EP2708674A2 - Bande de crépissage, rail de terminaison et baguette d'angle pour enduit - Google Patents

Bande de crépissage, rail de terminaison et baguette d'angle pour enduit Download PDF

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Publication number
EP2708674A2
EP2708674A2 EP13165040.0A EP13165040A EP2708674A2 EP 2708674 A2 EP2708674 A2 EP 2708674A2 EP 13165040 A EP13165040 A EP 13165040A EP 2708674 A2 EP2708674 A2 EP 2708674A2
Authority
EP
European Patent Office
Prior art keywords
plaster
strip
area
plastering
leg
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.)
Granted
Application number
EP13165040.0A
Other languages
German (de)
English (en)
Other versions
EP2708674B1 (fr
EP2708674A3 (fr
Inventor
August Braun
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, AUGUST
Original Assignee
Individual
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Filing date
Publication date
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Application filed by Individual filed Critical Individual
Priority to PL13165040T priority Critical patent/PL2708674T3/pl
Publication of EP2708674A2 publication Critical patent/EP2708674A2/fr
Publication of EP2708674A3 publication Critical patent/EP2708674A3/fr
Application granted granted Critical
Publication of EP2708674B1 publication Critical patent/EP2708674B1/fr
Revoked legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F13/068Edge-protecting borders combined with mesh material or the like to allow plaster to bond therewith
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • 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
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F2013/063Edge-protecting borders for corners
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F2013/065Edge-protecting borders for lower edges of outer insulation layers
    • 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, a finishing rail and a plaster molding.
  • plaster shrinks slightly during drying since window and door sills are exposed to vibrations, for example by violent slamming of the windows or doors, and since such building corners are also exposed to high temperature fluctuations, there is a risk that a crack or gap between the plaster and forms the window or door frame.
  • moisture can then penetrate, which permanently damages the window floor, the door frame or the plaster or the insulation, for example leads to crumbling of the plaster.
  • plaster moldings are often provided at the transition between the window or door frame to the plaster, which decouple the window or door frame from the plaster and at the same time provide a seal therebetween.
  • a plaster strip is for example from the EP 0 875 641 A2 known.
  • thermal insulation which consist for example of rigid foam or fiberboard.
  • Thermal insulation on building walls usually has a lower end just above the surface of the soil or a soil attachment approaching the building wall.
  • the lower end of the thermal insulation is a critical area because moisture can penetrate from underneath between the building wall and the thermal insulation and between the thermal insulation and the outer plaster, which can lead to damage up to crumbling plaster. Therefore, in the lower end of the thermal insulation often end rails are used, which are attached with a first leg to the building and on the second leg, the insulation rests with its end face. Because the Outside of such insulation panels is often provided with external plaster, such a finishing rail a reliable plaster finish must be guaranteed to prevent cracks in the plaster and even crumbling of the plaster.
  • a termination bar is for example from the DE 195 39 526 A1 known.
  • plaster corner strips are often applied, which serve to ensure a reliable completion of the plaster layer on the first side of the building corner and a reliable conclusion for the plaster layer on the second side of the building corner and to avoid the crumbling of plaster on the building corner .
  • a plaster cornice is for example from the DE 100 38 279 A1 known.
  • plaster strips, finishing rails and plaster corner strips has in common that essential components of them are often made by insulation for insulation reasons by extrusion.
  • These plaster strips, finishing rails and plaster corner strips are usually extruded from hard plastic, especially PVC.
  • All such plaster strips, finishing rails and plaster corner strips is still common that they are available on the site in fixed lengths and that it will be cut off at the construction site, the required plaster strips, finishing rails and plaster corner strips in the desired length. This creates waste, usually several short pieces that need to be disposed of.
  • a plaster strip according to the invention for placement at a transition between a first component of a building, in particular a window or door frame, a window sill, a beam, a metal connection or a Lisene, and a second component of a building, in particular a thermal insulation and / or a plaster layer comprises a fixing area, with which the plaster strip can be fastened to at least one component of the transition; and a plastering area for plastering into the plaster layer and / or intended for firm connection with the thermal insulation.
  • the fixing area and the plastering area are formed as a common extrusion part or as separate extrusion parts and have a material whose main component is a renewable raw material.
  • a finishing rail according to the invention for structural heat insulation or building sound insulation comprises an angle rail whose first leg is provided for attachment to the structure and the second leg for abutment against a termination end side of the insulation; and an outer bar attached to the end portion of the second leg of the angle rail and having an outer leg for engagement with the outside of the insulation.
  • the angle rail and the outer bar are formed as a common extrusion or as separate extrusion parts.
  • the angle rail and / or the outer bar have a material whose main component is a renewable raw material.
  • a trim corner strip according to the invention for arrangement on a vertical or a horizontal building corner, in particular a building corner provided with thermal insulation comprises a first leg for engagement with the building on the first side of the building corner; and a second leg for engagement with the structure on the second side of the building corner.
  • the first and second legs are formed as a common extrusion or as separate extrusions.
  • the first and / or the second leg comprise a material whose main component is a renewable raw material.
  • the plaster strip according to the invention ensures a permanently tight transition to a building component.
  • the end rail according to the invention ensures a permanent and secure closure for building thermal insulation or structural sound insulation.
  • a permanently dimensionally stable corner is ensured by a plaster corner strip according to the invention.
  • the resources available in nature can be used, and a considerable amount of petrochemical or similar materials, which are used for the production of such strips / rails made of hard plastic could be replaced by a renewable resource. This protects the resources and guarantees an environmentally friendly production.
  • renewable raw materials can be extruded with the addition of at least one further component which ensures cohesion and, after extrusion, are well suited to the requirements of the plaster molding according to the invention, the finishing rail according to the invention or the plaster molding of the type described above.
  • the disposal is significantly simplified due to the main component of a renewable resource , Therefore, on the construction site resulting waste from such strips / rails, usually several short pieces, can be disposed of more easily and decomposes after a manageable period in the ground, which makes the bar / rail according to the invention also in terms of waste disposal significantly more environmentally friendly.
  • the fixing area and the plastering area are integrally formed.
  • both the fixing area and the grooming area comprise a material whose main constituent is a renewable raw material.
  • Such a plaster molding seals the building transition reliably and is relatively simple.
  • the fixing region has an adhesive strip for attachment to the first building component.
  • the plaster strip is reliably connected with its fixing area with the building component.
  • adhesive strip also includes a strip of adhesive applied.
  • the design can be such that the adhesive strip, which adjoins the remaining plaster strip on one side and can be adhered to the first building component on the other side, already constitutes the fixing region as such. It is emphasized, however, that there are alternative ways of forming the fixing area, in particular screwing the plaster molding on one of the two building parts or pinching in a gap between the first component of the building and the thermal insulation or fixing or fixing to the insulation.
  • the plastering area is provided with a groove profile for improved adhesion to the plaster.
  • the surface of the plastering area, with which the plaster enters into a bond increases, and thus improves the adhesion.
  • a reinforcement fabric section is attached to the plastering area, which is intended for plastering.
  • the Arm michsgewebeabêt can be formed for example in the form of a coated with alkali-resistant material fiberglass mesh. After applying the plaster, the Arm michsgewebeabêt is below the plaster surface, in most cases, he is in turn attached by means of filler to the ground.
  • the reinforcing fabric section improves the adhesion of the plaster to the substrate and ensures the permanent crack-free of the plaster.
  • a detachable or breakable strip-shaped protective strip is provided.
  • a film can be attached, which spans the window frame and the window or the door frame and the door, or the like, and protects against dirt and damage during the plastering.
  • this protective tab is removed or disposed of by separating or canceling the rest of the cleaning strip, which is when the Protective tab also has a material whose main ingredient is a renewable resource, especially environmentally friendly.
  • the fixing area and the plastering area are formed separately from one another in such a way that a relative movement between the fixing area and the plastering area is made possible by separating a strip-shaped protective strip by means of a guide connection.
  • the cleaning strip is formed in two parts, with one part being formed by the fixing area and the other part by the plastering area.
  • the fixing and the plastering area are connected to one another via a flexible material section, which is also referred to as a loop, which permits relative movement between the fixing area and the plastering area.
  • the grout bar material movements for example due to temperature fluctuations between the first and the second building component compensate, by a movement, such as an elongation of the flexible material portion.
  • the sealing function of the plaster molding is maintained without the plaster being damaged.
  • this has an expansion strip which is designed so that it - possibly after releasing a Einperr Schemes - expands in the direction of one of the two building components towards and applies it, so as a seal between the two To ensure components.
  • the outer strip is glued to the angle rail or attached to the angle rail.
  • Both types of connection can be z. B. perform easily at the site and result in a lasting, even in adverse weather conditions stable connection.
  • the outer bar has a closure end-side leg, which is provided for abutment against a closure end face of the insulation. With such a front-end leg, the outer bar can be attached to the insulation easily and accurately positioned.
  • the angle rail and the outer strip are connected to one another by means of an adhesive strip, in particular by means of an adhesive strip provided between the second leg of the angle rail and the end-face leg of the outer strip.
  • This adhesive tape which also includes a quantity of adhesive applied, reliably and permanently bonds the angle rail and the outer panel, providing a good seal therebetween.
  • a Arm michsgewebeabêt for applied to the insulation plaster is attached to the outer bar, which is intended for plastering.
  • the Arm michsgewebeabites can be formed for example in the form of a coated with alkali-resistant material fiberglass mesh. After applying the plaster, the Arm michsgewebeabites is below the plaster surface, in most cases, he is in turn attached by means of filler to the ground.
  • the reinforcing fabric section improves the adhesion of the plaster to the substrate and ensures the permanent crack-free of the plaster.
  • the outer rail has a further leg, which forms a drip nose for water.
  • This further leg can protrude, for example, in the installation situation at the lower end of the insulation down and reduce the proportion of water that passes from the outside in the direction of thermal insulation and towards the building. This keeps the angle rail drier and also prevents, in the case that the outer bar is glued to the angle rail, that too much water gets to the adhesive strip.
  • a flexible transitional area is provided between the outer leg and the closing end-side leg of the outer bar. This can be a change in position between the Allow outer leg and the final front-side leg in a certain angular range, so that the end rail according to the invention can be used for different installation situations.
  • the transition region has an insertion region in the transverse direction for a plug connector.
  • a connector can be transversely inserted into the transition region, and the terminus can be connected and aligned with a transversely disposed terminus.
  • the adjacently arranged end rail is then preferably also provided a plug-in area in the transverse direction, in which the connector can be inserted.
  • the second leg of the angle rail forms a step-shaped profile, which is arranged in particular in its outer end region.
  • the outer end region may be at a height level below the height level of the remaining portion of the second leg of the angle rail.
  • the outer bar is often glued or plugged. It can thus be achieved that the upper side of the second leg of the angle rail and the upper side of the end front side leg of the outer strip are at the same height level, which allows a favorable connection to the heat insulation arranged above it.
  • a plastering area is formed by at least one of the legs. This facilitates the plastering of the plaster molding.
  • a reinforcing fabric section is fixed in at least one of the legs, in particular in both legs, on the side facing away from the plant side, which is intended for plastering.
  • the Arm michsgewebeabites can be formed for example in the form of a coated with alkali-resistant material fiberglass mesh. After applying the plaster, the Arm michsgewebeabêt is below the plaster surface, in most cases, he is in turn attached by means of filler to the ground.
  • the reinforcing fabric section improves the adhesion of the plaster to the substrate and ensures the permanent crack-free of the plaster.
  • a particularly flexible transition region between the first and the second leg is provided. This can allow a change in position between the two legs in a certain angular range, so that the plaster corner strip according to the invention can be used for different installation situations.
  • the transition region is provided with a groove-like profiling at least on the side facing a leg to be armed.
  • the transition region has an insertion region in the transverse direction for a connector.
  • a connector can be inserted in the transverse direction in the transition area, and the plaster molding can be connected to an adjacent, or above / below arranged plaster corner molding.
  • the adjacently arranged plaster corner strip is then preferably also provided an insertion in the transverse direction, in which the connector can be inserted.
  • the main component of the material consists of rice hulls or fibers or flour made of wood or fibers or flour thereof.
  • a mixture of the ingredients rice hulls, rock salts and mineral oil has been found.
  • Such a material absorbs little to no water, only the surface is wetted and is very resistant. In particular, it can be processed arbitrarily, for example sawed, cut, drilled, ground, painted and oiled. It does not crack or splinter and waste is completely recyclable.
  • natural fibers such as flax, hemp or other fiber plants have been proven.
  • Lignin which is a polymer, has proven to be a particularly suitable carrier material.
  • Another suitable material is bio-polyethylene.
  • Another suitable material is a mixture of co-polyester and polylactic acid PLA, which may contain a large amount of natural renewable resource.
  • the fixing area and / or the plastering area of the plastering strip according to the invention of the type described above, the angle rail and / or the outer strip of the inventive end rail of the type described above and the first and / or second leg of the plaster corner strip according to the invention of the above described type consist of a material mentioned above. All these materials have in common that they can be extruded, what they for the production of the fixing area and / or Anputz Schemes the plaster strip according to the invention of the type described above, the angle rail and / or the Au- ⁇ enance the inventive end rail of the type described above and first and / or the second leg of the plaster corner strip according to the invention of the type described above makes it suitable, since they are produced by extrusion.
  • the first plaster strip 2, the second plaster strip 26, the end rail 68 and the plaster corner strip 96 are described below representative of any plaster strips, finishing rails and plaster corner strips, in which at least one main area has been made by extrusion from a material whose Main component is a renewable raw material, and thus represents an extrusion of a material whose main component is a renewable raw material.
  • the extrusions are inexpensive to manufacture and are characterized by a consistent over their entire length profile cross-section.
  • Fig. 1 and 2 show the plaster strips 2 and 26 respectively in the delivery state, in which the strip-shaped protective strap has not yet been separated.
  • the first plastering strip 2 illustrated by way of example comprises a fixing area 4 and a plastering area 10 with a reinforcing fabric section 18 and a strip-like protective strip 22.
  • the fixing area 4 and the plastering area 10 are integrally formed with each other, so that the present plaster strip 2 can also be referred to as a one-piece plaster strip 2.
  • the strip-shaped protective tab 22 is connected by means of a break-off material bridge 24 with a cleaning end side 14 of the plastering area 10.
  • the strip-shaped protective flap 22 still has a spacer web which, in the assembled state of the plastering strip 2, can rest on the outside of a first building component.
  • the fixing area 4, the plastering area 10 and the strip-shaped protection strip 22 have been jointly produced by extrusion from a material whose main constituent is a renewable raw material, which will be described in more detail below.
  • the fixing area 4 is presently of a in Fig. 1 horizontally extending base wall 6 and an adhesive strip 8 fixed thereto, which is intended for attachment to a first building component, such as a window or door frame.
  • the first building component, on which the adhesive strip 8 is applied can also be designed as a window sill, as a beam, as a metal connection, or as a lisse.
  • the plastering area 12 is formed by the outside of the leg support 12, by the cleaning end side 14 directed away from the window or door frame, and by the reinforcing fabric section 18.
  • the first plaster strip 2 has a stepped course, the underside of the plaster end 14 is based on the installation situation, closer to the window / door frame as the bottom of the base wall. 6
  • the Arm istsgewebeabites 18 is presently connected to the Wegragschenkel 12 by means of a compound, which is exemplified here as Ultraschallversch spaung 20, respectively.
  • the cleaning end side 14 directed away from the window or door frame and the surface of the support leg 12 directed by the thermal insulation in the direction of the opposite window or door frame side are provided with a channel profiling 16 for improving the adhesion of the plaster.
  • the plastering strip 2 is first cut to the appropriate length predetermined by the dimensions of the window or door opening and then attached to the transition between the window / door frame and thermal insulation by placing the plastering strip 2 with its fixing region 4 in the gap between window and door frames. or door frame and insulation is inserted so that the plaster strip 2 rests with the top of its base wall 6 on the gap-side front side of the insulation, rests with the back of her Wegragschenkels 12 on the outside of the insulation and the adhesive strip 8 on the surface of the window or door frame is glued.
  • the plastering takes place.
  • the plastering area 10 applied to a plaster removal edge plaster layer, which is essentially formed by the end of Putzendseite 14, to which the strip-shaped protective flap 22 connects .
  • the strip-shaped protective flap 22 is broken off after the plastering and removed.
  • the adhesive strip 8 may have a certain expansion and shrinkage ability to compensate for changes in the distance between the bottom of the base wall 6 and the surface of the window or door frame within certain limits, which ensures a good seal under changing conditions.
  • the element 8 can also be designed as an expansion strip with a certain expansion and shrinkability, without the need for gluing on its side facing the window or door frame. In this case, an insertion and, as it were, a bracing in the gap or attachment to the insulation takes place. As a result, distance changes between the bottom of the base wall 6 and the surface of the window or door frame can also be compensated within certain limits, which ensures a good seal under changing conditions.
  • second plastering strip 26 like the first plastering strip 2, has a fixing region 28 which can be fastened with a section to a first building component, in particular a window or door frame, via a plastering area 40, which in the present case is designed as a displaceable front area 40, to which a reinforcing fabric section 64 is attached and which is intended together with the Arm michsgewebeabêt 64 for embedding in a plaster layer, as well as a strip-shaped protective tab 26th
  • the adhesive layer applied on the outside is now recognizable, it is connected via a break-off material bridge 62 both to the fixing area 28 and to the plastering area 40, otherwise it aligns with the strip-shaped protective flap 22 Fig. 1 and will not be explained again below.
  • the second plaster strip 26 is now formed in two parts, with a Festlegungs Council 28 and a displaceable for this purpose grooming area 40th
  • the fixing region 28 comprises a base wall 30 with an adhesive strip 32 attached to its underside, which sealingly bears against the window or door frame with its underside in the mounted state of the plastering strip 26 and is optionally adhesively bonded thereto.
  • a protective lip 34 extends downwards.
  • This protective lip may be formed of a softer flexible plastic material and thus have a certain flexibility.
  • Such a flexible protective lip 34 applies in the installed state of the second plaster strip 26 to the surface of the window or door frame, namely at a position outside of the adhesive strip 32 and thus reliably prevents moisture can reach the adhesive strip 32.
  • the protective lip 34 can be coextruded, in particular together with the base wall 30 and the guide extension 36, which will be explained in more detail below, with the plastering area 40 and the strip-shaped protective strip 60.
  • a guide extension 36 protrudes upward from the base wall 30 and is formed integrally therewith.
  • This guide extension 36 comprises an uppermost widened end head 38 arranged at the top, an extension wall area of lesser wall thickness underneath and a continuation wall area of further reduced wall thickness forming the connection to the base wall 30.
  • the displaceable plastering area 40 is divided into an uppermost arranged Wegragschenkel 36, an adjoining receiving space 42 with the inside thermal insulation plant side 48 and outer plaster side 54, wherein the Wegragschenkel 46 has an inner plaster side 50 and an outer plaster side 54, and in one at the bottom outer end of the receiving space 42 attaching and outwardly extending Putzendseite 56th
  • the receiving space 42 is dimensioned such that the front end of the end head 38 with completely in the receiving space 42önsfortsatz 36 and thus upon contact of the rear end surface of the side walls of the receiving space 42 at the front of the base wall 30 at a small distance from the upper wall of the receiving space 42nd is positioned.
  • opposite guide projections 44 At the lower end of the inner sides of the receiving space 42, opposite guide projections 44 abut each other and extend so far inwardly, with respect to the symmetry axis of the receiving space 42, that they receive and guide the guide projection 36 therebetween.
  • the guide projections 44 engage in the lowermost region of the guide projection 36 with reduced Wall thickness and hold this guide extension 36 and thus the entire Feststoffs Society 36 with respect to the displaceable Anputz Scheme 40 in the minimum displacement position.
  • the guide projections 44 can consist of a plastic material which is softer than the material of the displaceable plastering area 40.
  • the grooming area 40 can be displaced relative to the fixing area 28, up to a maximum displacement position, in which the guide projections 44 abut against the end head 38. As a result, movements between thermal insulation / plaster layer and window / door frame can be compensated in a particularly advantageous manner.
  • the upper Wegragschenkel 46 extends upward.
  • the inner plaster side 50 and the outer plaster side 52 of the Wegragschenkels 46, the outer plaster side 54 of the outer wall of the receiving space 42 and the Putzendseite 56 are provided with a channel profiling 58 to increase the surface to which the plaster adheres, and thus a to create a better connection with the plaster.
  • This channel profiling 58 may, as in Fig. 2 can also extend over the front wall of the receiving space 42.
  • the plaster layer extends either over the entire, provided with channel profiling 58 area of the plastering area 40 or, if filler has been applied, on the outer plaster sides 52, 54 and the cleaning end side 56 to Putzendkante defined by the end of Putzendseite 56 is.
  • the strip-shaped protective strip 60 can be removed by severing the break-off material bridges 62, for example by hand, optionally cutting the ends.
  • the displaceable plaster area 40 is now decoupled from the fastening area 28 and can be replaced by the construction with guide extension 36, end cap 38, move and receiving space 42 with guide projections 44 relative to the base wall 30, and thus compensate for movements between thermal insulation and plaster layer and window / door frame.
  • the second plastering strip 26 is a two-part plastering strip described by way of example in which two regions 28 and 40 can be displaced relative to one another in order to be able to compensate for movements between thermal insulation / plaster layer and window / door frame.
  • the invention also covers other two-part plaster moldings, in particular also two-part plaster moldings which are at least partially inserted into a gap between the thermal insulation and the window / door frame.
  • end rail 68 includes an angle rail 70 and an outer strip 80 connected thereto.
  • the angle rail 70 has a first leg 72, which is provided for engagement with a building, not shown here, for example, on a wall, and which can be attached thereto, for example, by bolted bolts or screws, and a second, substantially horizontally extending Leg 74, which attaches to the underside of the first leg 72, from there continues horizontally outwards and at its end remote from the wall has a step 76 down.
  • the outer strip 80 furthermore has a substantially horizontally extending end-side limb 82 and an upwardly projecting outer limb 84 connected therewith via a transition region 76.
  • the end-side limb 82 is above the step 76 of the second limb 74 of the angle rail 70 arranged and adhered by means of a foam adhesive tape or compressed sealing tape 78 on the recessed down Jardinnend Scheme 76.
  • the top of the second leg 74 (except for the portion of the step 76) and the top of the end face leg 82 in the present example form a plane.
  • a reinforcing fabric portion 92 is connected by means of suitable fasteners, which in the present case are designed as ultrasonic welds 94.
  • the transition region 86 between the end-side leg 82 and outer leg 84 is rounded in the present embodiment and describes approximately a half or two-thirds circle with an opening obliquely inwardly above, so that here in the transverse direction a plug-in area is formed for a connector.
  • a groove profiling 104 is formed in each case, and the right outer wall region of the transitional region 86 forms a plaster removal edge or a cleaning end side.
  • a drip lip 90 is provided which extends obliquely inwardly from the right lower end portion of the transition portion 86 downward. Such a drip lip lip 90 ensures that the underside of the angle rail 70 remains dry and that the proportion of water that can reach the adhesive strip 78 is minimized.
  • angle rail 70 When using the end rail 68, one normally operates such that, optionally after cutting the end rail 68 to the appropriate predetermined length, first the angle rail 70 is secured to the building wall, usually a plurality of angle rails 70 are fastened one after the other along the length of the wall can be used, wherein at the transitions with overlap can be worked or where at the junctions connectors which engage in the transition regions 86, each connecting two adjacent end rails 68 together.
  • the outer panel 80 is glued, usually several, one after the other along the length of the angle rails 70. Then the thermal insulation is introduced, in such a way that they lie with their building side against the first limb 72 and above against the wall and that they rest with their underside on the second limb 74 of the angle rail 70 and the end face limb 82.
  • the insulation of the outer leg 74 can be pivoted together with Arm michsgewebeabêt 92 to the outside.
  • the insulation is fixed in the usual way on the wall.
  • the Arm istsgewebeabites 92 is attached from the outside with putty on the outside of the thermal insulation. It is understood that further reinforcing fabric, which is not shown, overlaps the reinforcing fabric section 92 at the top and is likewise fastened to the insulation. After the putty has tightened or hardened, a plaster layer is applied on the outside.
  • the in Fig. 3 the outermost transition region portion 86 serve as a trigger edge.
  • the Putzeckor 96 of Fig. 4 has like the outer bar 80 of the end rail 68 a first in Fig. 4 horizontal leg 98, a second, in Fig. 4 perpendicular, so upwardly extending leg 100, and a transition region 102 which connects the right end of the first leg 98 and the lower end of the second leg 100 and essentially describes the course of a half or two-thirds circle, so that the legs 98th and 100 can be pivoted against each other and that a connector or plug in the transverse direction can be introduced into the transition region 102 to connect two transverse adjacent plaster corner strips 96 together.
  • a first reinforcement fabric section 110 is attached, which runs in the direction of the first leg 98 to the left.
  • a second reinforcement fabric portion 114 is attached by means of suitable connections, which are exemplified herein as ultrasonic welds 116.
  • This second Arm istsgewebeabêt 114 extends in the direction of the second leg 100 upwards.
  • the outer wall region of the transitional region 102 pointing to the lower left and pointing to the upper right is in each case provided with a channel profiling 104 for improving the adhesion of the plaster.
  • the lowermost wall portion of the transition region 102 forms a first plaster removal edge 106, and the rightmost wall portion of the transition region 102 forms a second drainage edge 108.
  • the procedure is as follows. First, the trim cornice 96, applied in practice a plurality of adjacent or stacked plaster corner strips 96 to the building corner and connected in the usual way with the building, for example by the shooting of bolts. Here you can work with overlap, or it can be connected together by connectors or spigot, which are inserted into the transition regions 102 of the adjacent plaster corner strips 96 adjacent plaster facing corners. Then the Arm michsgewebeabête 102 are attached from the outside with putty on the building walls on both sides of the building corner, and then further not shown Arm mich stressessgewebeabête can be attached and also secured with putty on the building wall. Now the plaster is applied to both sides of the building corner from the outside on both walls, wherein the plaster removal edges 106 and 108 can specify here the thickness of the applied plaster layer. After hardening the plaster layer, the building corner is plastered ready.
  • rice hulls in particular flour or fibers thereof, wood, in particular flour or fibers thereof, or a mixture thereof, have proven useful in tests of the present applicant.
  • These main components are provided in particular with a suitable carrier material, which ensures that the composite material is firm and dimensionally stable and can be extruded.
  • a particularly suitable composite material is a so-called wood plastic composite, ie a wood-plastic composite material.
  • Another particularly suitable composite material consists of the ingredients rice hulls, rock salts and mineral oil.
  • a particularly suitable material is a composite material of rice hulls with a proportion of 50-70, in particular of about 60%, rock salt with a content of 17-27, in particular of 22%, and with a mineral oil content of 13-23, in particular of about 18%.
  • Such a composite material has a density of about 1.46 g / cm 3 and a thermal expansion coefficient of 3.6 x 10 (-5) m / mC.
  • natural fibers such as flax, hemp or other fiber plants have been proven.
  • Lignin which is a polymer, has proven to be a particularly suitable carrier material.
  • a mixture of lignin with natural fibers forms a processable composite under temperature increase, which can be extruded among other things and also represents a particularly suitable material.
  • Another suitable material is bio-polyethylene.
  • Another suitable material is a mixture of co-polyester and polylactic acid PLA, which may contain a large amount of natural renewable resource.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • Door And Window Frames Mounted To Openings (AREA)
EP13165040.0A 2012-08-10 2013-04-24 Bande de crépissage et baguette d'angle pour enduit Revoked EP2708674B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13165040T PL2708674T3 (pl) 2012-08-10 2013-04-24 Listwa tynkarska do ościeży i tynkarska listwa narożna

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202012007697U DE202012007697U1 (de) 2012-08-10 2012-08-10 Anputzleiste, Abschlussschiene und Putz-Eckleiste

Publications (3)

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EP2708674A2 true EP2708674A2 (fr) 2014-03-19
EP2708674A3 EP2708674A3 (fr) 2017-08-23
EP2708674B1 EP2708674B1 (fr) 2019-10-02

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EP13165040.0A Revoked EP2708674B1 (fr) 2012-08-10 2013-04-24 Bande de crépissage et baguette d'angle pour enduit

Country Status (4)

Country Link
EP (1) EP2708674B1 (fr)
DE (1) DE202012007697U1 (fr)
LT (1) LT2708674T (fr)
PL (1) PL2708674T3 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2952649A1 (fr) * 2014-06-05 2015-12-09 Braun, August Baguette
PL424136A1 (pl) * 2017-12-30 2019-07-01 Michał Marian Kamiński Dylatacyjna listwa przyokienna

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102012221244A1 (de) * 2012-11-21 2014-05-22 Protektorwerk Florenz Maisch Gmbh & Co. Kg Bauprofil

Citations (3)

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Publication number Priority date Publication date Assignee Title
DE19539526A1 (de) 1995-10-24 1997-05-22 August Braun Abschlußschiene für eine Bauwerks-Wärmedämmung oder eine Bauwerks-Schalldämmung
EP0875641A2 (fr) 1997-04-30 1998-11-04 August Braun Baguette pour plâtre avec matériau de renforcement attaché à celle-ci
DE10038279A1 (de) 1999-08-12 2001-02-15 August Braun Anordnung von Putz-Eckleisten an einer Bauwerksecke

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US5406768A (en) 1992-09-01 1995-04-18 Andersen Corporation Advanced polymer and wood fiber composite structural component
DE19605467B4 (de) 1996-02-14 2006-05-04 August Braun Anputzleiste für Fensterstöcke, Türstöcke oder dergleichen am Übergang zu Putz
DE29901060U1 (de) 1999-01-22 1999-05-12 Braun, August, Schaffhausen Putzleiste aus Kunststoff
US6341458B1 (en) 2000-06-08 2002-01-29 Crane Products Ltd. Extruded composite corners for building construction
EP1669514A1 (fr) * 2004-11-18 2006-06-14 Orac NV Procédé et dispositif de finition d'une pièce
DE202006007792U1 (de) 2006-05-16 2006-08-24 Rehau Ag + Co Formkörper
EP2093347B1 (fr) * 2006-06-28 2013-04-10 Under-Cover Montant de porte
DE102007023431B4 (de) * 2007-05-16 2012-07-26 Roman Zahner Anschlussprofilleiste, insbesondere Laibungsanschlussprofilleiste
DE102008036656A1 (de) 2008-08-06 2010-02-25 August Braun Kunststoff-Leiste
DE202009013121U1 (de) 2009-09-29 2009-12-17 Braun, August Einteilige Anputzleiste sowie Übergang zwischen zwei Bestandteilen eines Gebäudes
DE202009013120U1 (de) 2009-09-29 2009-12-17 Braun, August Einteilige Anputzleiste sowie Übergang zwischen zwei Bestandteilen eines Gebäudes
DE202010017534U1 (de) 2010-02-19 2012-03-01 Patenta Asia Ltd. Holzimitat

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19539526A1 (de) 1995-10-24 1997-05-22 August Braun Abschlußschiene für eine Bauwerks-Wärmedämmung oder eine Bauwerks-Schalldämmung
EP0875641A2 (fr) 1997-04-30 1998-11-04 August Braun Baguette pour plâtre avec matériau de renforcement attaché à celle-ci
DE10038279A1 (de) 1999-08-12 2001-02-15 August Braun Anordnung von Putz-Eckleisten an einer Bauwerksecke

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2952649A1 (fr) * 2014-06-05 2015-12-09 Braun, August Baguette
PL424136A1 (pl) * 2017-12-30 2019-07-01 Michał Marian Kamiński Dylatacyjna listwa przyokienna

Also Published As

Publication number Publication date
LT2708674T (lt) 2020-03-10
PL2708674T3 (pl) 2020-04-30
EP2708674B1 (fr) 2019-10-02
EP2708674A3 (fr) 2017-08-23
DE202012007697U1 (de) 2012-09-11

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