EP2492429B1 - Bande de crépissage ainsi qu'angles de construction dotés d'une bande de crépissage - Google Patents

Bande de crépissage ainsi qu'angles de construction dotés d'une bande de crépissage Download PDF

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Publication number
EP2492429B1
EP2492429B1 EP12155983.5A EP12155983A EP2492429B1 EP 2492429 B1 EP2492429 B1 EP 2492429B1 EP 12155983 A EP12155983 A EP 12155983A EP 2492429 B1 EP2492429 B1 EP 2492429B1
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EP
European Patent Office
Prior art keywords
extension
strip
base
component
base portion
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Application number
EP12155983.5A
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German (de)
English (en)
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EP2492429B8 (fr
EP2492429A3 (fr
EP2492429B3 (fr
EP2492429A2 (fr
Inventor
August Braun
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BRAUN, AUGUST
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Individual
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Priority to PL12155983.5T priority Critical patent/PL2492429T6/pl
Publication of EP2492429A2 publication Critical patent/EP2492429A2/fr
Publication of EP2492429A3 publication Critical patent/EP2492429A3/fr
Publication of EP2492429B1 publication Critical patent/EP2492429B1/fr
Publication of EP2492429B8 publication Critical patent/EP2492429B8/fr
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Publication of EP2492429B3 publication Critical patent/EP2492429B3/fr
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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/62Tightening or covering joints between the border of openings and the frame or between contiguous frames
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/62Tightening or covering joints between the border of openings and the frame or between contiguous frames
    • E06B2001/624Tightening or covering joints between the border of openings and the frame or between contiguous frames with parts to be embedded in the stucco layer or otherwise linked to this layer

Definitions

  • the invention relates to a plaster molding for placement on a building corner and a building corner with a plaster strip arranged thereon.
  • the EP 0 274 640 A2 shows a device for forming a connection transition between two mutually perpendicular surfaces, wherein at least a first surface is provided with rigid coverings, in particular with ceramic plates, and a second surface may be a bathtub rim, with an angle profile and an outwardly disposed, resilient elastic sealing strip.
  • a leg of the angle profile made of plastic as a sealing strip a soft set sealing lip is formed, on the outside of an adhesive profile is arranged in the longitudinal direction of the angle profile.
  • the DE 196 05 467 A1 shows a plaster molding for window sticks, doorsticks or the like at the transition to the plaster having a base wall, with which it can be fastened to the window floor, door frame or the like, one, along the bar extending ridge, which is provided forbearing relative to the base wall, wherein the The bar has a base area and a front area, and the front area has a connection to the base area, which allows a relative movement in the direction of change in distance to the base wall.
  • the EP 1 898 022 A1 shows a profile strip for connecting a component to be applied to a surface or applied plaster layer or tile layer. It is constructed in two parts. A base part is intended for attachment of the profile strip on the component. An attachment is intended for connection to the plaster layer or tile layer. The base part and the attachment are movable against each other.
  • the AT 501 438 A1 shows a soffit connection profile for plaster adjacent components with a sealing leg, which has component side fixing means, preferably a sealing strip, and is movably connected to an outer leg, which has at least one Putzfactraum.
  • the sealing leg is movably connected to the outer leg via a first tongue and groove connection, the plane of movement of the two tongue and groove connections being essentially normal to one another.
  • the DE 201 03 282 U1 shows a soffit profile for attaching a cover material for covering building openings when painting or plastering with a holder for the cover and a mounting profile strip and an outer profile strip.
  • the fastening profile strip and the outer profile strip are guided relative to each other in the longitudinal and transverse direction of the strips movable into each other.
  • the EP 1 942 237 A2 shows a two-part soffit connection profile for plaster adjacent components with a base profile, which is fastened to the component and having a movable by the base profile outer profile, which has a Einputzschenkel and a holding leg.
  • the base profile has laterally opening into a storage area slot-shaped guide which receives the holding leg of the outer profile, wherein the holding leg has a bearing element which rotatably defines the outer profile in the storage area about the profile longitudinal axis with play, as well as along the profile axis.
  • a plaster strip according to the invention is intended for placement at a transition between a component of a building, in particular a window or door frame, a window sill, a beam, a metal connection or a Lisene, and a thermal insulation and / or a plaster layer.
  • a plaster strip according to the invention comprises a base region with which the plaster strip can be fastened to the component, and a front region which is intended for plastering into the plaster layer and / or for firm connection with the thermal insulation and which has a guide connection to the base region which, if appropriate after releasing a connecting element, allows a relative movement to the base area.
  • the guide connection is designed as an extension connected to the base region and projecting from it in the direction of the front region and in a direction substantially perpendicular to the main direction of extension of the component, and as a receiving region of the front region accommodating this extension at least partially.
  • the receiving region has at its lower, the base region-facing portion at least one guide projection for the extension, so that is guided in a relative movement of the front portion to the base region in the direction of change in distance between the front portion and the base portion of the extension along a continuation wall portion of the guide projection.
  • At least a portion of the extension has a soft plastic material for relative movement of the front portion allow the base region in a direction parallel to the main direction of extension of the component.
  • An alternative, likewise inventive plaster strip which is also intended for placement at a transition between a component of a building, in particular a window or door frame, a window sill, a beam, a metal connection or a Lisene, and a thermal insulation and / or a plaster layer , comprising a base region, with which the plaster molding strip can be fastened to the component, and a front region, which is intended for plastering into the plaster layer and / or for firm connection with the thermal insulation and which has a guide connection to the base region, which, if necessary, after loosening a connecting element, a relative movement to the base area allows.
  • the guide connection is formed as an extension connected to the base region and projecting from the latter in the direction of the front region and in a direction substantially perpendicular to the main extension direction of the component, and as a receiving region of the front region receiving this extension at least partially.
  • This receiving region has at its lower, the base region facing portion at least one guide projection for the extension, so that is guided in a relative movement of the front portion to the base region in the direction of change in distance between the front portion and the base region of the extension along a continuation wall portion of the guide projection.
  • a guide projection or one of the guide projections is produced from a plastic material which is soft relative to the plastic material of the remaining plaster molding strip, in order to allow a relative movement of the front region to the base region in a direction parallel to the main extension direction of the component.
  • the direction of shear of the building component with respect to the thermal insulation and / or the plaster layer is understood to be the direction parallel to the main extension direction of the component.
  • the direction perpendicular to the main extension direction of the component is understood here the direction away from the building component to the outside.
  • the base area is attached to the component, and the front area is plastered and thus firmly connected to the plaster layer and possibly the heat insulation arranged behind it.
  • this relative movement in the shear direction is ensured by a part of the appendix having a soft plastic material and thus being flexible, and in the second planking according to the invention this relative movement is achieved in the shear direction by the resilience of a guide projection or ensures one of the guide protrusions made of soft plastic material against which the extension can move and compress this a little bit.
  • the tightness of the guide connection between the base region and the front region also remains in the case of a relative movement from the front region to the base region in the shear direction. This is an important advantage over other conceivable solutions in which the relative mobility between a base region and a front region is made possible by a corresponding clearance, that is to say in the form of a corresponding dimensioning of a distance between the two elements, whereby a certain leak naturally results.
  • a relative mobility between the front area and the base area in the direction of change in distance is ensured, so that movements between the component and the attached base area and plaster layer and attached front area in the direction of change in distance between the front area and the base area can be compensated by the plaster bar, and at the same time the tightness can be maintained.
  • the plaster strips according to the invention can thus compensate for changes in the distance between the base region and the component as well as the front region and the plaster layer in the range of several millimeters, while maintaining the required density and avoiding detachment of the base region from the component.
  • the design of the guide connection according to the invention thus provides, on the one hand, the possibility of a relative displaceability of several millimeters while at the same time maintaining a sealing function.
  • the plastering strips according to the invention also allow a relative mobility of the base area to the front area in a direction parallel to the longitudinal extent of the plastering strip.
  • first plaster molding in which at least a part of the extension has a soft plastic material, can also be a guide projection or one of the guide projections of a softer Plastic material to allow a relative movement of the front portion to the base portion in a direction parallel to the main extension direction of the component.
  • At least a portion of the extension may comprise a soft plastic material for relative movement of the front portion to the base portion in a direction parallel to the main extension direction of the base To enable component.
  • the features of the first and second scraper strips according to the invention are combined with each other, firstly at least part of the extension made of a soft plastic material and secondly a guide projection or guide protrusions made of a softer plastic material.
  • the thus enabled relative movement of the front portion to the base portion in a direction parallel to the main extension direction of the component can thus be increased and is ensured on the one hand by the bendable softer portion of the extension and on the other by an at least partially compressible soft guide projection.
  • the part of the extension which comprises a soft plastic material, moreover, a further relative movement of the front portion to the base portion in the direction Allow distance change between the front portion and the base portion by extending the extension a piece.
  • the extension has an end head, in particular a broadened end cap and / or end cap forming the extension.
  • This end head can serve as a stop for the guide projection and reliably prevent the base area from becoming detached from the front area.
  • this end head can limit the distance along which a relative mobility in the direction of change in distance between the front area and the base area is possible.
  • the extension projects away from a base wall of the base region, in particular substantially perpendicularly away.
  • the base wall of the base region extends substantially in a direction parallel to the main extension direction of the component.
  • the part of the extension made of soft plastic material is the area directly adjoining the base wall. This also serves for better integration in the extrusion.
  • the extension between the extension region directly adjoining the base wall and the end head has a widened extension wall region.
  • the guide projection (s) are arranged at a lower end of the receiving area, spaced from the lower side of the front area and thus protected.
  • the guide projections can be made relatively small and thin. By placing them at the lower end of the receiving area, spaced from the bottom, they are protected from external influences and, in cooperation with the guide extension, form a good seal against penetrating moisture.
  • two oppositely directed guide projections for the extension are provided on the lower, the base region facing portion of the receiving area. These narrow the receiving space at this point and take up the extension in between slidably. Furthermore, these guide projections may extend inward from the side walls of the receiving space.
  • the guide projection made of soft plastic material is the outer guide projection situated in the direction of the plaster / thermal insulation. It has been shown that the most common shearing motion is the one in which the plaster layer together with the front area, relative to the base area and the component, moves away from the masonry or thermal insulation. This shearing movement can be well compensated by a plaster molding according to this embodiment of the invention by the outer, soft guide projection is pressed together by the extension a piece.
  • both guide projections are made of soft plastic material to compensate for a shear movement in the opposite direction can reliably.
  • a large distance of relative mobility between the front area and the base area is provided.
  • the required tightness is maintained, and it is reliably prevented that the front portion of the base area dissolves.
  • the minimum and the maximum displacement position are spaced apart from one another by at least half the depth of the receiving region.
  • a strip-shaped protective tab is provided on which a protective film for the component can be fastened.
  • a protective film for the component can be fastened.
  • an adhesive layer may be arranged on the strip-shaped protective tab.
  • This strip-shaped protective tab can be connected via a break-off material bridge with the base region, in particular with the end of the base wall and / or with the displaceable front region, in particular with the end of the plaster finish side.
  • the front area on a plant side which is intended to rest on a thermal insulation.
  • the contact side of the front region and the heat-insulation-side end region of the base wall and, if appropriate, the heat-insulation-side end region of the adhesive strip can lie substantially in one plane.
  • the plaster molding can be arranged on at a position in front of the thermal insulation, based on the main extension direction of the building component, and a fixing of the plaster molding in a gap between the building component and thermal insulation is eliminated.
  • the plasterboard can be used in installation situations in which no or only a small gap between the building component and heat insulation is present.
  • the base region for attachment to the surface of the component can have an adhesive strip, which can be designed as a sealing strip, in particular as a PE sealing strip.
  • a protective lip in addition to the adhesive strip, in particular in the direction of the strip-shaped protective tab, a protective lip can be arranged, which is in particular made of a soft flexible material and which rests against the component in the mounted state of the plaster strip and the adhesive tape against dirt and / or moisture and / or UV radiation protects. If this protective lip is also designed such that it is also impact-proof, it can also be called a sealing lip.
  • expansion-expansion tape which is initially held in a pre-compressed state and, after appropriate release, seals against the component.
  • the front area is determined with its outside investment side to rest on a thermal insulation or on a soffit surface.
  • the receiving space is integrated in a Einputzschenkel the front area.
  • the Einputzschenkel may have a stepped course with a Putzab gleichseite opposite to a corresponding region of the base wall and forms a Putzab gleichkante.
  • the Einputzschenkel can be provided with a channel profiling for improved adhesion to the plaster.
  • a Arm istsgewebeabêt be attached to the sliding front portion, which is plastered with.
  • the base material of the plaster strip is usually a hard plastic, in particular a rigid PVC.
  • the grout can be advantageously prepared by extrusion.
  • the areas which have a soft plastic material, in particular the corresponding part of the extension, the guide projection or the guide projections and / or the protective lip can be coextruded.
  • the strip-shaped protective strip can still be provided with an adhesive layer, the base area can be provided with a corresponding sealing or adhesive strip, and a reinforcement fabric section can be attached to the front area, in particular by means of welding such as ultrasonic welding.
  • the invention also relates to a building corner with a plaster strip of the type described above, which is fixed with its sealing strip on the component, which rests on the thermal insulation or the soffit surface and the plaster leg is optionally plastered together with Arm istsgewebeabêt.
  • Fig. 1 shows a side view of a plaster strip 2 in the delivery condition.
  • the plaster strip 2 has a base body, which is composed of a base region 4 and a front region 16 which can be displaced in comparison thereto, and via a strip-shaped protective flap 36, which is connected to the base body.
  • the base region 4 comprises a base wall 6 with an adhesive strip 10 attached to its underside, which rests with its underside in the mounted state of the plaster strip 2 on the surface of the building component and is adhered thereto.
  • an expansion strip of flexible precompressed material may be provided which can be compressed and expanded again so as to compensate for changes in the distance between the underside of the base wall 6 and the surface of the building component within certain limits to be able to.
  • a protective lip 8 extends downwards.
  • This protective lip 8 is formed in particular from compared to the hard plastic material of the rest of the cleaning strip softer flexible plastic material and thus has a certain flexibility.
  • Such a flexible protective lip 8 applies in the installed state of the plaster strip 2 to the surface of the building component, and indeed at a position outside of the adhesive strip 10, and thus reliably prevents moisture can reach the adhesive strip 10.
  • the protective lip 8 can be extruded, in particular together with the base wall 6 and the guide extension 12 explained in more detail below, with the front region 16 and the strip-shaped protective strap 36.
  • a guide extension 12 protrudes upward from the base wall 6 and is formed integrally therewith.
  • This guide extension 12 comprises a widened end head 14 arranged at the top, an extension wall area of lesser wall thickness lying underneath and a continuation wall area of further reduced wall thickness forming the connection with the base wall 6.
  • the sliding front portion 16 is divided into a Einputzschenkel 26 with a stepped course, which is formed by a rear receiving space 20 and a front Wegragschenabêt and in a at the lower outer end of the receiving space 20 attaching and outwardly extending Putzab gleichseite 28.
  • Einputzschenkel 26 ist with his in the Fig. 1 right smooth surface intended for installation on a thermal insulation or a soffit surface. His in the Fig. 1 left and thus outward directed side forms the Einputzseite, which also includes the plaster finishing side 28, and this Einputzseite is provided with a channel profiling 30 to increase the surface for the adhering plaster and thus to improve the connection with the plaster.
  • This channel profiling 30 may, as in the Fig. 1 can also extend over the front of the front wall of the receiving space 20.
  • the receiving space 20 is dimensioned so that the front end of the end head 14, with completely in the receiving space 20 located guide extension 12 accordingly upon contact of the rear end surfaces of the side walls of the receiving space 20 and the rear end surface of the plaster finish side 28 at the front of the base wall 6, is positioned at a small distance to the upper wall of the receiving space 20.
  • the front portion 16 can be displaced from the base portion 4, up to a maximum displacement position at which the guide projections 22, 24 on the End head 14 are posted.
  • This allows movements between thermal insulation / plaster layer and building component in the direction Distance change between the base area 4 / associated building component on the one hand and plaster layer / thermal insulation and associated front area 16 on the other hand be compensated in a particularly advantageous manner, without losing the guaranteed by the plaster molding at the transition between the building component and thermal insulation / plaster layer sealing function.
  • the formation of cracks in the plaster layer and detachment of the adhesive strip 10 from the building component can be prevented.
  • the left-hand outer end of the plaster finishing side 28 of the front region 16 is followed by a strip-shaped protective tab 36.
  • the front of the protective tab 36 is flat and carries there an adhesive layer 40. On the adhesive layer 40 may be in the Fig. 1 Not shown protective film are glued, extending from the plaster strip 2 in the Fig. 1 to the left, that is, to the outside.
  • the strip-shaped protective tab 36 On its rear side, the strip-shaped protective tab 36 has a spacer web projecting substantially at right angles to the rear.
  • the spacer bar is so high that the protective tab 36 on the back over the Spacer web is supported on the building component such that the front of the protective tab 36 is substantially parallel to the front of the building component.
  • the outside of the base wall 6 and the outside of the plaster finish side 28 are connected by means of a break-off material bridge 38 with significantly reduced material thickness with the strip-shaped protective tab 36.
  • the extension 12 with end cap 14, which carries the base wall 6, as well as the front region-side receiving space 20 with the guide projections 22 and 24 constitute a guide connection between the base region 4 and the displaceable front region 16.
  • This guide connection also allows a relative displaceability of the base region 4 to the front region 16 in the longitudinal extension direction of the plastering strip 2.
  • the plaster strip 2 shown in the present embodiment also allows a relative movement between the base region 4 and the front region 16 in the main extension direction of the building component, ie in the shear direction.
  • This displaceability between the base region 4 and the front region 16 in the shear direction can be seen, if one imagines that the strip-shaped protection tab 36 is separated and the base portion 4, which is indeed attached to the adhesive strip 10 on the building component, so for example the window sill, opposite the plastered and thus associated with the masonry front portion 16 in the plane of the drawing Fig. 1 to the right, ie to the inside or to the left, that is to say shifted outwards.
  • Fig. 1 is an example of the immediately adjacent to the base wall 6 wall portion of the guide extension 12, which is deposited with a lighter color of a softer flexible plastic material, so that, in the event of such shearing movements, this soft extension wall region bends so that the base wall. 6 with adhesive strip 10 and the cover lip 8 inward, ie to the right or to the outside, so can move to the left and the plastered front portion 16 remains stationary, and without acting between the base portion 4 and front 16 shear forces, resulting in a detachment of the adhesive strip 10 of the building component or could lead to the formation of cracks in the plaster.
  • the soft wall region of the extension 12 additionally results in a further increase in the relative movability between the base wall 6 and the front region 16 in the direction of the change in distance between the base region 4 and the front region 16.
  • At least one of the guide projections 22 and 24 may be formed of such a soft plastic material.
  • the soft Squeeze guide projection 24 slightly so as to compensate for relative movement of the base portion 4 to the front portion 16 in the shear direction without excessive shear forces between the base portion 4 and front portion 16 occur, and accordingly, a release of the adhesive tape 10 and a formation of cracks in Plaster reliably be avoided.
  • guide projection 22 may be made of a soft plastic material so as to a relative movement of the base portion 4 to the front portion 16 in the shear direction of the base wall 6 in the Fig. 1 to be able to compensate to the left.
  • the extension 12 presses the guide projection 22 a little way together so as to compensate for the occurring relative movement in the shear direction.
  • the rear wall portion of the extension 12 and the right guide projection 24 are made of soft plastic material.
  • both a part of the extension 12 or at least one of the guide projections 22, 24 is made of soft plastic material. If both a wall region of the guide extension 12 and both guide projections 22, 24 are made of soft plastic material, particularly large shearing movements between the base wall 6 and the component and front area 16 fastened thereto can be compensated with the plaster layer and, if appropriate, thermal insulation arranged thereunder.
  • the plaster molding 2 When mounting the plaster molding 2 this is applied to the plant side 18 to the thermal insulation or the soffit surface and fixed with the adhesive strip 10 to the building component, so for example the window sill. Thereafter, the protective film is stretched over the building component and on the adhesive layer 40 fixed. The plastering layer then extends over the entire region of the displaceable front region 16 provided with channel profiling 30, ie over the entire plastered side of the plastering leg 26 and the plaster finishing side 28 up to the final plastering edge which is defined by the end of the plaster finishing side 28 is. In addition, the cleaning material also penetrates the reinforcing fabric section 34.
  • the protective film is cut off, and the break-off material bridge 38 is severed, that is broken off, for example, after which the strip-shaped protective tab 36 can be removed.
  • the displaceable front region 16 is now decoupled from the base region 4 and can be opposed by the guide connection described in detail above move the base wall 6 and thus compensate for movements between the building component and plaster layer and optionally disposed below thermal insulation, in all directions, namely in the direction of change in distance between base wall 6 and front portion 16, in the longitudinal direction of the plaster strip 2 and in the shear direction between the base wall 6 and front 16.
  • plaster molding is an exemplified plaster molding, in which two areas 4 and 16 can be moved against each other to compensate for movements between the building component and plaster layer and optionally arranged below thermal insulation.
  • the plaster strip described herein is not used in a gap between thermal insulation and building component, but rather placed with their investment side 18 on a thermal insulation or a soffit surface.
  • the plaster molding 2 can be modified in a simple manner so that a part of the Front area and part of the base wall with tape can also be inserted into a gap between thermal insulation and building component.
  • a particularly suitable production method for the plaster molding 2 is the production process of the extrusion.
  • the base portion 4 except for the cover lip 8 and the adhesive tape 10 to be attached later and the soft portion of the extension 12, the sliding front portion 16 except for the soft guide protrusions 22, 24 and the reinforcing cloth portion 34 to be attached later, and the strip-shaped ones Protective tab 36 may be extruded from a relatively hard plastic material, in particular hard PVC, with the exception of the adhesive layer 40 to be attached later, and at the same time the protective lip 8, the soft wall portion of the extension 12 and the guide projection (s) 22, 24 may be made of one or more softer ones Plastic materials are coextruded.
  • the protective lip 8, the soft wall portion of the extension 12 and the guide projection or projections 22, 24 may be coextruded from a common softer plastic material, in particular from a thermoplastic elastomer TPE.
  • TPE thermoplastic elastomer
  • an adhesive strip 10 is attached to the underside of the base wall 6, and moreover, the strip-shaped protective tab 36 can be provided with an adhesive layer 40, and a reinforcing fabric section 34 can be attached to the front region 16, in particular by means of a Ultrasonic welding, as in the Fig. 1 is shown.
  • Fig. 2 shows a schematic perspective view of a building corner 42 from above with a plastering strip 2 attached thereto.
  • a window stock 46 of which also the left section can be seen, used and secured accordingly, the type of attachment is not further interested and therefore not shown.
  • a thermal insulation board 48 is attached, which extends with its right end to the window frame 46.
  • the right-facing so in the direction opposite wall opening side facing end surface of the thermal insulation board 48 is plastered, in which case the plaster layer is not applied, so that the plaster strip 2 remains visible.
  • the plaster strip 2 is now attached by being glued with its adhesive strip on the outside of the window stock 46 and with their in Fig. 2 on the left side of the plant contact against the thermal insulation board 48.
  • the strip-shaped protective tab to which the protective film is attached to cover the window area and a portion of the window stock, and thus to provide protection against soiling and damage during plastering.
  • the movement in the x-direction represents the relative movement of the Front region to the base region in the direction parallel to the main direction of extension of the window sash with window and thus a shear in the transverse direction.
  • the movement y is the relative movement to the longitudinal direction of the cleaning strip 2, ie a shear in the longitudinal direction.
  • the movement in the direction z is the relative movement in the direction of change in distance between the window stock 46 and the thermal insulation 48 Fig. 2 shown position of the window stock 46 and the thermal insulation 48 to move toward each other and the gap 50 between them reduced accordingly, this relative movement is compensated by a compression of the adhesive strip.
  • the plastering strip 2 compensates for this expansion or suction movement through its guide connection, as with reference to FIG Fig. 1 has been described in detail.
  • the plaster strip 2 thus compensates for relative movements in all three directions described x, y and z and thus seals the transition between the window frame 46 and the thermal insulation 48 and the gap 50 therebetween reliably and permanently.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • Acyclic And Carbocyclic Compounds In Medicinal Compositions (AREA)
  • Door And Window Frames Mounted To Openings (AREA)

Claims (15)

  1. Élément de jonction pour maçonnerie entre un élément de construction réalisé sous la forme d'un encadrement de fenêtre ou de porte, sous la forme d'un rebord de fenêtre, sous la forme d'une poutre, sous la forme d'une liaison métallique ou sous la forme d'un pilastre d'un bâtiment (46) et une isolation thermique (48) et/ou une couche de crépi, dans lequel est placée une baguette pour crépi (2), la baguette pour crépi (2) présentant ce qui suit :
    une zone de base (4) avec laquelle la baguette pour crépi (2) est fixée à l'élément de construction (46) ; et
    une zone frontale (16) qui est incorporée dans la couche de crépi et/ou qui est liée à demeure à l'isolation thermique et qui possède une liaison de guidage avec la zone de base (4), qui permet, le cas échéant après le retrait d'un élément de liaison (38), un mouvement relatif en direction de la zone de base (4) ;
    dans lequel la liaison de guidage est réalisée sous la forme d'un prolongement (12) relié à la zone de base (4) et faisant saillie par rapport à cette dernière dans la direction de la zone frontale et dans une direction essentiellement perpendiculaire à la direction d'extension principale de l'élément de construction et sous la forme d'une zone de réception (20) de la zone frontale (16) dans laquelle vient se loger au moins en partie ce prolongement (12) ; et
    dans lequel, cette zone de réception (20) présente, dans son tronçon inférieur qui se tourne vers la zone de base (4), au moins une saillie de guidage (22, 24) pour le prolongement (12), d'une manière telle que, lors d'un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction de modification de la distance entre la zone frontale (16) et la zone de base (4), le prolongement (12) est guidé le long d'une zone de paroi du prolongement, contre la saillie de guidage (22, 24) ;
    caractérisé en ce que
    au moins une partie du prolongement (12) présente une matière synthétique souple pour permettre un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction parallèle à la direction d'extension principale de l'élément de construction (46).
  2. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon la revendication 1, dans lequel au moins une saillie de guidage (24) ou au moins une des saillies de guidage (24) est réalisée à partir d'une matière synthétique plus souple pour permettre un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction parallèle à la direction d'extension principale de l'élément de construction (46).
  3. Élément de jonction pour maçonnerie entre un élément de construction réalisé sous la forme d'un encadrement de fenêtre ou de porte, sous la forme d'un rebord de fenêtre, sous la forme d'une poutre, sous la forme d'une liaison métallique ou sous la forme d'un pilastre d'un bâtiment (46) et une isolation thermique (48) et/ou une couche de crépi, dans lequel est placée une baguette pour crépi (2), la baguette pour crépi (2) présentant ce qui suit :
    une zone de base (4) avec laquelle la baguette pour crépi (2) est fixée à l'élément de construction (46) ; et
    une zone frontale (16) qui est incorporée dans la couche de crépi et/ou qui est liée à demeure à l'isolation thermique et qui possède une liaison de guidage avec la zone de base (4), qui permet, le cas échéant après le retrait d'un élément de liaison (38), un mouvement relatif en direction de la zone de base (4) ;
    dans lequel la liaison de guidage est réalisée sous la forme d'un prolongement (12) relié à la zone de base (4) et faisant saillie par rapport à cette dernière dans la direction de la zone frontale et dans une direction essentiellement perpendiculaire à la direction d'extension principale de l'élément de construction et sous la forme d'une zone de réception (20) de la zone frontale (16) dans laquelle vient se loger au moins en partie ce prolongement (12) ; et
    dans lequel, cette zone de réception (20) présente, dans son tronçon inférieur qui se tourne vers la zone de base (4), au moins une saillie de guidage (22, 24) pour le prolongement (12), d'une manière telle que, lors d'un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction de modification de la distance entre la zone frontale (16) et la zone de base (4), le prolongement (12) est guidé le long d'une zone de paroi du prolongement, contre la saillie de guidage (22, 24) ;
    caractérisé en ce que
    au moins une saillie de guidage (24) ou au moins une des saillies de guidage (24) est réalisée à partir d'une matière synthétique plus souple pour permettre un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction parallèle à la direction d'extension principale de l'élément de construction (46).
  4. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon la revendication 3, dans lequel au moins une partie du prolongement (12) présente une matière synthétique souple pour permettre un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction parallèle à la direction d'extension principale de l'élément de construction (46).
  5. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications 1, 2 ou 4, dans lequel la partie du prolongement (12) constituée d'une matière synthétique souple permet un mouvement relatif de la zone frontale (16) en direction de la zone de base (4) dans une direction de modification de la distance entre la zone frontale (16) et la zone de base (4).
  6. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, dans lequel le prolongement (12) présente une tête terminale (14), en particulier une tête terminale élargie (14) et/ou qui forme la fin du prolongement (12).
  7. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, dans lequel le prolongement (12) fait saillie par rapport à une paroi de base (6) de la zone de base (4) et/ou dans lequel la paroi de base (6) de la zone de base (4) s'étend essentiellement dans une direction parallèle à la direction d'extension principale de l'élément de construction (46).
  8. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon la revendication 7, dans lequel la partie du prolongement (12) constituée d'une matière synthétique souple représente la zone qui vient se disposer directement contre la paroi de base (6) et/ou dans lequel le prolongement (12) présente, entre la zone de paroi de prolongement qui vient se disposer directement contre la paroi de base (6) et la tête terminale (14), une zone de paroi de prolongement élargie.
  9. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon les revendications 6 à 8, dans lequel, entre la zone frontale (16) et la zone de base (4), un mouvement relatif est possible dans une direction de modification de la distance entre une position de déplacement minimale dans laquelle la tête terminale (14) vient s'insérer profondément dans la zone de réception (20) et une position de déplacement maximale dans laquelle la tête terminale (14) vient se disposer contre au moins une des saillies de guidage (22, 24).
  10. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon la revendication 9, dans lequel la distance entre la position de déplacement minimale et la position de déplacement maximale correspond au moins à la moitié de la profondeur de la zone de réception (20).
  11. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, dans lequel la saillie de guidage (22, 24) ou les saillies de guidage (22, 24) est (sont) disposée(s) à une extrémité inférieure de la zone de réception (20) à distance du côté inférieur de la zone frontale (16).
  12. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, dans lequel, contre le tronçon inférieur de la zone de réception (20), qui se tourne vers la zone de base (4), on prévoit deux saillies de guidage (22, 24) pour le prolongement (12), orientées l'une vers l'autre, qui rétrécissent l'espace de réception (20) à cet endroit et entre lesquelles vient s'insérer le prolongement (12).
  13. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon la revendication 12, dans lequel, en ce qui concerne la saillie de guidage constituée d'une matière synthétique souple, il s'agit de la saillie de guidage externe (24) posée dans la direction du crépi/de l'isolation thermique.
  14. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, dans lequel la zone frontale (16) présente un côté d'appui (18) qui est destiné à venir s'appuyer contre une isolation thermique, et dans lequel le côté d'appui (18) de la zone frontale (16) et la zone terminale de la paroi de base (6), du côté de l'isolation thermique, et le cas échéant la zone terminale de la bande adhésive (10), du côté de l'isolation thermique, sont situés essentiellement dans un seul plan, pour un agencement de la languette pour crépi (2) à un endroit qui est situé devant l'isolation thermique, par rapport à la direction d'extension principale de l'élément de construction (46) du bâtiment.
  15. Élément de jonction pour maçonnerie comprenant une baguette pour crépi (2) selon l'une quelconque des revendications précédentes, qui est fixé avec sa bande adhésive (10) contre l'élément de construction (46), qui vient se disposer avec le côté d'appui (18) et/ou avec la zone terminale de la paroi de base (6), du côté de l'isolation thermique et/ou avec la zone terminale de la bande adhésive (10), du côté de l'isolation thermique, contre l'isolation thermique (48), et dans lequel du crépi vient se loger dans la branche de réception de crépi (26), le cas échéant de manière conjointe avec un tronçon de tissu d'armature (34).
EP12155983.5A 2011-02-25 2012-02-17 Bande de crépissage ainsi qu'angles de construction dotés d'une bande de crépissage Active EP2492429B3 (fr)

Priority Applications (1)

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PL12155983.5T PL2492429T6 (pl) 2011-02-25 2012-02-17 Listwa natynkowa oraz narożnik budowli z listwą natynkową

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DE102011004764A DE102011004764A1 (de) 2011-02-25 2011-02-25 Anputzleiste sowie Bauwerksecke mit Anputzleiste

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EP2492429A2 EP2492429A2 (fr) 2012-08-29
EP2492429A3 EP2492429A3 (fr) 2015-03-25
EP2492429B1 true EP2492429B1 (fr) 2016-12-28
EP2492429B8 EP2492429B8 (fr) 2017-03-29
EP2492429B3 EP2492429B3 (fr) 2024-02-21

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EP (1) EP2492429B3 (fr)
DE (1) DE102011004764A1 (fr)
HU (1) HUE033505T2 (fr)
PL (1) PL2492429T6 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4092239A1 (fr) * 2021-05-17 2022-11-23 STO SE & Co. KGaA Baguette de crépi pour un système composite d'isolation thermique, système composite d'isolation thermique et procédé de fabrication d'un système composite d'isolation thermique
EP4446551A1 (fr) * 2023-04-11 2024-10-16 K-Uni Kunststoffproduktions- und Handels-GmbH Profilé de raccordement pour composants adjacents sur un enduit

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DE202013104371U1 (de) 2013-09-26 2013-10-09 3Ks Profile Gmbh Profilanschlusselement
DE102020100251A1 (de) * 2020-01-08 2021-07-08 August Braun Anputzleiste sowie Gebäude-Übergang mit Anputzleiste

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DE3700563A1 (de) * 1987-01-10 1988-09-22 Werner Schlueter Vorrichtung zur ausbildung eines anschlussueberganges zwischen zwei rechtwinklig aneinandergrenzenden flaechen
DE19605467B4 (de) * 1996-02-14 2006-05-04 August Braun Anputzleiste für Fensterstöcke, Türstöcke oder dergleichen am Übergang zu Putz
DE20103282U1 (de) * 2001-02-24 2001-05-31 Wörner, Eckard, 72805 Lichtenstein Laibungsprofil zur Befestigung eines Abdeckmaterials an einer Gebäudeöffnung
AT501438B1 (de) * 2004-11-25 2009-06-15 Peter Kassmannhuber Laibungsanschlussprofil für an putz angrenzende bauteile
AT501439B1 (de) * 2004-12-29 2009-07-15 Peter Kassmannhuber Laibungsanschlussprofil für an putz und an eine dämmschicht angrenzende bauteile
DE102006038695A1 (de) * 2006-08-18 2008-02-21 Richard Malcher Profilleiste zur Aufnahme von Bewegungen
AT504688B1 (de) * 2006-12-28 2010-02-15 Peter Kassmannhuber Zweiteiliges laibungsanschlussprofil
DE102007009945A1 (de) * 2007-03-01 2008-09-04 Tremco Illbruck Produktion Gmbh Anputzleiste für Blendrahmen

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4092239A1 (fr) * 2021-05-17 2022-11-23 STO SE & Co. KGaA Baguette de crépi pour un système composite d'isolation thermique, système composite d'isolation thermique et procédé de fabrication d'un système composite d'isolation thermique
EP4446551A1 (fr) * 2023-04-11 2024-10-16 K-Uni Kunststoffproduktions- und Handels-GmbH Profilé de raccordement pour composants adjacents sur un enduit

Also Published As

Publication number Publication date
EP2492429B8 (fr) 2017-03-29
HUE033505T2 (en) 2017-12-28
PL2492429T3 (pl) 2017-06-30
EP2492429A3 (fr) 2015-03-25
EP2492429B3 (fr) 2024-02-21
DE102011004764A1 (de) 2012-08-30
EP2492429A2 (fr) 2012-08-29
PL2492429T6 (pl) 2024-05-13

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