SELF-FASTENED BRACKET FOR MOUNTING A WIRE HARNESS TO A SUPPORT STRUCTURE OF A VEHICLE AND VEHICLE COMPRISING THE SAME
20170267191 · 2017-09-21
Assignee
Inventors
Cpc classification
F16L3/1058
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B2/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60R16/0215
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
F16L3/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L3/233
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A fixation arrangement adapted for mounting a wire harness on a support structure of a vehicle includes a rigid portion adapted for clamping the wire harness, and a flexible arm adapted for clamping the fixation arrangement on the support structure so as to squeeze the support structure between the flexible arm and the rigid portion.
Claims
1. A fixation means for mounting a wire harness on a support structure of a vehicle, the fixation means comprising: a rigid portion adapted for clamping the wire harness, and a flexible arm adapted for clamping the fixation means on the support structure, wherein the flexible arm is linked to the rigid portion through a hinge, which allows the rotation of the flexible arm with respect to the rigid portion.
2. A fixation means according to claim 1, wherein the rigid portion comprises a first branch orthogonal to a second branch.
3. A fixation means according to claim 1, wherein the flexible arm is linked to the first branch of the rigid portion.
4. A fixation means according to claim 1, wherein the rigid portion is provided with at least one opening, and wherein the flexible arm is provided with at least one opening, adapted to allow the passage of a tie.
5. A fixation means according to claim 1, wherein the fixation means is a self-fastened bracket, comprising a flexible arm, provided with an opening, and a rigid portion provided with at least one opening, and further comprising a means of tightening the wire harness while clamping the fixation means on the support structure.
6. A fixation means according to claim 5, wherein the means of tightening the wire harness is a cable tie.
7. A method of mounting wires, wire harnesses, tubes, pipes and related equipment on the support of a vehicle, the method comprising: a) positioning a fixation means on the support of the vehicle, that comprises dedicated openings adapted for the passage of a tie, b) positioning the wires, wire harnesses, tubes, pipes or related equipment onto the fixation means used in step a), c) tightening a tie around the wires, wire harnesses, pipes, tubes or related equipment, wherein the tie passes through the dedicated passages provided on the fixation means and thrills a loop around the wires, wire harnesses, tubes or pipes.
8. A method according to claim 7, wherein the fixation means of step a) comprises a flexible arm linked to a rigid portion having a first branch orthogonal to a second branch.
9. A method according to claim 7, wherein the flexible arm of the fixation means is linked to the rigid portion through a hinge.
10. A method according to claim 7, wherein the fixation means is made in a polymerized material.
11. A method according to claim 7, wherein the fixation means is made in one piece.
12. Use of a fixation means for mounting wires, wire harnesses, tubes, pipes or related equipment on a support structure of a vehicle, wherein the fixation means comprises a flexible arm, provided with an opening, a rigid portion provided with at least one opening, wherein the fixation means is clamped on the support structure at the same time it secures the wires, wire harnesses, tubes, pipes or related equipment.
13. Use of a fixation means according to claim 12, wherein the fixation means is manually clamped on the support structure.
14. Use of a fixation means according to claim 12, wherein the fixation means is a self-fastened bracket, and wherein the fastened bracket is clamped on the support structure at the same time it secures the wires, wire harnesses, tubes, pipes or related equipment thanks to the tightening of a tie.
15. A vehicle comprising a fixation means according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033] The invention will now be explained in correspondence with the annexed figures, representing an illustrative example, without restricting the the invention. In the annexed figures:
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
DETAILED DESCRIPTION
[0040] The truck 2 comprises a traction unit, or lorry 6. The lorry 6 tows a trailer 4 and may comprise one, two or more pairs of wheels 10. The trailer 4 may also include two pairs or more of rear wheels 10. The truck 2 includes a support structure 60 on which is mounted at least one fixation means. Said fixation means may be the self-fastened bracket. The self-fastened bracket 1 and the support structure 60 are visible on
[0041] The self-fastened bracket 1 is adapted for mounting a wire harness H onto the support structure 60 of the truck 2. The wire harness H includes several wires W, that may be electrical cables, for transmitting electrical power or signals. Alternatively, the self-fastened bracket 1 is also adapted for mounting tubes or pipes, which may be used for supplying fluids, like air, compressed air, oil, fuel, or other fluids. The fluids supplied through such pipes or tubes may be cold or warm.
[0042] As shown on
[0043] As shown on
[0044] The flexible arm 26 and the L-shaped rigid portion 21 are preferably made in one-piece. The flexible arm 26 and the rigid portion 21 are preferably made in the same material. The higher flexibility of the arm 26, compared to the rigid portion 21, may be obtained by decreasing the thickness of the arm 26 with respect to the rigid portion 21. Typically, when the self-fastened bracket 1 is made in polyacrylamide, such as PA66, the thickness of the arm 26 is advantageously comprised between about 1 mm and about 3 mm, and preferably between 1.7 mm and 2.2 mm. The thickness of the rigid portion may be comprised between about 2 mm and about 4 mm, preferably between about 3 mm and about 3.5 mm. Depending of the specific requirements, the ratio between the thickness of the arm 26 and the rigid portion 21 may vary. In a specific embodiment, the thickness of the flexible arm 26 is between 10% and 30% less than the thickness of the rigid portion 21. In other words, the thickness, of the flexible arm 26 represents 70 to 90% of the thickness of the rigid portion 21. In another specific embodiment, the thickness of the flexible arm 26 represents between 60% and 70% of the thickness of the rigid portion 21. A more flexible arm 26 can be obtained wherein the thickness represents between around 30% and around 50% of the thickness of the rigid portion.
[0045] It is to be noted that in case the self-fastened bracket is made with another material than polyacrylamide, the thicknesses may be adapted to be in relation with the natural rigidity of the material.
[0046] Above and below, the flexibility of the arm 26 and the rigid portion 21 refers to their capacity to elastically change their shape under a given force. A flexible arm 26 means that the arm 26 is allowed to easily modify its shape under an applied force. Such applied force may be the tightening of the wires or wire harnesses with the tie. On the contrary, the rigid portion 21 is meant for a portion the shape of which does not significantly change under a constraint, like the tightening of the wire harnesses with a cable tie. The self-fastened bracket 1 is therefore designed in such a way that the flexible arm 26 is elastically deformed by tightening the cable tie 40, whereas the rigid portion 21, including the first branch 24 and the second branch 22, remains substantially straight and non-deformed.
[0047] The articulation 260, linking the flexible arm 26 to the rigid portion 21 is more flexible than the arm 26, thus providing a hinge that allows the flexible arm 26 to rotate with respect to the rigid portion 21. In a specific embodiment of the present invention, the hinge or articulation 260 has a thickness comprised between about 0.3 mm and 1 mm, preferably between about 0.4 mm and 0.5 mm. In another embodiment, the thickness of the hinge or articulation 260 represents 10% of the thickness of the arm 26. In another embodiment, the thickness of the hinge or articulation 260 represents between 10% and 25% of the thickness of the arm 26. In yet another embodiment, the thickness of the hinge or articulation 260 represents between 30% and 50% of the thickness of the arm 26.
[0048] Here-below, the directions “up” and “down” have to be considered relative to the configurations of
[0049] The L-shaped rigid portion 21 includes a first branch 24 that extends perpendicularly to the second branch 22 and that delimits two passage openings 024 and 0′24 for passing the tie 40. Opening 024 is provided at the end of the branch 24 that is close to the branch 22. The opening 0′24 is provided close to the opposite end of the first branch 24, Openings 024 and 0′24 are disposed on either side of an extremity of the flexible arm 26 by which it is connected to the L-shaped rigid portion 21. In the configuration of
[0050] The second branch 22 of the L-shaped rigid portion 21 is adapted to contact the bottom portion of the support structure 60. The upper face of the second branch 22 faces the support structure 60 when the self-fastened bracket 1 is mounted onto the support structure 60. Said upper face may be provided with grip platelets 220 for increasing grip with the bottom surface of the support structure 60. Said upper face may further be provided with a layer of material that increases the grip of the self-fastened bracket. Such material may be rubber, elastomer or equivalent material. It can be fixed on the second branch 22 with glue or other equivalent means, or sleeved onto the branch 22, prior the mounting phase on the support 60. Alternatively, said layer of material may be inserted between the second branch 22 of the L-shaped rigid portion 21 and the support structure 60 during the mounting process. In that specific case, no additional step of fixing the layer on the self-fastened bracket is necessary. Although
[0051] The first branch 24 may have an end portion 240 that is curved, or comprise a curve, oriented towards the second branch 22. This allows matching with the circular shape of the wire harness and improving the contact with the wire harness H so as to reinforce the wire harness clamping.
[0052] The flexible arm 26 may be a flexible tab the extremity of which is attached to the first branch 24 through the articulation 260. More precisely, the flexible arm 26 is attached to a medium portion of the first branch 24, between the openings 024 and 0′24. The flexible arm 26 comprises a passage opening 026, preferably located near its end that is not linked to the L-shaped rigid portion 21 and which allows the passage of the tie 40. The flexible arm 26 is curved. The curvature of the flexible arm 26 is in the continuity of, and has the same orientation than, the curvature of the extremity 240 of the first branch 24 of the L-shaped rigid portion 21. As for the branch 24, the curvature of the flexible arm 26 allows matching with the circular shape of the wire harness H.
[0053] The flexible arm 26 is movable by elastic deformation of the attachment point 260, when tightening the wire with the tie 40. This allows squeezing the support structure 60 between the flexible arm 26 and the second branch 22 of the L-shaped rigid portion 21. More precisely, before tightening the wire with the tie 40, the down side of the flexible portion 26 is in contact or in close proximity with the upper side of the support 60. When tightening the wire with the tie 40, the flexible arm 26 comes, in a first step, in contact to the support 60 thanks to the articulation 260, if it is not already in contact, as represented by the arrow A2 on
[0054] In one specific embodiment, the self-fastened bracket, as such mounted, is able to resist against a pullout force up to around 30 kg. Preferably, the self-fastened bracket 1 mounted with the wire harnesses resists against a pullout force up to around 20 kg, more preferably up to around 10 kg. The pullout force means any force of traction that induces the sliding of the self-fastened bracket 1 out of the support structure 60.
[0055] The tie 40 that allows securing the wire harnesses onto the first branch 24 of the rigid portion 21 while clamping the flexible arm 26 onto the structure 60, passes through at least the passages 026 and 024, and embraces the wire harnesses H to be secured, by forming a loop. The tie 40 may be further guided through an aperture or a passage 0′24, provided at the extremity of the first branch 24 of the rigid portion 21.
[0056] The present invention also provides a method of mounting wires, wire harnesses, tubes, pipes and related equipment onto a vehicle, using fixation means that are cheap, light and rapidly mounted. In particular, the present method aims at limiting the number of steps when mounting the wires on a vehicle, as well as the duration of said steps. As an example, the present method allows to mount cable, wires, wire harnesses, tubes, or pipes on a vehicle structure avoiding the step of screwing the fixation means on the structure. It is also an aim of the present invention to fix the wire without using tools, meaning that the fixation of the wire is performed by hands.
[0057] To this end, the method of the present invention comprises the steps of
[0058] a) positioning a fixation means on the support of the vehicle, that comprises at least two dedicated openings adapted for the passage of a tie,
[0059] b) Positioning the wires, wire harnesses, tubes, pipes or related equipment onto the fixation means used in step a),
[0060] c) Tightening a tie around the wires, wire harnesses, pipes, tubes or related equipment, wherein the tie passes through the dedicated passages provided on the fixation means and forms a loop around the wires, wire harnesses, tubes or pipe.
[0061] The method of the present invention may further include a step of inserting a grip-improver between the fixation means and the support prior to step a) or concomitant with step a).
[0062] Steps a) and b) above described may be reversed or concomitant, meaning that step b) may be performed prior to step a), or at the same time.
[0063] In steps a) to c) the fixation means is preferably a device that comprises a flexible arm 26 linked to a rigid portion 21, having a L-shape with a first branch 24 and a second branch 22. Said device may be made in a polymerized material, such as a homo polymer or hetero polymer, a molded polymer, a plastic or thermoplastic material. The fixation means is preferably made in one piece and is designed or adapted to receive a tie.
[0064] The fixation means used in steps a) to c) comprises a hinge between the flexible arm 26 and the rigid portion 21, in such a way that the flexible arm 26 is articulated with regard to the first branch 24 of the L-shaped rigid portion 21.
[0065] The tightening of the tie 40 in step c) allows grouping the wires, wire harnesses, tubes, pipes or related equipment onto the fixation mean, while securing the fixation means on the support 60, in one and unique step.
[0066] The tightening of the tie in step c) may be performed manually, and may be improved with the help of a tool adapted to tight a tie, such as a dedicated squeezing device. The step c) may be optionally followed by the cutting of the extra part of the tie that extends out of the circle VI (see
[0067] In steps a) to c) the support of the vehicle may be the chassis, or any other horizontal or vertical rail, or skeleton, or girder that is used to design and/or structure the vehicle.
[0068] In a preferred embodiment, the fixation means of steps a) to c) is the self-fastened bracket 1, described herein.
[0069] It is also desirable to use a novel fixation means adapted for the mounting of wires, wire harnesses, tubes, pipes or related equipment on a vehicle, wherein the fixation means allows to secure said wires, wire harnesses, tubes, pipes or related equipment and to fix the fixation means onto a support at the same time. In particular, the present invention provides the use of a fixation means that can be manually clamped on a support for mounting wires, wire harnesses, tubes, pipes or related equipment, wherein the fixation means allows the passage of a cable tie. In a preferred embodiment, the present invention provides the use of a fixation means, wherein the fixation means is the self-fastened bracket 1 hereby described.
[0070] It is to be understood that the present invention is not limited to the embodiments described above and illustrated in the drawings. Rather, the skilled person will recognize that many changes and modifications may be made within the scope of the appended claims.
[0071] Besides, the technical features of the different embodiments and alternative embodiments of the invention described here-above can be combined together to generate new embodiments of the invention.