Mounting arrangement between a holder and a cable support component, and holder with a connecting adapter attached to it.

The fastening arrangement with a positive structure connection adapter and adjustable locking element addresses the limitations of existing designs by ensuring high load-bearing capacity and ease of assembly/disassembly, providing secure and durable cable support.

DE202024104825U1Active Publication Date: 2026-02-19OBO BETTERMANN HUNGARY KFT
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Patent Information

Application Number
DE202024104825
Authority / Receiving Office
DE · DE
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2026-02-19
Estimated Expiration
2034-08-31

AI Technical Summary

Technical Problem

Existing fastening arrangements between cable support components, such as those described in EP 4 131 682 A1, EP 1 589 626 A1, and WO 2018/109420 A1, fail to meet high load-bearing requirements and can unintentionally release under heavy loads or vibrations, and are difficult to disassemble without loosening ceiling-side brackets.

Method used

A fastening arrangement with a holder and a connection adapter designed as a positive structure, incorporating a locking element adjustable against a spring force, allowing easy release and high load-bearing capacity, featuring a locking element that engages with a latch accessible from the outside and a support element for two-sided suspension.

Benefits of technology

The design provides a secure, durable, and high-load-bearing connection that can withstand vibrations, with easy assembly and disassembly, and offers audible and visual feedback confirming correct installation.

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Abstract

Fastening arrangement with a holder (2) with a projecting connection adapter (5) connected thereto, designed as a positive structure, and with a cable support component (3) profiled at least in one connection section (26) by forming an adapter receptacle (22) designed as a negative structure and engaging with the connection adapter (5), wherein the adapter receptacle (22) is enclosed by a front wall (11) having at least one opening (20) as a latch, two side walls (18, 18.1) formed thereon and a support abutment (19, 19.1) formed on at least one side wall (18, 18.1) opposite the front wall (17) and wherein the connection adapter (5) as a profile comprises a front wall (11), two side walls (12, 12.1) and at least one support abutment (19, 19.1) opposite the front wall (11).1) the adapter receptacle (22) has a supported support element (13) and has a locking element (6) which extends through the front wall (11) of the connecting adapter (5) and engages with a locking element (25) in the locking latch of the adapter receptacle (22), which locking element (6) is adjustable against the restoring force of at least one spring element (7) to engage its locking element (23) with the locking latch of the adapter receptacle (22).
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Description

[0001] The invention relates to a fastening arrangement between a holder and a cable support component, in particular between two components of a cable support system. Furthermore, the invention relates to a holder for such a fastening arrangement with a connection adapter integrally formed thereon.

[0002] Such fastening arrangements are used, for example, during the installation or assembly of cable support system components to secure two cable support components together. In such a case, a headplate or end plate serves as the holder for such a fastening arrangement, to which a suspension arm is attached as the cable support component. The headplate or end plate is fixed to the underside of a ceiling. A suspension arm is attached to this, to which further cable support components are or will be attached, such as brackets for supporting a cable tray or cable duct.

[0003] Such a fastening arrangement with a head piece and a suspension stem is known, for example, from EP 4 131 682 A1. In this fastening arrangement, the head piece is a U-shaped stamped and bent part in cross-section, the opposing side walls of which enclose a stem receptacle for inserting the upper section of a suspension stem. Inwardly projecting retaining tabs extend from the side walls at a vertical distance corresponding to the spacing of the holes in the suspension stem. By utilizing the possibility of elastic adjustment of the side walls, the stem receptacle can be widened by inserting the end section of the suspension stem, so that the retaining tabs engage in each opening of the hole pattern. The suspension stem is then suspended from the retaining tabs of the head piece.Additional guide tabs, projecting inwards from the side walls, serve to guide the inserted end section of a suspension rod, so that the inwards projecting retaining tabs align with the hole pattern of the suspension rod in the insertion direction.

[0004] Another fastening arrangement of this type is known from EP 1 589 626 A1. The head of this previously known fastening arrangement is also a stamped and bent part, which, unlike the fastening device known from EP 4 131 682 A1, provides a fully enclosed receptacle for the suspension rod. In this fastening arrangement, retaining tabs projecting inwards are located only on one side wall.

[0005] In this fastening arrangement, the suspension arm hangs from the inwardly projecting retaining tabs of the headpiece. The respective arm receptacle of the headpiece thus forms a negative space for receiving the upper end of the suspension arm. The end face of the suspension arm, inserted into the headpiece, is spaced away from the underside of the headpiece's mounting plate. While such a fastening arrangement is sufficient for many load cases, it does not always meet the higher load-bearing requirements placed on such a fastening arrangement. A problematic aspect of the design described in EP 1 589 626 A1 is that the fastening arrangement between the headpiece and the suspension arm cannot be released, at least not without first loosening the ceiling-side bracket and then reaching into the headpiece receptacle from above to push the retaining tabs out of the openings. This is sometimes desirable.

[0006] From WO 2018 / 109420 A1, another fastening arrangement of the aforementioned type is known. In this fastening arrangement, an additional locking element is inserted into the head piece, which has a U-shaped cross-section. This locking element is slidable relative to the side walls of the head piece at a certain inclination in the direction of insertion of a suspension rod. When a suspension rod is inserted between the side walls, the locking element, which has projecting retaining tabs on its side facing the suspension rod, is moved slightly laterally away from the suspension rod so that the retaining tabs can pass the outside of the end section of the suspension rod. Once the end section of the suspension rod is inserted sufficiently far into the rod receptacle of the head piece and the retaining tabs are aligned with the openings of the suspension rod's locking mechanism, they engage in these openings.The greater the weight on the suspension arm, the more secure the locking mechanism between the locking element, and thus between the headpiece and the suspension arm, is. However, when the suspension arm is unloaded, it can happen that it is unintentionally shifted towards the headpiece during the installation of additional cable support components, or even independently of this process. This can then result in the intended locking mechanism of the suspension arm to the headpiece being released or at least compromised.

[0007] Based on the prior art described above, the invention therefore aims to propose a fastening arrangement mentioned above that overcomes the disadvantages mentioned above in relation to the prior art.

[0008] According to the invention, this problem is solved by a fastening arrangement with a holder having a projecting connection adapter connected thereto, designed as a positive structure, and with a cable support component profiled at least in one connection section in the form of an adapter receptacle designed as a negative structure and engaged with the connection adapter, wherein the adapter receptacle is enclosed by a front wall having at least one opening as a locking latch, two side walls molded onto it and a support abutment molded onto at least one side wall opposite the front wall, and wherein the connection adapter as a profile has a front wall, two side walls and at least one support element opposite the front wall, which is supported on the support abutment of the adapter receptacle and has a locking element.that extends through the front wall of the connection adapter and engages with a latch in the latch of the adapter mount, which latch member is adjustable against the restoring force of at least one spring element to engage its latch with the latch of the adapter mount.

[0009] This mounting arrangement represents, to the best of our knowledge, the first implementation of a concept in which the holder incorporates a connection adapter designed as a positive structure. Accordingly, the cable support component to be attached to the holder has a connection section formed by a corresponding profile with an adapter receptacle that engages with the holder-side connection adapter to create the mounting arrangement. An advantage of this design is that the connection adapter can have a locking element for locking it to the cable support component. This locking element engages with a corresponding opening in the connection section of the cable support component, acting as a locking latch, while remaining accessible from the outside. The latch can thus be easily pushed out of the locking latch, thereby releasing the mounting arrangement.The connection adapter of this fastening arrangement therefore features a locking element that is radially adjustable against the restoring force of at least one spring element. Providing an independent locking element with a bolt engaging a locking catch in the cable support component connected to, or to be connected to, the connection adapter has the advantage that it can be designed to withstand the load independently of the material selection and dimensions of the suspension arm and the other components of the connection adapter or the holder. Such a locking element could, for example, be a bolt whose diameter is a multiple of the material thickness of the connection adapter, which is typically manufactured as a stamped and bent part. A typical material thickness for the connection adapter, which is designed as a profile section, is between 2 and 3 mm. The diameter of the bolt, or...In contrast, the diameter of its locking element can be 12 mm or more. Typically, the diameter of the locking element's bolt corresponds to the clear opening of the hole pattern of the connection section of a cable support component to be attached to the connection adapter. Accordingly, even when using only a single locking element, the loads that can be absorbed by the connection adapter attached to the holder are correspondingly high. In this mounting arrangement, the connection adapter is designed as a positive structure to be constructed with multiple walls enclosing an adapter chamber, typically as a polygonal profile. This not only improves stiffness, particularly with regard to torsional stresses, but also creates a chamber into which the locking element can be adjusted and in which the spring element(s) acting on the locking element are located.The connection adapter comprises a front wall, two side walls molded onto it, and a back wall opposite the front wall. In an embodiment designed for higher loads, the back wall connects the two side walls on their side opposite the front wall. However, it is also possible to design the back wall as a back section with a beveled edge on at least one side wall on its side opposite the front wall. If two such back sections are provided, i.e., a beveled back section is molded onto each side, the back sections do not need to make contact at their joints.

[0010] Providing a connection adapter designed as a positive structure has the further advantage that the back, opposite the latch with respect to the longitudinal axis of the connection adapter, can be supported as a support element against an inner wall or inner wall section of the adapter receptacle of the connection section of the cable support component. This is implemented accordingly in a preferred embodiment. This support is provided by an inner wall section, specifically one that is opposite the front wall and thus the latch. If the latch of the latch member engages in or passes through the latch catch of the connection section of the cable support component, as is the case in a preferred embodiment, the cable support component is suspended on one side of the connection adapter.The resulting tilting moment is absorbed by the aforementioned support arrangement and transferred to the support abutment opposite the front wall of the connection adapter, thus providing a particularly secure, durable, and high-load-bearing connection. This high load-bearing capacity results from the fact that the weight force introduced into the connection adapter is transferred not only via the locking element but also via its support element, thereby cleverly providing a two-sided suspension of the cable support component.

[0011] By incorporating at least one spring element acting on the locking element, against which the locking element is adjustable, the restoring force can be set according to requirements, regardless of the material properties of the connecting adapter. In particular, the inclusion of a spring element allows for the application of an elastic restoring force over a greater range of motion of the locking element, as well as the provision of one or more spring elements, which can also provide higher forces acting on the locking element. This is advantageous for providing a secure fastening arrangement, especially when used in environments with vibrations.

[0012] The connection section of the cable support component to be connected to the connection adapter is designed as a negative structure, complementary to the connection adapter. This negative structure is provided by a front wall, two side walls integrally formed on its sides, and a support abutment opposite at least one side wall to the front wall. In this respect, the adapter receptacle can have a C-shaped cross-section, with the side walls, in a preferred embodiment, additionally featuring a rear flange directed towards the front wall. Similarly, the connection section of the cable support component can be a closed profile. In many cases, the profiling of the cable support component will not be limited to the connection section. Rather, this profiling will extend over the entire length of the cable support component.The required cable support component section can then easily be cut from a longer piece. In such a case, it is advantageous if the cable support component has markings, such as embossing or color markings, from which a cable support component section can be cut from a longer cable support component to provide a sufficient length for the connection section.

[0013] A further advantage of such a mounting arrangement is that the cable support component to be attached to the holder can ultimately be brought right up to the actual holder, for example, a head plate, with its end face. This allows the cable support component attached to the holder to be supported by its end face that contacts the holder.

[0014] With this mounting arrangement, the cable support component can be mounted to the holder with its connection adapter by, depending on the design, sliding the connection section of the cable support component onto the connection adapter. During this sliding process, the locking element is inserted into the adapter chamber to such an extent that the inner surface of the front wall of the connection section of the cable support component can be guided past the end face of the locking element. If the locking element aligns with an opening in the front wall of the connection section, the locking element then engages with this opening. Alternatively, with this mounting arrangement, it is also possible to engage the cable support component and its connection section with the connection adapter by pivoting it into place. By utilizing the leverage effect resulting from the length of the cable support component, even particularly high restoring forces acting on the locking element can be overcome.If the connection section is designed as an open profile, this leverage can also be used to press the connection section of the cable support component onto a connection adapter manufactured with a certain excess. Such a connection is not only permanent but, above all, free of play. The latter also applies if the connection section of the cable support component is designed as a closed profile, but the connection adapter is not completely closed.

[0015] The locking element is preferably connected to the connecting adapter via at least one spring element. In this case, for example, the end face of the locking element opposite the bolt is joined to the spring element. This has the advantage that a separate positive-locking connection of the locking element to the connecting adapter through appropriate contouring is then unnecessary. The locking element can, for example, be a bolt with a cylindrical surface. This bolt may, but need not, have a head that limits the outward adjustment of the locking element. In the latter case, the end face of the locking element is connected to the spring element, so that the adjustment range of the locking element is limited by the spring element itself.According to a preferred embodiment, a compression spring, in particular a two-legged compression spring, is provided as the spring element. The spring acts on the locking member in its central section, or the locking member is connected to the compression spring in its central section. The legs of such a compression spring serve not only to provide the required spring force but also to hold the compression spring against the front wall of the connecting adapter. According to one embodiment, the end sections, which are angled relative to the other leg sections, each pass through a leg opening provided in the front wall of the connecting adapter. These openings are preferably located adjacent to the opening through which the locking member engages.Designing such a compression spring as a flat band spring is particularly advantageous, as the end sections of the spring legs that penetrate the opening have a thinner material thickness, thus eliminating the need for leg end recesses in the outer surface of the front wall. Another benefit of using at least one spring element acting on the locking member is that the spring force causes the locking mechanism to snap into the opening of the connection section of the cable support component being attached, accompanied by a clearly audible "click." This provides the installer with concrete acoustic feedback that the fastening arrangement has been installed correctly.

[0016] To improve the support of the cable support component connected to the connection adapter, in order to absorb the tilting moment and transfer it into the connection adapter, at least one support element of the connection adapter is located at a greater distance from the holder than the outer surface of the locking bar that engages the locking mechanism of the cable support component connected to the connection adapter, which faces the holder. Thus, the outer surface of the locking bar and the at least one support element are located at different positions with respect to the longitudinal extent of the connection adapter.

[0017] According to one embodiment, the connection adapter has a rectangular cross-sectional geometry. At least in its dimensions, this geometry is adapted to the internal geometry of the connection section of a cable support component to be connected to it.

[0018] The at least one support element, which, as mentioned above, can be the end faces of the side walls facing away from the front wall, a back section molded onto a side wall, or a back connecting the side walls, is provided with clamping structures to improve force transmission on at least one of the opposing sides between the support element and the corresponding inner surface of the connection section. These clamping structures engage with each other in the support arrangement. Each of these structures can be a groove, with the longitudinal axes of the positive and negative structures running transversely to the longitudinal extent of the connection adapter. This measure ensures that, in the case of a suspended connection of the fastening arrangement, force is also applied on both sides between the connection adapter and the cable support component attached to it at the support abutment opposite the front wall, in the direction of force application.

[0019] In order to engage a cable support component to be connected to the holder or the connection adapter by pivoting it into the connection adapter, a preferred embodiment provides that the side walls of the connection adapter have a smaller width in the alignment of the locking element than in the position where the at least one support element is located. This provides space to slide the connection section of the cable support component over the at least one support element. Typically, the diagonally located front and side wall ends are also notched. Such a design of the fastening arrangement is also advantageous if the at least one support element and / or the support abutment have clamping structures, since these can then hardly be adjusted relative to each other in the direction of the longitudinal extent of the connection adapter.

[0020] The connecting adapter is typically welded to the other components of the holder, such as a head plate, or formed together with it, for example, as a stamped and bent part.

[0021] The holder is typically also a cable support component, for example, a head plate or end piece to be fixed to the underside of a ceiling, or a suspension pole. The cable support component to be attached to it is a suspension pole if the holder is designed as a head plate, or a boom if the holder itself is a suspension pole.

[0022] The outer surface of the locking element's bolt is typically complementary, on its side facing the holder, to the contour of the locking catch of the connection section of the cable support component to be connected to, or already connected to, the holder. In many cases, such cable support components have a predefined hole pattern, for example, in the form of elongated holes whose long axis points in the direction of the cable support component's longitudinal extent. In such a case, the contour contacting the outer surface of the locking element is rounded, which is why, at least on its side facing the holder, the outer surface of the locking element is rounded in a complementary manner. Of course, other hole pattern geometries are also possible.For example, if a suspension rod is to be able to bear higher loads as a cable support component, the apex can be designed to be straight in one section to reduce the notch effect acting on the rounded hole edge area. In such a design, the outer surface of the control element facing the holder then has a complementary outer surface geometry.

[0023] The bolt of the locking element preferably engages the locking latch of the connection section of the cable support component. This means that in the mounting arrangement, a portion of the bolt protrudes from the locking latch. Due to the external placement of the connection section, this protruding portion is visible. According to one embodiment, this is used to color-code the protruding portion of the bolt, thus clearly indicating that the locking element has engaged the locking latch sufficiently far as intended. Therefore, with this design of the mounting arrangement, an installer receives two forms of feedback – an audible one, as mentioned above, and a visual one, confirming that the mounting arrangement has been installed correctly.

[0024] The end face of the bolt, which engages in or preferably passes through the bolt catch, can be designed with a tool engagement contour, for example a central recess, in order to be able to apply a tool, for example a screwdriver, to press in the bolt member and thus to release the fastening arrangement.

[0025] The end face of the latch, which engages with or passes through the latch, typically has at least one chamfer. This chamfer is located on the side of the end face facing away from the other components of the holder and is typically designed as a bevel at the end opposite the holder, between the end face and the outer surface. During assembly, the cable support component to be connected is brought against this chamfer, which presses the latch member into the connection adapter against the force of at least one spring element. This eliminates the need for separate actuation of the latch member to adjust it for mounting the cable support component. A chamfer may also be provided as an adjustment ramp on the opposite outer surface facing the holder; this is typically much smaller than the chamfer mentioned above. This chamfer facilitates the release of the fastening assembly.

[0026] Although the fastening arrangement with its connection adapter is described above with only one locking element, it can also have several, for example two, locking elements. According to one embodiment, these are stacked one above the other, so that each locking element, with its locking bolt, engages a locking catch of the cable support component to which it is connected.

[0027] Additionally, the connection adapter can be equipped with extra locking lugs on both of its side walls, each of which engages in a perforation of the hole pattern in the side walls of the connection section of the cable support component. In such a design, it is preferred if the connection section is open on the side of its support abutment so that the spreading elasticity of the side walls of the connection section of the cable support component can be used to insert such locking lugs.

[0028] The invention is described below with reference to an exemplary embodiment and the accompanying figures. These show: Fig. 1: A perspective view of a fastening arrangement according to the invention, comprising a holder and a cable support component in the manner of an exploded view, Fig. 2: A perspective view of the holder of the mounting arrangement of the Fig. 1 from a first perspective, Fig. 3: A perspective view of the holder of the mounting arrangement of the Fig. 1 from a different perspective, Fig. 4a - 4d: a sequence of figures illustrating the assembly movement for connecting the cable support component to the holder for creating the fastening arrangement of the Fig. 1, Fig. 5: A front view of the mounting arrangement of the Fig. 1, Fig. 6: An enlarged cross-sectional view through the upper end of the fastening arrangement of the Fig. 5 along line A - A and Fig. 7: a cross-section through the fastening arrangement of the Fig. 5 along the intersection line B - B.

[0029] A fastening arrangement 1 comprises a holder 2 and a suspension rod 3 as a cable support component connected to the holder 2. The holder 2 of the illustrated embodiment has a head plate 4 with which the holder 2 can be fastened to the underside of a ceiling. For this purpose, the head plate 4 has corresponding fastening openings for the insertion of a fastener. A connection adapter 5 is attached to the head plate 4, the connection of the connection adapter 5 to the head plate 4 being provided by a joining connection (welded connection) in the illustrated embodiment. The connection adapter 5 projects from the underside of the head plate 4 and forms a positive structure with respect to the plane of the head plate 4. Part of the connection adapter 5 is a locking element 6, which is attached to a two-legged compression spring 7 designed as a band spring.The compression spring 7 has a central section 8 which, in the illustrated embodiment, is slightly wider than the legs 9, 9.1 formed on it. The end sections 10, 10.1 of the legs 9, 9.1 are bent outwards away from each other. The remaining part of the connecting adapter 5, in the illustrated embodiment, is a machined square profile section A with rounded edges. This profile section A has a front wall 11, two side walls 12, 12.1 connected to it, and, in the illustrated embodiment, a back 13 connecting the two side walls 12, 12.1 on their side opposite the front wall 11. An opening 14 for the passage of the locking element 6 is provided in the front wall 11.At a distance from the opening 14, two leg openings 15, 15.1 are provided in the front wall 11, opposite each other in the direction of the longitudinal extension of the connecting adapter 5 with respect to the opening 14. The leg openings 15, 15.1 serve to connect the compression spring 7 with the locking element 6 to the front wall 11. The front wall 11, the side walls 12, 12.1 and the back 13 enclose an adapter chamber 16 in which the remaining sections of the compression spring 7 and part of the locking element 6 are located.

[0030] The locking element 6 of the illustrated embodiment is designed as a bolt with a cylindrical outer surface. It is also quite possible to design the locking element with a slight taper towards its free end face, for example 1° to 2°.

[0031] The suspension arm 3, which serves as a cable support component in the illustrated embodiment, is a C-shaped profile with back flanges. Thus, the suspension arm 3 comprises a front wall 17, two integrally formed side walls 18, 18.1, and two support abutments formed by the C-shaped profile with back flanges and the folded end faces 19, 19.1. A grid of holes is incorporated into the front wall 17 and the side walls 18, 18.1. The openings 20 in the front wall 17 of the suspension arm 3 are elongated, with the ends extending longitudinally along the suspension arm 3 being curved. The openings in the two side walls 18, 18.1 have the same geometry. The openings 20 provided in the front wall 17 serve as a bolt catch to receive the front section of the bolt member 6, which serves as a bolt.Between two openings 20 arranged adjacent to each other in the direction of the longitudinal extension of the suspension stem 3, a marking 21 is provided, which in the illustrated embodiment is provided by a shallow embossing. The markings 21 serve the purpose of precisely cutting the suspension stem to length for the fastening arrangement 1, so that the end face of the connecting section 26 comes into contact with the underside of the head plate 4. The in . Fig. The uppermost, clearly visible section of the suspension stem 3 serves as a connection section for attaching the suspension stem 3 to the holder 2. An adapter receptacle 22 is enclosed by the front wall 17, the molded-on side walls 18, 18.1, and the remaining profile of the suspension stem 3. This receptacle forms a negative structure with respect to the connecting adapter 5. Both structures 5, 22 are dimensionally aligned so that they can engage with each other.

[0032] Fig. Figure 2 shows a perspective view of the holder 2 in its operating position with the compression spring 7, which supports the locking element 6, mounted on the front wall 11 of the profile section A. The end sections 10, 10.1 extend through the leg openings 15, 15.1 and rest against the outside of the front wall 11. The locking element 6, with its section serving as a bolt 23, protrudes from the opening 14. The locking element 6 can be translationally adjusted into the adapter chamber 16 against the restoring force of the compression spring 7. The end face of the locking element facing away from the compression spring 7 – the free end of the bolt 23 – is structured by a lower adjusting chamfer 24, located further away from the head plate 4, and an upper adjusting chamfer 25, located closer to the head plate 4. The adjusting ramps 24, 25 extend transversely to the longitudinal extent of the connecting adapter 5 with respect to their planar extent. The adjusting ramp 24 is longer than the adjusting ramp 25.Both inclined surfaces 24, 25 serve the purpose of pressing the locking element 6 into the front wall 11 with the connecting section of the suspension arm 3 into the holder 2 during assembly or disassembly of the suspension arm 3 as a cable support component, so that the unperforated end section of the connecting section 26 can be guided over the locking element 23 of the locking element 6, so that it can engage in the uppermost opening 20 as a locking catch in the front wall 17 of the connecting section 26 of the suspension arm 3 during further assembly.

[0033] In the illustrated embodiment, the connection adapter 5 is designed so that the hanging pole 3 with its connection section 26 (see Fig. 1) can be engaged with the connecting adapter 5 by performing a pivoting movement. For this purpose, the side walls 12, 12.1 of the connecting adapter 5 are designed with a smaller width in line with the locking element 6 than in the area of ​​the back 13. In the illustrated embodiment, the end of the side walls 12, 12.1 pointing away from the front wall 11 is inclined, with a width decreasing towards the head plate 4. This inclined end of the side walls 12, 12.1 is indicated in the figures by reference numeral 27. Diagonally opposite the inclined end 27, the front wall 11 is also notched with the same inclination, and this notch extends into the side walls 12, 12.1.

[0034] The back 13 has a groove 28 (see Fig. 3) equipped, wherein the longitudinal axis of the grooving runs transversely to the longitudinal axis of the connecting adapter 5.

[0035] This groove 28 serves as an interlocking structure that acts against the end faces 19, 19.1 of the back edge of the connecting section 26 of the suspension stem 3. The end faces 19, 19.1 of the suspension stem 3 are, as shown from Fig. 1 is evident, also executed with interlocking structures.

[0036] With regard to the longitudinal extension of the connecting adapter 5, the locking element 6 with its locking bar 23 is located in a position closer to the head plate 4 than the back 13 with its groove 28. This offset is in the Fig. 2 and Fig. 3 clearly visible.

[0037] In the illustrated embodiment, the circumference of the connection adapter 5 has a slight oversize compared to the inner width of the connection section 26 of the suspension arm 3. The oversize amounts to a few tenths of a millimeter.

[0038] The suspension arm 3 is mounted to the holder 2 as a cable support component by performing a push-on and pivoting motion. This is illustrated in Figures 4a to 4d. In a first assembly step, the connection section 26 of the cable support component 3 is slid onto the lower section of the connection adapter 5 of the holder 2, whereby the inner side of the front wall 17 of the suspension arm 3 passes the notch of the front wall 11 of the connection adapter 5. This position between the suspension arm 3 and the holder 2 is shown in Fig. 4a is shown. Subsequently, while simultaneously sliding the suspension arm 3 further onto the connection adapter 5, a pivoting movement of the suspension arm 3 is performed. This is indicated by an arrow in Fig. 4b indicated. The sliding movement is limited by contact between the connecting section 26 of the suspension stem 3 and its front edge of the back flange on the underside of the head plate 4 (see. Fig. 4b). As the pivoting motion continues, the inner surface of the front wall 17 of the connection section 26 comes into contact with the end face of the bolt 23, so that by continuing the pivoting movement, the bolt member 6 is pressed into the adapter chamber 16 of the connection adapter 5. When the bolt 23 aligns with the uppermost opening 20 of the front wall 17 of the suspension stem 3, the bolt engages in this opening 20 as a bolt catch, thus providing the fastening arrangement.

[0039] Due to the length of the suspension arm 3, a high actuating force can be exerted on the locking element 6 by the pivoting movement, as well as the force required to widen the connecting section 26 of the suspension arm 3 so that the connecting adapter 5, which is manufactured with a certain excess compared to the inner width of the connecting section 26, can be inserted as a positive structure into the receiving section 26. This ensures a play-free fit between the connecting adapter 5 and the connecting section 26 of the suspension arm 3.

[0040] Fig. Figure 4d shows the fastening arrangement 1, in which the bolt 23 actually extends through the uppermost opening 20 of the front wall 17 and protrudes with a significantly longer section above the outside of the front wall 17 (see also Fig. 6). The free end face of the connection section 26 contacts the underside of the head plate 4 in the mounting arrangement 1.

[0041] In the sequence of figures 4a to 4d, the hanging rod 3 is shown transparently in order to be able to show the successive engagement of its connecting section 26 with the connecting adapter 5.

[0042] The radius of the lateral surface of the locking element 6 facing the head plate 4 is adapted, at least in its locking section 23, to the radius of the corresponding end of the opening 20 of the suspension stem 3 (see also Fig. 5).

[0043] The longitudinal section view of the Fig. Figure 6 of the fastening arrangement 1 shows the connection of the connecting section 26 of the suspension arm 3 to the holder 2. The front wall 7 of the suspension arm 3 hangs from the section of the locking element 6 forming the locking bar 23. Due to the in Fig. Due to the 6 discernible height offset between the locking element 6 or its locking bar 23 and the back 13, the latter is pressed with its grooves 28 against the end faces 19, 19.1 of the back edge, which are also equipped with clamping structures, so that a load-bearing load is coupled into the connection adapter 5 both via the front wall 17 and via the back edges and thus via the front wall 11 and the back 13.

[0044] The play-free fitting of the connection adapter 5 into the adapter receptacle 22 of the connection section 26 of the suspension stem 3 is shown in the cross-sectional view of the Fig. 7 can be seen.

[0045] The invention has been described using exemplary embodiments. Without departing from the scope of protection described by the applicable claims, numerous further embodiments of the inventive concept would be apparent to a person skilled in the art, without these needing to be explained in more detail within the scope of these explanations. Reference symbol list 1 Mounting arrangement 2 holders 3 hanging poles 4 Head plate 5 connection adapters 6 locking link 7 Compression spring Section 8 9, 9.1 thigh 10, 10.1 Final section 11 Front wall 12, 12.1 Side wall 13 Back 14 Breakthrough 15, 15.1 Femoral epiphysis 16 adapter chamber 17 Front wall 18, 18.1 Side wall 19, 19.1 Front surface 20 Breakthrough 21 Mark 22 Adapter mount 23 bars 24 Inclined position 25 Inclined position 26 Connection section 27 Slanted end 28 Grooving A profile piece QUOTES INCLUDED IN THE DESCRIPTION

[0000] This list of documents cited by the applicant was automatically generated and is included solely for the reader's convenience. The list is not part of the German patent or utility model application. The DPMA accepts no liability for any errors or omissions. Cited patent literature

[0000] EP 4 131 682 A1 [0003, 0004] EP 1 589 626 A1 [0004, 0005] WO 2018 / 109420 A1

[0006]

Claims

[1] Fastening arrangement with a holder (2) with a projecting connection adapter (5) connected thereto, designed as a positive structure, and with a cable support component (3) profiled at least in one connection section (26) in the form of an adapter receptacle (22) designed as a negative structure and engaged with the connection adapter (5), wherein the adapter receptacle (22) is enclosed by a front wall (11) having at least one opening (20) as a latch, two side walls (18, 18.1) formed thereon and a support abutment (19, 19.1) formed on at least one side wall (18, 18.1) opposite the front wall (17) and wherein the connection adapter (5) as a profile comprises a front wall (11), two side walls (12, 12.1) and at least one support abutment (19, 19.1) opposite the front wall (11) on the support abutment (19, 19.1).1) the adapter receptacle (22) has a supported support element (13) and has a locking element (6) which extends through the front wall (11) of the connecting adapter (5) and engages with a locking element (25) in the locking latch of the adapter receptacle (22), which locking element (6) is adjustable against the restoring force of at least one spring element (7) to engage its locking element (23) with the locking latch of the adapter receptacle (22). [2] Fastening arrangement according to claim 1, characterized by , that the locking element (6) is held on the connecting adapter (5) by means of the spring element (7). [3] Fastening arrangement according to claim 1 or 2, characterized by , that the spring element is a compression spring (7) which acts with a central section (8) located between its two legs (9, 9.1) against the locking member (6) and which is held with its legs (9, 9.1) on the front wall (11) of the connecting adapter (5). [4] Fastening arrangement according to claim 3, characterized by , that adjacent to the opening (14) of the front wall (11) of the connecting adapter (5) through which the locking element (6) penetrates, there are leg openings (15, 15.1) opposite each other with respect to this opening (14) through which one leg (9, 9.1) of the compression spring (7) penetrates. [5] Fastening arrangement according to claim 3 or 4, characterized by , that the compression spring (7) is designed as a flat band spring. [6] Fastening arrangement according to any one of claims 1 to 5, characterized by , that the support element of the connection adapter is provided by a back part molded onto at least one side wall or by a back (13) connecting the two side walls (12, 12.1). [7] Fastening arrangement according to any one of claims 1 to 6, characterized by, that the section of the back (13) of the connection adapter (5) acting against the support abutment (19, 19.1) of the connection section (26) of the cable support component (3) has a greater distance to the holder (2) than the outer surface of the latch (23) that engages or passes through the latch of the connection section (26) facing the holder (2). [8] Fastening arrangement according to any one of claims 1 to 7, characterized by , that the connection adapter (5) has a rectangular cross-sectional geometry. [9] Fastening arrangement according to any one of claims 1 to 8, characterized by , that the support abutment (19, 19.1) of the connection section (26) of the cable support component (3) is provided by a back flange of each side wall (18, 18.1) on its side opposite the front wall (17). [10] Fastening arrangement according to any one of claims 1 to 9, characterized by, that the back (13) and the support abutment (19, 19.1) bear interlocking clamping structures on their mutually facing sides with their longitudinal axis running transversely to the longitudinal extension of the connecting adapter (5). [11] Fastening arrangement according to any one of claims 1 to 10, characterized by , that the side walls of the connecting adapter on their side facing away from the front wall in line with the locking element have a smaller extension facing away from the locking element than in the section of the back. [12] Fastening arrangement according to claim 11, characterized by , that the connection adapter (5) has a notch on the back with an inclined rear end (27). [13] Fastening arrangement according to claim 11 or 12, characterized by, that the connection adapter (5) has a notch extending into the side walls (12, 12.1) on its front wall end pointing away from the holder (2). [14] Fastening arrangement according to any one of claims 11 to 13, characterized by , that the connecting adapter (5) has a certain excess with respect to the distance of the outside of its front wall (11) from the outside of its back (13) in relation to the width of the adapter receptacle (22) between its front wall (17) and the support abutment (19, 19.1). [15] Fastening arrangement according to any one of claims 1 to 14, characterized by , that the holder is also a cable support component, namely a head plate (4) or a suspension arm, and the cable support component connected to it is accordingly a suspension arm (3) or a boom. [16] Holder with a connecting adapter (5) attached thereto, designed as a positive structure and projecting from the holder (2), wherein the connecting adapter (5) has as a profile a front wall (11), two side walls (18, 18.1) formed laterally thereon and at least one support element (13) opposite the front wall (11), which can be supported on a support abutment of an adapter receptacle (22) of a connection section (26) of a cable support component to be connected to the connecting adapter (5) and has a locking element (6) which extends through the front wall (11) of the connecting adapter (5) and engages with a locking element (25) in the locking latch of the adapter receptacle (22), which locking element is adjustable against the restoring force of at least one spring element to engage its locking element (25) with the locking latch of the adapter receptacle (22). [17] Holder according to claim 16, characterized by, that the locking element (6) is held on the connecting adapter (5) by means of the spring element. [18] Holder according to claim 16 or 17, characterized by , that the spring element is a compression spring (7) which acts with a central section (8) located between its two legs against the locking member (6) and which is held with its legs on the front wall (11) of the connecting adapter (5). [19] Holder according to claim 18, characterized by , that adjacent to the opening (14) of the front wall (11) of the connecting adapter (5) through which the locking element (6) penetrates, there are leg openings opposite each other with respect to the opening, each of which is penetrated by a leg of the leg spring. [20] Holder according to claim 18 or 19, characterized by , that the compression spring (7) is designed as a flat band spring. [21] Holder according to any one of claims 16 to 20, characterized by, that the support element (13) of the connection adapter (5) is provided by a back part molded onto at least one side wall or by a back connecting the two side walls. [22] Holder according to any one of claims 16 to 21, characterized by , that the section of the back (13) of the connection adapter (5) acting against the support abutment (19, 19.1) of a connection section (26) of a cable support component in a cable support component connected to the connection adapter (5) has a greater distance to the holder than the outer surface of the latch (23) that engages or passes through the latch of a connection section (26) of a cable support component to be connected to the connection adapter (5) and faces the holder. [23] Holder according to any one of claims 16 to 22, characterized by , that the connection adapter (5) has a rectangular cross-sectional geometry. [24] Holder according to any one of claims 16 to 23, characterized by, that the side walls (12, 12.1) of the connecting adapter (5) on their side facing away from the front wall (11) in the plane of the locking element have a smaller extension facing away from the locking element than in the section of the back (13). [25] Holder according to claim 24, characterized by , that the connection adapter (5) has a notch on the back with an inclined rear side wall termination. [26] Holder according to claim 24 or 25, characterized by , that the connection adapter (5) has a notch extending into the side walls at its end pointing away from the holder on the front wall side.

Citation Information

Patent Citations

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