valve 52 of a switching device 40 according to the invention.
- the sucked-in milling liquid can thus be discharged not only via the discharge pump 22, but also via the second pump 30, which pumps the sucked-in milling liquid upwards via the upper additional line 28b.
- the upper discharge line 26c is blocked by the adjusting valve 52 in the milling operation.
- the additional line 28 can be connected to a flushing line arrangement 60 with flushing lines 62. In milling operation according to Fig. 7 however, there is no line connection between the additional line 28 and the flush line arrangement 60.
- the adjusting valve 52 When switching to a flushing operation according to Fig. 8 the adjusting valve 52 connects the additional line 28 of the second pump 30 to the flushing line arrangement 60.
- the switching device 40 changes the second pump 30, which is designed as an adjustable pump, in its delivery direction.
- the second pump 30 can conduct liquid via the additional line 28 from top to bottom into the flush line arrangement 60, which leads to the cutting wheels 14.
- Appropriate flushing outlets 64 at the ends of the flushing lines 62 can be used to specifically flow onto an outside of the milling wheels 14 for flushing away adhering soil material.
- the adjustment of the adjustment valve 52 releases the line connection between the middle discharge line 26b from the discharge pump 22 to the additional line 28.
- the adjustment valve 52 connects in the position for the flushing operation according to FIG Fig. 8 the lower discharge line 26a and the middle discharge line 26b with the upper discharge line 26c, so that the discharge pump 22 continues to draw in milling fluid from the area of the preferably rotating milling wheels 14.
- the discharge pump 22 continues to draw in milling fluid from the area of the preferably rotating milling wheels 14.
- detached soil material can be sucked in by the cutting wheels 14 directly through the suction element 24 and conveyed upward via the discharge line 26.
- the milling wheels 14 can also be cleaned and rinsed free during the milling operation.
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Description
Die Erfindung betrifft eine Schlitzwandfräse zum Erstellen eines Frässchlitzes im Boden mit einem Fräsrahmen, mindestens einem Paar von Fräsrädern, welche drehbar an dem Fräsrahmen gelagert und angetrieben sind, wobei jedes Fräsrad entlang seines Außenumfangs eine Vielzahl von Fräszähnen aufweist, und einer Abführeinrichtung mit mindestens einer Abführpumpe zum Abführen einer Fräsflüssigkeit aus dem Frässchlitz im Bereich der Fräsräder, gemäß dem Oberbegriff des Anspruchs 1.The invention relates to a trench wall cutter for creating a milling slot in the ground with a milling frame, at least one pair of milling wheels which are rotatably mounted and driven on the milling frame, each milling wheel having a plurality of milling teeth along its outer circumference, and a discharge device with at least one discharge pump for discharging a milling fluid from the milling slot in the area of the milling wheels, according to the preamble of
Weiterhin betrifft die Erfindung ein Verfahren zum Erstellen eines Frässchlitzes im Boden mit einer solchen Schlitzwandfräse, wobei in einem Fräsbetrieb die Fräsräder drehend angetrieben werden und die Schlitzwandfräse in den Boden abgeteuft und Bodenmaterial abgefräst wird, wobei der Frässchlitz im Boden erstellt wird, gemäß dem Oberbegriff des Anspruchs 11.Furthermore, the invention relates to a method for creating a milling slot in the ground with such a trench cutter, the milling wheels being driven in rotation in a milling operation and the trench cutter being sunk into the ground and ground material being milled, the milling slot being created in the ground, in accordance with the preamble of Claim 11.
Solche Schlitzwandfräsen werden zur Erstellung von sogenannten Schlitzwänden oder Dichtwänden eingesetzt, welche etwa zur Sicherung oder Abdichtung von Baugruben benötigt werden. Mittels einer Schlitzwandfräse wird dabei ein erster Frässchlitz erstellt, welcher mit einer aushärtbaren Masse verfüllt wird. Diese Masse härtet zu einem Schlitzwandsegment aus. Durch eine Aneinanderreihung mehrerer Schlitzwandsegmente kann so eine Schlitzwand in einer gewünschten Größe erstellt werden.Such trench wall cutters are used to create so-called trench walls or sealing walls, which are required for securing or sealing construction pits, for example. Using a trench cutter, a first milling slot is created, which is filled with a hardenable mass. This mass cures to form a diaphragm wall segment. By lining up several diaphragm wall segments, a diaphragm wall of the desired size can be created.
Aus der
Ein anderes Verfahren zum Herstellen eines Schlitzwandsegmentes im Boden geht aus der
Weiter zeigt die
Beim Erstellen eines Frässchlitzes mittels einer Schlitzwandfräse besteht grundsätzlich das Problem, dass beim Fräsen in bindigen Böden, also beispielsweise in Ton, Schluff, Tonstein etc., der durch die Fräsräder abgetragene Boden an den Fräszähnen der Fräsräder anhaftet und die Fräsräder so verkleben kann. Dies kann dazu führen, dass das Verkleben so stark ist, dass die Schlitzwandfräse aus dem Frässchlitz herausgezogen werden muss, um die Fräsräder mechanisch zu reinigen. Da Frässchlitze eine Tiefe von 80 Metern und mehr erreichen können, stellt dies einen hohen zeitlichen Aufwand und damit einen ökonomischen Nachteil dar. Die Tagesfräsleistung einer Schlitzwandfräse kann dadurch merklich herabgesetzt werden.When creating a milling slot using a trench cutter, there is basically the problem that when milling in cohesive soils, e.g. in clay, silt, claystone etc., the soil removed by the milling wheels adheres to the milling teeth of the milling wheels and can thus stick the milling wheels. This can lead to the bond being so strong that the trench cutter must be pulled out of the trench slot to mechanically clean the trimming wheels. Since milling slots can reach a depth of 80 meters and more, this is very time-consuming and therefore an economic disadvantage. The daily milling performance of a diaphragm wall milling machine can be markedly reduced as a result.
Zum Lösen von anhaftendem Bodenmaterial zwischen ringförmigen Reihen von Fräszähnen an einem Fräsrad ist es etwa aus der
Aus der gattungsbildenden
Der Erfindung liegt die Aufgabe zugrunde, eine Schlitzwandfräse und ein Verfahren zum Erstellen eines Frässchlitzes im Boden anzugeben, mit welchen ein Frässchlitz besonders effizient hergestellt werden kann.The invention has for its object to provide a trench wall cutter and a method for creating a milling slot in the ground, with which a milling slot can be produced particularly efficiently.
Die Aufgabe wird nach der Erfindung durch eine Schlitzwandfräse mit den Merkmalen des Anspruchs 1 beziehungsweise durch ein Verfahren mit den Merkmalen des Anspruchs 11 gelöst. Bevorzugte Ausführungsformen der Erfindung sind in den jeweils abhängigen Ansprüchen angegeben.The object is achieved according to the invention by a trench cutter with the features of
Die erfindungsgemäße Schlitzwandfräse ist dadurch gekennzeichnet, dass eine Umschalteinrichtung vorgesehen ist, welche zum Umschalten der Abführeinrichtung in einen Spülbetrieb ausgebildet ist, in welchem ein von mindestens einer Abführpumpe der Abführeinrichtung erzeugter Flüssigkeitsstrom auf mindestens ein Fräsrad zum Freispülen des Fräsrades erzeugt ist.The trench wall cutter according to the invention is characterized in that a switchover device is provided, which is designed to switch the discharge device into a rinsing mode, in which a liquid flow generated by at least one discharge pump of the discharge device is generated on at least one milling wheel for flushing the milling wheel.
Eine Grundidee der Erfindung besteht darin, die Abführeinrichtung zum Abführen der Fräsflüssigkeit, also des abgefrästen Bodenmaterials mit der umgebenden Stützflüssigkeit, zumindest teilweise zum Erzeugen eines Flüssigkeitsstromes zu nutzen, welcher auf ein, vorzugsweise alle Fräsräder gerichtet ist, um diese von anhaftendem Bodenmaterial frei zu spülen. Dabei ist eine Umschalteinrichtung vorgesehen, mit welcher die Abführeinrichtung in einen Spülbetrieb umschaltbar ist. Hierdurch kann der konstruktive und maschinelle Aufwand an einer Schlitzwandfräse geringgehalten werden, obwohl gleichzeitig ein gutes und zuverlässiges Freispülen der Fräsräder erreicht wird.A basic idea of the invention is to use the discharge device for removing the milling fluid, i.e. the milled soil material with the surrounding supporting fluid, at least partially for generating a fluid flow which is directed towards one, preferably all milling wheels in order to rinse them free of adhering soil material . A switchover device is provided with which the discharge device can be switched over to a rinsing operation. As a result, the constructional and mechanical outlay on a trench wall cutter can be kept low, although at the same time good and reliable flushing of the cutting wheels is achieved.
Eine bevorzugte Ausführungsform der Erfindung besteht darin, dass mindestens eine Abführpumpe als eine verstellbare Pumpe ausgebildet ist, die von einem Fräsbetrieb, bei dem die Abführpumpe Fräsflüssigkeit von den Fräsrädern absaugt, in den Spülbetrieb verstellbar ist, in dem die Abführpumpe in umgekehrter Richtung Flüssigkeit zu den Fräsrädern fördert. Die verstellbare Pumpe wird auch als eine sogenannte durchschwenkbare Pumpe bezeichnet, die die Förderrichtung umkehren kann. Die Umschalteinrichtung ist dabei im Wesentlichen eine elektrische oder elektronische Steuereinrichtung zum Wechseln der Pumpeneinstellung. Diese Ausführungsform ist konstruktiv besonders einfach.A preferred embodiment of the invention consists in that at least one discharge pump is designed as an adjustable pump, which can be adjusted from a milling operation, in which the discharge pump sucks milling liquid from the cutting wheels, into the flushing operation, in which the discharge pump reverses liquid to the Promotes milling wheels. The adjustable pump is also referred to as a so-called swivel pump, which can reverse the direction of delivery. The switchover device is essentially an electrical or electronic control device for changing the pump setting. This embodiment is structurally particularly simple.
Eine vorteilhafte Weiterbildung besteht dabei darin, dass die Abführeinrichtung eine Abführleitung aufweist, welche sich von der mindestens einen Abführpumpe nach oben erstreckt, und dass die Umschalteinrichtung ein Stellventil an der Abführeinleitung umfasst, wobei mit dem Stellventil eine Ansaugöffnung an der Abführleitung geöffnet wird. Mit dem Stellventil wird zunächst sichergestellt, dass die Abführleitung nach oben gesperrt wird und bereits nach oben gefördertes Material nicht wieder zurück aus der Abführleitung nach unten gefördert wird. Die Abführleitung dient im normalen Fräsbetrieb maßgeblich dazu, das abgefräste Bodenmaterial zusammen mit Stützflüssigkeit als Suspension nach oben, insbesondere über Tage abzupumpen, wobei die Fräsflüssigkeit gefiltert und aufbereitet werden kann, um dann wieder in den Schlitz zurückgeleitet zu werden.An advantageous further development consists in the fact that the discharge device has a discharge line which extends from the at least one discharge pump extends above, and that the switching device comprises a control valve on the discharge line, with the control valve opening a suction opening on the discharge line. The control valve first ensures that the discharge line is blocked at the top and that material that has already been conveyed upwards is not conveyed back downwards from the discharge line. In normal milling operation, the discharge line is used primarily to pump up the milled soil material together with the supporting liquid as a suspension, in particular over days, whereby the milling liquid can be filtered and processed and then returned to the slot.
In einer zweiten Funktion wird mit dem Stellventil eine Ansaugöffnung oberhalb der Abführpumpe gebildet. Auf diese Weise kann Fräsflüssigkeit im Schlitz, welche nicht oder nur kaum mit abgefrästem Bodenmaterial durchmischt ist, angesaugt und durch die umgeschaltete Abführpumpe zu den Fräsrädern gefördert werden. So wird eine Schonung der Pumpe erreicht.In a second function, an intake opening is formed above the discharge pump with the control valve. In this way, milling fluid in the slot, which is not or only barely mixed with milled soil material, can be sucked in and conveyed to the milling wheels by the switched-over discharge pump. In this way, the pump is protected.
Nach einer Weiterbildung der Erfindung ist es vorteilhaft, dass zwei Paare von Fräsrädern vorgesehen sind, dass ein Ansaugelement der Abführeinrichtung in einer Mitte zwischen den beiden Fräsrädern angeordnet ist und dass im Spülbetrieb aus dem Ansaugelement Flüssigkeit in Richtung der Fräsräder strömt. Die Fräsräder sind dabei vorzugsweise um eine gemeinsame Drehachse drehbar gelagert. Die Drehachse ist im Fräsbetrieb insbesondere horizontal angeordnet. Die Drehachsen der beiden Paare sind parallel beziehungsweise achsgleich angeordnet. Die Abführeinrichtung ist in der Mitte zwischen den beiden Fräsrädern angeordnet, so dass die Fräsflüssigkeit mittig abgeführt und im Spülbetrieb dann mittig zugeführt werden kann.According to a development of the invention, it is advantageous that two pairs of milling wheels are provided, that a suction element of the discharge device is arranged in the middle between the two milling wheels, and that liquid flows out of the suction element in the direction of the milling wheels in the flushing mode. The milling wheels are preferably rotatably mounted about a common axis of rotation. The axis of rotation is in particular arranged horizontally in milling operation. The axes of rotation of the two pairs are arranged in parallel or in the same axis. The discharge device is arranged in the middle between the two milling wheels, so that the milling fluid can be removed in the middle and then fed in the middle in the rinsing mode.
Eine weitere bevorzugte Ausführungsvariante der Erfindung besteht darin, dass eine Spülleitungsanordnung mit mindestens einen Spülauslass zum Freispülen des mindestens einen Fräsrades vorgesehen ist. Bei dieser Ausführungsform wird also zusätzlich oder anstelle der bestehenden Abführleitung eine spezielle Spülleitungsanordnung mit mindestens einem Spülauslass vorgesehen. Bevorzugterweise sind an allen Fräsrädern mindestens ein Spülauslass, vorzugsweise mehrere Spülauslässe, vorgesehen. Es muss so keine oder nicht allein eine mittige Anströmung beim Spülen über das umgeschaltete Ansaugelement erfolgen. Vielmehr kann gezielt eine Spülleitungsanordnung mit einer bestimmten Anzahl von Spülauslässen vorgesehen werden.A further preferred embodiment variant of the invention consists in that a flush line arrangement with at least one flush outlet is provided for flushing the at least one milling wheel. In this embodiment, a special flushing line arrangement with at least one flushing outlet is therefore provided in addition to or instead of the existing discharge line. At least one rinsing outlet, preferably a plurality of rinsing outlets, are preferably provided on all milling wheels. In this way, there is no need or no central inflow when flushing via the switched-over suction element. Rather, a flush line arrangement with a specific number of flush outlets can be provided in a targeted manner.
Besonders bevorzugt ist es dabei, dass die Umschalteinrichtung ein Umschaltventil umfasst, welches im Spülbetrieb eine Abführleitung der Abführeinrichtung mit der Spülleitungsanordnung verbindet. Bei einer solchen Anordnung kann die Abführpumpe ihre normale Förderrichtung des Fräsbetriebes beibehalten. Durch das Umschaltventil kann der nach oben gerichtete Förderstrom in der Abführeinrichtung in die Spülleitungsanordnung umgelenkt werden, welche dann den Flüssigkeitsstrom nach unten leitet. Diese Ausbildungsvariante ist besonders einfach und robust.It is particularly preferred that the switchover device comprises a switchover valve which connects a discharge line of the discharge device to the flushing line arrangement in the flushing operation. With such an arrangement, the discharge pump can maintain its normal conveying direction of the milling operation. Through the changeover valve, the upward flow in the discharge device can be deflected into the flushing line arrangement, which then directs the liquid flow downward. This training variant is particularly simple and robust.
Eine besonders gute Spülleistung wird nach einer Weiterbildung der Erfindung dadurch erzielt, dass mindestens eine zweite Pumpe vorgesehen ist, die im Spülbetrieb Flüssigkeit über die Spülleitungsanordnung zu dem mindestens einen Fräsrad fördert. Durch die mindestens eine zweite Pumpe oder durch mehrere Pumpen kann ein besonders intensiver Spülstrom erzeugt werden, mit dem besonders zuverlässig anhaftendes Bodenmaterial von den Fräsrädern freigespült wird.A particularly good rinsing performance is achieved according to a development of the invention in that at least one second pump is provided which in the rinsing mode conveys liquid via the rinsing line arrangement to the at least one milling wheel. The at least one second pump or a plurality of pumps can be used to generate a particularly intensive rinsing flow, with which particularly reliably adhering soil material is rinsed free of the milling wheels.
Dabei wird eine besonders vorteilhafte Ausführungsvariante dadurch erreicht, dass die zweite Pumpe an der Abführleitung angeschlossen ist und im Fräsbetrieb Fräsflüssigkeit nach oben abfördert und dass im Spülbetrieb die zweite Pumpe über ein Verstellventil der Umschalteinrichtung mit der Spülleitungsanordnung verbunden wird.In this case, a particularly advantageous embodiment variant is achieved in that the second pump is connected to the discharge line and in the milling operation conveys up milling fluid and that in the flushing operation the second pump is connected to the flushing line arrangement via an adjustment valve of the switching device.
Im Fräsbetrieb kann so die zweite Pumpe das Abfördern von abgefrästem Bodenmaterial nach oben durch die Abführleitung unterstützen. Im Spülbetrieb kann die zweite Pumpe gezielt zum Freispülen eingesetzt werden, wobei dies über eine entsprechende verstellbare oder durchschwenkbare Pumpe oder allein durch ein Verstellventil erzielt wird.In milling operation, the second pump can support the removal of milled soil material upwards through the discharge line. In the flushing mode, the second pump can be used specifically for flushing, this being achieved by means of a corresponding adjustable or swiveling pump or solely by means of an adjustment valve.
Ein besonders gutes Freispülen wird zudem nach einer Weiterbildung der Erfindung dadurch erzielt, dass mehrere Spülauslässe vorgesehen sind, welche fächerförmig im Bereich des mindestens einen Fräsrades angeordnet sind. Insbesondere beim Abfräsen von bindigen Böden werden Fräsräder eingesetzt, bei denen die Fräszähne in axial zueinander versetzten ringförmigen Fräszahnreihen am Außenumfang eines Fräsrades angeordnet sind. Zwischen den ringförmigen Fräszahnreihen werden ringförmige Zwischenräume gebildet, in welche die düsenartigen Spülauslässe gerichtet sind. Die Spülauslässe können eine oder mehrere Düsenöffnungen aufweisen, so dass gezielte Düsenstrahlen auf die Fräszähne und insbesondere die Zwischenräume zwischen den Fräszahnreihen gerichtet werden können. Es können dabei eine Vielzahl von Spülauslässen fächerartig entsprechend den Anzahlen der ringförmigen Zwischenräume vorgesehen sein.A particularly good flushing is also achieved according to a development of the invention in that a plurality of flushing outlets are provided, which are arranged in a fan shape in the region of the at least one milling wheel. In particular when milling cohesive soils, milling wheels are used in which the milling teeth are arranged in axially offset annular rows of milling teeth on the outer circumference of a milling wheel. Annular spaces are formed between the annular rows of milling teeth, into which the nozzle-like rinsing outlets are directed. The rinsing outlets can have one or more nozzle openings, so that targeted nozzle jets on the milling teeth and in particular the gaps can be directed between the rows of milling teeth. A large number of flushing outlets can be provided in a fan-like manner in accordance with the number of annular spaces.
In einer einfachen Ausgestaltung können die Spülauslässe fest sein. Insbesondere zur Einstellung an veränderte Böden und Zahnanordnungen ist es nach einer Weiterbildung der Erfindung bevorzugt, dass der mindestens eine Spülauslass als eine verstellbare Düse ausgebildet ist. Es kann dabei beispielsweise eine Kugeldüse vorgesehen sein, die mittels einer entsprechenden Überwurfmutter in einer eingestellten Position festgespannt werden kann.In a simple embodiment, the flushing outlets can be fixed. In particular for adjustment to modified floors and tooth arrangements, it is preferred according to a development of the invention that the at least one rinsing outlet is designed as an adjustable nozzle. For example, a ball nozzle can be provided, which can be clamped in a set position by means of a corresponding union nut.
Das erfindungsgemäße Verfahren ist dadurch gekennzeichnet, dass in einem Spülbetrieb die Schlitzwandfräse angehoben wird und die Fräsräder von einem Fräsgrund des Bodens beabstandet werden und dass in der angehobenen Position der Fräsräder ein Flüssigkeitsstrom in Richtung der Fräsräder zum Freispülen erzeugt wird. Das Verfahren kann dabei insbesondere mit der zuvor beschriebenen Schlitzwandfräse nach der Erfindung ausgeführt werden. Es können die zuvor beschriebenen Vorteile erzielt werden.The method according to the invention is characterized in that, in a flushing operation, the trench wall cutter is raised and the cutting wheels are spaced apart from a cutting base of the floor and that in the raised position of the cutting wheels a flow of liquid is generated in the direction of the cutting wheels for flushing. The method can in particular be carried out with the trench wall cutter according to the invention described above. The advantages described above can be achieved.
Die Fräse wird zum Unterbrechen des Fräsbetriebes angehoben und dadurch vom anstehenden Fräsgrund beabstandet. Schon hierdurch ist der Fräsbetrieb unterbrochen. Anschließend kann in dem Spülbetrieb, insbesondere bei weiterdrehenden Fräsrädern, der Flüssigkeitsstrom in Richtung auf die Fräsräder erzeugt werden, wodurch die Fräsräder von anhaftendem Bodenmaterial freigespült werden.The cutter is raised to interrupt the milling operation and thereby spaced from the milling base. This means that the milling operation is interrupted. Subsequently, in the rinsing mode, in particular in the case of milling wheels rotating further, the liquid flow in the direction of the milling wheels can be generated, as a result of which the milling wheels are rinsed free of adhering soil material.
Zum Rückziehen der Schlitzwandfräse ist es besonders bevorzugt, dass an einem oberen Ende der Schlitzwandfräse ein Seil oder eine Stange angebracht ist, mit der die Schlitzwandfräse an einem Trägergerät aufgehängt und vertikal verstellt wird. Hierdurch lässt sich eine effiziente Hubbewegung der Schlitzwandfräse bewirken.To retract the trench cutter, it is particularly preferred that a rope or a rod is attached to an upper end of the trench cutter, with which the trench cutter is suspended on a carrier device and adjusted vertically. This enables an efficient lifting movement of the trench cutter.
Weiterhin ist es nach einer Ausführungsvariante des erfindungsgemäßen Verfahrens vorteilhaft, dass mittels einer Steuereinrichtung im Spülbetrieb ein Einspritzdruck und/oder eine Einspritzmenge der Flüssigkeit zum Freispülen der Fräsräder eingestellt werden. Das Freispülen kann insbesondere mit einem erhöhten Druck, der zwischen 2 bar bis 40 bar liegt, bewirkt werden. Grundsätzlich können auch höhere Drücke eingestellt werden, abhängig von dem zu fräsenden Bodenmaterial. Durch eine Einstellung von Einspritzdruck und/oder Einspritzmenge kann in möglichst effizienter Weise eine Reinigung der Fräsräder erzielt.Furthermore, according to an embodiment variant of the method according to the invention, it is advantageous for an injection pressure and / or an injection quantity of the liquid to be flushed out of the cutting wheels by means of a control device in the flushing operation. The flushing can be effected in particular with an increased pressure which is between 2 bar and 40 bar. In principle, higher pressures can also be set depending on the soil material to be milled. By adjusting the injection pressure and / or the injection quantity, the milling wheels can be cleaned in the most efficient manner.
Das Ergebnis des Freispülens kann mittels der Steuereinrichtung durch eine Feststellung der Änderung der benötigten Antriebsleistung der Fräsräder ermittelt und überprüft werden.The result of the flushing can be determined and checked by means of the control device by determining the change in the drive power required for the milling wheels.
Durch die Steuereinrichtung kann auch im Spülbetrieb freie Antriebsleistung der Fräsräder auf die mindestens eine Pumpe übertragen werden.The control device can also transmit free drive power of the cutting wheels to the at least one pump in the flushing mode.
Die Erfindung wird nachfolgend anhand von bevorzugten Ausführungsbeispielen näher erläutert, welche schematisch in den Zeichnungen dargestellt sind. In den Zeichnungen zeigen:
- Fig. 1
- eine schematische Vorderansicht einer ersten erfindungsgemäßen Schlitzwandfräse;
- Fig. 2
- eine vergrößerte Detailansicht der Schlitzwandfräse von
Fig. 1 in einem Fräsbetrieb; - Fig. 3
- eine Ansicht der Schlitzwandfräse von
Fig. 2 in einem Spülbetrieb; - Fig. 4
- eine schematische Ansicht einer weiteren erfindungsgemäßen Schlitzwandfräse im Fräsbetrieb;
- Fig. 5
- eine Ansicht der Schlitzwandfräse von
Fig. 4 in einem Spülbetrieb; - Fig. 6
- eine schematische Ansicht einer dritten erfindungsgemäßen Schlitzwandfräse in einem Spülbetrieb;
- Fig. 7
- eine schematische Ansicht einer vierten erfindungsgemäßen Schlitzwandfräse im Fräsbetrieb und
- Fig. 8
- eine Ansicht der Schlitzwandfräse von
Fig. 7 im Spülbetrieb.
- Fig. 1
- is a schematic front view of a first trench cutter according to the invention;
- Fig. 2
- an enlarged detail view of the trench cutter from
Fig. 1 in a milling shop; - Fig. 3
- a view of the trench cutter from
Fig. 2 in a flushing facility; - Fig. 4
- a schematic view of a further trench cutter according to the invention in milling operation;
- Fig. 5
- a view of the trench cutter from
Fig. 4 in a flushing facility; - Fig. 6
- a schematic view of a third trench cutter according to the invention in a flushing operation;
- Fig. 7
- a schematic view of a fourth trench cutter according to the invention in milling operation and
- Fig. 8
- a view of the trench cutter from
Fig. 7 in the rinsing mode.
Die
Das Ansaugelement 24 ist über eine untere Abführleitung 26a mit einer am Rahmen angeordneten Abführpumpe 22 der Abführeinrichtung 20 verbunden. Die Abführpumpe 22 erzeugt den Ansaugdruck zum Ansaugen der Fräsflüssigkeit. Die angesaugte Fräsflüssigkeit wird über die Abführpumpe 22 dann weiter nach oben über eine obere Abführleitung 26c aus dem Frässchlitz entfernt. Die Fräsflüssigkeit kann über Tage in einer entsprechenden Anlage aufbereitet werden, insbesondere von abgefrästem Bodenmaterial entreichert werden. Die aufbereitete Fräsflüssigkeit kann dann wieder als Stützflüssigkeit in den Schlitz rückgeführt werden.The
Am oberen Ende des Fräsrahmens 20 ist eine Halteeinrichtung 18 angeordnet. Mit der Halteeinrichtung 18 kann die Schlitzwandfräse 10 an einem Seil oder einer Führungsstange eines nicht näher dargestellten Trägergerätes angebracht und insbesondere hierdurch vertikal verfahren werden. Die in
Im Fräsbetrieb kann insbesondere beim Abfräsen von bindigem Bodenmaterial dieses an den Fräszähnen 16 mit den plattenförmigen Halterungen an den Fräsrädern 10 anhaften. Hierdurch kann die Fräsleistung der Schlitzwandfräse 10 merklich herabgesetzt werden. Um einem Zusetzen der Fräsräder 14 durch anhaftendes Bodenmaterial entgegenzuwirken, ist gemäß der Erfindung bei der Schlitzwandfräse 10 eine Umschalteinrichtung 40 vorgesehen, mit welcher in dem dargestellten Ausführungsbeispiel die Schlitzwandfräse 10 von einem Fräsbetrieb in einen Spülbetrieb zum Freispülen der Fräsräder 14 umschaltbar ist.In milling operation, in particular when milling off cohesive soil material, it can adhere to the milling
Bei der in den
Weiterhin ist bei der Ausführungsform gemäß den
Im Fräsbetrieb gemäß
In den
Bei diesem zweiten Ausführungsbeispiel einer erfindungsgemäßen Schlitzwandfräse 10 bleibt die Förderrichtung der Abführpumpe 22 im Spülbetrieb, welcher in
Eine dritte Ausführungsform einer erfindungsgemäßen Schlitzwandfräse 10 ist in
Im Spülbetrieb gemäß
Eine vierte Ausführungsform einer erfindungsgemäßen Schlitzwandfräse 10 ist in den
Über das Verstellventil 52 der Umschalteinrichtung 40 ist die Zusatzleitung 28 mit einer Spülleitungsanordnung 60 mit Spülleitungen 62 verbindbar. Im Fräsbetrieb gemäß
Beim Umschalten auf einen Spülbetrieb gemäß
Gleichzeitig löst das Verstellen des Verstellventils 52 die Leitungsverbindung zwischen der mittleren Abführleitung 26b von der Abführpumpe 22 zu der Zusatzleitung 28. Zudem verbindet das Verstellventil 52 in der Stellung für den Spülbetrieb gemäß
Insbesondere mit der Schlitzwandfräse 10 nach der vierten Ausführungsform gemäß den
Claims (13)
- Trench cutter for producing a cut trench in the soil with- a cutter frame (12),- at least one pair of cutting wheels (14) which are supported and driven in a rotatable manner on a lower end of the cutter frame (12), wherein each cutting wheel (14) has a plurality of cutting teeth (16) along its external circumference, and- a discharge means (20) with at least one discharge pump (22) for discharging a cutting fluid from the cut trench in the region of the cutting wheels (14),characterized in that
a switchover means (40) is provided which is designed for switching the discharge means (20) over to a flushing operation, in which a fluid flow generated by at least one discharge pump (22) of the discharge means (20) is generated onto at least one cutting wheel (14) for flushing out the cutting wheel (14). - Trench cutter according to claim 1,
characterized in that
at least one discharge pump (22) is designed as an adjustable pump which can be adjusted from a cutting operation, in which the discharge pump (22) sucks off cutting fluid from the cutting wheels (14), to the flushing operation, in which the discharge pump (22) conveys fluid in the reverse direction to the cutting wheels (14). - Trench cutter according to claim 2,
characterized in that
the discharge means (20) has a discharge line (26) which extends upwards from the at least one discharge pump (22), and
in that the switchover means (40) comprises a positioning valve (42) on the discharge line (26), wherein a suction opening (44) on the discharge line (26) is opened with the positioning valve (42). - Trench cutter according to any one of claims 1 to 3,
characterized in that
two pairs of cutting wheels (14) are provided,
in that a suction element (24) of the discharge means (20) is arranged in a center between the two cutting wheels (14) and
in that in the flushing operation fluid flows from the suction element (24) in the direction of the cutting wheels. - Trench cutter according to any one of claims 1 to 4,
characterized in that
a flushing line arrangement (60) with at least one flushing outlet (64) for flushing out the at least one cutting wheel (14) is provided. - Trench cutter according to claim 5,
characterized in that
the switchover means (40) comprises a switchover valve (48) which connects a discharge line (26) of the discharge means (20) to the flushing line arrangement (60) in the flushing operation. - Trench cutter according to claim 5 or 6,
characterized in that
at least one second pump (30) is provided which conveys fluid via the flushing line arrangement (60) to the at least one cutting wheel (14) in a flushing operation. - Trench cutter according to claim 7,
characterized in that
the second pump (30) is attached to the discharge line (26) and in the cutting operation conveys cutting fluid away in the upward direction and
in that in the flushing operation the second pump (30) is connected via an adjustment valve (52) of the switchover means (40) to the flushing line arrangement (60). - Trench cutter according to any one of claims 5 to 8,
characterized in that
several flushing outlets (64) are provided which are arranged in a fan-shaped manner in the region of the at least one cutting wheel (14). - Trench cutter according to claim 5 or 9,
characterized in that
the at least one flushing outlet (64) is designed as an adjustable nozzle. - Method for cutting a cut trench in the soil, in particular with a trench cutter (10) according to any one of claims 1 to 10,
wherein in a cutting operation the cutting wheels (14) are driven in a rotating manner and the trench cutter (10) is sunk into the soil and soil material is cut off,
wherein the cut trench is produced in the soil,
characterized in that
in a flushing operation the trench cutter (10) is raised and the cutting wheels (14) are spaced from a cutting base of the soil and
in that in the raised position of the cutting wheels (14) a fluid flow is generated in the direction of the cutting wheels (14) for flushing-out. - Method according to claim 11,
characterized in that
on an upper end of the trench cutter (10) a rope or a bar is fixed, with which the trench cutter (10) is suspended and adjusted vertically on a carrier implement. - Method according to claim 11 or 12,
characterized in that
by means of a control means an injection pressure and/or an injection quantity of the fluid for flushing out the cutting wheels (14) are set in the flushing operation.
Priority Applications (5)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
EP18167973.9A EP3556942B1 (en) | 2018-04-18 | 2018-04-18 | Cutter for making a diaphragma wall and method of making such wall |
US16/383,708 US11286637B2 (en) | 2018-04-18 | 2019-04-15 | Trench cutter and method for producing a cut trench in the soil |
JP2019078628A JP6725722B2 (en) | 2018-04-18 | 2019-04-17 | Trench cutter and method for forming a drilling trench in soil |
CN201910312717.2A CN110387918B (en) | 2018-04-18 | 2019-04-18 | Trench cutter and method for producing a cut trench in soil |
KR1020190045178A KR102311859B1 (en) | 2018-04-18 | 2019-04-18 | Trench cutter and method for producing a cut trench in the soil |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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EP18167973.9A EP3556942B1 (en) | 2018-04-18 | 2018-04-18 | Cutter for making a diaphragma wall and method of making such wall |
Publications (2)
Publication Number | Publication Date |
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EP3556942A1 EP3556942A1 (en) | 2019-10-23 |
EP3556942B1 true EP3556942B1 (en) | 2020-04-29 |
Family
ID=62025702
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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EP18167973.9A Active EP3556942B1 (en) | 2018-04-18 | 2018-04-18 | Cutter for making a diaphragma wall and method of making such wall |
Country Status (5)
Country | Link |
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US (1) | US11286637B2 (en) |
EP (1) | EP3556942B1 (en) |
JP (1) | JP6725722B2 (en) |
KR (1) | KR102311859B1 (en) |
CN (1) | CN110387918B (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP4086390A1 (en) | 2021-05-06 | 2022-11-09 | BAUER Maschinen GmbH | Trench wall cutter and method for creating a milled slit in the ground |
EP4286593A1 (en) | 2022-05-30 | 2023-12-06 | BAUER Spezialtiefbau GmbH | Excavation device and method for creating a hole |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN111441410A (en) * | 2020-04-17 | 2020-07-24 | 徐州徐工基础工程机械有限公司 | Auxiliary flushing device of double-wheel milling and stirring machine |
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EP4086390A1 (en) | 2021-05-06 | 2022-11-09 | BAUER Maschinen GmbH | Trench wall cutter and method for creating a milled slit in the ground |
WO2022233672A1 (en) | 2021-05-06 | 2022-11-10 | Bauer Maschinen Gmbh | Diaphragm wall cutter and method for cutting a slot in the ground |
EP4286593A1 (en) | 2022-05-30 | 2023-12-06 | BAUER Spezialtiefbau GmbH | Excavation device and method for creating a hole |
WO2023232393A1 (en) | 2022-05-30 | 2023-12-07 | Bauer Spezialtiefbau Gmbh | Civil engineering machine and method for forming a hole |
Also Published As
Publication number | Publication date |
---|---|
EP3556942A1 (en) | 2019-10-23 |
KR20190121706A (en) | 2019-10-28 |
US20190323200A1 (en) | 2019-10-24 |
JP2019190268A (en) | 2019-10-31 |
CN110387918A (en) | 2019-10-29 |
KR102311859B1 (en) | 2021-10-12 |
CN110387918B (en) | 2022-03-11 |
US11286637B2 (en) | 2022-03-29 |
JP6725722B2 (en) | 2020-07-22 |
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