WO2009052796A2 - Dispositif de pose de planches pour des revêtements de terrasse par exemple - Google Patents

Dispositif de pose de planches pour des revêtements de terrasse par exemple Download PDF

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Publication number
WO2009052796A2
WO2009052796A2 PCT/DE2008/001712 DE2008001712W WO2009052796A2 WO 2009052796 A2 WO2009052796 A2 WO 2009052796A2 DE 2008001712 W DE2008001712 W DE 2008001712W WO 2009052796 A2 WO2009052796 A2 WO 2009052796A2
Authority
WO
WIPO (PCT)
Prior art keywords
plate
pressure
legs
longitudinal
frame part
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.)
Ceased
Application number
PCT/DE2008/001712
Other languages
German (de)
English (en)
Other versions
WO2009052796A3 (fr
Inventor
Ulrich Reif
Dieter Reif
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Braun & Wuerfele & Co GmbH
Original Assignee
Braun & Wuerfele & Co GmbH
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 Braun & Wuerfele & Co GmbH filed Critical Braun & Wuerfele & Co GmbH
Publication of WO2009052796A2 publication Critical patent/WO2009052796A2/fr
Publication of WO2009052796A3 publication Critical patent/WO2009052796A3/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/20Implements for finishing work on buildings for laying flooring
    • E04F21/22Implements for finishing work on buildings for laying flooring of single elements, e.g. flooring cramps ; flexible webs
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/0092Separate provisional spacers used between adjacent floor or wall tiles
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F21/00Implements for finishing work on buildings
    • E04F21/20Implements for finishing work on buildings for laying flooring

Definitions

  • the invention relates to a device for laying boards or the like for z. B. decking according to the preamble of claim 1, as they are generally used in the production of coverings for terraces, balconies, facades, cladding, etc. (especially in outdoor areas) use.
  • board are all common cladding or covering elements, such as boards, planks, moldings made of wood and / or plastic or mixed material understood.
  • the final pressure above which the sliding movement of the frame parts causing toggle lever is about 1,200 kg, whereby a correspondingly long lever arm is required, which extends beyond the device in the closed state in the longitudinal direction, whereby working on surfaces with end boundaries, such as masonry, not possible is.
  • the length setting width of this installation tool is possible only in a complex manner via an internal spindle and special tools.
  • this device is only intended for laying with the mounting brackets or double angle claws (see also DE 102 30 797 C2) and is not suitable for directly screwed to the ground terrace coverings.
  • the object of the invention is to provide a device of the type mentioned above, which is relatively lightweight, handy and versatile, even with surfaces with end limits and both for the screwed and for the nailed laying with z.
  • B. IGEL ® -Doppelwinkelkrallen (mounting bracket according to DE 102 30 797 C2) is suitable, while ensuring uniform gaps / gaps between the planks and in the screwed variant allows insertion of the retaining screws in the correct orientation in distance and line in a simple manner.
  • the two frame parts of the device are kept so low in their use in the longitudinal direction of elongation that the outside of the outer frame part does not reach or at most to the longitudinal edge of the respective inner, first board.
  • the outer frame part is associated with a longitudinal extension extending to the outer edge of the respective outer, second board longitudinal tension element, at the outer end of the outer pressure or tension plate is arranged.
  • the knee lever is provided so that it is folded during clamping from a nearly vertical relaxed position to the outside in a horizontal, cocked position.
  • an extremely lightweight, versatile device is provided which can also be used in end regions, in particular since the toggle lever extends outward in the tensioned situation.
  • the train longitudinal member is preferably attached to the underside of the transverse base part of the outer U-frame part, upwards approximately at the center of the base part bent Werner- flat band.
  • this tension band can be divided forChinaneinsteilberry and the two band parts overlapping each other to be longitudinally displaceable fixable.
  • appropriate precautions have to be taken that under appropriate tension force the two Anlagenbandmaschine are held immovably to each other, z. B. by toothing elements or the like.
  • the lever system with toggle lever, tab and corresponding bearings and / or slots in the two frame parts is designed so that the lever function works on pulling action from outside to inside, ie with the clamping outwardly folded hand lever arm, the lever arm preferably at a relaxed Function "open” vertical and with pressure function "strained” horizontally pointing, thereby entering the device and not protruding beyond the outer contour of the device.
  • an axis is provided at the inner / lower end of the toggle lever, which passes through the longitudinal slots in the inner legs of the inner frame member slidably and on the other hand is stuck in the outer legs of the outer frame member.
  • Seen in the open position is at the same time above this axis at least one lever plate hinged at its one end, while at the other end is stuck via an axis on the one hand in the legs of the inner frame member and at the same time rests displaceable in longitudinal slots of the outer frame member.
  • the inner frame part consists of two vertically and simultaneously parallel to each other aligned leg plates, which are held by a bottom plate attached to the base plate, on whose underside in turn the inner pressure jaw is provided. If then still the base plate extends in its transverse extent on the outer edge of the legs of the inner tube part and the pressure jaws formed by Nachuntenbiegen at least a portion of the base plate, - despite the relatively small longitudinal extension of the device frame - a simple to produce, stable and non-tilting embodiment is obtained.
  • the pressure jaw provided on the base plate consists of two pressure jaw parts (pressure lugs) spaced apart from each other at least by the length of a double-angle claw, which can easily be produced by cutting and bending (edging) the base plate.
  • each of the frame part-leg projecting part of the base plate z. B. each laterally to or close to the frame legs laterally, ie in the transverse direction and then L-shaped cut backwards and then the resulting tabs are bent by 90 ° down. But it can also be cut parallel from back to front along the legs and then the resulting lateral two tabs are bent vertically downwards.
  • the two leg plates of the inner frame part are part of an at least partially U-shaped sheet metal blank and have at their outer lower ends horizontally outwardly projecting plates, which together form the base plate.
  • the drawbar is also adjustable in length and divisible vorsehbar, z. B. by a threaded connection, wherein a sleeve member is preferably attached to the base of the outer frame member, while a corresponding with the threaded sleeve part threaded bolt is attached to the outer tension plate, or vice versa.
  • the inner end of the pull rod is releasably attached to the base of the outer frame member, z. B. via a screw connection.
  • it can also be designed to be detachable from above.
  • a rectangular-plate-shaped or annular spacer can be pushed onto the tie rod, which can be inserted between the mutually to be joined or to be fastened boards in untensioned condition ,
  • a spacer plate can be selected with a thickness and mounted on the tie rod, which corresponds to the width of the desired air gap between the planks, z. B. of 0.5 cm.
  • one of the insert in the lower edge of the plate is provided substantially centrally into the through hole in reaching slot for clamping on one of the two vertical legs of the inner frame member end horizontally covering plate.
  • a pull rod as a tensile longitudinal element
  • a preferably attached to the underside of the transverse base part of the outer U-frame part. might be provided upwards approximately at the center of the base of the base cranked train flat band.
  • this can also be divided, wherein the two parts can be designed to be longitudinally displaceable in a manner that overlaps one another in an overlapping manner or can be designed to be longitudinally adjustable and fixable in another manner.
  • the outer, front pressure plate plate is made rectangular, with a substantially central, preferably releasable attachment of the drawbar.
  • the jaw plate is convertible or rotatable arranged or connected to or with the pull rod, so that, if necessary, a position change by 180 ° can be undertaken.
  • One side / edge is straight and it is associated with a through hole, as a passage for the outwardly projecting nail to be introduced or be pressed double angle claw, while the opposite side / edge at one end of a gradation (plate stage or attached stop pin) has to positioning system on the support beam. This ensures that the screws are always placed in the same longitudinal position in relation to the support beam in this.
  • the laying aid device is therefore universally applicable in the following areas:
  • the laying aid works via a toggle lever principle and comes to a final pressure of approx. 500 kg.
  • Fig. 1 a schematic side view of a device in execution for the screwed laying of boards, in a relaxed state
  • FIG. 2 shows a perspective view of the main body with the inner frame parts in the first embodiment
  • Fig. 3 is a perspective view of the body in the second, one-piece design, with inner and outer frame parts and lever system;
  • FIG. 4 shows a view according to arrow IV of Figure 1 on the front end face of the outer pressure plate ..;
  • Figure 5 is a view according to arrow V of Figure 1 on the back of the device, illustrating the outer pressure tabs on the base plate.
  • FIG. 6 shows a side view of the device according to FIG. 1, in the tensioned state
  • Fig. 7 is a plan view of the device in execution and condition of Fig. 6; 8 shows a section VIII-VIII from FIG. 6, illustrating the articulations of the toggle lever in the frame parts;
  • Fig. 9 is a perspective view of a device in execution and situation as shown in Fig. 4;
  • Fig. 10 is a perspective view similar to Figure 9, in a relaxed state and different angle of view, in particular the front side of the outer pressure plate with stop pin and nail passage hole pointing;
  • 11 is a partial perspective view of the device during insertion of the
  • Screws illustrating the position grooves on the tie rod for the alignment of the retaining screws
  • FIG. 12 is a perspective top view of the device in a relaxed state and not in use, with screwed drawbar and remote pressure piece.
  • Fig. 13 a view similar to Figure 12, partially relaxed and not in use, with again screwed together tie rod, the pressure piece attached behind;
  • FIG. 14 is a perspective view of a double-angle claw for use in invisibly nailed or bolted laying of boards;
  • Fig. 15 is a front perspective view of the device in execution when inserting a double angle plate according to Figure 14 in the outer longitudinal side of an outer board, in action in an end region.
  • FIG. 16 is a schematic side view similar to FIG. 6, but in use for invisible nailing or screwing, and
  • FIG. 17 shows a plan view of the device according to FIG. 16.
  • Fig. 1 shows how for the production of z. B. decking for terraces or the like on beams 1 transverse boards 2, 3, 4 (in this embodiment) are fastened directly with screws 6 so that between the boards, an air gap 5 is present.
  • a device 8 according to the invention can be seen, which is used for accurate laying of the boards, ie in exact alignment and with uniform air gap 5.
  • the device 8 used for this invention lies in its longitudinal extent across the boards 2, 3, 4th , ie parallel to and above the bar 1.
  • the device 8 has a main body 10, on the underside of which a transversely to the longitudinal extent of the body aligned printing jaws 11 protrudes vertically downwards.
  • a pull rod 12 is attached via a screw 13 and protrudes with its outer end beyond the outer board 2 and carries on this a Druck ⁇ -pull plate 14 which engages behind the outer board 3.
  • the tie rod 12 is formed in two parts, in particular for setting the required length and consists of an inner part 15 and an outer part 16, which are hollow on the mutually facing sides and provided with internal thread 17 and are connected to each other by a threaded spindle 18.
  • a spacer 20 is pushed, which with its lower, longer-trained end in the space of the first, already bolted board 2 and the third, still unpaved loose on the beam. 1 protruding second board 3 protrudes.
  • the thickness of the spacer is designed so that it corresponds to the desired width of the air gap 5.
  • the pressure / tension plate 14 is on the outer part 16 of the threaded spindle frontally connected via a screw 21 interchangeable and / or implemented.
  • the main body 10 consists of two frame parts 23, 27, wherein the inner frame part 23 has two mutually parallel legs 24, which are held together by a base plate 25 provided on the underside thereof.
  • the outer frame member 27 also has two mutually parallel legs 28 which are held together by a front end wall 29 at a distance, to a substantially U-shaped structure.
  • the legs 28 of the outer frame member 27 include the legs 24 of the inner frame member 23 lying flat and as longitudinally displaceable as possible without play.
  • a lever system 30 which consists of a toggle 31, at its o- berem, knee-bent end a long Spannhebelarm 32 is provided, while at the lower end of a bearing bore 33 is present is.
  • This bearing bore 33 corresponds to corresponding bearing bores 34 in the two legs 28 of the outer frame member 27 and with slots 35 in the legs 24 of the inner frame member 23.
  • a bearing pin 36 In accordance with aligned alignment with each other is a bearing pin 36 through the bearing holes 33, 34 and the slot 35 inserted therethrough by which the knee lever 31 can be pivoted.
  • the toggle lever 31 together with the two legs 28 and thus the entire outer frame part 27 along the two legs 24 of the inner frame member 23 and thus in the longitudinal direction of the base body 10 and the entire device 8 move.
  • two mutually parallel tabs 40 are pivotally mounted via a bearing pin 38. These tabs 40 have at their other end in each case a bearing bore 39.
  • a long bearing pin 41 is passed through the bearing bores 39 of the two tabs 40, then through a respective bearing bore 42 in the two legs 24 of the inner frame member 23, then by one Long hole 43 in the leg 28 of the outer frame member 27 pass.
  • the two tabs 40 with the legs 24 of the inner frame member 23 pivotally, but immovably connected, while they are longitudinally displaceable in the slots 34 of the legs 28 of the outer frame member 27.
  • the whole pivoting and sliding movement on the lever system 30 works so that the tabs 40 on the legs 24 and thus stuck to the inner frame member 23 pivotally, so that when moving the clamping lever from its vertical relaxed position in the horizontal forward folded position, the lower, at the rear end of the outer frame member 27 festverschwenkbar mounted end of the clamping lever or toggle lever 31 slides slidably over its bearing pin 36 in the oblong holes 35 of the inner frame member 23 in the longitudinal direction.
  • the entire outer frame member 27 is moved or pulled or pushed forward or backward, which is thereby possible that the bolt 41 in the slots 43 of the outer frame part protrudes, without hindering the outer frame member in the longitudinal displacement.
  • the bearing pin 41 could also be configured so short that it extends through the two tabs 40 and through the legs 24 of the inner frame part to near the outer surfaces of the legs 24 without hineinzuich in the outer frame member 27.
  • the outer frame part 27 would then not be reliably guided in its front section and would possibly pivot upwards.
  • the inner frame part 23 is formed by two plate-shaped legs 24, which are held in their parallel alignment by a base plate 25, wherein the base plate 25 projects beyond the outer sides of the legs 24 in a flange.
  • a pressure jaw 11 is provided at the rear end of the base plate 25 and thus of the frame part 23, as a vertical fold of the base plate.
  • FIG. 3 shows the overall structure of the main body 10, consisting of the inner frame part 23 and the outer frame part 27, which are held together by the lever system 30 and movable relative to one another or can be displaced.
  • the inner frame member 23 has a different embodiment than that shown in Fig. 2, which consists of three parts or of three parts or three welded together individual parts.
  • the inner frame part 23 of FIG. 3 is made in one piece, ie formed from a single sheet metal blank punching technology.
  • the two legs 24 are held together here by a provided on the rear portion, the two legs at its top transversely spanning connecting wall 44.
  • a central longitudinal slot 44 ' is introduced in this connecting wall 44.
  • a continuous base plate here are each provided on the underside of the legs 24 laterally horizontally projecting base flanges 45, which serve to secure support of the device or the entire body 10 of the device.
  • flanges 45 are to provide the or Compression jaws 11 L-shaped cuts 46 provided in such a way that the resulting tabs pressed down and backwards bent or bent in each case yield a pressure jaw 11.
  • Fig. 4 it is shown how the front board 3 rests directly on the beam 1, while the pressure / tension plate 14 rests with its lower edge 47 on the beam supporting. In this lower edge 47, a gradation is provided which forms a stop pin 48, through which the pressure / tension plate 14 also experiences a stop laterally, whereby the entire device undergoes an accurate alignment with the boards carrying the beams 1. It is also the head of the screw 21 can be seen, via which the pressure / tension plate 14 is attached to the pull rod 12 frontally.
  • a passage opening 50 is provided, which is used in connection with the use of the device for mounting the boards on the well-known known double angle claws, as shown in Fig. 14 to 17.
  • the pressure / tension plate 14 is to be pivoted by 180 °, so that the upper edge 49 comes to rest on the beam 1.
  • the rear view of the main body 10 shown in Fig. 5 simultaneously illustrates the use of the device when mounting with double angle claws 52, it being noted that such a claw rests on their sole flanges 53 on the beam 1, while the board 2 on top of the Sole flanges 53 rests, whereby between the board 2 and 1 bars an air gap is available.
  • the vertical double web 54 extends between the two pressure jaws 11, 11 'of the inner frame part 23, or the frame part 23 is designed so that the clear distance between its two pressure jaws 11, 11' embracing the vertical web 54 of the double angle claw 52 allows , without problems and accidental cover. It can also be gone so far that, by this encompassing of the double angle claw 52 on the two pressure jaws 11, a centering of the inner frame part 23 and thus the entire body 10 of the device is allowed.
  • FIG. 6 shows the same view and the same embodiment as FIG. 1, except that here the device is shown in a tensioned state, ie with the position of the tensioning lever 32 pushed forward.
  • the pressure / tension plate 14 rests firmly with its back on the front longitudinal side of the board 3 and the two boards 2 and 3 at the same time to both flat sides of the spacer 20 fit snugly, so that even between the two boards 2 and 3 by the thickness of the Spacer predetermined air gap 5 is present.
  • the two frame parts namely the inner frame part 23 and the outer frame part 27, are pushed into one another as far as possible, while in the relaxed situation shown in FIG.
  • Fig. 6 is also shown how when Tinvererin the spacer 20, z. B. in the mounting assembly of the boards on double angle claws (ie in unscrewed attachment, in which a spacer 20 is not needed, since the corresponding distance between the boards is ensured by the vertical web of double angle claws) the spacer 20 at the back of the device, namely is attached to the connecting wall 44 of the legs 24, is stored.
  • Fig. 7 (same situation and same embodiment as Fig. 6, but in top view), in particular the arrangement of the device with respect to the fixed or to be fixed boards 2, 3, 4 can be seen very clearly.
  • the main body 10 rests on the pressure jaws 11 on the rear longitudinal side of the board 2, while the back of the pressure / tension plate 14 is present at the front longitudinal side of the board 3 under pressure.
  • the annular markings 19 are provided, and it can be seen that the screws 6 exactly after these markings are aligned or their distance from the respective longitudinal side of the board 3, which is indicated here that z. B. in each case at the level of the third marking line in each case the screw 6 is to be introduced. Also in the linear alignment with each other, an accurate image can be obtained by passing the drill respectively close to the drawbar (see also Fig. 11).
  • Fig. 8 is again clearly shown in section, as the frame parts 23, 27 and the lever parts of the lever system 30 are arranged in the tensioned state of the device to each other.
  • the legs 28 of the outer frame member 27 engage around the legs 24 of the inner frame member 23 lying flat and abut within the legs 24 of the inner frame member 23, the two tabs 40 on the inner edges 34.
  • the toggle lever 31 is included, with all these legs, tabs and lever parts, plate-shaped or flat parts, each lying flat and mutually movable.
  • the bolts 36, 38, 41 in the transverse direction penetrate the corresponding parts.
  • Fig. 9 also shows (as in FIGS.
  • Fig. 10 shows the same device as in Fig. 9, but in a relaxed state with vertically upwardly pointing Spannhebelarm 32. It is particularly good to see how the pressure / tension plate 14 at a slight distance from the outer edge of the outer board 3 the beam 1 rests while their stop pin 48 laterally surrounds the beam 1. As a result, a precise alignment of the drawbar 12 and thus the entire device is secured in relation to the beam 1. Of course, this orientation remains even after folding the Spannhebelarmes 32, by its pivoting forward and clamping the device and thus the two boards 2 and 3 to each other.
  • Fig. 12 illustrates how the bolted attachment of the boards, the relaxed device, ie with vertically upwardly facing clamping lever 32 and thus completely shifted forward frame member 27, the pull rod 12 is screwed apart, so that only the inner part 15 on the outside Frame part 27 remains drangtibt while the outer part 16 is separated with the threaded spindle 18.
  • the spacer 20 can now be pushed over its bore 55 on the tie rod 12 and the inner part 15 and then the pressure / tension plate 14 bearing, outer part 16 of the tie rod via the threaded spindle 18th be screwed again to the desired length on the inner part 15 of the drawbar. It can thus be seen that a slight change in shape, ie from the directly screwed connection to the invisible attachment via double-angle claws, is possible.
  • Fig. 13 the semi-relaxed device is shown, in which now the pull rod 12 has been screwed together again, so that the pressure / tension plate 14 is aligned with the stop pin facing up and the spacer is safely stowed until the next use, postponed on the rear connecting wall 44 of the inner frame part 23 of the basic body 10.
  • FIG. 14 merely serves for a better understanding of the invisibly nailed fastening or mounting of the boards on the ground and shows the double-angle claw known from DE 102 30 797 C2. It can be seen how this double-angle claw has a vertical double web 54 from which beak-like nails 41 protrude to both flat sides, while at the bottom sole flanges 53 protrude, in each of which a screw hole 60 is provided.
  • Fig. 15 illustrates how in the inventive device in a relaxed position of the clamping lever 32, the pressure / tension plate 14 engages behind the outer board 3 and at the same time engages behind the not recognizable vertical web of a standing on the bar 1 double angle claw 52.
  • the top serving as a support upper edge 49 of the pressure / tension plate 14 is on top of the outer sole flange 53 of the double angle claw 52, without concealing the screw hole 60, while the second sole flange 53 'pushed under the board 3 is located.
  • a nail 51 of the vertical web of the double-angle claw passes unhindered through the opening 50 in the pressure / tension plate 14.
  • FIGS. 16 and 17 illustrate the previously described situation, namely in the tensioned state, the two boards 2 and 3 embracing device, between the boards 2 and 3 each already a double-angle claw 52 is firmly in use.
  • the boards are in each case on the sole flanges 53, the vertical web 54 projects in each case between the opposite end faces of the boards and determines the remaining air gap 5, while the nails 51 are firmly pressed into the longitudinal sides of the boards.
  • the double angle claw 52 On the outer longitudinal side of the board 3 can be seen how the double angle claw 52 is pushed with her right sole flange under the board 3, while her right nail 51 is pressed firmly into the board 3.
  • the vertical web 54 is firmly clamped between the longitudinal side of the board 3 and the back of the pressure / tension plate 14, wherein the left nail protrudes freely through the opening 50 of the pressure / tension plate 14.
  • the double angle claw 52 can now be screwed on the present in their left, freely protruding sole flange 53 bore hole 60 and a screw 61 on the beam 1. Thereby, the straight position of the board obtained by tightening the device is fixed.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Floor Finish (AREA)
  • Road Paving Structures (AREA)

Abstract

Ce dispositif de pose de planches ou analogues pour des revêtements de terrasse possède deux parties de cadre (23, 27) déplaçables longitudinalement l'une par rapport à l'autre, ayant des branches mutuellement parallèles (24, 28) qui sont respectivement pourvues d'une mâchoire de pression/traction orientée transversalement, sachant que chaque mâchoire engage extérieurement par l'arrière un côté longitudinal extérieur de deux planches de bois (2, 3) qui se succèdent. Il est en outre prévu un système de leviers (30), avec des leviers à genouillère pour déplacer l'une par rapport à l'autre les deux parties de cadre, et donc les mâchoires qui leur sont respectivement associées. L'étendue longitudinale commune, en utilisation, des deux parties de cadre est maintenue suffisamment faible pour que le côté de base extérieur (29) de la partie de cadre extérieure (27) n'atteigne pas ou atteigne au maximum le bord longitudinal extérieur de la première planche respective (2), intérieure. De plus, un élément longitudinal de traction (12) est associé à la partie de cadre extérieure (27), élément qui prolonge l'étendue longitudinale de celle-ci jusqu'au bord extérieur de la deuxième planche respective (3), extérieure, et à l'extrémité extérieure duquel est disposée la plaque de pression/traction extérieure (14).
PCT/DE2008/001712 2007-10-24 2008-10-23 Dispositif de pose de planches pour des revêtements de terrasse par exemple Ceased WO2009052796A2 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE102007051098 2007-10-24
DE102007051098.7 2007-10-24
DE102008018072.6 2008-04-09
DE102008018072A DE102008018072B3 (de) 2007-10-24 2008-04-09 Vorrichtung zum Verlegen von Brettern für z.B. Terrassenbeläge

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Publication Number Publication Date
WO2009052796A2 true WO2009052796A2 (fr) 2009-04-30
WO2009052796A3 WO2009052796A3 (fr) 2009-07-30

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PCT/DE2008/001712 Ceased WO2009052796A2 (fr) 2007-10-24 2008-10-23 Dispositif de pose de planches pour des revêtements de terrasse par exemple

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DE (1) DE102008018072B3 (fr)
WO (1) WO2009052796A2 (fr)

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DE102017107515B4 (de) 2017-04-07 2019-01-10 Ulrich Reif Bohr- und Anreißschablone
CN111648213A (zh) * 2020-06-16 2020-09-11 马鞍山观点信息科技有限公司 一种市政工程用地砖铺设设备

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DE102014011946B3 (de) * 2014-08-14 2015-11-12 Stefan Ehrenreich Enddielenhaltevorrichtung für eine Dielenanordnung
DK179087B1 (da) 2015-07-02 2017-10-16 Lars Mikkelsen Skrueindretning
DE102016124988B4 (de) 2016-12-20 2023-03-23 Alfer-Aluminium Gesellschaft Mbh Beschlag und Verfahren für das Verlegen von Terrassendielen
CN111042502B (zh) * 2019-12-24 2021-06-22 广东博智林机器人有限公司 一种地板安装机构
CN111236595B (zh) * 2020-01-15 2021-06-15 广东博智林机器人有限公司 地板安装机构及具有其的地板安装机器人
CN112012458B (zh) * 2020-08-18 2021-07-20 天长市千盛建设有限公司 一种可减小空鼓的建筑施工用地面瓷砖铺贴装置

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DE202007000448U1 (de) * 2007-01-05 2007-04-12 Winden Und Maschb Gresbach Gmb Plattenheber

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102017107515B4 (de) 2017-04-07 2019-01-10 Ulrich Reif Bohr- und Anreißschablone
CN111648213A (zh) * 2020-06-16 2020-09-11 马鞍山观点信息科技有限公司 一种市政工程用地砖铺设设备

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