PERFECTED DEVICE FOR WALL MOUNTING OF ELONGATED BODIES, ESPECIALLY RADIATED COAXIAL CABLES
Patent Information
- Application Number
- DE602015091653
- Authority / Receiving Office
- DE · DE
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2015-12-02
- Filing Date
- 2015-12-15
- Publication Date
- 2025-05-14
- Estimated Expiration
- 2035-12-15
AI Technical Summary
Existing devices for wall-fixing elongated bodies, such as radiating coaxial cables, suffer from interference with signal emissions due to metallic components, instability under flexural and torsional stress, and the risk of accidental cable clamp opening leading to cable fall.
A device with a lattice-like structure featuring arms that act as spacers, a single screw for fixing the cable clamp to the wall, and a safety system to prevent cable weight from exerting pressure on the cable clamp lid, thereby enhancing resistance to flexural and torsional stress and preventing signal interference.
The device provides improved resistance to flexural and torsional stress, prevents signal interference, and ensures stable and safe fixing of cables, even in vertical installations, thereby reducing the risk of accidental cable opening and fall.
Description
[0001] The present description relates to a perfected device for the wall-fixing of elongated bodies, in particular radiating coaxial cables.
[0002] The field of the invention is that of systems used for sustaining elongated bodies, such as, for example radiating coaxial cables.
[0003] Devices are known for this type of application, that fix the radiating coaxial cable, withheld by a specific cable clamp, to a wall, with the use of a spacer. A metallic screw, whose axis lies on the same plane that contains the axis of the cable, is then used for reciprocally making the cable clamp and spacer integral and also for fixing the latter to the wall with the help of an appropriate dowel or the like.
[0004] In this type of known application, drawbacks have been found, first of all due to the interferences on the signal emitted by the radiating cable, caused by the proximity of the latter to the metallic body of the screw.
[0005] A further disadvantage that has been found on the known devices of the above-mentioned type, is represented by the impossibility of installing the system on the wall, when the cable is already mounted in its seat on the cable clamp. In this condition, in fact, access to the fixing screw is prevented by the presence of the cable housed and operating in its seat.
[0006] In addition to the drawbacks indicated above, there is also the disadvantage that, when the system is installed on a ceiling, i.e. in a vertical position, the weight of the cable rests in the opening direction of the lid of the cable clamp. For this reason, the accidental opening of the cable clamp creates the risk that the cable itself can fall.
[0007] The publication CA 2 618 941 A1 discloses a rod for fixing canalizations in a suspended position, substantially composed of a metallic plate fixed to a wall by means of screws. This solution has the disadvantage of offering an extremely low resistance to deformations, in particular due to the pressure of the air displacements on the body of the rod, during the passage of trains in tunnels. The stability of the fixing of the plate in a suspended position, on the other hand, is jeopardized by the flexural stress which is also exerted on the screws.
[0008] Systems for fixing cables in a suspended position are also known from the publications US 2005 / 011996 A1, DE 92 12 516 U1 and EP 0 722 196 A1. EP 0 722 196 A1 discloses a wall fixing device according to the pre-amble of claim 1.
[0009] EP 1 648 068 A1 discloses a cable mount for aircraft structures, whereas EP 0 602 548 A1 relates to a cable mount for securing a bundle of wires against a mounting surface
[0010] The main objective of the present invention is to provide a new device for the wall-fixing of elongated bodies which, unlike the known devices of this type, offers an improved resistance to flexural and torsional stress, also preventing interferences with the metallic part of the wall-fixing system.
[0011] A further objective of the invention is to provide a device of the type indicated above, having an improved stiffening system in correspondence with the cable clamp device.
[0012] The invention also has the objective of making the fixing of the cable clamp device to the wall more stable and safe, envisaging a spacer suitable for resisting flexural stress.
[0013] Another objective of the invention is to provide a device, as described above, which is suitable for sustaining the cable also in the case of the accidental opening of the lid of the cable clamp.
[0014] These and other objectives are achieved with the device of claim 1.
[0015] With respect to the known wall-fixing devices of radiating coaxial cables, that according to the invention offers the advantage of having an improved resistance to flexural and torsional stress, also preventing interferences with the metallic part of the wall-fixing system.
[0016] The device of the invention is, in particular, provided with stiffenings, capable of opposing flexural and torsional stress, leaving the function of fixing the cable clamp to the wall to a single screw.
[0017] A further advantage of the invention is that, with the device assembled on the wall either vertically or horizontally, the weight of the cable is never exerted on the safety lid.
[0018] These and other objectives, advantages and characteristics appear evident from the following description of the invention which is illustrated, as a non-limiting example, in the figures of the enclosed drawings, in which: figure 1 represents a device of the known art for the wall-fixing of canalizations; figure 2 illustrates a plan view of the device of the invention, as used for the wall-fixing of a radiating cable in a suspended position; figure 3 illustrates the device of figure 2 in a section A-A; figure 4 illustrates a plan view of the device of the invention and figure 5 illustrates the device of figure 4 in a section B-B; figure 6 illustrates a plan view of the device of the invention and figure 7 illustrates the device of figure 6 in a section C-C; figure 8 illustrates a perspective view of the device of the invention; figure 9 illustrates the device of figure 8, as applied on a horizontal wall; figure 10 illustrates the device of figure 3 in the installation phase on the wall; figures 11 to 13 represent the invention, with a safety system for sustaining coaxial cables.
[0019] The device according to the known art for the wall-fixing 6 of elongated bodies 3 in a suspended position is indicated as a whole with 1 in figure 1. This device substantially consists of a shaped plate 4 acting as spacer which, at the end facing the wall 6, is provided with a base 7 attached to the same wall 6 by means of screws 5a,5b. On its opposite side, the plate 4 has a cable clamp hook 2, in which the elongated body 3 is housed, so as to hold it on the wall 6 in a suspended position.
[0020] The system of figure 1 has the disadvantage that the plate 4 for fixing the elongated body 3 does not offer an adequate resistance to flexural and torsional stress, due, for example, to the impact of air generated by the passage of a train in a tunnel. The known system, moreover, delegates to the screws 5a and 5b not only the function of fixing the plate 4 to the wall 6, but also that of opposing the flexural stress, against which the ribbon-like structure of the plate 4 is not, in fact, able to oppose.
[0021] In order to overcome these drawbacks, the device of the invention has been conceived, provided with the device, which is indicated as a whole with 11 in figures 2 and 3 and which is suitable for withholding a coaxial cable 3 in a suspended position on a vertical wall 6. As can also be seen in figure 8, the device of the invention has a substantially lattice-like structure, distinguished by the presence of two arms 15a and 15b acting as spacer, whose end 17a,17b facing the wall 6 is provided with a corresponding base 18. The latter in turn has a seat 19 which houses the fixing screw 20 of the device 11 to the wall 6.
[0022] As can be better seen in figure 8, said seat 19 is situated on the base 18 between the arms 15a and 15b, preferably in an intermediate position with respect to the distance that separates the respective ends 17a and 17b. These sides 15a, 15b preferably have a flattened form, provided with an opening 28a, 28b (figure 12) and tapered in the direction of the cable clamp 12, to which they are joined by means of a corresponding base 16.
[0023] As can be seen in particular in figures 2 to 7, the above-mentioned base 16 is joined to the body of the cable clamp 12 by means of a plate 8 which has, on the side opposite to the lid 13 of the cable clamp, a stiffening rib 9 which extends along the corresponding arc portion of the same cable clamp 12 and, on the side opposite to this, a rib 10.
[0024] When the above-mentioned lid 13 of the cable clamp 12 is arranged in its closed position, it is situated above the cable 3 if the device 11 is installed on a vertical wall 6 (figure 3), whereas it is positioned to the side of the same cable 3 when the device 11 is installed on a horizontal wall 14, the latter being in a position perpendicular to the closing surface of the same lid 13 (figure 9). In this way, the weight of the cable 3 is never exerted on the lid 13, preventing its accidental opening.
[0025] As can be seen from the illustrations previously indicated, the arms 15a,15b of the device of the invention have a tilted orientation with respect to the axis 22 of the seat 19 for the wall-fixing screw 20 of the same device 11. Furthermore, thanks to the described tilted arrangement of the above-mentioned arms 15a and 15b, the axis 22 of the above-mentioned seat 19 is in a separate and distant position from the longitudinal axis 21 of the cable clamp 12, avoiding interferences of the signal emitted by the cable 3 with the metallic head 23 of the screw 20 used for fixing the device of the invention to the wall.
[0026] As is known, cable clamps for radiating cables are made of plastic material, in order to avoid interferences on the signal emitted by the above-mentioned radiating cable. In order to prevent the heat produced by a possible fire from causing the cable to fall due to the destruction of the material of the cable clamp, a metallic cable clamp is inserted for example every ten cable clamps made of plastic.
[0027] In the device of the invention, better illustrated in figures 11 to 13, a safety fixing system of the cable 3 is envisaged, consisting of a flexible metallic wire 24, provided, at one end, with an openable collar 25 that closes around the cable 3 and, at the opposite end, with a fixing ring 26 inside an appropriate seat 27 formed on the rear part of the base plate 18 to the wall. The consolidation of the fixing of the ring 26 to the plate 18 is ensured by the same screw 20 for fixing the device 11 of the invention to the wall. The insertion of such a safety fixing system 24, in the devices 11, prevents risks of the cable falling also in the case of fire inside a tunnel.
Claims
1. A wall-fixing device (11) of elongated bodies, in particular radiating coaxial cables, comprising a spacer and a cable clamp (12) for supporting an elongated body (3) in a suspended position on a wall (6,14), said spacer comprising two separated arms (15a,15b), the ends (17a,17b) of said two separated arms (15a,15b) configured to face said wall (6,14) are provided with a corresponding first base (18) for fixing said device (11) to said wall (6,14), said device has a substantially lattice-like structure and the opposite ends of said arms (15a,15b) has a second base (16) for fixing said ends of said arms (15a,15b) to said cable clamp (12) having a longitudinal axis (21) directed according to the length of said elongated body (3) supported by said cable clamp (12), said first base (18) is provided with a seat (19), positioned on said first base (18) between said two arms (15a,15b), for a corresponding screw (20) for fixing said device (11) to said wall (6,14), and said arms (15a,15b) are tilted with respect to the axis (22) of said seat (19), said axis (22) being positioned vertically separate and distant when the device (11) is installed on a vertical wall (6), or being positioned laterally separate and distant when the device (11) is installed on a horizontal wall (14), from the longitudinal axis (21) of the cable clamp (12) of the device (11), characterized in that said device is equipped with a safety fixing system of said elongated body (3) consisting of a wire made of flexible metal material (24) provided, at one end, with an openable collar (25) which closes around the same body (3) and, at the opposite end, with a fixing ring (26) to said screw (20).
2. The device according to claim 1, characterized in that it further comprises a plate (8) for connecting said base (16) to said cable clamp (12), said plate (8) being provided with stiffening ribs (9,10).
3. The device according to claim 2, characterized in that said rib (10) extends along the entire corresponding arc portion of said cable clamp (12).
4. The device according to claim 3, characterized in that said arms (15a,15b) have an opening (28a,28b) and are tapered in the direction of said cable clamp (12).
5. The device according to claim 4, characterized in that said cable clamp (12) is provided with a lid (13) and that when the above-mentioned lid (13) is arranged in its closed position on the elongated body (3), it is situated above the same elongated body (3) if said device (11) is installed on a vertical wall (6), whereas it is positioned to the side of the same body (3) when the same device (11) is installed on a horizontal wall (14), which is perpendicular to the closing surface of said lid (13) on the above-mentioned elongated body (3).
6. The device according to claim 1, characterized in that said plate (18) has a seat (27) for housing said ring (26) of said wire (24).