Cable holding device, particularly for a telescopic mast

A cable holding member with a base, pivoting part, and collar system addresses the challenge of guiding and distributing cable weight in telescopic masts, ensuring stable and repeatable cable positioning and uniform weight distribution.

FR3153701B1Active Publication Date: 2025-09-19THALES SA
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Patent Information

Application Number
FR2023010506
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-10-02
Publication Date
2025-09-19
Estimated Expiration
2043-10-02

AI Technical Summary

Technical Problem

Existing telescopic masts face challenges in consistently guiding and evenly distributing the weight of cables due to unpredictable curvature and diameter changes during deployment and folding, leading to potential cable bending and stress.

Method used

A cable holding member with a base, pivoting part, and collar system is used, where the pivoting part is connected via a perpendicular axis and the collar encloses each cable, allowing repeatable guidance and even weight distribution along the mast.

Benefits of technology

The solution ensures stable and repeatable cable positioning, preventing bending and stress, while maintaining uniform weight distribution across the mast's height.

✦ Generated by Eureka AI based on patent content.

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Abstract

Cable holding member, in particular for a telescopic mast The present invention relates to a cable holding member (18) for a mast (10), in particular a telescopic mast, comprising: - a base (20) fixed to one of the sections (12), - a pivoting part (22), connected to the base (20) by a pivot connection with an axis perpendicular to the mast axis (Z), and - a collar (26), integral with the pivoting part (22), and gripping each cable (16). Figure for abstract: Figure 2
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Description

Title of the invention: Cable holding device, in particular for a telescopic mast

[0001] The present invention relates to a cable holding member, in particular for a telescopic mast comprising at its top equipment connected to the base of the mast by these cables.

[0002] The equipment is for example an antenna.

[0003] Such a telescopic mast requires at least one cable running from the mast to the equipment.

[0004] However, the behavior of the cables is often difficult to anticipate, when deploying or folding the telescopic mast, due to their radii of curvature, their diameters and the height of the mast. Thus, it is not possible, in the state of the art, to guarantee the repeatability of the position of the cords.

[0005] Furthermore, since the cables are pulled downwards by their weight, it appears that the weight of these cables is poorly distributed from one section to another.

[0006] The invention aims in particular to remedy this drawback, by proposing a holding member capable of guiding the cables during the maneuvers of the mast, while optimizing their size when the mast is folded. Such a mast should offer repeatable guidance of the cables, that is to say that the cables must find the same arrangement depending on the deployment of the mast and be stable in these arrangements whatever the position of the mast.

[0007] To this end, the invention relates to a cable holding member for a mast, in particular a telescopic mast, characterized in that it comprises:

[0008] - a base fixed to one of the sections,

[0009] - a pivoting part, connected to the base by a pivot connection with an axis perpendicular to the mast axis, and

[0010] - a collar, integral with the pivoting part, and enclosing each cable.

[0011] The holding members form pivoting collars, arranged along the mast. and on each mast section, so that the behavior of the cables during deployment and retraction of the mast is repeatable. The pivoting collars allow the cables to be guided naturally and their weight evenly distributed along the mast. In addition, this solution prevents the cables from being bent or over-stressed.

[0012] The advantage of this solution is that the cables are well maintained, the assembly being stable and repeatable.

[0013] According to other advantageous aspects of the invention, the mast comprises one or more of the following characteristics, taken individually or in all technically possible combinations:

[0014] - The pivoting part comprises threaded rods extending parallel to the axis of the pivot connection, and the collar has passages for receiving the threaded rods, nuts being screwed onto the end of the threaded rods to lock them with the collar.

[0015] - The collar is formed in two parts, each comprising, for each cable, a recess, for example semi-circular, for receiving this cable, each cable being sandwiched between the two parts.

[0016] - The collar has a central orifice intended to receive a guide stiffener cables.

[0017] The invention also relates to a mast, in particular a telescopic mast, extending along a mast axis, and carrying at least one piece of equipment, and comprising at least one cable running along the mast, the mast comprising at least two sections, characterized in that the mast comprises at least one member for holding each cable, as defined previously.

[0018] For example, the equipment is an antenna.

[0019] Preferably, each cable extends substantially helically around the mast axis.

[0020] Various aspects and advantages of the invention will be highlighted in the following description, given solely by way of non-limiting example, and made with reference to the drawings in which:

[0021] [Fig. 1] [Fig. 1] is a side view of a mast according to an exemplary embodiment of the invention;

[0022] [Fig.2] [Fig.2] is a top view of a cable holding member fitted to the mast of [Fig.l];

[0023] [Fig.3] [Fig.3] is a perspective view of a connection between a holding member and the mast;

[0024] [Fig.4] [Fig.4] is a perspective view of a step of mounting the holding member;

[0025] [Fig.5] [Fig.5] is a perspective view of a step of mounting the holding member, subsequent to that of [Fig.4].

[0026] [Fig. 1] shows a mast 10, in particular a telescopic mast 10 according to an exemplary embodiment of the invention.

[0027] The mast 12 comprises a plurality of coaxial sections 12 along an axis Z, and assembled so as to be able to slide into each other telescopically, in a conventional manner.

[0028] The mast 12 carries at least one piece of equipment 14, for example at its top. The piece of equipment 14 can be of any conceivable type, for example it forms an antenna.

[0029] The mast 12 further comprises at least one cable 16, for example two cables, running through it from the ground to the equipment 14. The cables 16 extend substantially parallel to each other.

[0030] In the example described, the cables 16 extend substantially helically around the Z axis, along this Z axis.

[0031] In order to maintain and guide the cables 16 in a repeatable manner during the deployment or folding of the mast 10, this mast 10 comprises members 18 for maintaining the cables 16.

[0032] All the holding members 18 are identical, so that only one will be described in detail, with reference to FIGS. 2 to 5.

[0033] The holding member 18 comprises a base 20 intended to be fixed to a section 12 of the mast 10.

[0034] The holding member 18 also comprises a pivoting part 22, connected to the base 20 by a pivot connection 24 with an axis perpendicular to the axis Z of the mast.

[0035] The holding member 18 also comprises a collar 26, integral with the pivoting part 22, and enclosing each cable 16.

[0036] The base 20 has, for example, the shape of a substantially rectangular or square plate, fixed to the section 12 corresponding to a location provided for this purpose, in particular by screwing. For example, the base 20 has screw passage holes 27, and the section 12 also includes threaded holes for receiving these screws 27.

[0037] The base 20 also comprises, on the side intended to be pressed against the section 12, a first recess 28 receiving a head 30 of a threaded rod 32. The base 20 therefore comprises an orifice for the passage of this threaded rod 32, and the head 30 comes to rest on a contour of this passage orifice, by means of a first washer 34.

[0038] The threaded rod 32 extends perpendicular to the base 20, along the axis of the pivot connection 24.

[0039] Preferably, the threaded rod 32 extends from the center of the base 20.

[0040] The pivoting part 22 has, for example, a generally cylindrical shape.

[0041] The pivoting part 22 has a central opening receiving a bearing forming the pivot link 24.

[0042] The pivot connection 24 comprises an internal sleeve 36, surrounding the threaded rod 32, an external sleeve 38 surrounding the internal sleeve 36, and disposed in the central opening of the pivoting part 22.

[0043] The pivoting part 22 comprises a second recess 40 receiving a nut 42 screwed to the end of the threaded rod 32, opposite the rod head 30. The nut 42 bears on a second washer 44.

[0044] The internal sleeve 36 is sandwiched between the base 20 and the second washer 44.

[0045] The outer sleeve 38 is also sandwiched between the base 20 and the second washer. 44. The external sleeve 38 further comprises a collar 46 extending radially, and arranged longitudinally between the base 20 and the pivoting part 22.

[0046] The outer sleeve 38 has a sliding outer surface, allowing the rotation of the pivoting part 22 around the axis of the pivot connection 24.

[0047] As shown in [Fig.2], the pivoting part 22 comprises threaded rods 48 for fixing the collar 26.

[0048] The threaded rods 48 extend parallel to the axis of the pivot connection 24, therefore perpendicular to the axis Z of the mast 10.

[0049] The collar 26 has passages 50 for receiving the threaded rods 48, through which the threaded rods 48 pass. Nuts 52 are screwed onto the end of the threaded rods 48 for locking them with the collar 26.

[0050] Advantageously, the collar 26 is formed in two parts 26a, 26b, as shown in [Fig.4]. Each part 26a, 26b comprises, for each cable 16, a recess 27, for example semi-circular, for receiving this cable 16.

[0051] The parts 26a, 26b are therefore assembled around the cables 16 by arranging the cables 16 in the recesses. The parts 26a, 26b comprise at least one orifice for the passage of a screw 54 for fixing these parts 26a, 26b together, with a nut 56 screwed onto the screw 54.

[0052] The collar 26 also preferably comprises a central orifice 29 delimited by the two parts 26a, 26b, extending parallel to the cable passage recesses 27. The central orifice 29 is intended to receive a stiffener (not shown), for example a fiberglass needle, helping to guide the cables in a helical manner.

[0053] A method of mounting the holding member 18 on the mast 10 will now be described.

[0054] The sections 12 of the mast 10 and the equipment 14 are conventional and mounted in a manner known per se.

[0055] The cables 16 are put in place, by connecting them to the equipment 14, and by running them along the mast 10, by winding them helically around the Z axis of the mast. The cables 16 are preferably put in place substantially parallel to each other.

[0056] The assembly of the holding members is done in three parts. Firstly, the base 20, equipped with the axis (formed by the threaded rod 32 and the internal sleeve 36) is fixed to one of the sections. In a second step, the pivoting part 22 is fixed to the base 20. In a third step, the collar 26 is fixed by tightening the cables 16.

[0057] The fixing of the base 20 is ensured by the screws 27.

[0058] Once the base 20 is assembled with the section 12, the pivoting part 22 is fixed to the base 20 using the washer 44 and the nut 42. The four threaded rods 48 are then screwed into the pivoting part 22. For example, the pivoting part 22 has threaded holes into which the threaded rods 48 are screwed.

[0059] As shown in [Fig.4], the collar 26 is put in place around the cables 16 by closing the parts 26a, 26b on these cables 16. The parts 26a, 26b are then fixed together using the screw 54 and the nut 56.

[0060] As shown in [Fig.5], the rods 48 are then passed through the passages 50 of the collar 26, and fixed by the nuts 52.

[0061] A plurality of holding members 18 are thus put in place along the mast 10, following the helical path of the cables 16. This putting in place can be carried out progressively, by progressively deploying the mast 10 as the holding members 18 are installed.

[0062] The cables 16 are thus held radially at a distance from the sections 12.

[0063] Thanks to the pivoting part 22, the collar 26 is free to rotate around the axis of the pivot connection 24. This rotation takes place during the deployment or folding of the mast 10, naturally accompanying the movement of the cables 16.

[0064] This makes it possible to guide the cables, thus avoiding any possible jamming of these cables when folding the mast. Furthermore, this guidance is repeatable, because the angular position of each collar 26 thus depends only on the position of the mast.

[0065] Finally, it should be noted that the holding members 18, distributed uniformly along the mast, make it possible to distribute the weight of the cables uniformly over the entire height of the mast 10.

Claims

Claims

1. Cable holding member (18) for a telescopic mast (10), characterized in that it comprises: - a base (20) fixed to one of the sections (12), - a pivoting part (22), connected to the base (20) by a pivot connection with an axis perpendicular to the mast axis (Z), and - a collar (26), integral with the pivoting part (22), and enclosing each cable (16).

2. A holding member (18) according to claim 1, wherein the pivoting portion (22) comprises threaded rods (48) extending parallel to the axis of the pivot connection (24), and the collar (26) comprises passages (50) for receiving the threaded rods (48), nuts (52) being screwed onto the end of the threaded rods (48) for locking them with the collar (26).

3. Holding member (18) according to claim 1 or 2, in which the collar (26) is formed in two parts (26a, 26b) each comprising, for each cable (16), a recess (27), for example semi-circular, for receiving this cable (16), each cable (16) being clamped between the two parts (26a, 26b).

4. A holding member (18) according to any preceding claim, wherein the collar (26) has a central orifice (29) for receiving a cable guide stiffener (16).

5. Telescopic mast (10), extending along a mast axis (Z), and carrying at least one piece of equipment (14), and comprising at least one cable (16) running along the mast (10), the mast (10) comprising at least two sections (12), characterized in that the mast comprises at least one member (18) for holding each cable (16), according to any one of the preceding claims.

6. A mast (10) according to claim 5, wherein the equipment is an antenna.

7. A mast (10) according to claim 5 or 6, wherein each cable (16) extends substantially helically around the mast axis (Z).