Arrangement for fastening a fastening profile to a reveal and method for fastening this arrangement

DE502023001135D1Active Publication Date: 2025-07-03TESA SE
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Patent Information

Application Number
DE502023001135
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2022-09-01
Filing Date
2023-08-23
Publication Date
2025-07-03
Estimated Expiration
2043-08-23

AI Technical Summary

Technical Problem

Existing methods for attaching fastening profiles to reveals in buildings often result in damage to the building structure, limited space for opening windows, and difficulties in removing the attachments without leaving residues or marks.

Method used

The proposed solution involves an arrangement that includes a fastening profile with a connecting element and pivoting wing, which allows the profile to be bonded to both the wall surface and the reveal surface using double-sided adhesive strips, enabling easy installation and removal without damage.

Benefits of technology

This solution allows for secure attachment of fastening profiles to reveals without damaging the building structure, maintains space for window operation, and enables easy removal without residues, effectively addressing the limitations of prior methods.

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Description

(Field of invention)

[0001] The invention relates to the technical field of fastenings for add-on components, such as decorative and functional elements in buildings. More specifically, the invention relates to an arrangement for fastening a fastening profile to a reveal and a method for fastening this arrangement. The reveal is part of a building opening, such as a door or window opening. The fastening profile can be part of an insect screen, particle protection, or sun protection device which, when mounted in front of an open door or window, allows the entry of fresh air while simultaneously preventing or at least reducing the ingress of insects, small foreign animals, particles, or radiation. (Introduction)

[0002] In the field of building equipment, there is often a requirement to attach a fastening profile to a reveal without damaging the building structure. Such a fastening profile can be part of an insect, pollen, or sun protection device, and such a device can also contain several of these fastening profiles.

[0003] Especially with roof windows, residents desire to retrofit them with insect screens, sun protection devices, or a combination of these. Such devices often include extendable or roll-out covering panels, such as pleated or roller blinds, which are guided and held in mounting profiles or guide profiles. The profiles also provide at least a partial frame that can be mounted in various configurations in front of or in the reveal.

[0004] For this purpose, clamping devices are known that can be clamped between the side surfaces of the reveal, for example, using removable threaded bolts or gas springs. Devices with wall brackets are also known that can be screwed to the wall surfaces surrounding the reveal in the interior. The disadvantage of clamping devices is that they partially fill the space in the reveal, so that centrally hinged pivot windows, in particular, can only be opened to a limited extent, since they also require the space in the reveal when open.

[0005] With the screw-in method, a hole remains in the wall or reveal surface after removal. This can be undesirable. Especially if the wall or reveal surface supports decorative or patterned wall coverings, restoring a flawless surface is challenging. Drilling also requires a machine, which can be an additional expense. Another reason for not drilling may be concerns about the potential compromise of the insulation's integrity.

[0006] One possible solution is to attach the fastening profiles to the wall using adhesive, for example, double-sided adhesive tape. If the fastening profile, for example in the shape of a rectangular profile, offers a flat surface, it is easy to attach one or more strips of double-sided adhesive tape to the wall and then stick the fastening profile to it. However, especially with sensitive wall coverings such as wallpaper, the adhesive force between the wall covering and the adhered object, in this case the fastening profile, is often higher than the adhesive force between the wall covering and the underlying surface. In this case, an attempt to remove the wall covering and the object will be torn from the wall surface, which is undesirable.

[0007] This disadvantage can be counteracted by using peel-off adhesive strips, such as those commercially available as tesa ®< Powerstrips ®< or 3M Command ®< products. Such peel-off adhesive strips have a non-adhesive area at the free end of the strip which serves as a pull tab. By pulling on the pull tab in the bonding layer, the adhesive strip stretches in the adhesive joint between the object being bonded to it and the underlying surface. This makes it thinner and less sticky in every dimension, allowing the adhesive strip to be pulled out and the object to be removed from the wall without force or damage. In order for the strip to be pulled out of the adhesive joint, the pull tab must protrude slightly from the adhesive joint. This can give rise to aesthetic concerns.

[0008] The holding power that double-sided self-adhesive strips can absorb is often problematic. Since the adhesive strips, unlike a screw, do not penetrate the substrate, they are dependent on the load-bearing capacity of the surface to which they are adhered. In many homes, the conditions are not ideal in this regard. These are often found in sensitive wall coverings or multiple layers of wall coverings that have been applied over the decades and which, either together or in layers, adhere only weakly to the underlying surface. In addition, the loads and load directions acting on an adhesively attached assembly with a fastening profile or an insect screen with a fastening profile are difficult to predict, are diverse, and overlap.

[0009] The main loads and load directions for an insect screen with a fastening profile are, for example: Weather-related forces in the form of wind, weather, and draughts, primarily acting in the direction of the surface normal of the closed fabric of the insect screen; operating forces acting on the fastening profiles and their fastening arrangement when opening and closing cover panels such as pleated or roller blind fabric. In most cases, these operating forces will act primarily in directions parallel or perpendicular to the longitudinal axis of the respective fastening profiles, for example parallel to the lateral guide profiles in which the fold-out or extendable fabric is guided; weight forces of the device components, which tend to pull the device towards the center of the earth; impulse forces of unknown direction, which arise, for example, when the device accidentally collides with a household object or when cleaning the interior of the home. (State of the art)

[0010] Arrangements for attaching a fastening profile to a reveal are known.

[0011] For example, DE 8 709 683 U1 describes an insect screen with telescopic profiles that fit together to form a frame that can be clamped between the side surfaces of a reveal. The frame, thus secured, holds a covering sheet, in particular an insect screen. A disadvantage is that the device can only be attached between parallel side surfaces and requires a relatively large reveal depth for installation. This is problematic, for example, if the device is installed indoors in front of centrally mounted pivoting windows. These require a certain amount of space in the reveal when opened, which may already be occupied by the device described.

[0012] DE 10 2013 111 815 A1 shows a pleated blind with lateral guide profiles that guide a pleated fabric between them. The pleated fabric can be unfolded to close a building opening. To attach the guide profiles to a surface or wall around a building opening, various arrangements with wall brackets are provided. These have a mounting opening and can be attached to the wall by penetrating the mounting opening in a known manner with a screw and turning the screw thread into a hole - optionally occupied by a dowel. The connection between a first variant of these wall brackets is achieved by inserting them in a form-fitting and friction-fitting manner into joining chambers at the ends of the hollow guide profiles.In another variant, the wall brackets feature a molded locking pin that clips into a groove on the outside of the guide profiles after the wall bracket has been screwed to the wall with its locking pin. The disadvantage of this arrangement is that the wall brackets can only be attached using screws, which means they cannot be damaged.

[0013] DE 20 2016 104 860 U1 describes a frame system with lateral guide profiles that guide one or two cover panels, such as pleated fabrics held in cassettes, between them. Several wall brackets, each with a mounting hole, are provided to attach the guide profiles to a surface or wall around a building opening. The wall brackets can be pushed into a groove running along the outside of the guide profiles and screwed to the wall by inserting a screw through the respective mounting hole and turning the screw thread into a hole - optionally occupied by a dowel. The disadvantage of this arrangement is that the wall brackets can only be attached using screws, i.e., not non-destructively. To dismantle the frame system, the screws can be loosened, allowing the wall brackets and guide profiles to be removed. However, the hole remains in the wall.

[0014] DE 20 2015 009 136 U1 describes, among other things, peelable double-sided adhesive strips with two opposing pressure-sensitive adhesive layers, each of which is partially covered by a grip-tab film to form a local grip area or grip. The grip-tab films each have a thickness of preferably 10 µm - 40 µm and can be made of a plastic film. The peelable double-sided adhesive strip can be used to adhesively attach objects that, at least in some areas, have a shape similar to the bonding plane. By exerting a tensile force in the direction of the bonding plane, the peelable double-sided adhesive strip can be released, stretching as it does so.

[0015] DE 297 17 171 U1 discloses a device for circulating and heating air in rooms with a protective surface that can be rolled up and down and is attached to the inside of windows or doors with large-area glass inserts, for example Venetian blinds or roller blinds made of metal, plastic or wood.The inner pane and the side of the rolled-out protective surface facing the pane form a chimney-like air duct with an inlet opening and outlet opening for the air directed towards the interior of the room in such a way that the vertical side edges of the protective surface are held in a sealed manner by a guide rail fastened to the wall, the inlet opening in the protective surface is arranged near the foot end of the pane and the outlet opening in the protective surface is arranged at the head end near the window or door lintel, with a baffle (head end in the air duct) being assigned to the outlet opening, and that the side of the protective surface facing the pane is provided with a heat-absorbing coating that simultaneously insulates against the interior of the room. (Task)

[0016] The object of the present invention is to eliminate the problems described with reference to the prior art and, in particular, to provide an arrangement for fastening a fastening profile to a reveal that is easy to install and can be removed without leaving any residue and without leaving any marks on the reveal or the surrounding building structure. A further object of the invention is to present an arrangement for covering a reveal that can be installed even when the reveal surfaces are not oriented at right angles to the wall surfaces. A further object of the invention is to disclose an arrangement for covering a reveal in which the cover can be easily opened and closed again without dismantling any parts, for example in order to be able to operate the opening mechanism of a roof window. (Solution)

[0017] A first and general subject matter of the invention, which is referred to here as embodiment 1 and with which the objects are achieved, is an arrangement (1) for fastening a profile (2) to a reveal (21), which comprises a reveal surface (20) which adjoins a wall surface (16) separated by a reveal edge (22), wherein the arrangement comprises a fastening profile (2) with a longitudinal axis (3), wherein the fastening profile (2) extends with a defined cross-section along the longitudinal axis (3) and wherein the fastening profile (2) has a first adhesion surface (4), characterized in that the arrangement (1) further comprises a connecting element (6) which can be connected to the fastening profile (2), wherein the connecting element (6) comprises a pivoting hinge (7) whose pivot axis (8) runs parallel to the longitudinal axis (3) of the fastening profile (2) connected to the connecting element (6), and wherein a pivoting wing (9) is articulated by a pivoting hinge (7), which comprises a first main surface (10) and an opposite second main surface (11), wherein the second main surface (11) provides a second adhesion surface (12), the relative angle of which to the first adhesion surface (4) can be changed by pivoting the pivoting wing (9) over a pivoting range (24);a first double-sided adhesive strip (13) having a first self-adhesive main surface (14) and a second self-adhesive main surface (15) opposite the first self-adhesive main surface (14), wherein the first self-adhesive main surface (14) of the first double-sided adhesive strip (13) is adhereable to the first adhesive surface (4) and the second self-adhesive main surface (15) of the first double-sided adhesive strip is adhereable to the wall surface (16) in order to adhesively fasten the fastening profile (2) to the wall surface (16);and a second double-sided adhesive strip (17) with a first self-adhesive main surface (18), as well as a second self-adhesive main surface (19) opposite said first self-adhesive main surface, which is opposite the first self-adhesive main surface (18), wherein the first self-adhesive main surface (18) of the second double-sided adhesive strip (17) is adhesively bonded to the second adhesive surface (12) on the pivoting wing (9) and the second self-adhesive main surface (19) of the second double-sided adhesive strip (17) is adhesively bonded to a reveal surface (20) adjacent to the wall surface (16) in order to adhesively attach the fastening profile (2) to the reveal surface (20) by pivoting the pivoting wing. ;

[0018] Also revealed are: an embodiment 2 according to embodiment 1, wherein the fastening profile (2) has a cross-section with a diameter and the connecting element (6) has a bore with approximately this diameter, and wherein the bore is penetrated by the fastening profile (2) in order to thereby form a pivot hinge (7); an embodiment 3 according to one of the preceding embodiments, wherein the first adhesion surface (4) is part of an adapter (5) which can be connected to the fastening profile (2) by connecting a geometry defined by the cross-section of the fastening profile (2) with a formation on the adapter (5) which is designed to be complementary thereto by a movement of the adapter (5) relative to the fastening profile (2) and along the longitudinal axis (3) of the fastening profile (2).an embodiment 4 according to one of the preceding embodiments, wherein the envelope curve around the cross-section of the fastening profile (2) is substantially rectangular and the fastening profile (2) partially comprises a flat outer surface, thus providing a first adhesive surface (4) to which the first main surface (14) of the first double-sided adhesive strip (13) can be adhered. an embodiment 5 according to one of the preceding embodiments, wherein the fastening profile (2) forms a groove parallel to its longitudinal axis, in which groove the connecting element is displaceably held.an embodiment 6 according to one of the preceding embodiments, wherein the fastening profile (2) forms a rail (27) with a T-shaped cross section parallel to its longitudinal axis (3), and wherein the connecting element (6) with the pivoting wing (9) articulated via the pivoting hinge (7) has a substantially rectangular circumference, and a clamp (28) is formed on the connecting element (6), wherein the clamp (28) engages around the T-shaped rail (27), so that the connecting element (6) can be moved along the T-shaped rail (27) together with the pivoting wing (9).an embodiment 7 according to one of the preceding embodiments, wherein the first double-sided adhesive strip (13) and the second double-sided adhesive strip (17) have tensile-removable properties and both the first double-sided adhesive strip (13) and the second double-sided adhesive strip (17) form at least one end region with a non-adhesive region as a handle (25) and an adhesive bond produced with the respective double-sided adhesive strip (13, 17) can be released by a tensile force acting on the respective handle (25) in the direction of the adhesive plane, whereby the respective double-sided adhesive strip (13, 17) is de-sticked by stretching.an embodiment 8 according to one of the preceding embodiments, wherein the first double-sided adhesive strip (13) has a rectangular circumference and a length and a width that is smaller than the length, and wherein the handle (25) of the first double-sided adhesive strip (13) can be folded about an axis that is oriented at right angles to a longitudinal edge of the first double-sided adhesive strip (13), and the axis lies between the adhesive region of the first double-sided adhesive strip (13) and the non-adhesive region of the first double-sided adhesive strip (13). an embodiment 9 according to one of the preceding embodiments, wherein the handle (25) of the first double-sided adhesive strip (13) is covered by an end cap (33) when the end cap is plugged onto a free axial end of the fastening profile (2).an embodiment 10 according to embodiment 7, wherein the pivoting wing (9) comprises a grip flap (30) which is hinged to the pivoting wing (9) via a folding hinge (36). an embodiment 11 according to one of the preceding embodiments, wherein the arrangement further comprises a template (37) for positioning the first double-sided adhesive strip (13), wherein the template (37) consists of a flat material and has a polygonal and asymmetrical basic shape with at least five side edges (39-44), and wherein a recess (38) is introduced within the asymmetrical basic shape. an embodiment 12 according to embodiment 11, wherein the recess (38) in the template (38) specifies a distance between the first double-sided adhesive strip (13) and the reveal edge (22) when the template rests with one of its side edges (39-44) against the reveal edge (22).an embodiment 13 according to one of the preceding embodiments, wherein the arrangement is duplicated mirror-symmetrically on a central plane lying between two opposite reveal surfaces and thus comprises a second fastening profile, and the fastening profiles guide a cover strip (29) between them. .

[0019] A further subject of the invention is a method for fastening a fastening profile (2) to a reveal (21) with an arrangement (1) according to one of the previous embodiments 1 - 13, comprising the positioning and gluing of a first double-sided adhesive strip (13) to a wall surface (16); the positioning and gluing of a second double-sided adhesive strip (17) to a reveal surface (20) adjacent and bordering the wall surface (16), wherein the reveal surface (20) is part of the reveal (21) and a reveal edge (22) is located between the reveal surface (20) and the wall surface (16); the adhesion of the first adhesive surface (4) associated with the fastening profile (2) to the first double-sided adhesive strip (13), wherein the fastening profile (2) is then glued to the wall surface (16) and the longitudinal axis (3) of the fastening profile (2) is fixed parallel to the reveal edge (22);connecting a connecting element (6) to the fastening profile (2), wherein the connecting element (6) comprises a pivot hinge (7) whose pivot axis (8) runs parallel to the longitudinal axis (3) of the fastening profile (2) connected to the connecting element (6), and wherein a pivot wing (9) is articulated by the pivot hinge (7), which comprises a first main surface (10) and an opposite second main surface (11), wherein the second main surface (11) provides a second adhesion surface (12), the relative angle of which to the first adhesion surface can be changed by pivoting the pivot wing (9) over a pivot range (24); and pivoting the pivoting wing (9) in the direction of the reveal surface (20) until the second adhesive surface (12) is brought into adhesive contact with the second double-sided adhesive strip (17), and thus the fastening profile (2) is glued both to the wall surface (16) and to the reveal surface (20). ;

[0020] An embodiment of the method according to the invention provides that the arrangement (1) further comprises a template (37) for positioning the first double-sided adhesive strip (13), wherein the template (37) consists of a flat material and has a polygonal and asymmetrical basic shape with at least five side edges (39 - 44), and wherein a recess (38) is introduced within the asymmetrical basic shape, wherein the recess (38) in the template (38) specifies a distance between the first double-sided adhesive strip (13) and the reveal edge (22) when the template rests with one of its side edges (39 - 44) against the reveal edge (22).

[0021] A key idea of ​​the invention is therefore to bond the fastening profile not only in a single plane, but in at least two adjacent and angled planes, which are naturally available in the reveal area, namely in the form of a reveal surface and the adjacent wall or ceiling, which coexist adjacently, separated by a reveal edge. By bonding the fastening profile in two planes, the various force vectors can be directed much more effectively via this two-surface bonding than shear and normal forces, which are easily absorbed by these, into the wall surface and the reveal surface, without causing damage to wall coverings or similar.

[0022] The challenge is that it's difficult to manually bond a rigid fastening profile precisely to two surfaces at an angle to each other using two adhesive strips. This would require both adhesive strips to come into contact with both surfaces at exactly the same time and in exactly the desired position. In practice, in many cases, the first adhesive strip comes into contact with the first surface first—i.e., too early. As a result, the position of the fastening profile is often so poorly determined that the second adhesive strip can no longer contact the second surface with sufficient precision.

[0023] In this respect, a further inventive idea lies in enabling the fastening profile to be bonded sequentially to two levels, i.e. first bonding the fastening profile to the first level with a first adhesive strip, then bonding the second level with a second adhesive strip, this being achieved by a pivoting wing which is hingedly connected to the fastening profile and either carries the adhesive strip and is folded onto the second level or is folded onto the adhesive strip already placed on the second level. (Description of the characters)

[0024] In the Figures 1 - 17 exemplary embodiments of the invention are shown. Fig. 1 is a perspective interior view of a reveal with a first embodiment of an arrangement according to the invention for fastening a fastening profile to the reveal Fig. 2is a perspective detailed view of the position of the adhesive strips relative to the wall surface and the reveal surface, to which the fastening profile can be attached in the arrangement according to the invention Fig. 3 is a perspective detail view of the first embodiment, showing part of the arrangement according to the invention during fastening. Fig. 4 is a perspective detail view of the first embodiment, showing a part of the arrangement according to the invention which is attached. Fig. 5 is a perspective view of a reveal from the viewpoint of the interior with a second embodiment of an arrangement according to the invention for fastening a fastening profile to the reveal Fig. 6 is a sectional view of the second embodiment Fig. 7 shows in a perspective view a position of the first adhesive strip on the wall surface Fig. 8shows a perspective view of a fastening profile glued to a wall surface Figs. 9 - 11 shows in perspective views a sequence for covering the handle of the first adhesive strip Fig. 12 shows a perspective view of a fastening profile with a connecting element and a pivoting wing and a non-pivoted handle flap Fig. 13 shows in a perspective view the fastening profile with the connecting element and the pivoting wing and a pivoted grip flap Fig. 14 shows in a further perspective view the fastening profile with the connecting element and the pivoting wing and a pivoted grip flap Fig. 15 shows a perspective view of a template for positioning an adhesive strip Fig. 16 shows a perspective view of a cover sheet guided between two fastening profiles in a closed state Fig. 17shows a perspective view of a cover sheet guided between two fastening profiles in a partially opened state

[0025] With reference to Fig. 1 - 4 an arrangement according to the invention for fastening a fastening profile (2) to the reveal (21) is shown.

[0026] The fastening profiles are Fig. 1 - 4 In particular, these are round profiles with a circular cross-section. However, the cross-sectional shape of the fastening profiles can be any, such as solid or hollow profiles, round, oval, rectangular, polygonal, or with a C-shaped or essentially U-shaped cross-section. It can also be a telescopic two- or three-part fastening profile group. For the sake of simplicity, such a group is treated here as a single profile.

[0027] Similarly, in many cases a fastening profile (2) attached only to one reveal surface (20) of the reveal (21) does not meet the application requirements, so that, as in Fig. 1 As shown, a second version can be provided which is mirrored at the center plane between the side surfaces of the reveal (21). Such a pair of fastening profiles can span or guide a cover sheet between them as part of an insect screen, pollen protection or sun protection device. It may also be possible to Fig. 1 - 4A roller blind or pleated blind cassette (not shown) is to be fixed or suspended between the opposite upper and / or lower end sections of the fastening profiles (2) placed on each side of the reveal. Their rollable or foldable cover panels can then be guided between the fastening profiles to allow the cover panel to be opened and closed. This multiple configuration will also be disregarded for the time being for the sake of linguistic simplicity, and only one fastening profile will be referred to.

[0028] According to the first embodiment, the inventive arrangement (1) has a fastening profile (2) with a particularly round cross-section. Since this fastening profile (2) has no outer surfaces along its longitudinal axis (3) that can be oriented parallel to the wall surface (16), it is difficult to adhere this fastening profile (2) to the wall using an adhesive strip. The contact of the adhesive strip with the fastening profile would be only tangential, thus not a sufficient adhesive surface but - depending also on the thickness and deformability of the adhesive strip - only an adhesive line can be achieved. Therefore, an adapter (5) is provided that provides a flat surface as the adhesive surface (4) that can be oriented parallel to the wall surface. This adapter (5) here comprises, for example, a plate with a rectangular circumference.The plate has two main surfaces, the first of which is flat to provide an adhesion surface (4) for a first double-sided adhesive strip (13). The second main surface of the plate is opposite the first. A cuboid block with a bore extends from it as a further element of the adapter (5). The bore has a slightly larger diameter than the fastening profile (2) in order to accommodate the fastening profile (2). To fix the fastening profile (2) in the adapter (5), a clamping element (26) can be provided, such as a grub screw that penetrates a thread produced tangentially to the profile-receiving bore in the adapter (5), thus clamping the fastening profile (2). A frictional connection would also be possible, whereby the bore has a slightly smaller diameter than the fastening profile (2) and the latter is thermally shrunk in or pressed in by force.It is also possible, particularly with hollow profiles or polygonal profiles, to use the cross-sectional geometry or part of the cross-sectional geometry at a free end of the fastening profile to form a complementary, similarly shaped geometry on the adapter (5). This allows the fastening profile (2) and adapter (5) to be connected in a plug-in and friction-locking manner using the tongue and groove principle or the key and lock principle. The adapter (5) can also be helpful if the material of the fastening profile is made of a material with low surface energy that cannot be reliably bonded without further measures, such as the application of a primer or plasma treatment. Examples of materials with low surface energy are polyolefins such as polypropylene, polyethylene or polytetrafluoroethylene.

[0029] In order to adhesively attach the fastening profile (2) in the desired manner to the wall surface (16) adjacent to the reveal surface (20), a first double-sided adhesive strip (13) is adhered to the wall surface (16) at a suitable position. A template can be used for positioning, which, taking into account the geometries of the components of the arrangement (1), specifies a defined target position in relation to the reveal edge (22) and in relation to the end of this reveal edge (22). The template, for example in the form of a card with a rectangular cutout in the shape of the adhesive strip, can be held against the wall surface (16) with one side edge aligned with the reveal edge and one bottom edge level with the lower end of the reveal edge, whereby a defined horizontal and vertical position of the first adhesive strip (13) can be specified. The template can have printed or embossed information about the application.The cutout in the stencil can also be asymmetrical, particularly a substantially U-shaped cutout, which allows the target position to be marked on the wall surface with a pen. The resulting U-shaped mark can then specify the beginning and longitudinal direction of the adhesive strip position. The stencil can thus be manufactured more economically and with less resource consumption, since the stencil does not necessarily have to be longer than the adhesive strip in one dimension.

[0030] Thus, the double-sided adhesive strip (13) can be glued to the wall surface (16) with the second main surface (15), and the first opposite main surface (14) of the double-sided adhesive strip (13) can be glued to the adhesive surface (4) of the adapter (5). It is also possible to first glue the double-sided adhesive strip (13) to the adhesive surface (4) of the adapter (5) and then fasten it to the wall surface (16), in particular in such a way that one side edge of the adhesive surface (4), when glued to the wall surface (16), occupies a defined distance from the reveal edge (22). The adapter (5) can already be connected to the fastening profile (2). It is also possible to first glue the adapter (5) to the wall surface (16) and then fasten the fastening profile (2) to the adapter (5).The method of connecting the adapter (5) to the fastening profile (2) before gluing it to the wall surface (16) offers, in the case where two adapters (5, 5) are provided for a fastening profile (2) and which are each fastened to it in the area of ​​the two free ends of the fastening profile (2), these adapters (5, 5) can be positioned more easily in alignment with one another. If the two adapters (5, 5) are designed in such a way that they can be inserted into hollow end areas or receiving chambers at the ends of the fastening profile (2), this is also only possible in special cases with already glued adapters (5, 5), for example if the fastening profile (2) is telescopic.In the case of a telescopic fastening profile (2), it would be possible to place the fastening profile (2) in a telescoped state between the bonded adapters (5, 5) and then to telescope it out axially into or through the complementary geometries of the adapter.

[0031] After the fastening profile (2) has been glued to the wall surface (16), with reference to Fig. 3a second bond is made on the reveal surface (20) oriented at an angle, in particular at right angles to the wall surface (16). For this purpose, the fastening profile (2) is connected in an articulated manner to a connecting element (6). The connecting element (6) carries a cylindrical ring that can be slid over the fastening profile (2), thus creating a pivoting hinge (7) that can be moved, in particular, along the longitudinal axis (3) of the fastening profile (2). If this displacement is undesirable, it can be prevented, for example, with clamps that are attached to the profile at the two axial end positions of the ring. A spacer (31) extending radially from the ring is formed on the ring of the connecting element (6). This spacer is in turn connected at an angle to another spacer (32) that carries a pivoting wing (9).If the connecting element (6) is rigid or only linearly movable with the fastening profile (2), for example because the latter has an oval or polygonal cross-section, it is equally possible to form the pivot hinge between the connecting element (6) and the pivot wing (9). The pivot hinge (7) can also be a multi-part hinge, such as a strap hinge, but it is particularly preferably designed as a film hinge. This offers the advantage that the connecting element (6), the pivot hinge (7), and the pivot wing (9) can be combined in a single piece. The pivot axis of the pivot hinge always runs parallel to the longitudinal axis of the fastening profile (2) once it has been connected to it via the connecting element (6).

[0032] The pivoting wing (9) has a first main surface (10) and an opposite second main surface (11). The second main surface (11) of the pivoting wing (9) serves as the second adhesive surface (12) and provides space for the second double-sided adhesive strip (17). The second double-sided adhesive strip (17) is positioned on the reveal surface (20) for bonding to the latter such that the second adhesive surface (12) at least partially, but preferably completely, covers the adhesive strip after being folded away, and the pivoting wing (9) is thus bonded to the double-sided adhesive strip in contact with the latter and supports the first bond made to the wall surface (16).More precisely, when the pivoting wing (9) is pivoted, its second main surface (11) or the second adhesive surface (12) is pivoted within a pivoting range (24) in the direction of the reveal surface (20), wherein this second main surface (11) or the second adhesive surface (12) is then brought into contact and adhesive contact with the first main surface of the adhesive strip.

[0033] The spacers (31, 32) can be used to create a defined distance between the fastening profile (2) and the second adhesive surface (12) on the pivoting wing (9). This can be necessary because the reveal edge (22) located between the wall surface (16) and the reveal surface (20) is often rounded with an unknown radius and thus cannot provide an ideal, planar adhesive surface. The spacers (31, 32) make it possible to bring the particularly planar second adhesive surface (12) on the pivoting wing (9) into an area located somewhat deeper in the reveal surface (20) with equally planar surfaces. Another option is to manufacture the pivoting wing (9) from a flexible material that can adapt to the substrate. This can be flat, thin-walled polystyrene, a thermoplastic elastomer, a thermoplastic plastic, a duromer, or even a deformable metal sheet.The wing is preferably made of a thermoplastic material with high surface energy in order to ensure a sufficiently high adhesive force between the second double-sided adhesive strip (17) and the second adhesive surface (12) on the pivoting wing (9). The connecting element (6) is preferably designed as a single piece with the pivoting wing (9), which is optionally connected to it via spacers (31, 32), its main surfaces and the second adhesive surface (12) provided by one of the main surfaces. Preferred manufacturing materials for the connecting element (6) and also for the adapter (5) include, in particular, polystyrene, acrylonitrile-butadiene-styrene copolymer, polyamide or glass fiber reinforced variants thereof. Metal materials are also possible, for example molded parts produced by die casting or by milling and drilling from an aluminum body or a piece of steel.

[0034] With reference to Fig. 2the position of the first adhesive strip (13) on the wall surface (16) and the position of the second adhesive strip (17) on the reveal surface (20) can be seen. The positioning of the second adhesive strip (17) can be carried out in a similar way to the first adhesive strip using a template, which this time is oriented on the reveal surface (20) but again with reference to the reveal edge (21). However, the pivoting wing (9) itself can also preferably be used, which, as soon as it is folded onto the reveal surface (20), forms a template whose outline can be traced with a pen in order to position the second adhesive strip (17) relative to the marking made, preferably within the drawn marking, after the pivoting wing (9) has been folded away.

[0035] Particularly preferred double-sided adhesive strips (13, 17) are those with peel-off properties. Such double-sided peel-off adhesive strips (13, 17) have locally non-adhesive areas at one or both of their end regions, which can be formed, for example, by covering them with a film that can be printed or painted, or by sprinkling them with particles. These non-adhesive areas are referred to as grip tabs (25). As in Fig. 2 As shown, these are visible to the user in that the film or the sprinkling includes a high-contrast line that extends transversely to the double-sided adhesive strip and thus marks the area of ​​the handle (25).

[0036] Double-sided adhesive strips with tensile-removable properties are generally positioned between a surface, such as the wall surface (16), and the object attached via the double-sided adhesive strip (13, 17), such as the fastening profile (2) or the adapter (5), in such a way that the handle (25) remains accessible for grasping with the hand or a tool. In the simplest case, it lies outside the outline that a normal projection of the bonded object (2, 5) onto the wall surface (16) would create. If the respective handle (25) is then pulled, the respective double-sided adhesive strip (13, 17) loses its adhesive properties during stretching.In addition, the respective tensile-removable double-sided adhesive strip (13, 17), which has rubber-elastic properties, becomes thinner in cross-section under tensile load, so that it can be pulled out between the wall surface (16) and the adapter (5) or between the wall surface (16) and the fastening profile (2) and the object or the fastening profile (2) can be released or falls off due to its weight.

[0037] With reference to Fig. 5 - 6 A second embodiment of the arrangement (1) according to the invention is shown. The figure shows the arrangement (1) in the region of a reveal (21) with a building opening (23), in which a window or door (not shown here) may be located.

[0038] In the Fig. 5 - 6The fastening profile (2) shown is a polygonal fastening profile (2) made of an extruded aluminum alloy. The fastening profile can in particular have a substantially rectangular, U-shaped, C-shaped or even square cross-section. The fastening profile (2) can furthermore have indentations or a rail channel relative to its basic shape for the linear guidance of a cover sheet or for guiding a similarly shaped second fastening profile, which can be telescoped out along the longitudinal axis (3) in order to be able to adapt the length of the fastening profile (2) to the height of the reveal without the need for tools. A channel for a brush seal can also be arranged on the fastening profile (2), wherein in such a brush seal a plurality of bristles extend from a carrier strip and the carrier strip can then be inserted in a C-shaped cross-section which is part of the cross-section of the fastening profile.The fastening profile (2) has a longitudinal axis (3) which is adhesively bonded to the wall surface (16) via a first adhesive strip (13) parallel to and adjacent to the reveal edge (22). The polygonal fastening profile (2) itself provides a first adhesive surface (4) via a partially flat outer profile surface, so that an adapter is not absolutely necessary. However, an adapter (5) can be used which consists, for example, of a defined material suitable for adhesive bonding. In this case, it is particularly conceivable that the adapter (5) has a flat adhesive surface (4), in particular in the form of a rectangular plate, and a connecting structure formed opposite the adhesive surface (4) as part of the adapter (5). The connecting structure is formed at least partially complementary to the cross-section of the fastening profile (2) and can thus be frictionally connected to an end region of the fastening profile (2).This allows the adhesive surface (4) to be connected to the fastening profile (2) as part of the adapter (5) and is ready for bonding.

[0039] In addition, the fastening profile (2) is glued to the reveal surface (20) via a pivoting wing (9) which is held on the fastening profile (2) via a connecting element (6) so that it can be moved linearly at least in some areas.

[0040] As shown in the sectional view in Fig. 6As shown in more detail, the cross-section of the connecting element (6) comprises a molded-on clamp (28) with an approximately C-shaped cross-section. This clamp (28) can be pushed over the T-shaped rail (27) on the fastening profile (2), so that the connecting element (6) is held at least partially displaceably on the polygonal fastening profile (2). The connecting element (6) is further connected via a spacer piece (31) to a pivot hinge (7), which in the preferred form here is designed as a film hinge whose pivot axis extends parallel to the longitudinal axis of the fastening profile (2). The pivot hinge (7) is connected to the pivot wing (9) in the opposite direction to the spacer piece (31).The pivoting wing has a first main surface (10) and an opposite second main surface (11), wherein the second main surface (11) serves as a second adhesive surface (12) which can be brought into adhesive contact with the first main surface of the second double-sided adhesive strip (17) by pivoting the pivoting wing relative to the first adhesive surface (4).

[0041] We will now look at the method for attaching the fastening profile.

[0042] The fastening profile (2) can be attached in a simple manner by providing a first double-sided adhesive strip (13). After peeling off any protective films or release papers present on the main surfaces (14, 15) of the first double-sided adhesive strip, the first main surface (14) of the first adhesive strip (13) is adhered to the first adhesive surface (4). In particular, the fastening profile (2) has a further first adhesive surface at the opposite end of the fastening profile (2), so that the process is repeated. The fastening profile (2) is then adhered to the wall surface (16) parallel to and adjacent to the reveal edge (22), wherein the first adhesive surface (4) and the second main surface (15) of the first adhesive strip (13) adhering to the adhesive surface (4) are oriented towards the wall surface (16), and the fastening profile (2) is then pressed onto the wall surface (16).After the fastening profile (2) adheres to the wall surface (16), the pivoting wing (9) is folded away from the reveal surface (20), and a second, provided, double-sided adhesive strip (17)—again, if necessary, after removing the protective film or release paper—is adhered with its second main surface (18) to the second adhesive surface (12) on the pivoting wing (9). Then, by pivoting the pivoting wing, the second adhesive surface can be folded toward the reveal surface (20), so that the second main surface (19) of the second double-sided adhesive strip (17) is bonded to the reveal surface (20).

[0043] The fastening profile (2) can also be attached by first positioning the first double-sided adhesive strip (13) adhesively onto the wall surface (16) via its second main surface (15), analogous to the first exemplary embodiment, and then bringing the adhesive surface (4) of the fastening profile (2) into adhesive contact with the first main surface (14) of the first double-sided adhesive strip (13). In this way, the fastening profile (2) is then again adhered to the wall surface (16). The pivoting wing (2), which is hinged to the fastening profile (2), can then be folded with its second adhesive surface (12) onto the second double-sided adhesive strip (17) previously positioned on the reveal surface.

[0044] Thus, the fastening profile (2) is reliably bonded to two surfaces at an angle to one another, namely the wall surface (16) and the adjacent reveal surface (20), in a particularly advantageous manner, and can thus better withstand force vectors acting on the fastening profile (2) from different directions than if the bonding had only been carried out on a single surface. A further advantage is that, despite the particularly reliable bonding to two surfaces at an angle to one another, the fastening profile (2) can be removed again without leaving any residue using pull-removable double-sided adhesive strips, as described in more detail below.

[0045] We will now discuss the method for dismantling the device without leaving any residue.

[0046] In order to be able to remove the fastening profile (2) without leaving a trace when using double-sided adhesive strips (13, 17) that can be peeled off by pulling, it is necessary that the respective handle (25) of these double-sided adhesive strips (13, 17) remains accessible after the fastening profile (2) has been glued.

[0047] This can be achieved by positioning the adhesion surface (25) of the first double-sided adhesive strip on the wall surface (16) such that the non-adhesive tab (25) protrudes from an outline that would produce a normal projection of the fastening profile (2) with, if applicable, the associated adapter (5) onto the wall surface (16). Similarly, the second double-sided adhesive strip (17) can be positioned on the reveal surface (20) such that its tab (25) protrudes from the outline that would produce a normal projection of the pivoting wing (9) onto the reveal surface (20).

[0048] The method for detaching the fastening profile (2) then comprises pulling on the handle (25) of the second adhesive strip (17) until it has detached from the adhesive joint between the reveal surface (20) and the second adhesive surface (12). Similarly, by exerting a pulling force on the handle (25) of the first double-sided adhesive strip (13), it is detached from the adhesive joint between the wall surface (16) and the first adhesive surface (4).

[0049] The visible protrusion of the respective handle (25) from the outlines of the previously described normal projections may be not only aesthetically undesirable for specific applications, for example, if conditions prevail at the bonding location that could damage the handle (25). It may therefore be advantageous to accommodate the respective handle (25) within the respective normal projection of the arrangement (1) onto the wall surface (16) or the reveal surface (20), while still remaining easily accessible.

[0050] With reference to the Figs. 7 - 11This can be achieved in particular by providing an end cap (33), wherein the end cap (33) has a receiving chamber (35) open to the wall surface (16) for the grip (25) that can be inserted therein and a connecting pin (34) that is preferably integrally formed on the end cap (33) for connecting the end cap (33) to the fastening profile (2) or the adapter (5) connected to the fastening profile (2). Figs. 7 - 11 show the process of attaching the end cap (33) to the free end of the fastening profile (2). In detail, Fig. 7the position of the first double-sided adhesive strip (13) after bonding to the wall surface (16). The first double-sided adhesive strip (13) has a length (L) and a comparatively smaller width (B). In the longitudinal direction, the first double-sided adhesive strip (13) is preferably oriented parallel to the reveal edge (22), which lies between the wall surface (16) and one of the reveal surfaces (20). The first double-sided adhesive strip (13) has two opposing main surfaces (14, 15) which are self-adhesive at least in some areas. The first double-sided adhesive strip (13) also has a locally non-adhesive area on each of its two main surfaces (14, 15), wherein the non-adhesive local areas are opposite one another.The areas which are non-adhesive on both sides together form a handle (25) which can be grasped as needed to exert a pulling force on the first double-sided adhesive strip (13), which can then be detached from the wall surface (16) by stretching.

[0051] Fig. 8 shows the fastening profile (2) which is glued to the wall surface (16) via the two opposing adhesive surfaces of the first double-sided adhesive strip (13). The longitudinal axis (3) of the fastening profile (2) extends parallel to the reveal edge (22). While the adhesive surfaces of the first double-sided adhesive strip (13) are concealed by the fastening profile (2), the handle (25) of the first double-sided adhesive strip (13) adjacent to the adhesive surfaces of the first adhesive strip (13) remains uncovered by the fastening profile (2) and protrudes beyond the axially free end of the fastening profile (2).

[0052] Fig. 9 shows in contrast to the previous Fig. 8 folding the handle (25) from the wall surface (16) onto the fastening profile (2) around an imaginary axis that is perpendicular to the longitudinal axis (3) of the fastening profile (2). The imaginary axis touches the end of the adhesive area of ​​the first double-sided adhesive strip (13). The imaginary axis does not physically exist and is an inherent part of the properties of the double-sided adhesive strip. The first double-sided adhesive strip (13) is flexible and can be folded at many positions along its length (L). A certain stiffness of the handle (25) can support a more haptically pleasing folding. This stiffness of the handle (25) can be achieved, for example, by producing the non-adhesive finish that creates the handle (25) with a film with a thickness of more than 18 µm.

[0053] Fig. 10 shows in addition to the Fig. 9 elements shown, an end cap (33) which comprises a receiving chamber open to the wall surface (16) and a connecting pin (34) for the detachable and pluggable connection of the end cap (33) to the fastening profile (2). The end cap (33) can now be positioned over the free end of the fastening profile (2) and plugged onto the free end of the fastening profile (2) along the longitudinal axis (3) of the fastening profile (2), wherein it receives the previously folded-over handle (25) of the first double-sided adhesive strip (13) in its receiving chamber (35). Fig. 11 shows the end cap (33) attached to the fastening profile (2). This advantageously protects the handle (25) of the first double-sided adhesive strip (13) from damage, allowing the undamaged double-sided adhesive strip (13) to be removed at a later time.

[0054] Fig. 12shows a perspective view of the fastening profile (2) from the second embodiment and a particularly advantageous form of the pivoting wing (9), which is already attached to the fastening profile (2) in a linearly displaceable manner. The pivoting wing (9) is articulated to the connecting element (6) via a pivoting hinge (7), which here is designed in particular as a film hinge. The pivot axis (8) of the pivoting hinge (7) lies parallel to the longitudinal axis (3) of the fastening profile (2). The pivoting wing (9) comprises in particular a grip flap (30) which is articulated to the pivoting wing (9) via a folding axis (36). The grip flap (30) can thus be pivoted via the folding axis (36) without changing the position of the second adhesive surface (12) on the pivoting wing (9) or the position of the fastening profile (2). The folding axis (36) is designed in particular as a film hinge.When not pivoted, the tab flap (30) lies in a plane parallel to the plane of the second adhesive surface (12). When mounted, it covers the tab (25) of the second double-sided adhesive strip (17).

[0055] Fig. 13 - 14show perspective views of the grip flap (30), each in a pivoted state, whereby the plane of the grip flap (30) can be brought at least 30° to the plane of the second adhesive surface (12). As long as the grip flap (30) is not pivoted, the grip (25) of the second double-sided adhesive strip (17) is covered by the grip flap (30). For this purpose, the second double-sided adhesive strip (17) was previously glued in one layer so that its adhesive surfaces are located under the pivoting wing (9), and the grip (25) of the second double-sided adhesive strip (17) is congruently located under the grip flap (30). If it is desired to remove the second double-sided adhesive strip (17) during disassembly and thus to break the bond between the reveal surface (20) and the second adhesive surface (12), the grip flap (30) can be folded away from the reveal surface (20) and the grip (25) becomes accessible.By grasping the handle (25) and exerting a pulling force, the second double-sided adhesive strip (17) can then be pulled out of the adhesive joint and the connection between the second adhesive surface (12) and the reveal surface (20) is released without damage.

[0056] Fig. 15shows an embodiment of a template (37) for positioning the first double-sided adhesive strip (13). The template (37) consists of a flat material and is produced in particular from a cardboard blank. The blank has a polygonal shape with at least five side edges. In the embodiment, the template has six side edges (39 - 44). The template (37) also has a recess (38), preferably in an asymmetrical shape. The template (37) can be placed against the reveal edge (22) and thus indicates the desired position of the first double-sided adhesive strip (13) relative to this reveal edge (22) via its recess (38).Optionally, two adjacent side edges (39, 40) of the template (37) can enclose a right angle between them, so that the template can be placed against the reveal edge (22) and an adjacent reveal edge and the recess thus defines a desired position for the bonding of the first double-sided adhesive strip (13) on the wall surface (16), wherein this desired position is defined by a parallelism of the longitudinal edges of the first double-sided adhesive strip (13) with the reveal edge (22), by a certain first distance between the reveal edge (22) and the nearest longitudinal edge of the first adhesive strip (13) and by a certain second distance between one end of the reveal edge (21) and an edge lying at right angles to the longitudinal edge of the first double-sided adhesive strip (13).The asymmetrical design of the template (37) offers the advantage that its application and use can be explained more simply and clearly in assembly instructions, and this asymmetrical template (37) can be applied to the wall surface (16) with reference to more than one reveal geometry, thus enabling a fully defined position. For example, with a less favorable rectangular or square template shape, there would be several mirror- or axisymmetrically congruent orientations of the template base and no clear reference edges to which assembly instructions could clearly refer.

[0057] Fig. 16 - 17show an arrangement (1) according to the invention, which is additionally supplemented by a second mirrored arrangement. Thus, an arrangement (1) according to the invention with a fastening profile (2) fastened to the reveal (21) is provided on each of the two sides of the reveal (21), wherein the two arrangements are mirror-symmetrical to a center plane between a first reveal surface (20) and an opposite reveal surface. A cover sheet (29) is guided between the two fastening profiles (2, 2). The cover sheet (29) is in particular part of a cassette which is held between the fastening profiles (2, 2) oriented parallel to a reveal edge and by these (2, 2). Particularly preferably, the cassette contains a pleated fabric, wherein the pleated fabric is connected to a grip profile at its lower edge.By moving the handle profile in a path parallel to the longitudinal axis of the fastening profiles (2, 2), the degree of coverage of the extendable cover track (29) can be varied. List of reference symbols 1 arrangement 2 Mounting profile 3 Longitudinal axis 4 first adhesion surface 5 adapter 6 connecting element 7 Swivel hinge 8 Swivel axis 9 Swing wing 10 first main surface - pivoting wing 11 second main surface - swivel wing (for adhesive strips) 12 second adhesion surface 13 first double-sided adhesive strip 14 first main surface - first double-sided adhesive strip (first adhesive surface facing the mounting profile or adapter) 15 second main surface - first double-sided adhesive strip (facing the wall surface) 16 Wall surface 17 second double-sided adhesive strip 18 first main surface - second double-sided adhesive strip (second adhesive surface or second main surface facing the pivoting wing) 19 second main surface - second double-sided adhesive strip (facing the reveal surface) 20 Reveal area 21 reveal 22 reveal edge 23 Building opening 24 Swivel range 25 Handles (adhesive strips) 26 clamping element (adapter) 27 T-shaped rail (pivoting wing) 28 Clamp (pivoting wing) 29 Cover sheet 30 Handle flap (pivoting wing) 31 first spacer 32 additional spacer 33 End cap 34 Connecting pin (end cap) 35 Receiving chamber (end cap) 36 Folding axis 37 template 38 Recess (stencil) 39 first side edge (template) 40 second side edge (template) 41 third side edge (template) 42 fourth side edge (template) 43 fifth side edge (template) 44 sixth side edge (template)

Claims

1. An assembly (1) for fastening a profile (2) to a reveal (21) which comprises a reveal surface (20) which borders a wall surface (16) separated by a reveal edge (22), wherein the assembly comprises a fastening profile (2) with a longitudinal axis (3), wherein the fastening profile (2) extends along the longitudinal axis (3) from a defined cross section and wherein the fastening profile (2) has a first adhesion surface (4), characterized in that the assembly (1) further comprises - a connecting element (6) which can be connected to the fastening profile (2), wherein the connecting element (6) comprises a pivot hinge (7) the pivot axis (8) of which extends parallel to the longitudinal axis (3) of the fastening profile (2) connected to the connecting element (6), and wherein a pivot vane (9) is hinged by a pivot hinge (7) and comprises a first main surface (10) and an opposing second main surface (11), wherein the second main surface (11) provides a second adhesion surface (12) the relative angle of which with respect to the first adhesion surface (4) can be varied by pivoting the pivot vane (9) over a pivot range (24); - a first double-sided adhesive strip (13) with a first self-adhesive main surface (14), as well as a second self-adhesive main surface (15) which is opposite the first self-adhesive main surface (14), wherein the first self-adhesive main surface (14) of the first double-sided adhesive strip (13) can be adhered to the first adhesion surface (4) and the second self-adhesive main surface (15) of the first double-sided adhesive strip (13) can be adhered to the wall surface (16) in order to adhesively fasten the fastening profile (2) to the wall surface (16); and - a second double-sided adhesive strip (17) with a first self-adhesive main surface (18), as well as a mutually opposing second self-adhesive main surface (19) which is opposite the first self-adhesive main surface (18), wherein the first self-adhesive main surface (18) of the second double-sided adhesive strip (17) can be adhered to the second adhesion surface (12) at the pivot vane (9) and the second self-adhesive main surface (19) of the second double-sided adhesive strip (17) can be adhered to a reveal surface (20) bordering the wall surface (16) in order to adhesively fasten the fastening profile (2) to the reveal surface (20) by pivoting the pivot vane (9).

2. The assembly as claimed in claim 1, wherein the fastening profile (2) has a cross section with a diameter and the connecting element (6) has a hole with approximately that diameter, and wherein the fastening profile (2) passes through the hole in order to form a pivot hinge (7) thereby.

3. The assembly (1) as claimed in one of the preceding claims, wherein the first adhesion surface (4) is part of an adapter (5) which can be connected to the fastening profile (2), in which a geometry defined by the cross section of the fastening profile (2) is brought into fitting connection with a formation on the adapter (5) which is complementary thereto by a movement of the adapter (5) relative to the fastening profile (2) and along the longitudinal axis (3) of the fastening profile (2).

4. The assembly (1) as claimed in one of the preceding claims, wherein the envelope around the cross section of the fastening profile (2) is substantially rectangular and the fastening profile (2) comprises a flat outer surface in regions, and therefore provides a first adhesion surface (4) on which the first main surface (14) of the first double-sided adhesive strip (13) can be adhered.

5. The assembly as claimed in claim 4, wherein the fastening profile (2) forms a groove parallel to its longitudinal axis, in which the connecting element is displaceably retained.

6. The assembly (1) as claimed in claim 4, wherein, parallel to its longitudinal axis (3), the fastening profile (2) forms a rail (27) which is T-shaped in cross section and wherein the connecting element (6) with the pivot vane (9) hinged via the pivot hinge (7) has a substantially rectangular perimeter, and a clasp (28) is formed on the connecting element (6), wherein the clasp (28) grips around the T-shaped rail (27), so that the connecting element (6) together with the pivot vane (9) can be displaced along the T-shaped rail (27).

7. The assembly (1) as claimed in one of the preceding claims, wherein the first double-sided adhesive strip (13) and the second double-sided adhesive strip (17) have stretch-releasable properties and both the first double-sided adhesive strip (13) as well as the second double-sided adhesive strip (17) form at least one end region with a non-adhesive region as a tab (25) and can release a bond which is produced by the respective double-sided adhesive strips (13, 17), wherein a tensile force is exerted on the respective tab (25) in the direction of the plane of adhesion, whereupon the respective double-sided adhesive strip (13, 17) is stretch-released.

8. The assembly (1) as claimed in claim 7, wherein the first double-sided adhesive strip (13) has a rectangular perimeter and a length and a width which is smaller with respect to the length and wherein the tab (25) of the first double-sided adhesive strip (13) can be folded about an axis which is orientated at right angles to a longitudinal edge of the first double-sided adhesive strip (13), and the axis lies between the adhesive region of the first double-sided adhesive strip (13) and the non-adhesive region of the first double-sided adhesive strip (13).

9. The assembly (1) as claimed in claim 8, wherein the tab (25) of the first double-sided adhesive strip (13) is covered by an end cap (33) when this is fitted onto a free axial end of the fastening profile (2).

10. The assembly (1) as claimed in one of the preceding claims, wherein the pivot vane (9) comprises a tab flap (30) which is hinged on the pivot vane (9) via a flap hinge (36).

11. The assembly (1) as claimed in one of the preceding claims, wherein the assembly further comprises a template (37) for positioning the first double-sided adhesive strip (13), wherein the template (37) consists of a laminar material and has a polygonal and asymmetrical basic shape with at least five lateral edges (39 - 44), and wherein a recess (38) is inserted inside the asymmetrical basic shape.

12. The assembly (1) as claimed in claim 11, wherein the recess (38) in the template (37) specifies a distance between the first double-sided adhesive strip (13) and the reveal edge (22) when one of the lateral edges (39 - 44) of the template (37) lies against the reveal edge (22).

13. The assembly (1) as claimed in one of the preceding claims, wherein the assembly is mirror-symmetrically duplicated about a central plane lying between two opposing reveal surfaces and therefore comprises a second fastening profile (2), and the fastening profiles (2; 2) guide a web covering (29) between them.

14. A method for fastening a fastening profile (2) to a reveal (21) with an assembly (1) as claimed in one of the preceding claims 1 - 12, comprising - positioning and adhering a first double-sided adhesive strip (13) on a wall surface (16); - positioning and adhering a second double-sided adhesive strip (17) on a reveal surface (20) adjacent to and bordering the wall surface (16), wherein the reveal surface (20) is part of the reveal (21) and a reveal edge (22) is located between the reveal surface (20) and the wall surface (16); - adhering the first adhesion surface (4), which has the fastening profile (2), to the first double-sided adhesive strip (13), whereupon then, the fastening profile (2) is adhered to the wall surface (16) and the longitudinal axis (3) of the fastening profile (2) is fixed parallel to the reveal edge (22); - connecting a connecting element (6) to the fastening profile (2), wherein the connecting element (6) comprises a pivot hinge (7) the pivot axis (8) of which extends parallel to the longitudinal axis (3) of the fastening profile (2) connected to the connecting element (6), and wherein a pivot vane (9) which comprises a first main surface (10) and an opposing second main surface (11) is hinged by the pivot hinge (7), wherein the second main surface (11) provides a second adhesion surface (12) the angle of which relative to the first adhesion surface (4) can be varied by pivoting the pivot vane (9) over a pivot range (24); - pivoting the pivot vane (9) in the direction of the reveal surface (20) until the second adhesion surface (12) is brought into adhesive contact with the second double-sided adhesive strip (17), and therefore the fastening profile (2) is adhered to both the wall surface (16) as well as to the reveal surface (20).

15. The method as claimed in claim 14, wherein the assembly (1) further comprises a template (37) for positioning the first double-sided adhesive strip (13), wherein the template (37) consists of a laminar material and has a polygonal and asymmetrical basic shape with at least five lateral edges (39 - 44), and wherein a recess (38) is inserted within the asymmetrical basic shape, wherein the recess (38) in the template (37) specifies a distance between the first double-sided adhesive strip (13) and the reveal edge (22) when one of the lateral edges (39 - 44) of the template (37) lies against the reveal edge (22).