EP2746487B1 - Profil angulaire - Google Patents

Profil angulaire Download PDF

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Publication number
EP2746487B1
EP2746487B1 EP13194639.4A EP13194639A EP2746487B1 EP 2746487 B1 EP2746487 B1 EP 2746487B1 EP 13194639 A EP13194639 A EP 13194639A EP 2746487 B1 EP2746487 B1 EP 2746487B1
Authority
EP
European Patent Office
Prior art keywords
section
longitudinal edge
region
corner
profile
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.)
Active
Application number
EP13194639.4A
Other languages
German (de)
English (en)
Other versions
EP2746487A2 (fr
EP2746487A3 (fr
Inventor
Heiner Willerscheid
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.)
Protektorwerk Florenz Maisch GmbH and Co KG
Original Assignee
Protektorwerk Florenz Maisch GmbH and Co KG
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 Protektorwerk Florenz Maisch GmbH and Co KG filed Critical Protektorwerk Florenz Maisch GmbH and Co KG
Priority to PL13194639T priority Critical patent/PL2746487T3/pl
Publication of EP2746487A2 publication Critical patent/EP2746487A2/fr
Publication of EP2746487A3 publication Critical patent/EP2746487A3/fr
Application granted granted Critical
Publication of EP2746487B1 publication Critical patent/EP2746487B1/fr
Active 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
    • 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

Definitions

  • the present invention relates to an angle profile with two profile legs, each comprising an outer surface and an inner surface and a the outer and the inner surface interconnecting, free longitudinal edge and which are interconnected along a corner longitudinal edge, wherein the two outer surfaces of the profile legs over an outer connecting portion and the two inner surfaces of the profile legs are connected to each other via an inner connecting portion, wherein at one or both profile legs, the material thickness of the profile leg in the region of the corner longitudinal edge is greater than in the adjoining the corner longitudinal edge region of the profile leg and wherein in one or both profile limbs, the material thickness of the profile limb in the region of its free longitudinal edge is greater than in the adjoining the free longitudinal edge region of the profile limb.
  • the outer connecting portion defines in cross section an outer radius and the inner connecting portion in cross section define an inner radius of the angle profile, wherein the inner radius is greater than the outer radius.
  • angle profiles are used, for example, as a plaster rail or fabric corner angle in thermal insulation systems (ETICS).
  • ETICS thermal insulation systems
  • Such angle profiles are applied and plastered, for example, on corners of masonry, ETIC systems or the like, to produce an edge protection. Since often only very small plaster thicknesses are possible, for example, a maximum of 3 mm, the corner angle be made thin accordingly to completely disappear after plastering in the plaster layer.
  • the manufacturing cost of these angle profiles are mainly determined by the cost of materials, so that in terms of a reduction in manufacturing costs, the angle profiles with as little material, that is to be formed as thin as possible. However, a correspondingly thin design of the angle profiles is prevented by a reduced stability.
  • angle profiles since the angle profiles usually have to be attached to a vertical edge, which can be several meters high, the angle profiles must have a minimum inherent rigidity in order to allow such a vertical placement.
  • An angle profile according to the preamble of claim 1 is known from DE 296 13 293 U1 known.
  • the show DE 197 47 602 A1 and the DE 44 26 099 A1 Angle profiles with larger material thicknesses in the region of the corner longitudinal edges than in the adjoining the corner longitudinal edges areas of the profile legs. It is an object of the present invention to form an angle profile of the type mentioned, which still has the required inherent rigidity in a very thin construction.
  • this object is achieved in that the material thickness of the profile leg in the corner longitudinal edge and its free longitudinal edge is greater than in the adjoining the free longitudinal edge and the corner longitudinal edge region.
  • angle profiles which are produced, for example, by corresponding bending of a uniformly thick starting material
  • the material thickness of the profile legs usually in the region of the corner longitudinal edge is the same size as in the adjoining the corner longitudinal edge portion of the profile leg
  • the material thickness of one or both profile legs in the corner longitudinal edge is increased according to the invention. According to the invention, it has been found that increased stiffness can be achieved with a consistently small thickness of the profile limb by increasing the material thickness in the region of the corner longitudinal edge.
  • the material thickness of the profile limb in the region of its free longitudinal edges is chosen to be greater than in the region of the profile limb adjoining the free longitudinal edges.
  • the free longitudinal edges are formed as material thickening, the material thickening is not generated by corresponding bends of the free longitudinal edges, but by genuine thickening of the material.
  • this can be done by a corresponding upsetting of the longitudinal edges, by another molding of the thickening, by appropriate extrusion, by Exjection (Exjection Molding), by pultrusion, by embossing processes such as roll embossing or by extrusion.
  • the material thickness of the profile limb in the region of the corner longitudinal edge and its free longitudinal edge is greater, especially in the case of extrusion profiles, than in the region adjoining its free longitudinal edge and its corner longitudinal edge.
  • the corresponding material thickening is provided only at the longitudinal edges, while the remaining area of the profile legs may be formed to be relatively thin up to the connecting portions in the corner longitudinal edge. According to the invention it has been found that by forming thickenings on the free longitudinal edges increased rigidity over the entire length of the angle profile is achieved, which stiffens the entire angle profile, even if the rest of the profile leg has a thinner configuration.
  • the outer connecting portion define in cross-section an outer radius and the inner connecting portion in cross-section an inner radius of the angle profile, wherein the inner radius is greater than the outer radius. While in angle profiles, which are produced for example by corresponding bending of a uniformly thick starting material, the outer radius is usually greater than the inner radius, this is just the other way around in the angle profile according to the invention. According to the invention it has been shown that the desired material thickening in the region of the corner longitudinal edge and thus increased rigidity can be achieved with the same thickness of the profile legs by the opposite choice of radii to conventional angle profiles.
  • Inner and outer radius can also include the extreme values "infinite” for the inner radius (formation of a plane connecting surface connecting the inner surfaces of the profile legs) and "zero" for the outer radius (formation of a sharp corner edge).
  • the connecting surfaces can also be designed as polygonal surfaces, ie, of a plurality of planar surfaces adjoining each other at an angle different from 180 °.
  • the surfaces can also be designed as curved surfaces.
  • the outer radius can basically take the extreme value "infinite", ie that the outer surfaces of the profile legs are connected to each other via a flat, inclined connecting surface. It is only essential that the material thickness of at least one of Profile limb in the region of the corner longitudinal edge is larger than in the adjoining the corner longitudinal edge region of the profile limb.
  • a particularly increased stability is achieved if both solutions are combined with each other, that is to say that the corresponding material thickenings are provided both on the longitudinal edges and the inner radius is larger than the outer radius in the region of the corner longitudinal edge.
  • the thickness of the material is to be understood in each case as the thickness of the profile leg, which has the profile leg in cross-section perpendicular to its longitudinal direction.
  • the inner radius is at least about 1.5 times, preferably at least about 2 times, advantageously at least about 2.5 times larger than the outer radius.
  • the material thickness of the profile limb in the region of the corner longitudinal edge and / or its free longitudinal edge is at least about 1.3 times, preferably at least about 1.5 times, advantageously at least 1.67 times greater than in the itself the corner longitudinal edge or adjoining the free longitudinal edge region of the profile leg.
  • the material thickness of the profile leg in the region of the corner longitudinal edge is greater than in the adjoining the free longitudinal edge region of one or both profile legs.
  • Such an increased material thickness in the region of the corner longitudinal edge is achieved in particular by the fact that the above specified proportions of the inner and outer radii are generated to each other.
  • the material thickness of the profile limb in the region of its free longitudinal edge is substantially the same as the material thickness of the profile limb in the region of the corner longitudinal edge.
  • a further advantageous embodiment of the invention is in the region of the corner longitudinal edge in a longitudinal direction of the angle profile extending, formed internal cavity.
  • the cross section of the cavity is adapted to the contour of the angle profile in the region of the corner longitudinal edge.
  • the cross section of the cavity may have an L-shaped contour, wherein an outer radius of this L-shaped contour is smaller than an inner radius of the L-shaped contour.
  • the outer and inner surfaces of one or both profile legs extend at least in regions, in particular over their essential part, in each case substantially parallel to one another. Only at the thickenings in the region of the free longitudinal edges or in the region of the corner longitudinal edge, the outer and inner surfaces are partially not arranged parallel to each other to produce the corresponding thickening or the specified radii ratios. It is advantageous in the transition region between the corner longitudinal edge and the inner surface of one or both profile legs a particular beveled step formed. About this stage, the inner surface of the profile leg can be connected to the larger radius of the inner connecting portion. The step can for example also run perpendicular to the inner surface or have a curvature.
  • the outer and inner surfaces of the profile legs not parallel to each other, but obliquely formed to each other and thereby formed, for example, the transition between the inner surface of the profile leg and the larger radius of the inner connecting portion is continuously extending.
  • the transition region can be completely eliminated on one or both profile legs, if the material thickness of the profile leg or in the region of the corner longitudinal edge is the same as in the adjoining the free longitudinal edge region of the respective profile leg.
  • one or more apertures are formed in one or both profile legs.
  • the angle profile can preferably be made of plastic, in particular PVC, for example of fiber-reinforced plastic, or of metal, in particular of aluminum, galvanized steel or stainless steel.
  • the angle profile made of plastic or aluminum may be extruded in order to allow easy production.
  • flat or side flanges in particular in the form of a reinforcement fabric, adjoin one or both profile legs. These side flanges can serve for further attachment of the angle profile in the plaster layer.
  • the cross-sectional length of the material thickening in the region of the free longitudinal edge is between about 5% and 20%, in particular between about 10% and 15% of the cross-sectional length of the profile legs. This configuration achieves an optimized compromise between stability and material consumption.
  • Fig. 1 shows an angle section 1 with two profile legs 2, 3, each having a free longitudinal edge 4, 5 and along a corner longitudinal edge 6 to form the angle section 1 are interconnected.
  • the two profile legs 2, 3 close in the embodiment shown an angle of exactly or about 90 °.
  • the profile legs also include another angle, wherein the angle can be formed both as acute angle and as an obtuse angle.
  • a plurality of longitudinally repeating openings 7 are arranged, which are oval or elongated hole-shaped.
  • the openings can also have a different shape. You can e.g. be round, triangular, hexagonal or shaped in any other suitable manner or have mixed forms.
  • the openings 7 are arranged in the longitudinal direction in two adjacent rows, which are each offset by half a hole length from each other. However, the arrangement of the openings can be modified as desired. In addition, the openings can be completely eliminated or formed only in one of the two profile legs.
  • the profile legs 2, 3 are formed thickened in the region of their free longitudinal edges 4, 5, that is, the material thickness of the profile legs 2, 3 in the region of their free longitudinal edges 4, 5 is greater than in itself to the free longitudinal edges 4, 5 subsequent areas 8, 9 of the profile legs 2, 3, in which the openings 7 are formed. As a result, material-integral thickenings 17, 18 are formed in the region of the free longitudinal edges 4, 5.
  • the profile legs 2, 3 each have an outer surface 10, 11 and an inner surface 12, 13, wherein the inner surface 12, 13 and the outer surface 10, 11 of the respective profile leg 2, 3 parallel to each other, so that the profile legs 2, 3 in their Areas 8, 9 - except for the areas of the openings 7 - have a substantially constant thickness.
  • the outer surfaces 10, 11 of the profile legs 2, 3 are connected to each other via an outer connecting portion 14, which defines an outer radius r a of the angle section 1 in cross section.
  • the two inner surfaces 12, 13 of the profile legs 2, 3 are connected to each other via an inner connecting portion 15 which defines an inner radius r i of the angle profile 1 in cross-section.
  • the thickness of the profile legs 2, 3 is to be understood as the material thickness, in each case perpendicular to its longitudinal direction (in the cross-sectional view shown), as in Fig. 2 is characterized by double arrows 25. This also applies to the other use of the term "material thickness" in the context of this application.
  • the inner connecting portion 15 and the respective inner surface 12, 13 of the profile legs 2, 3 provided as a chamfered step 16 transition region, through which an additional material thickening in the corner longitudinal edge 6 of the angle section 1 is achieved.
  • the height of the respective step 16 measured perpendicular to the respective inner surface 12, 13 is exactly the same as the height of the thickenings 17, 18 projecting vertically beyond the respective inner surface 12, 13.
  • the material thickness of the profile legs 2, 3 is in the range the free longitudinal edges 4, 5, ie in the region of the thickenings 17, 18 substantially the same size as the material thickness of the profile legs 2, 3 in the region of the corner longitudinal edge 6. This ensures that when applying the angle section 1 to be protected Corner the angle profile 1 evenly with its thickening 17, 18 and the inner Connecting portion 15 rests, so that the outer surfaces 10, 11 of the angle section 1 parallel to the corner forming wall sections.
  • Fig. 2 is further indicated that on the outer surfaces 10, 11 side flanges in the form of Arm michsgeweben 19, 20 attached, for example, glued, sewn or extruded over the safe plastering of the angle profile 1 is possible.
  • Fig. 3 shows a modified angle section 1 ', which is essentially the angle profile 1 after Fig. 1 equivalent.
  • the same or similar elements are therefore denoted by the same reference numerals as in FIG Fig. 1 Provided.
  • one of the thickenings 17 ' is formed, for example, in the angle profile 1' so that it not only projects beyond the inner surface 12, but also over the outer surface 10. This can for example by an upsetting under simultaneous heating or during a Extrusion occur.
  • the thickening 18 may be formed in the same shape as the thickening 17 '.
  • the angle profile 1 'in the region of the corner longitudinal edge 6 is not formed as a solid material, but between the outer connecting portion 14 and the inner connecting portion 15 is in the longitudinal direction of the angle section 1' extending, inner cavity 21 is formed.
  • the outer contour of the cavity 21 is adapted to the outer contour of the angle profile 1 'in the region of the corner longitudinal edge 6.
  • the cavity 21 has an angular cross section, wherein also here the outer radius of the angular cross section is smaller than the inner radius of the angular cross section.
  • the angle profile 1 ' has substantially the same rigidity as the angle profile 1, so that the same rigidity can be achieved with reduced material requirements. In the context of the present application, it is therefore irrelevant for the material thickness if recesses are provided in the interior of the material. The material thickness is to be understood in each case the (vertical) distance between the outer and inner surface of the profile limb.
  • reinforcing fabrics 19, 20 are formed in two parts in the embodiments shown, also a one-piece reinforcing fabric may be provided, which is passed over the corner longitudinal edge 6.
  • the two reinforcing fabrics 19, 20 or the one-piece reinforcing fabric can also be attached to the inner sides 12, 13 instead of the outer sides 10, 11 of the angle sections 1, 1 '.
  • the 4 and 5 show angle sections 22, 23 according to the invention, which are formed as end profiles.
  • angle sections 22, 23 are formed as end profiles.
  • the profile leg 2 is provided at its free longitudinal edge 4 with the thickening 17, while the free longitudinal edge 4 of the profile leg 3 has no thickening, but forms a smooth end edge.
  • This may be useful, for example, if the angle profile is designed as a closure angle, in which only the profile leg 2 is plastered, the profile leg 3, however, forms a visible end panel.
  • the profile leg 3 can have a greater thickness throughout than the profile leg to be fitted 2, whose thickness is limited by the thickness of the applied plaster.
  • Fig. 4 Like also in Fig. 4 is shown as an example, the openings 7 in the profile leg 2 can be omitted. In principle, however, corresponding perforations 7 can also be provided at closing angles, as may be for example Fig. 5 is apparent. Furthermore, in Fig. 4 illustrated that the transition between the inner connecting portion 15 and the inner surface 13 of the profile leg 3 may be formed in two or more stages. This applies in principle to the transition between the inner connecting portion 15 and the inner surface 12 of the profile leg 2 and for all embodiments of the invention. In addition, one or both transitions can in principle also be infinitely variable.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Joining Of Building Structures In Genera (AREA)
  • Steps, Ramps, And Handrails (AREA)
  • Tables And Desks Characterized By Structural Shape (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)
  • Bending Of Plates, Rods, And Pipes (AREA)

Claims (13)

  1. Cornière comportant deux ailes de cornière (2, 3), qui présentent chacune une surface extérieure (10, 11) et une surface intérieure (12, 13) ainsi qu'un bord longitudinal libre (4, 5) reliant les surfaces extérieure (10, 11) et intérieure (12, 13) l'une à l'autre, et qui sont reliées l'une à l'autre le long d'un bord longitudinal formant coin,
    dans laquelle
    les deux surfaces extérieures (10, 11) des ailes de cornière (2, 3) sont reliées l'une à l'autre par une portion de liaison extérieure (14), et les deux surfaces intérieures (12, 13) des ailes de cornière (2, 3) sont reliées l'une à l'autre par une portion de liaison intérieure (15),
    dans l'une ou dans les deux ailes de cornière (2, 3), l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone du bord longitudinal formant coin (6) est supérieure à celle dans la zone (8, 9) de l'aile de cornière (2, 3) qui se raccorde au bord longitudinal formant coin (6), et
    dans l'une ou dans les deux ailes de cornière (2, 3), l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone de son bord longitudinal libre (4, 5) est supérieure à celle dans la zone (8, 9) de l'aile de cornière (2, 3) qui se raccorde au bord longitudinal libre (4, 5),
    la portion de liaison extérieure (14) définit en section transversale un rayon extérieur (ra) et la portion de liaison intérieure (15) définit en section transversale un rayon intérieur (ri) de la cornière (1, 1', 22, 23), le rayon intérieur (ri) étant supérieur au rayon extérieur (ra),
    caractérisée en ce que
    l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone du bord longitudinal formant coin (6) et de son bord longitudinal libre (4, 5) est supérieure à celle dans la zone (8, 9) qui se raccorde au bord longitudinal libre (4, 5) et au bord longitudinal formant coin (6).
  2. Cornière selon la revendication 1,
    caractérisée en ce que
    le rayon intérieur (ri) est au moins environ 1,5 fois, de préférence au moins environ 2 fois, avantageusement au moins environ 2,5 fois, plus grand que le rayon extérieur (ra).
  3. Cornière selon la revendication 1 ou 2,
    caractérisée en ce que
    l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone du bord longitudinal formant coin (6) et/ou de son bord longitudinal libre (4, 5) est au moins environ 1,3 fois, de préférence au moins environ 1,5 fois, avantageusement au moins 1,67 fois, plus grande que celle dans la zone (8, 9) de l'aile de cornière (2, 3), qui se raccorde au bord longitudinal formant coin (6) ou au bord longitudinal libre (4, 5).
  4. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone du bord longitudinal formant coin (6) est supérieure à celle dans la zone (8, 9) d'une ou des deux ailes de cornière (2, 3), qui se raccorde au bord longitudinal libre (4, 5).
  5. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    l'épaisseur du matériau de l'aile de cornière (2, 3) dans la zone de son bord longitudinal libre (4, 5) est sensiblement égale à l'épaisseur de matériau de l'aile de cornière (2, 3) dans la zone du bord longitudinal formant coin (6).
  6. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    dans la zone du bord longitudinal formant coin (6), il est prévu un creux (21) intérieur qui s'étend en direction longitudinale de la cornière (1', 22, 23).
  7. Cornière selon la revendication 6,
    caractérisée en ce que
    la section transversale du creux (21) est adaptée au contour extérieur et/ou intérieur de la cornière (1', 22, 23) dans la zone du bord longitudinal formant coin (6).
  8. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    les surfaces extérieures (10, 11) et intérieures (12, 13) d'une ou des deux ailes de cornière (2, 3) s'étendent au moins localement, en particulier sur leur majeure partie, chacune sensiblement parallèlement les unes aux autres.
  9. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    un gradin (16) en particulier chanfreiné est réalisé dans la zone de transition entre le bord longitudinal formant coin (6) et la surface intérieure (12, 13) d'une ou des deux ailes de cornière (2, 3).
  10. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    une ou plusieurs traversées (7) sont réalisées dans une ou dans les deux ailes de cornière (2, 3).
  11. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    la cornière (1, 1', 22, 23) est constituée en matière plastique, en particulier en PVC ou en métal, en particulier en aluminium, en acier galvanisé ou en acier inoxydable.
  12. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    des brides latérales réalisées de façon surfacique, en particulier sous la forme d'un tissu d'armature (19, 20), se raccordent à une ou aux deux ailes de cornière (2, 3).
  13. Cornière selon l'une au moins des revendications précédentes, caractérisée en ce que
    la longueur en section transversale de l'épaississement de matériau (17, 17', 18) dans la zone du bord longitudinal libre (4, 5) est comprise entre environ 5 % et 20 %, en particulier entre environ 10 % et 15 %, de la longueur en section transversale des ailes de cornière (2, 3).
EP13194639.4A 2012-12-21 2013-11-27 Profil angulaire Active EP2746487B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13194639T PL2746487T3 (pl) 2012-12-21 2013-11-27 Profil kątowy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102012224309.7A DE102012224309A1 (de) 2012-12-21 2012-12-21 Winkelprofil

Publications (3)

Publication Number Publication Date
EP2746487A2 EP2746487A2 (fr) 2014-06-25
EP2746487A3 EP2746487A3 (fr) 2017-08-23
EP2746487B1 true EP2746487B1 (fr) 2019-01-23

Family

ID=49726487

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13194639.4A Active EP2746487B1 (fr) 2012-12-21 2013-11-27 Profil angulaire

Country Status (5)

Country Link
EP (1) EP2746487B1 (fr)
DE (1) DE102012224309A1 (fr)
DK (1) DK2746487T3 (fr)
ES (1) ES2721351T3 (fr)
PL (1) PL2746487T3 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015100326A1 (de) * 2015-01-12 2016-07-14 Protektorwerk Florenz Maisch Gmbh & Co. Kg Verfahren, Nähvorrichtung und kombinierte Extrusions- und Nähvorrichtung zum Annähen von Gewebe an ein Extrudat
BE1025362B1 (nl) * 2017-12-19 2019-01-30 Jansen Products, Naamloze Vennootschap Element voor het afwerken van een wanddeel bij een bepleistering en werkwijze voor het vervaardigen ervan

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1913799U (de) * 1965-01-14 1965-04-15 Ver Leicht Metall Werke Ges Mi Eckverbindungsstueck.
DE6909679U (de) * 1969-03-10 1969-07-24 Rehau Plastiks Gmbh Fa Eckprofil fuer fassadenverkleidungen
DE3937231C2 (de) * 1989-11-09 2001-01-04 Gefinex Jackon Gmbh Eckprofil
DE4426099A1 (de) * 1994-07-22 1996-01-25 August Braun Winkelleiste mit Armierungsmaterial für den Putz auf einer Wärmedämmung
DE29613293U1 (de) * 1996-08-01 1996-09-19 Flott Friedhelm Mehrzweckschiene zur Ausführung von Putzarbeiten o.dgl.
DE19747602A1 (de) * 1997-10-28 1999-04-29 Silvan Becker Kantenschutz-Richtwinkel
DE29821319U1 (de) * 1998-11-28 1999-03-18 Benirschke Rudolf Eckprofil für Wandanschluß
US6360503B1 (en) * 2000-12-28 2002-03-26 Trim-Tex, Inc. Drywall-trimming accessory having break-away panes
AT506795B1 (de) * 2008-08-11 2009-12-15 Peter Kassmannhuber Anschlussprofil für an putz angrenzende bauteile
CN201381625Y (zh) * 2009-01-13 2010-01-13 可以建材(供应)有限公司 坭水批盪胶角条
DE202011001551U1 (de) * 2011-01-14 2011-03-17 Kube, Andree Eckprofilleiste zur Verbindung von Bodenbelag-Elementen

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
DE102012224309A1 (de) 2014-06-26
EP2746487A2 (fr) 2014-06-25
ES2721351T3 (es) 2019-07-31
DK2746487T3 (en) 2019-03-18
EP2746487A3 (fr) 2017-08-23
PL2746487T3 (pl) 2019-07-31

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