Clamp holder for hanging objects
Patent Information
- Application Number
- DE202025103489
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2025-08-14
- Estimated Expiration
- 2035-06-30
Smart Images

Figure 00000000_0000_ABST
Abstract
Description
[0001] The invention relates to a clamp holder for hanging or holding objects, such as decorative items or window pictures or the like, on the beams or casement frames of windows or doors, according to the preamble of claim 1.
[0002] From EP 1520955B1 a clamp holder for sun or privacy protection devices on the beams of windows, doors or the like is known, which has two clamping flanges that can be moved relative to each other by means of a threaded rod.
[0003] Furthermore, window or door hooks are known which engage behind a stile or sash frame of a window or door or a window or door frame in order to hang objects.
[0004] The disadvantage of such hooks is that the position of the suspended object is determined by the geometric dimensions of the hook and is not adjustable. The hook for hanging the object may therefore be located too far from the stile or window or door frame within the visible surface of a pane of glass, which is primarily aesthetically disadvantageous and undesirable. Conventional hooks, and thus also the hanging of the object, often cannot be adjusted relative to the stile or sash frame, or can only be adjusted with considerable effort using tools and additional fastening materials.
[0005] Based on the disadvantages described above, it is an object of the invention to provide an adjustable clamp holder which avoids the above-mentioned disadvantages, in particular to provide a clamp holder with a receiving means, for example a hook, which is adjustable depending on the width of the stile or frame of a window or door and thereby improves the aesthetics of an object suspended on a window or door.
[0006] The object is achieved according to the invention by a clamp holder for holding an object according to the features of claim 1. Advantageous embodiments are the subject of the subclaims.
[0007] The invention relates to a clamp holder for hanging or holding objects, such as decorative items, door or window pictures or blinds, on the beams or casement frames of windows or doors.
[0008] Generally, a window or door has a frame and the sash. The frame is the fixed part of the window or door. It is firmly anchored in the masonry and connected to the sash. The sash is the movable part of the window. It is connected to the frame. The sash describes the frame of the window sash.
[0009] The clamp holder according to the invention further comprises a clamping element for releasably mounting on the stile or sash of the window or door, wherein the clamping element has clamping cheeks, in particular arranged in a U-shape, for mounting the clamp holder on an edge of the stile or sash. The clamp holder can also be referred to as a clamp support or generally as a holding device.
[0010] The clamping element can therefore be placed on the edge, preferably the top edge, of the stile of the (open) window or door. It can be moved along the edge as desired to find a suitable position, as long as the clamping element is not yet clamped between the sash and frame. Since the material thickness of the clamping element's clamping cheeks is comparatively thin, the window or door can be closed easily even with the clamp holder in place. This ensures that the clamp holder is securely clamped between the stile of the window or door and the window or door frame (frame).
[0011] Furthermore, the clamp holder according to the invention comprises a holding element with at least one receiving means, in particular with a hook or a projection (bolt), for holding, receiving, or hanging the object. The holding element can also be referred to as a hook element or a receiving element. The receiving means of the holding element can be designed as a hook or a projection or the like in order to easily fasten the object thereto, for example, by hanging it. In particular, for example, a window picture can be easily hooked into or hung on the hook or projection using a fastening cord.
[0012] According to the invention, the clamping element and the holding element are slidably connected to one another in the assembled state. In other words, the clamping element and the holding element are not only connected to one another to form a unit. They are also arranged slidably relative to one another, i.e., the holding element can be moved relative to the clamping element for precise adjustment, for example, of the height of the receiving means (hook, projection, bolt) relative to the clamping element arranged on the window frame or relative to the window frame.
[0013] The clamping element has walls that fit around the edge of the stile or frame. The wall elements of the clamping element are placed on the stile. When installed, one wall element can engage behind the stile at the rear, while the other can rest on the top of the stile. These two elements are clamped between the stile of the window sash and the frame (frame) when the window or door is closed, ensuring the clamp holder is securely held. A third wall element can fit snugly against the stile from the front to further stabilize the clamping element.
[0014] Due to the inventive adjustability of the holding element with the receiving means, for example a hook, the distance to the window or door frame can be set very easily. In this way, an object that is inserted or hung up can be arranged as close as possible to the stile or frame. A disadvantage of known hooks from the prior art is that a hook is often located too far inside the glass surface of the window or door or too far away from the glass surface, which is undesirable for aesthetic reasons. These disadvantages can be avoided by the displaceability / adjustability of the holding element relative to the clamping element that is fixed to the frame. The holding element can be essentially S-shaped or Z-shaped. The holding element can in particular have a projection so that the hook arranged thereon is offset inwards in the installed position, i.e. towards the frame or glass pane of the window or door.This ensures that the support (hook) reaches as close as possible to the glass pane of the window or door and does not "float freely in space." This also further improves the aesthetics.
[0015] According to a first advantageous embodiment of the invention, the holding element and the clamping element are held against each other or connected to each other under elastic prestress in the assembled state. For this purpose, both the holding element and the clamping element can each have a resilient tab. These two tabs can be mechanically tensioned or clamped against each other in the assembled state of the clamp holder to hold the holding element to the clamping element.
[0016] In other words, the two (only) elements of the clamp holder are held against each other in a very simple way by clamping a tab of one element with a tab of the other element.
[0017] Each of the spring-loaded tabs exerts a spring force on the other tab to secure the retaining element to the clamping element.
[0018] During assembly of the clamp holder, the spring-loaded tabs are slightly bent against the respective spring force, allowing the other tab to be inserted into the resulting gap between the tab and the corresponding element. After assembly, the two tabs rest against each other under spring pressure, holding the two elements together. This allows the retaining element to still be moved relative to the clamping element, even after both elements have been assembled.
[0019] The retaining element has a guide for the tab of the clamping element. Conversely, the clamping element also has a guide for the tab of the retaining element, ensuring secure and precise adjustability or displacement. These guides can also be formed integrally with the corresponding component (clamping or retaining element).
[0020] According to a further advantageous embodiment of the invention, the clamping element and the holding element are arranged in the assembled state so that they can be displaced relative to one another by means of a locking device. This is a displaceable, spring-loaded locking connection guided under mechanical tension.
[0021] In order to realize this locking device, the clamping element can have a locking element which interacts with a corresponding counter-locking element of the holding element.
[0022] In particular, the locking element can be designed as a toothed strip and the counter-locking element as at least one locking tooth. Conversely, the counter-locking element can alternatively be designed as a toothed strip and the locking element as at least one locking tooth. Since this can also be a so-called ratchet connection, the locking tooth can also be referred to as a ratchet tooth, which can interact with the teeth or tooth gaps of the toothed strip in a similar way to a ratchet.
[0023] The toothed strip can be arranged on the clamping element, and the at least one locking tooth can be arranged on the holding element. Alternatively, however, it is also possible for the toothed strip to be arranged on the holding element and the at least one locking tooth to be arranged on the clamping element.
[0024] It is essential that the at least one locking tooth can spring into a suitable locking gap in the toothed strip under mechanical tension in such a way that the respective at least one locking tooth locks the toothed strip.
[0025] When assembled, the toothed strips and the locking teeth are clamped against each other in such a way that they rest against each other, forming a pre-tension, and the locking teeth fall into the matching tooth gaps of the toothed strips under tension and are held securely in this position under tension.
[0026] For a particularly stable and secure locking connection, a locking tooth can be provided on opposite cheeks of the clamping element or alternatively of the holding element, whereby the locking teeth, when locked under mechanical tension, fall into corresponding locking gaps of the toothed strips, which are also arranged on opposite sides.
[0027] To hold the holding element in a desired position relative to the clamping element, the holding element is displaceable in a first displacement direction, but not in a direction opposite thereto, similar to a ratchet, which is also only rotatable in one direction, but is locked in a direction opposite thereto.
[0028] For this purpose, the teeth of the toothed rack can be inclined so that in a first displacement direction V the locking teeth slip through and in the opposite displacement direction V the locking teeth are locked in the individual locking positions of the toothed rack.
[0029] In other words, when the retaining element is adjusted in the displacement direction V, for example, upwards, a displacement is permitted along the inclined tooth flanks of the toothed strips without locking in each of the tooth gaps during displacement. When a desired position is reached, the locking teeth move into the next tooth gap of the toothed strip to ensure locking and secure hold of the retaining element in this locking position.
[0030] The teeth of the rack can therefore have a bevel (starting bevel) on one tooth flank, over which the locking tooth can slide during a movement in the displacement direction V, e.g., upwards. The other tooth flank of the teeth of the rack can be formed almost vertically, so that the locking tooth is prevented from moving during a downward movement in the displacement direction V and cannot slide over the tooth of the rack. This position can also be referred to as the locking position.
[0031] To release a locking connection, an external force can be applied – by a person – to the spring-loaded locking teeth, thereby releasing the engagement of the locking teeth in the tooth gaps of the toothed strip. Once the engagement is released, the retaining element can be freely moved relative to the clamping element. As soon as the external force no longer acts on the locking teeth, they return to a locking position due to their spring arrangement or inherent tension.
[0032] According to a further advantageous embodiment of the invention, the clamping element and / or the holding element is / are each monolithic. The tabs can also be monolithic with the clamping element and / or the holding element. This makes the manufacturing process for the individual parts of the clamp holder, namely the clamping element and / or the holding element, particularly simple. The holder consists of only two parts, which can be manufactured very simply and cost-effectively, for example, using 3D printing. The clamping element and / or the holding element can be made of plastic.
[0033] Further objects, advantages, features, and possible applications of the present invention will become apparent from the following description of an exemplary embodiment with reference to the drawing. All described and / or illustrated features, individually or in any meaningful combination, constitute the subject matter of the present invention, regardless of their summary in the claims or their interrelationship.
[0034] Some of them are shown schematically: Fig. 1 a clamp holder with a clamping element and with a holding element in disassembled state in perspective view, Fig. 2 the clamp holder according to Fig. 1 when assembled in a collapsed position, Fig. 3 the clamp holder according to Fig. 1 when assembled in an extended position, Fig. 4 the clamp holder according to Fig. 1 in assembled condition in a middle position in front view, Fig. 5 the clamp holder according to Fig. 4 in side view, Fig. 6 the clamp holder according to Fig. 4 and Fig. 5 in rear view, Fig. 7 another embodiment of the clamp holder without projection / offset in perspective view, Fig. 8 the clamp holder according to Fig. 7 in a front view and Fig. 9 the clamp holder according to Fig. 7 and Fig. 8 in side view.
[0035] In the following figures of the drawing, identical or equivalent components are provided with reference numerals based on an embodiment in order to improve readability.
[0036] The Fig. 1 shows a clamp holder 10 according to the invention with a receiving means 15, which is designed as a hook, in a disassembled state in a schematic representation. The remaining Fig. 2 to 6 show the clamp holder 10 in the assembled state, with the Fig. 2 and Fig. 3 show the clamp holder in a fully inserted and fully extended position. Fig. 4 to 6 show the clamp holder 10 in a central position in different views.
[0037] The clamp holder 10 can be hung or clamped on a stile or on a sash frame of a window or door and is used to hold or hang an object, for example a decorative item, a window or door picture or a blind on a window or door.
[0038] The frame is the immovable part of the window or door. It is usually firmly anchored in the masonry and connected to the window sash. The casement is the movable part of the window or door. It is connected to the frame and can usually be opened. When the window is closed, the sash always rests against the frame. Therefore, the casement frame describes the frame of the window or door sash.
[0039] The clamp holder 10 comprises a clamping element 1 and a holding element 2. The clamping element 1 is suspended from the upper side, in particular on an edge, of the sash frame (not shown) by means of clamping cheeks 3, 4, 5, which are arranged in a U-shape in this case. The clamping element 1 can therefore be placed on the edge, preferably the upper edge, of the stile of the (open) window or the (open) door. It can be moved along the edge as desired to find a suitable position, as long as the clamping element 1 is not yet clamped between the sash and frame. Since the material thickness of the clamping cheeks 3, 4, 5 of the clamping element 1 is comparatively thin, the window or door can be closed without difficulty even with the clamp holder 1 in place. In this way, the clamp holder 1 is securely clamped between the stile of the window or door and the window or door frame (frame).
[0040] In the embodiment described here, the holding element 2 has the hook 15, to which the object - not shown here - can be hung.
[0041] In the present case, both the holding element 2 and the clamping element 1 are each formed in one piece, for example, by 3D printing. In other words, the clamp holder 10 described here consists of two parts, the holding element 2 and the clamping element 1, as the Fig. Show 1 to 6.
[0042] The holding element 2 is displaceable relative to the clamping element 1 in a displacement direction V in order to displace or adjust the hook 15 arranged on the holding element 2 in the mounted state relative to the sash of the window or door. In the present exemplary embodiment, the displacement direction V extends from top to bottom, i.e., the hook 15 can be adjusted upwards or downwards relative to the window or door in the mounted state in order to optimally position the object to be hung on it on the window or door.
[0043] Both the clamping element 1 and the holding element 2 each have a resilient tab 8, 9. These tabs 8, 9 extend in the mounted state of the clamp holder 10 in the displacement direction V, i.e. in the direction in which the holding element 2 is displaced relative to the clamping element 1. By displacing the holding element 2, the hook 15 is also displaced, so that the position of the object suspended from the hook 15 can be adjusted. For example, it is often undesirable for the object to hang too far inside a glass surface of the window or door or too far away from the sash frame or stile, i.e. too far down. The adjustment of the holding element 2 therefore has primarily aesthetic reasons.
[0044] In order to move the holding element 2 into a desired position on the clamping element 1 and to hold it there, the clamping element 1 and the holding element 2 are adjustable relative to one another in the displacement direction V and are connected to one another by means of a locking mechanism with a locking element 6 and a corresponding counter-locking element 7, and can be fixed in different locking positions. In particular, the locking element 6 can be designed as a toothed strip 11 and the counter-locking element 7 as at least one locking tooth 12.
[0045] In the present case, the clamping element 1 has a toothing on each opposite side, designed as a toothed rack or rack 11, with locking positions. The holding element 2 has two opposing, spring-loaded locking teeth 12, each of which engages in corresponding tooth gaps in the toothed rack 11 to reach corresponding locking positions. In this way, the holding element 2 and the clamping element 1 can be displaced relative to one another and fixed in different locking positions. Within the meaning of the invention, it would also be conceivable for the toothed rack 11 to be arranged on the holding element 2 and the locking teeth on the clamping element 1.
[0046] The Fig. 2 shows the clamp holder 10 in a maximum collapsed position, ie the hook 15 is in a maximum upper position. Fig. Figure 3 shows the clamp holder 10 in a fully extended position, meaning that the hook 15 is positioned as far down as possible. Starting from this fully extended position, the holding element 2 with hook 15 can be adjusted upward in the direction of displacement V before reaching a desired locking position. Of course, it can also be adjusted upward from other positions.
[0047] The Fig. 4, Fig. 5 and Fig. 6 show the clamp holder 10 in a middle position, ie the hook 15 is in a position between the maximum pushed together and maximum extended position.
[0048] To ensure that the holding element 2 is securely guided during displacement relative to the clamping element 1, the holding element 2 has the resilient (elastic) tab 9. The clamping element 1 also has the resilient tab 8. During assembly of the clamp holder 10, these tabs 8, 9 are clamped against one another under tension, i.e. the tab 8 of the clamping element 1 rests under mechanical tension on the tab 9 of the holding element 2. Each of the two tabs 8, 9 therefore exerts a force on the other tab 9, 8 in order to hold the clamping element 1 and the holding element 2 together by clamping the tabs 8, 9 against one another. This force acts essentially perpendicularly on the tabs 8, 9, i.e. approximately perpendicular to the direction of displacement V.
[0049] As in particular the Fig. 1, but also the Fig. 2 and Fig. As clearly shown in Figure 3, the holding element 2 has a guide 14 for the tab 8 of the clamping element 1. Conversely, the clamping element 1 also has a guide 16 for the tab 9 of the holding element 2, thereby ensuring secure and precise adjustability or displacement. These guides are also formed integrally with the corresponding component (clamping element 1 or holding element 2).
[0050] When the holding element 2 is displaced relative to the clamping element 1, the tabs 8, 9, which are under mechanical tension, slide against each other in the displacement direction V, i.e., in this case, from top to bottom and vice versa. They are guided by the guides 14 and 16.
[0051] The teeth of the toothed rack 11 are angled so that in one direction (in the assembled state in the upward displacement direction V) the locking teeth 12 slip through and in the opposite direction the locking teeth 12 are locked in the individual locking positions of the toothed rack 12, similar to a ratchet. In other words, when the holding element 2 is adjusted upward in the displacement direction V, a displacement over the inclined tooth flanks of the toothed racks 11 (or run-on bevels) is permitted without locking occurring in each of the tooth gaps. When a desired position is reached, the locking teeth 12 move into the next tooth gap of the toothed racks 11 to ensure locking and secure hold of the holding element 2 in this locking position.
[0052] The teeth of the toothed rack 11 have a bevel (starting bevel) on one tooth flank, over which the locking tooth 12 can slide upwards during a movement in the displacement direction V. The other tooth flank of the teeth of the toothed rack 11 is formed almost perpendicular to the displacement direction V, so that the locking tooth 12 is prevented from moving downwards in the displacement direction V and cannot slide over the tooth of the toothed rack 11. This position can also be referred to as the locking position.
[0053] For a positive connection, the locking teeth 12 engage in the tooth gaps of the toothed strip 11 in order to hold the holding element 2 in the downward direction (downward in the displacement direction V).
[0054] By moving the retaining element 2 upward, the locking teeth 12 "slide" over each tooth of the toothed strip 11 through the individual possible locking positions. The locking teeth 12 are brought into the respective engagement positions by the resilient tab 9, to which the locking teeth 12 are integrally formed, and are held there unless the retaining element 2 is moved further upward. In such an engagement position, the locking teeth 12 are held in the corresponding locking gaps of the toothed strip 11 by the spring force of the tab 9.
[0055] The locking teeth 12 can be held even better in the tooth gaps of the toothed racks 11 due to an elastic force acting transversely to the displacement direction V, particularly in the direction of the tooth gaps of the toothed racks 11. This elastic force is realized by opposing resilient sections 13 on the tab 9, on which the respective locking teeth 12 are arranged. The resilient sections 13 can be formed from parts of the tab 9. In particular, the tab 9 can have corresponding incisions, so that the resilient sections 13 are arranged elastically movable relative to the tab 9 in order to hold the locking teeth in the tooth gaps of the toothed racks 11.
[0056] The locking teeth 12 of the holding element 2 are therefore not hindered by the teeth of the toothed rack 11 during an upward movement relative to the clamping element 1 in the displacement direction V, even though the locking teeth 12 come into contact with the teeth of the toothed rack 11. Since the locking teeth 12 slide upward in the displacement direction V over bevels of the teeth of the toothed rack 11, the locking teeth 12 "hop" or slide over one tooth of the toothed rack 11 after the other as long as the upward movement (upwards) continues, i.e., until the desired displacement of the holding element 2 relative to the clamping element 1 is achieved.
[0057] To release the locking connection between clamping element 1 and holding element 2, the locking teeth 12 are disengaged from the tooth gaps of the toothed strip 11. This occurs by applying an external force to the tabs 8, 9 in a direction approximately perpendicular to the displacement direction V. The resilient tab 9 with the locking teeth 12 arranged thereon is subjected to a force counter to its restoring force, for example, by a person pressing it with their hand, in order to disengage the locking teeth 12 from the tooth gaps of the toothed strip 11. The holding element 2 can then be moved downwards in the displacement direction.
[0058] When the external force is removed, the locking teeth 12 reengage the corresponding tooth gaps of the toothed strip 11 to lock the holding element 2 in this achieved position with the clamping element 1. Depending on the position of the locking teeth 12 in the toothed strip 11, an upward displacement in the displacement direction V is possible to reach a locking position. By moving the holding element 2, a desired position for the object suspended from it can be selected.
[0059] In particular, the distance to the window or door frame can be adjusted very easily. In this way, a suspended or hung object can be positioned as close as possible to the stile or frame. The holding element 2 can be substantially S- or Z-shaped. The holding element 2 can in particular have a projection or a bent portion 17, so that the hook 15 arranged thereon is offset inwards in the mounted position, ie, towards the frame or glass pane of the window or door. Fig. Figures 1 to 6 show such an embodiment. This allows the receiving means (hook) 15 to reach as close as possible to the glass pane of the window or door and not to "float freely in space." This also further improves the aesthetics.
[0060] The execution variant according to Fig.7 to 9 show the clamp holder 10 with a holding element 2 without a projection or offset 17 in three views. Such an adjustable clamp holder 10 can be used, for example, on a door leaf without a frame. As a result, the hook 15 or the object attached to the hook lies almost flush with the door leaf. When the clamp holder 10 is arranged on a window or door without a frame, its geometric dimensions (width / depth) do not need to be compensated for by the projection 17, so that the further embodiment of the clamp holder 10 without a projection or offset can be used here. List of reference symbols 1 clamping element 2 holding element 3 clamping cheek 4 clamping cheek 5 clamping cheek 6 locking element 7 Counter-locking element 8 spring-loaded tab 9 spring-loaded tab 10 clamp holders 11 Toothed strip 12 locking teeth 13 spring-loaded section locking tooth 14 Guide for tab 15 hooks 16 Guide for tab 17 lead V Shift direction QUOTES CONTAINED IN THE DESCRIPTION
[0000] This list of documents submitted by the applicant was generated automatically and is included solely for the convenience of the reader. This list is not part of the German patent or utility model application. The DPMA assumes no liability for any errors or omissions. Cited patent literature
[0000] EP 1520955B1
[0002]
Claims
[1] Clamp holder (10) for holding or hanging objects, such as decorative items, door or window pictures or blinds, on the stiles or casement frames of windows or doors, with a clamping element (1) for detachable arrangement on the spar or on the sash of the window or door, wherein the clamping element (1) has, in particular U-shaped, clamping cheeks (3, 4, 5) for arranging the clamp holder (10) on an edge of the spar or the sash, with a holding element (2) which has at least one receiving means (15), in particular a hook, for receiving or hanging the object, wherein the clamping element (1) and the holding element (2) are slidably connected to one another in the assembled state. [2] Clamp holder (10) according to claim 1, characterized by that the holding element (2) and the clamping element (1) are held against each other under elastic prestress in the assembled state. [3] Clamp holder (10) according to claim 1 or 2, characterized by that the holding element (2) has a resilient tab (9) and the clamping element (1) has a resilient tab (8) and the two tabs (8, 9) are mechanically braced against one another in the assembled state of the clamp holder (10) for holding the holding element (2) on the clamping element (1). [4] Clamp holder (10) according to claim 3, characterized by that each of the resilient tabs (8, 9) exerts a spring force on the other tab (8, 9) in order to fix the holding element (2) to the clamping element (1). [5] Clamp holder (10) according to claim 3 or 4, characterized by that the clamping element (1) has a guide (16) for the resilient tab (9) of the holding element (2) and / or that the holding element (2) has a guide (14) for the resilient tab (8) of the clamping element (1). [6] Clamp holder (10) according to one of claims 1 to 5, characterized bythat the clamping element (1) and the holding element (2) are arranged in the assembled state so as to be displaceable relative to one another by means of a locking device. [7] Clamp holder (10) according to one of the preceding claims, characterized by that the clamping element (1) has a locking element (6) which cooperates with a corresponding counter-locking element (7) of the holding element (2). [8] Clamp holder (10) according to claim 7, characterized by that the locking element (6) is designed as a toothed strip (11) and the counter-locking element (7) is designed as at least one locking tooth (12), or wherein the counter-locking element (7) is designed as a toothed strip (11) and the locking element (6) is designed as at least one locking tooth (12). [9] Clamp holder (10) according to claim 8, characterized bythat the toothed strip (11) is arranged on the clamping element (1) and the at least one locking tooth (12) is arranged on the holding element (2), or wherein the toothed strip (11) is arranged on the holding element (2) and the at least one locking tooth (12) is arranged on the clamping element (1). [10] Clamp holder (10) according to claim 8 or 9, characterized by that the at least one locking tooth (12) has fallen into a matching locking gap of the toothed strip (11) in such a resilient manner under mechanical tension that the respective at least one locking tooth (12) locks the toothed strip (11). [11] Clamp holder (10) according to one of claims 8 to 10, characterized by that a locking tooth (12) is provided on each of the opposite cheeks of the clamping element (1) or of the holding element (2), wherein the locking teeth (12) engage in corresponding locking gaps of the toothed strip (11) when locked under mechanical tension. [12] Clamp holder (10) according to one of the preceding claims, characterized bythat the teeth of the toothed strip (11) are inclined so that in a first displacement direction V a slipping of the locking teeth (12) and in the opposite displacement direction V a locking of the locking teeth (12) in the individual locking positions of the toothed strip (11) is realized. [13] Clamp holder (10) according to one of the preceding claims, characterized by that the clamping element (1) and / or the holding element (2) is / are each monolithic. [14] Clamp holder (10) according to one of the preceding claims, characterized by that the clamping element (1) and / or the holding element (2) is / are made of plastic. [15] Clamp holder (10) according to one of the preceding claims, characterized by that the tab (8) is formed monolithically with the clamping element (1) and / or the tab (9) is formed monolithically with the holding element (2). [16] Clamp holder (10) according to one of the preceding claims, characterized bythat the at least one receiving means (15) of the holding element (2) is designed as a hook for receiving the object. [17] Clamp holder (10) according to one of the preceding claims, characterized by that the holding element (2) is substantially S- or Z-shaped. [18] Clamp holder (10) according to one of the preceding claims, characterized by that the holding element (2) has a projection (17) extending in the direction of the stile or sash frame of the window or door in the assembled position, on which projection the hook (15) is arranged.
Citation Information
Patent Citations
Clamping support for sun- or view-protecting device
EP1520955B1