WO2014095025A2 - Dispositif pour produire un élément de paroi préfabriquée de grande taille, en particulier comprenant au moins une couche de béton - Google Patents

Dispositif pour produire un élément de paroi préfabriquée de grande taille, en particulier comprenant au moins une couche de béton Download PDF

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Publication number
WO2014095025A2
WO2014095025A2 PCT/EP2013/003791 EP2013003791W WO2014095025A2 WO 2014095025 A2 WO2014095025 A2 WO 2014095025A2 EP 2013003791 W EP2013003791 W EP 2013003791W WO 2014095025 A2 WO2014095025 A2 WO 2014095025A2
Authority
WO
WIPO (PCT)
Prior art keywords
holding element
mold pallet
holding
turning device
movable
Prior art date
Application number
PCT/EP2013/003791
Other languages
German (de)
English (en)
Other versions
WO2014095025A3 (fr
Inventor
Erich Nussbaumer
Karl Friedrich Enderes
Original Assignee
Progress Holding A.G.
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Progress Holding A.G. filed Critical Progress Holding A.G.
Priority to EP13818662.2A priority Critical patent/EP2934837B1/fr
Priority to CN201380072971.0A priority patent/CN105073360B/zh
Priority to DK13818662.2T priority patent/DK2934837T3/en
Priority to PL13818662T priority patent/PL2934837T3/pl
Publication of WO2014095025A2 publication Critical patent/WO2014095025A2/fr
Publication of WO2014095025A3 publication Critical patent/WO2014095025A3/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B7/00Moulds; Cores; Mandrels
    • B28B7/08Moulds provided with means for tilting or inverting
    • B28B7/085Moulds provided with means for tilting or inverting for making double wall panels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B23/00Arrangements specially adapted for the production of shaped articles with elements wholly or partly embedded in the moulding material; Production of reinforced objects
    • B28B23/02Arrangements specially adapted for the production of shaped articles with elements wholly or partly embedded in the moulding material; Production of reinforced objects wherein the elements are reinforcing members
    • B28B23/028Arrangements specially adapted for the production of shaped articles with elements wholly or partly embedded in the moulding material; Production of reinforced objects wherein the elements are reinforcing members for double - wall articles

Definitions

  • the invention relates to a device for producing a large-area, in particular at least one concrete layer comprehensive, finished wall part on a movable mold pallet with a connectable to the mold pallet turning device for turning the mold pallet, wherein the turning device is equipped with a clamping device comprising at least one holding element, wherein the holding element is arranged pivotably on the clamping device about a pivot axis extending substantially parallel to a surface of the mold pallet, wherein one end of the holding element on the finished wall part can be pressed by pivoting the holding element about its pivot axis, wherein the finished wall part can be fixed in a positionally stable manner on the mold pallet.
  • a finished wall part for a prefabricated wall element comprising a multi-layered concrete element which has two concrete parts at a distance parallel to each other, which are connected to each other via metallic reinforcements
  • This turning device is capable of turning a mold pallet for a first finished wall part, on which a first concrete layer with protruding verifications is poured in and then cures, after curing by 180 °.
  • the turning device with the mold pallet is connectable and can be lowered, raised and rotated by 180 °.
  • pins are provided which are able to take the mold pallet.
  • such a turning device is equipped with a clamping device which typically has a plurality of just above the surface of the cured first concrete layer insertable from the side holding elements to fix the cured concrete element or finished wall part to the mold pallet stable, for example by pressing, so that the finished wall part after turning 180 ° does not fall off the mold pallet.
  • the bracing of the finished wall part of the mold pallet by means of the holding elements for example, hydraulically or pneumatically.
  • the turning device can open a roadway with rails to be moved and can be moved to a point at which rests on a further mold pallet for a second finished wall part, a second concrete layer with not yet hardened concrete.
  • the downwardly pointing, above probation elements of the already cured first concrete layer of the first finished wall part can now partially penetrate the not yet hardened concrete second concrete layer of the second finished wall part and thus establish the connection with the same after curing of the concrete.
  • the result is a finished wall element comprising the two connected prefabricated wall parts, which can be poured out after this prefabrication on a construction site and thus finished as a finished wall.
  • a disadvantage of the known devices is the time-consuming manipulation of the holding elements, since the often manual threading and aligning and the removal of the holding elements takes relatively long time, whereby the production process slows down.
  • much attention has been paid to energy saving in recent years, so that increasingly prefabricated wall elements comprising two outer concrete layers and an intermediate layer of insulating material (eg PU foam) are produced.
  • the thickness of the insulating layer between the two concrete layers should be variable.
  • the insulating layer is usually applied to the cured first concrete layer of the first finished wall part and the holding elements are subsequently braced against the surface of the insulating layer, thus fixing the finished wall part on the mold pallet in a stable position.
  • the clamping device is movably arranged on the turning device, wherein a substantially perpendicular to the pivot axis extending distance between the turning device and the pivot axis for the holding element is adjustable.
  • the holding elements are each arranged pivotably about a pivot axis on the clamping device. By pivoting a holding element about its pivot axis, one end of the holding element is pressed against the surface of the finished wall part facing it, whereby the finished wall part can be fixed in a stable position on the mold pallet.
  • a height-adjustable with respect to the turning device clamping device can thus be achieved that the pivot axes of the holding elements can be set in a different vertical distance from the turning device.
  • this height adjustment of the clamping device relative to the turning device it is thus possible to fix different thickness prefabricated wall parts by means of clamping device on the mold pallet. In particular, it is thus possible to arrange different thickness insulating layers on a concrete layer of the finished wall part and to fix the entire finished wall part of the mold pallet.
  • the clamping device is arranged continuously displaceable.
  • the height adjustment or adjusting the distance between the turning device and the pivot axis can be done by a drive, such as a spindle drive or a rack and pinion drive. It can therefore be provided that the clamping device is infinitely and / or drive-supported movable. Of course, but also a manual height adjustment can be provided. It can also be provided that the height adjustment takes place in an automation process in a data-processing-controlled manner.
  • At least one spacer for adjusting a distance of the mold pallet is arranged on the turning device to a arranged on a stop of the spacer second mold pallet, wherein the spacer is movably disposed on the turning device, wherein a substantially perpendicular to the pivot axis running stop distance between the turning device and the stop of the spacer is adjustable.
  • the mold pallet is turned by 180 ° with the first finished wall part and placed over the second mold pallet, wherein spacers protrude from the turning device and stops of the spacers are placed on the second, now lower mold pallet.
  • extendable spacers can thus be achieved a height adjustment between the two mold pallets.
  • This allows the production of different thickness prefabricated wall elements.
  • the height adjustment of the spacer with respect to the turning device continuously and / or drive-supported (eg spindle drive or rack drive) done by the spacer is continuously and / or drive-supported movable.
  • this height adjustment takes place in an automation process data processing controlled.
  • the height adjustment of the spacer in turn has the advantage of a more ergonomic workflow, since for the production of different thick prefabricated wall elements on the removal and installation of different lengths and usually several kilograms heavy spacers can be dispensed with.
  • embodiment of the invention in which the spacer is arranged substantially perpendicular to the surface of the mold pallet displaceable on the turning device. Thereby, a height adjustment of the stop of a spacer with respect to the surface of the mold pallet in a direction perpendicular to the surface can be achieved.
  • the distance between the turning device and the pivot axis is adjustable independently of the stop distance between the turning device and the stop of the spacer.
  • the two height adjustments can be carried out independently.
  • both height adjustments are performed to a same extent.
  • the holding element is movable from a release position to a holding position, wherein the holding element is arranged translationally movable on the tensioning device, wherein preferably the holding element substantially parallel to the surface of Mold pallet is movable.
  • the holding elements can be inserted just above the surface of the finished wall part (eg hardened concrete layer and insulating layer disposed thereon) from the side, with an outer end of a hold-down can be raised, for example by a pneumatic unit such as an air hose can be acted upon.
  • the holding element By raising at its outer end, the holding element is pivoted about its pivot axis, whereby the end of the holding element, which is located above the surface of the finished wall part, is pressed against the finished wall part, whereby the finished wall part can be fixed in a stable position on the mold pallet.
  • a device having the features of claim 9, that is an apparatus for producing a large-scale, in particular at least one concrete layer comprehensive, finished wall part on a movable mold pallet with a connectable to the mold pallet turning device for turning the mold pallet, wherein the Turning device is equipped with a clamping device comprising at least one holding element, wherein the holding element is arranged pivotably about a pivot axis extending substantially parallel to a surface of the mold pallet on the clamping device, wherein by pivoting of the holding element about its pivot axis an end of the holding member is pressed on the finished wall part, wherein the finished wall part of the mold pallet is fixed in position stable, in particular according to one of claims 1 to 8, wherein the holding element is substantially rod-shaped, wherein the holding element of a longitudinal position is formed kinkable in a bent position.
  • the holding element can be bent when pushed from the holding position to the release position and thereby require less lateral space, since they do not protrude laterally as far over the clamping device as an ungeknicktes holding element.
  • the proposed, bendable holding elements can remain on the turning device. This eliminates a cumbersome handling of the usually about 30 kg heavy and about 2.8 m long holding elements.
  • the ergonomics of the workflow can be increased and thus the health of the turning device operating workers are spared.
  • the holding element comprises a holding part and a buckling part, wherein the buckling part is bendable relative to the holding part, wherein preferably the buckling part is arranged pivotably about a bending axis on the holding part.
  • the holding element in the longitudinal position and / or the buckling position can be determined.
  • the holding element comprises a latching connection, which is detectable by the latching connection of the bending part relative to the holding part.
  • the latching connection comprises at least one arranged on the bending part, preferably druckfederbeetzschlagten, locking pin and at least one at least partially the locking pin receiving receptacle on the holding part, wherein the locking pin is movable into the receptacle.
  • the at least one locking bolt can be arranged along the articulated part movable on or in the bending part.
  • the retaining element in the longitudinal position of the holding part comprises at least one rod with a receptacle for a movable from the bending part in the recording latching bolt, preferably arranged the bending axis spaced from a bending part facing the rod end of the rod is.
  • the at least one locking bolt preferably via a rod, is connected to an actuating device arranged at one end of the bending part, wherein the at least one locking bolt can be moved by actuating the actuating device.
  • the actuator may comprise a pull handle, wherein by a Pull movement or pushing movement on the pull handle, the at least one locking pin is movable.
  • the actuating device may also comprise a rotatably mounted pivot pin, wherein the at least one latching pin is movable by turning the pivot pin.
  • Insulating layer comprising two prefabricated wall parts
  • Insulating layer comprising two prefabricated wall parts
  • FIG. 3 is a perspective top view of the arrangement of FIG. 3 a, a front view of the arrangement of FIG. 3 a during insertion via a second mold pallet, FIG.
  • FIG. 4a a perspective top view during the entry according to FIG. 4a
  • FIG. 13 is a sectional view through the holding member of FIG. 12a in the determined longitudinal position
  • FIG. 14 is a sectional view through the retaining element of Fig. 12a in unlocked longitudinal position
  • FIG. 1 a shows various steps of producing a first finished wall part 2 on a mold pallet 3 in a front view onto the mold pallet 3.
  • first spacers 24 are inserted for a reinforcement 25.
  • the reinforcement 25 is inserted in a next step and subsequently introduced a concrete layer 1.
  • An insulation 26 can be applied to the concrete layer 1, wherein the insulation 26 can have pre-drilled holes 27 for connecting rods 28 to be arranged therein. However, the holes 27 can also be drilled in the inserted state of the insulation 26.
  • Connecting rods 28 can subsequently be introduced into the holes 27, which subsequently serve for connection to a further finished wall part 2 '(see FIG. 1 b).
  • FIG. 1 b shows various production steps of a second finished wall part 2 'which, in conjunction with the finished wall part 2 of FIG. 1 a, forms a finished wall element 33 (see FIG. 1 c).
  • spacers 24 are again inserted within a mold frame 32, 23, and a reinforcement 25 is inserted thereon.
  • a second concrete layer 1 ' is introduced.
  • Fig. 1c shows the joining of the finished wall parts 2, 2 'of Fig. 1a and 1b for the production of a double-shell prefabricated wall element 33, which can be poured out after this prefabrication on a construction site and thus finished as a finished wall.
  • the mold pallet 3 is lifted by means of a turning device, not shown here (see FIG. 3 a), pivoted through 180 ° and lowered onto the second mold pallet 3 '.
  • the connecting rods 28, which protrude from the first finished wall part 2 penetrate into the uncured second concrete layer 1 'of the second finished wall part 2'.
  • the prefabricated wall element 33 thus completed can be lifted off the lower mold pallet 3' and stored, for example, in a warehouse.
  • FIG. 2 a shows a front view of a prefabricated wall element 33 produced according to FIGS. 1 a to 1 c.
  • FIG. 2 b shows a possible further prefabricated wall element 33 which has a different construction compared with the finished wall element 33 of FIG. 2 a.
  • no insulation layer is provided between the two concrete layers 1, 1 'of the two prefabricated wall parts 2, 2', and the spacing between the two concrete layers 1, 1 'is achieved by curved connecting bars 28 (for example of lattice girders).
  • FIG. 3a shows a front view of a proposed turning device 4 connected to a mold pallet 3, and FIG. 3b shows a perspective top view of this arrangement.
  • the turning device 4 is connected by means of a connecting device 29 with the mold pallet 3, for example. By clamping or by the turning device 4 projecting pins that take the mold pallet 3.
  • a first finished wall part 2 comprising a concrete layer 1 and an insulation 26 arranged thereon is arranged.
  • the turning device 4 is equipped with a clamping device 5, which comprises a plurality of holding elements 6, which are movable in translation substantially parallel to the surface 7 of the mold pallet 3 on the finished wall part 2.
  • Each holding element 6 rests on a rod 31 of a clamping shoe 30, wherein the line of contact of holding element 6 with rod 31 forms a pivot axis 8 for the holding element 6.
  • the holding element 6 By raising an outer end 34 of a holding element 6 (arrow 36), the holding element 6 can be pivoted about the pivot axis 8, so that one end 9 of the holding member 6 against the finished wall part 2 can be pressed (arrow 37), whereby the finished wall part 2 on the mold pallet. 3 stable in position fixable.
  • the raising of the outer ends 34 of the holding elements 6 can take place by means of a clamping device 5 arranged on the clamping unit 35, for example. By airing a voltage applied to the outer ends 34 air hose.
  • Turning device 4 is provided.
  • the tensioning device 5 can therefore be extended out of the turning device 4, whereby a distance 10 between the turning device 4 and the pivoting axes 8 for the retaining elements 6 can be set.
  • the turning device shown 4 height adjustable spacers 1 1.
  • the spacers 1 1 of the turning device 4 are used to set a distance of the finished wall part 2 to another finished wall part 2 'on another mold pallet 3' in the object state of the mold pallet 3 (see, for example. Fig. 1 c). Characterized in that the spacers 1 1 can be extended from the turning device 4, depending on the desired distance different stop distances 13 between the turning device 4 and stops 12 of the spacers 1 1 set.
  • both the height adjustment for the pivot axes 8 of the holding elements 6 and the height adjustment for the stops 12 of the spacers 1 1 are realized by continuously adjustable spindle units.
  • Fig. 4a shows the process of entering the mold pallet 3 on the second mold pallet 3 'by means of a proposed turning device 4 in a front view and Fig. 4b shows a corresponding perspective top view.
  • Fig. 5a shows the mold pallet 3 after being applied over the second mold pallet 3 'and Fig. 5b shows a corresponding bottom view of the arrangement of Fig. 5a.
  • the turning device 4 is sold with associated mold pallet 3 on the second mold pallet 3 '. 6 and 7 each show a proposed turning device 4 for the production of different thickness prefabricated wall parts 2.
  • the finished wall part 2 of Fig. 7 in this case has a comparison with the finished wall part 2 of FIG. 6 thicker insulation 26.
  • the clamping device 5 relative to the turning device 4 is movable, the correspondingly required distances 10 between the turning device 4 and the pivot axes 8 of the holding elements 6 can be adjusted accordingly to fix different thickness prefabricated wall parts 2 on the mold pallet 3.
  • the spacers 11 are likewise arranged movably on the turning device 4. This allows correspondingly different stop distances 13 between the turning device 4 and the stops 12 of the spacers 1 1 set. 8 and 9 each show a proposed turning device 4 for the production of different thickness prefabricated wall elements 33, wherein the finished wall parts 2, 2 'are each constructed the same.
  • each desired stop distance 13 between the turning device 4 and the stops 12 of the spacers 1 1 can be adjusted.
  • FIG. 10a to 10c show the steps of inserting the holding elements 6 via the finished wall part 2 from its release position 14 (FIG. 10a) to its holding position 15 (FIG. 10c) in order to fix the finished wall part 2 to the mold pallet 3 by means of holding elements 6 can.
  • the holding elements 6 are formed bendable and each comprise a holding part 18 and a buckling member 19, wherein the buckling member 19 relative to the holding part 18 can be bent.
  • the holding elements 6 are in their release position 14 and are not yet arranged over the finished wall part 2.
  • Fig. 10a Sind die Garture 6 212 .
  • the holding elements 6 are in bending position 17, so that they occupy as little space as possible laterally of the turning device 4.
  • the holding elements 6 are now tilted up (see arrows 38) so that they are in the longitudinal position 16 as shown in FIG. 10b. through Locking connection 20 of a holding element 6 (see FIGS. 12a to 12d), a holding element 6 can be fixed in this longitudinal position 16.
  • the holding elements are inserted in a translatory movement over the surface of the finished wall part 2 (see arrows 39). After clamping the holding elements 6 by means of clamping unit 35 (see FIG. 3a), the holding elements 6 are in their holding position 15, in which the respective ends 9 of the holding elements 6 are pressed against the surface of the finished wall part 2 and thus the finished wall part 2 on the mold pallet Fix 3 in a stable position.
  • 1 1 a to 1 1 c show the steps of carrying out the holding elements 6 from their holding position 15 (FIG. 11 a) to their release position 14 (FIG. 11 c) after the mold pallet 3 has been placed over and arranged above a another mold pallet 3 'to release the finished wall part 2.
  • the holding elements 6 are in their holding position 15 in which they hold the finished wall part 2 in a positionally stable manner on the mold pallet 3.
  • the tensioning unit 35 for example by stopping the air supply to an air hose
  • the holding elements 6 are pushed out laterally in a translatory movement (see arrows 40).
  • the snap-in connections 20 of the holding elements 6 are released and the holding elements 6 are bent (see arrows 41) so that they are in the bent position 17 and thereby occupy as little space as possible laterally of the turning device 4.
  • FIG. 12a shows a possible embodiment of a proposed holding element 6 in its longitudinal position 16 in a perspective view
  • FIG. 12b shows the holding element 6 in a plan view
  • FIG. 12c shows the holding element 6 in a side view.
  • the holding element 6 can be fixed in its longitudinal position 16 by a latching connection 20 located in the interior of the holding element 6, which can be actuated by an actuating device 45 arranged at the outer end 34 of the holding element 6.
  • the determination of the retaining element 6 in the longitudinal position 16 by means of the latching connection 20 is shown in the longitudinal sections of FIGS. 13 and 14.
  • the holding element 6 comprises a holding part 18 and an articulated part 19, which are pivotable relative to each other about a bending axis 42, so that the articulated part 19 can be bent relative to the holding part 18 in order to bring the holding element 6 from its longitudinal position 16 into a bending position 17 (see, for example, FIG 10a).
  • the buckling part 19 is arranged pivotably about the bending axis 42 on the holding part 18.
  • the holding part 18 and the buckling part 19 each comprise two tubular rods 43.
  • FIGS. 13 and 14 each show longitudinal sections of the retaining element 6, as a result of which the mode of operation of the locking connection 20 arranged in the interior of the retaining element 6 becomes apparent.
  • the holding part 18 comprises two tubular rods 43, whose respective inner cavity in the region of a rod end 44 facing the bending part 19 forms a receptacle 22 for a latching pin 21 which can be moved into the receptacle 22 from the bending part 19.
  • the buckling member 19 also includes two tubular rods 43, in the respective inner cavity a locking pin 21 is movably mounted along the buckling member 19.
  • the latching bolts 21 are connected via a respective rod 46 extending in the interior of a rod 43 to an actuating device 45 arranged at the outer end 34 of the retaining element 6.
  • On the locking pin 21 each has a likewise arranged in the interior of a rod 43 compression spring 47 which presses the locking pin 21 in the corresponding receptacle 22 on the corresponding rod 43 of the holding member 18 in the absence of a corresponding counterforce.
  • the locking pin 21 and the receptacles 22, in which the locking pin 21 can engage, thus forming a latching connection 20 by which the buckling member 19 relative to the holding member 18 detectable and thus the holding member 6 in its longitudinal position 16 can be determined.
  • the locking pins 21 can be moved out of the rods 43 of the bending part 19 by actuating the actuating device 45 and can be moved into the receptacles 22 in the rods 43 of the retaining part 18.
  • the actuating device 45 comprises a rotatably mounted pivot pin 48 with a projecting from its lateral surface guide pin 49 and the pivot pin 48 receiving sleeve 50th with a arranged on the inner wall of the sleeve 50 helical guide groove 51 (indicated by dashed lines), in which the guide pin 49 of the pivot pin 48 is guided.
  • FIGS. 15a to 15d show detailed views of a further possible holding element 6 during the transition from its longitudinal position 16 to the bending position 17.
  • the holding element 6 is constructed similarly to the holding element 6 of FIGS. 12a to 14 with the difference that the actuating element 45 includes a simple pull handle 54.
  • the pull handle 54 is connected via rods 46 with the locking pin 21.
  • the rods 46 each have a radially projecting collar 55, on each of which a compression spring 47 acts, which thus presses the corresponding locking pin 21 in the corresponding receptacle 22 on the holding part 18 in the absence of a corresponding counterforce.
  • the locking pin 21 By pulling on the pull handle 54 against the spring force of the compression springs 47, the locking pin 21 can be pulled out of their corresponding receptacles 22 and thus the locking connection 20 are released. After releasing the latching connection 20, the bending part 19 can be bent relative to the holding part 18 and thus the holding element 6 are transferred into its bending position 17.
  • the locking pin 21 pins 56 which in the buckling position 17 of the retaining element 6 in corresponding recesses 57 on the Surface of the holding part 18 can be engaged in order to determine the holding element 6 in the buckling position 17 and to prevent unwanted oscillations between the holding part 18 and buckling member 19.
  • the pins 56 of the latching pins 21 snap automatically into the recesses 57 in the bent position 17 of the retaining element 6.

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Moulds, Cores, Or Mandrels (AREA)
  • Devices For Post-Treatments, Processing, Supply, Discharge, And Other Processes (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)

Abstract

Dispositif pour produire un élément de paroi préfabriquée (2) de grande taille, en particulier comprenant au moins une couche de béton (1), sur une palette de mise en forme (3) mobile, présentant un dispositif de retournement (4) pouvant être relié à la palette de mise en forme (3) et servant à retourner celle-ci, lequel dispositif de retournement (4) est pourvu d'un dispositif de serrage (5) comportant au moins un élément de retenue (6), cet élément de retenue (6) étant agencé sur le dispositif de serrage (5) de manière à pouvoir pivoter autour d'un axe de pivotement (8) s'étendant sensiblement parallèlement à une surface (7) de la palette de mise en forme (3). Par pivotement de l'élément de retenue (6) autour de son axe de pivotement (8), une extrémité (9) de l'élément de retenue (6) peut être plaquée contre l'élément de paroi préfabriquée (2), lequel élément de paroi préfabriquée (2) peut être fixé de manière stable sur la palette de mise en forme (3). Selon l'invention, pour permettre la fixation d'éléments de paroi préfabriquée (2) de différentes épaisseurs sur la palette de mise en forme (3), le dispositif de serrage (5) est agencé de manière mobile sur le dispositif de retournement (4), la distance (10) s'étendant sensiblement perpendiculairement à l'axe de pivotement (8), entre le dispositif de retournement (4) et l'axe de pivotement (8) de l'élément de retenue (6), pouvant être ajustée.
PCT/EP2013/003791 2012-12-21 2013-12-16 Dispositif pour produire un élément de paroi préfabriquée de grande taille, en particulier comprenant au moins une couche de béton WO2014095025A2 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP13818662.2A EP2934837B1 (fr) 2012-12-21 2013-12-16 Dispositif pour produire un élément de paroi préfabriquée de grande taille, en particulier comprenant au moins une couche de béton
CN201380072971.0A CN105073360B (zh) 2012-12-21 2013-12-16 用于在可运动的成形托板上制造大面积成品壁部件的设备
DK13818662.2T DK2934837T3 (en) 2012-12-21 2013-12-16 DEVICE FOR MANUFACTURING A LARGE-FLATED, PRE-MANUFACTURED BEDROOM, SPECIFICALLY INCLUDING AT LEAST ONE CONCRETE LAYER
PL13818662T PL2934837T3 (pl) 2012-12-21 2013-12-16 Urządzenie do produkcji wielkopowierzchniowej, a zwłaszcza zawierającej co najmniej jedną warstwę betonową, części ściany prefabrykowanej

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ATA1337/2012A AT513284B1 (de) 2012-12-21 2012-12-21 Vorrichtung zum Herstellen eines großflächigen, insbesondere wenigstens eine Betonschicht umfassenden, Fertigwandteils
ATA1337/2012 2012-12-21

Publications (2)

Publication Number Publication Date
WO2014095025A2 true WO2014095025A2 (fr) 2014-06-26
WO2014095025A3 WO2014095025A3 (fr) 2014-11-20

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PCT/EP2013/003791 WO2014095025A2 (fr) 2012-12-21 2013-12-16 Dispositif pour produire un élément de paroi préfabriquée de grande taille, en particulier comprenant au moins une couche de béton

Country Status (6)

Country Link
EP (1) EP2934837B1 (fr)
CN (1) CN105073360B (fr)
AT (1) AT513284B1 (fr)
DK (1) DK2934837T3 (fr)
PL (1) PL2934837T3 (fr)
WO (1) WO2014095025A2 (fr)

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DE202017104545U1 (de) 2017-07-31 2017-08-11 Weckenmann Anlagentechnik Gmbh & Co. Kg Vorrichtung zum Herstellen eines großflächigen, insbesondere wenigstens eine Betonschicht umfassenden Fertigwandteils
CN111300313A (zh) * 2020-04-07 2020-06-19 江苏锐鹰机械有限公司 一种操作安全的预制构件生产用翻转架
CN115262985A (zh) * 2022-07-18 2022-11-01 岳阳鹏程建设集团有限公司 一种用于内置保温材料保温墙的施工装置及工艺
DE102022101624A1 (de) 2022-01-25 2023-07-27 Weckenmann Anlagentechnik Gmbh & Co. Kg Vorrichtung zur Herstellung von Beton-Fertigteilen

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CN108189201A (zh) * 2017-12-29 2018-06-22 广州远大住宅工业有限公司 一种挡边模具组件
CN108188988A (zh) * 2018-02-12 2018-06-22 中山职业技术学院 一种用于生产电力柜的装配工作台

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CN105073360B (zh) 2016-09-28
EP2934837A2 (fr) 2015-10-28
AT513284A4 (de) 2014-03-15
PL2934837T3 (pl) 2018-04-30
WO2014095025A3 (fr) 2014-11-20
EP2934837B1 (fr) 2017-11-15
DK2934837T3 (en) 2018-02-19
AT513284B1 (de) 2014-03-15

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