Wiring components

By placing intersecting linear members and linear conveying members on the holding surface of the base member and welding, the problem of difficulty in welding the raw materials on the surface of the wire and sheet is solved, and stable maintenance of the wire is achieved.

CN115210826BActive Publication Date: 2025-05-13SUMITOMO WIRING SYSTEMS LTD
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Patent Information

Application Number
CN202180017813.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2020-03-17
Filing Date
2021-03-12
Publication Date
2025-05-13
Estimated Expiration
2041-03-12

AI Technical Summary

Technical Problem

When the raw material around the outer periphery of the wire and the surface raw material of the sheet are difficult to weld, it is difficult to keep the wire on the sheet.

Method used

By placing a linear conveying member and a linear member on the holding surface of the base member, the linear member intersects the linear conveying member from the side opposite to the base member, and both sides of the linear conveying member are welded to the holding surface to hold the linear conveying member.

Benefits of technology

In the case where it is difficult to weld, the linear conveying member is easily retained on the base member, and the holding effect is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The purpose is to easily hold a linear transmission member on a base member. The wiring member comprises: a base member having a holding surface; a linear transmission member arranged on the holding surface side; and a linear member arranged on the holding surface side, the linear member intersecting the linear transmission member at a plurality of locations from the side opposite to the base member, and the linear member being fused to the holding surface on both sides of the linear transmission member.
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Description

Technical Field

[0001] The present disclosure relates to a wiring member. Background Art

[0002] Patent Document 1 discloses a wire harness including a sheet material, electric wires, and a holding portion at least partially interposed between the electric wires and the sheet material and mediating joining of the sheet material and the electric wires by welding.

[0003] Prior Art Literature

[0004] Patent Literature

[0005] Patent Document 1: Japanese Patent Application Publication No. 2019-3925 Summary of the invention

[0006] Summary of the Invention

[0007] Problems to be solved by the invention

[0008] When the outer peripheral material of the electric wire and the surface material of the sheet material are difficult to be welded together, it is required to be able to hold the electric wire on the sheet material more easily.

[0009] Therefore, an object of the present disclosure is to enable a linear conveying member to be easily held on a base member.

[0010] Solutions to Solve Problems

[0011] The wiring component disclosed in the present invention comprises: a base component having a holding surface; a linear transmission component arranged on the holding surface side; and a linear member arranged on the holding surface side, wherein the linear member intersects the linear transmission member at multiple locations from the side opposite to the base component, and the linear member is fused to the holding surface on both sides of the linear transmission member.

[0012] Effects of the Invention

[0013] According to the present disclosure, it is easy to hold the linear conveying member on the base member. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a plan view showing a wiring member according to the embodiment.

[0015] Figure 2 yes Figure 1 Sectional view along line II-II.

[0016] Figure 3 It is a plan view showing a wiring member according to a first modification.

[0017] Figure 4 It is a plan view showing a wiring member according to a second modification.

[0018] Figure 5 It is a plan view showing a wiring member according to a third modification.

[0019] Figure 6 It is a plan view showing a wiring member according to a fourth modification. DETAILED DESCRIPTION

[0020] [Description of Embodiments of the Present Disclosure]

[0021] First, embodiments of the present disclosure will be described by way of examples.

[0022] The wiring member of the present disclosure is as follows.

[0023] (1) A wiring component comprising: a base component having a holding surface; a linear transmission component arranged on the holding surface side; and a linear member arranged on the holding surface side, the linear member intersecting the linear transmission member at multiple locations from a side opposite to the base component, the linear member being fused to the holding surface on both sides of the linear transmission member.

[0024] Thus, the linear conveying member is held on the holding surface of the base member by the linear member fused to the holding surface. Therefore, it is easy to hold the linear conveying member on the base member.

[0025] (2) In the wiring member of (1), the surface material of the linear member may have the following properties: the peel strength of the linear member relative to the holding surface based on welding is greater than the peel strength of the linear transmission member relative to the holding surface based on welding. Even in the case where the linear transmission member is difficult to be welded to the holding surface, the linear transmission member can be held on the holding surface by the linear member that is easily welded to the holding surface.

[0026] (3) In the wiring member of (1) or (2), the linear member may be a linear member that transmits power or light. The linear member can realize the function of transmitting power or light and hold the linear transmission member.

[0027] (4) In any of the wiring members in (1) to (3), the linear member may include: a plurality of one-side path portions arranged on one side of the linear transmission member; and a plurality of other-side path portions arranged on the other side of the linear transmission member, the plurality of one-side path portions and the plurality of other-side path portions being alternately arranged along the extension direction of the linear transmission member, and at least a portion of each of the plurality of one-side path portions and at least a portion of each of the plurality of other-side path portions being fused to the holding surface. The linear member can hold the linear transmission member at a plurality of locations in the extension direction of the linear transmission member.

[0028] (5) In any of the wiring members of (1) to (4), the linear member may obliquely intersect the linear transmission member. The linear member can extend obliquely intersecting the linear transmission member from the welded portion welded to the holding surface, thereby facilitating the arrangement of the linear member.

[0029] (6) In any of the wiring members in (1) to (5), the linear member may be thinner than the linear transmission member. Since the linear member is thinner than the linear transmission member, it is easy to bend. Therefore, the linear member can be welded to the holding surface at a position as close as possible to the linear transmission member, and the linear transmission member can be firmly held.

[0030] (7) In any of the wiring members of (1) to (6), the linear transmission member may include a curved path portion curved on the holding surface, and the linear member may intersect the linear transmission member at positions on both sides of the curved path portion in the extending direction of the linear transmission member. The position of the linear transmission member before and after the curved path portion is maintained by the linear member, so that the linear transmission member is less likely to deviate from its position.

[0031] (8) In any one of (1) to (7), the wiring member may include a plurality of the linear transmission members, and the linear member may be fused to the holding surface in a state of intersecting the plurality of linear transmission members. The plurality of linear transmission members may be held by the linear member.

[0032] (9) In any one of (1) to (8), the wiring member may include a plurality of the linear members, and the plurality of linear members may be fused to the holding surface in a state of intersecting the linear transmission member. The linear transmission member may be firmly held by the plurality of linear members.

[0033] (10) In any of the wiring members in (1) to (9), the linear transmission member may include a first linear transmission member and a second linear transmission member, and the linear member may include: a first linear member fused to the holding surface in a state intersecting with the first linear transmission member; and a second linear member fused to the holding surface in a state intersecting with the second linear transmission member. The first linear transmission member is held by the first linear member, and the second linear transmission member is held by the second linear member. Thus, the first linear transmission member and the second linear transmission member can be firmly held.

[0034] [Details of the embodiments of the present disclosure]

[0035] Hereinafter, specific examples of the wiring member of the present disclosure will be described with reference to the drawings. It should be noted that the present disclosure is not limited to these examples, but is disclosed by the claims, and is intended to include all changes within the meaning and scope equivalent to the claims.

[0036] [Implementation Method]

[0037] Hereinafter, a wiring member according to the embodiment will be described. Figure 1 is a top view showing the wiring member 10, Figure 2 yes Figure 1 The wiring member 10 includes a base member 20 , a linear transmission member 30 , and a linear member 40 .

[0038] The base member 20 has a holding surface 22. The linear transmission member 30 and the linear member 40 are arranged on the holding surface 22. The linear transmission member 30 is held on the holding surface 22 in a manner of describing a prescribed path. That is, the base member 20 is a member having a holding surface 22 for holding the linear transmission member 30 along a prescribed path. The base member 20 only needs to be a member having a holding surface 22 for holding the linear transmission member 30. The base member 20 can be formed in a sheet shape or in a three-dimensional shape. The holding surface 22 can be a plane, a curved surface, a concave-convex surface, or a surface formed by a plane and other curved surfaces.

[0039] Here, the base member 20 is described as a member having a flat planar portion, more specifically, as a bendable sheet member 20 .

[0040] The sheet member 20 may be formed into a shape along the wiring path of the linear transmission member 30. Here, the sheet member 20 is formed into a rectangular shape that is long in one direction. The sheet member may be curved. The sheet member may have a curved portion. The sheet member may have a branch portion.

[0041] The material constituting the sheet member 20 is not particularly limited, and the sheet member 20 may also be formed by a material containing a resin such as PVC (polyvinyl chloride), PET (polyethylene terephthalate), or PP (polypropylene). The sheet member 20 may be a sheet material uniformly filled inside, or a non-woven sheet, etc. The sheet member 20 may also contain a material such as metal. The sheet member 20 preferably has flexibility that allows it to be easily bent in the thickness direction. The sheet member 20 may be a single layer, or may be stacked with multiple layers. In the case of stacking multiple layers, for example, the sheet member 20 may be stacked with resin layers. More specifically, for example, the sheet member 20 may be stacked with a resin sheet uniformly filled inside and a non-woven sheet. Moreover, for example, the sheet member 20 may be stacked with a resin layer and a metal layer.

[0042] The linear transmission member 30 is conceived to connect components in the vehicle to enable communication or power supply. The linear transmission member 30 is arranged on the holding surface 22 side so as to extend along a wiring path corresponding to the position of the component to be connected.

[0043] More specifically, the linear transmission member 30 can be any linear member that transmits power or light, etc. For example, the linear transmission member 30 can be a general electric wire having a core wire and a coating around the core wire, or can be a bare wire, a shielded wire, a twisted wire, an enameled wire, a nichrome wire, an optical fiber, etc.

[0044] The power transmission linear transmission member 30 may be various signal lines or various power lines. A part of the power transmission linear transmission member may be used as an antenna or a coil for transmitting or receiving signals or power to or from space.

[0045] The linear transmission member 30 may be a single linear object or a composite of a plurality of linear objects (a twisted wire, a cable obtained by gathering a plurality of linear objects and covering them with a sheath, etc.).

[0046] The linear member 40 is disposed on the holding surface 22 side. The linear member 40 is a member that holds the linear conveying member 30 on the holding surface 22 in a state of being welded to the holding surface 22.

[0047] The linear member 40 only needs to be able to be welded to the holding surface 22. In other words, the surface material of the linear member 40 only needs to be a material that can be welded to the holding surface 22 of the sheet member 20. For example, the material of the holding surface 22 of the sheet member 20 and the surface material of the linear member 40 may contain the same resin material. For example, when the holding surface 22 of the sheet member 20 is formed of a material containing PVC, the surface material of the linear member 40 may also be a material containing PVC.

[0048] The surface material of the linear member 40 can be any material as long as it can be welded to the holding surface 22 of the sheet member 20. Therefore, the center portion of the linear member 40 can be metal, glass, or a resin that is difficult to weld to the holding surface 22 of the sheet member 20. Therefore, like the linear transmission member 30, the linear member 40 can also be a linear member that transmits power or light. In this case, the linear member 40 can be used as a linear transmission member that connects components in the vehicle so that communication is possible or power can be supplied.

[0049] In the present embodiment, the case where the linear transmission member 30 is a shielded cable 30 for transmitting electric power is described. More specifically, the shielded cable 30 includes a plurality of electric wires 32, a shielding layer 35 covering the plurality of electric wires, and a sheath 36 covering the shielding layer 35. The electric wire 32 includes a core wire 33 and a sheath 34 covering the periphery of the core wire 33. A plurality of (here, 2) electric wires 32 are twisted. The shielding layer 35 is conductive and covers the twisted electric wires 32. The shielding layer 35 is, for example, a braided wire in which metal wires are braided into a cylindrical shape. The sheath 36 is an insulating layer formed by extruding and wrapping molten resin around the shielding layer 35. The shielding layer 35 may also be omitted. The above-mentioned shielded cable 30 may also be used as, for example, a microphone connection cable, an antenna cable, an image signal transmission cable, an LVDS (Low Voltage Differential Signaling) signal cable, and the like.

[0050] In addition, the description will be made assuming that the linear member 40 is an electric wire 40 for transmitting electric power. More specifically, the electric wire 40 includes a core wire 41 and a coating 43 covering the periphery of the core wire 41 .

[0051] The shielded cable 30 is arranged along a certain path on the holding surface 22. Here, the shielded cable 30 is arranged from one end of the sheet member 20 toward the other end along the extending direction of the sheet member 20. Here, the shielded cable 30 is arranged linearly along the extending direction of the sheet member 20.

[0052] The electric wires 40 are arranged on the holding surface 22 so as to intersect the shielded cable 30 at a plurality of locations from the side opposite to the base member 20. Furthermore, the electric wires 40 are welded to the holding surface 22 on both sides of the shielded cable 30. The welded locations of the electric wires 40 on the holding surface 22 may be locations separated from the shielded cable 30 in a plan view or locations in contact with the shielded cable 30.

[0053] Here, the term "welding" means, for example, that the resin contained in at least one of the linear member (electric wire) 40 and the holding surface 22 of the base member (sheet member) 20 melts and adheres and fixes the linear member (electric wire) 40 and the holding surface 22. Whenever the above-mentioned welding is performed, the resin may be melted by heat or dissolved by a solvent. That is, the welded and fixed portion by welding may be a state where the welded and fixed portion is welded and fixed by heat or a state where the welded and fixed portion is welded and fixed by a solvent.

[0054] The heat-based welding can be performed by ultrasonic welding, heat-pressure welding, hot air welding, high-frequency welding, etc. For example, a welded portion by ultrasonic welding may also be referred to as an ultrasonic welded portion.

[0055] In the welded portion, only the surface of the linear member (electric wire) 40 may be melted, only the holding surface 22 of the base member (sheet member) 20 may be melted, or both of the resins may be melted.

[0056] As an example of a path for the electric wire 40 to hold the shielded cable 30, in the present embodiment, the electric wire 40 is arranged from one end side to the other end side of the shielded cable 30. The electric wire 40 includes a plurality of one side path portions 46 arranged on one side of the shielded cable 30 and a plurality of other side path portions 47 arranged on the other side of the shielded cable 30. The plurality of one side path portions 46 and the plurality of other side path portions 47 are alternately arranged along the extending direction of the shielded cable 30. At least a portion of each of the plurality of one side path portions 46 and at least a portion of each of the plurality of other side path portions 47 are fused to the holding surface 22.

[0057] In other words, the electric wires 40 are arranged to draw a repeated wave shape along the shield cable 30 and to intersect the shield cable 30 at multiple locations. The electric wires 40 are alternately welded to the holding surface 22 on one side and the other side of the shield cable 30 along the shield cable 30 .

[0058] Both ends of the shielded cable 30 and the electric wire 40 may be connected to connectors 50 and 52. Here, the connector 50 is provided at a position separated from one end of the sheet member 20, and the connector 52 is provided at a position separated from the other end of the sheet member 20. The connectors 50 and 52 may be fixed to the sheet member 20. One end of the shielded cable 30 (here, one end of the plurality of electric wires 32) and one end of the electric wire 40 extend from the end of the sheet member 20 and are connected to the same connector 50. The other end of the shielded cable 30 (here, the other end of the plurality of electric wires 32) and the other end of the electric wire 40 extend from the end of the sheet member 20 and are connected to the same connector 52. In this way, when a plurality of linear transmission members are arranged along the same wiring path, a structure in which a part of the electric wire 40 holds another part of the shielded cable 30 may be provided.

[0059] The one side path portion 46 and the other side path portion 47 may be fused to the sheet member 20 in their entirety in the extending direction, or may be fused to the sheet member 20 in a portion of the extending direction. Here, the one side path portion 46 extends linearly along the shielded cable 30, and both ends or ends of the one side path portion 46 are fused to the sheet member 20 via the fusion portion 28. Similarly, both ends or ends of the other side path portion 47 are fused to the sheet member 20. Thus, the one side path portion 46 and the other side path portion 47 can be easily fused to the sheet member 20 at the point-shaped fusion portion. Moreover, the fusion portion in the one side path portion 46 and the fusion portion in the other side path portion 47 are repeated in the same pattern along the extending direction of the shielded cable 30, so that fusion of multiple portions based on mechanical equipment and the like can be easily performed. Since both ends of the one side path 46 and the other side path 47 are welded to the sheet member 20, the one side path 46 and the other side path 47 of the electric wire 40 are connected to more reliably restrict the path of the portion intersecting the electric wire 40. Thus, the shield cable 30 is firmly held by the electric wire 40.

[0060] The electric wire 40 as an example of a linear member crosses the shielded cable 30 as an example of a linear transmission member obliquely. Here, when the electric wire 40 goes from the connector 50 toward the connector 52, the portion from the one side path portion 46 to the other side path portion 47 crossing the shielded cable 30 is set as the first intersection 48. And, conversely, the portion from the other side path portion 47 to the one side path portion 46 crossing the shielded cable 30 is set as the second intersection 49. The first intersection 48 is at an obtuse angle relative to the one side path portion 46 and the other side path portion 47. The second intersection 49 is also at an obtuse angle relative to the one side path portion 46 and the other side path portion 47. The first intersection 48 and the second intersection 49 do not need to be connected at an angle relative to the one side path portion 46 and the other side path portion 47. The first intersection 48 and the second intersection 49 may also be connected while drawing a curve relative to the one side path portion 46 and the other side path portion 47. In any case, when placing the electric wire 40 on the holding surface 22 , the electric wire 40 only needs to be gently bent between the one side path portion 46 or the other side path portion 47 and the first intersection portion 48 or the second intersection portion 49 , so that the electric wire 40 can be easily placed on the holding surface 22 .

[0061] As described above, the structure in which the shielded cable 30 as an example of a linear transmission member is held by another electric wire 40 as a linear member can also be applied to the case where it is difficult to weld the shielded cable 30 as an example of a linear transmission member to the holding surface 22. For example, in the relationship between the surface raw material of the electric wire 40 as a linear member (here, the material of the coating 43) relative to the surface raw material of the shielded cable 30 (here, the material of the sheath 36) and the surface raw material of the holding surface 22, there is sometimes the following property. This property is based on the fact that the peel strength of the welded electric wire (linear member) 40 relative to the holding surface 22 is greater than the peel strength of the welded shielded cable (linear transmission member) 30 relative to the holding surface 22. The peel strength can also be evaluated as follows. For example, the shielded cable 30 and the electric wire 40 are welded to the sheet member 20 under the same conditions. For example, under the same pressure, pressure time, and vibration conditions, the shielded cable 30 and the electric wire 40 are ultrasonically welded to the sheet member 20. Then, the same type of peeling test (a test in accordance with any test specified in JIS K6854, for example) is performed on the shielded cable 30 and the electric wire 40 from the sheet member 20 to evaluate the peeling strength. For example, a 180° peeling test in which the shielded cable 30 or the electric wire 40 is folded back 180° and pulled, or a T-type peeling test in which the sheet member 20 and the shielded cable 30 or the electric wire 40 are pulled in directions perpendicular to each other with respect to the welded surfaces, etc. is performed on the sheet member 20. The magnitude of the peeling strength is evaluated by performing the same type of test on the shielded cable 30 and the electric wire 40.

[0062] The difference in peel strength described above is caused by the combination of the constituent material of the holding surface 22 and the surface material of the electric wire 40 and the shielded cable 30. For example, in the case where the holding surface 22 is formed of a material containing PVC, it is conceivable that the coating 43 of the electric wire 40 is formed of a material containing PVC, and the sheath 36 of the shielded cable 30 is formed of a material containing a resin that does not contain PVC, such as PET (polyethylene terephthalate), PP (polypropylene), fluororesin, etc. It should be noted that the structure for holding the shielded cable 30 by the electric wire 40 can also be applied as a structure for holding a linear transmission member that is easily welded to the sheet member 20.

[0063] The electric wire 40 as an example of a linear member and the shielded cable 30 as an example of a linear transmission member may have the same thickness or different thicknesses. When the electric wire 40 and the shielded cable 30 have different thicknesses, either thickness may be used.

[0064] The electric wire 40 as an example of a linear member may be thinner than the shielded cable 30 as an example of a linear transmission member. In the present embodiment, an example is shown in which the electric wire 40 is thinner than the shielded cable 30 including a plurality of electric wires 32. In this case, there are the following advantages. That is, the thin electric wire 40 can be bent more easily than the thick shielded cable 30. Therefore, when the welding part is set near the shielded cable 30, the electric wire 40 is flexibly bent according to the diameter of the shielded cable 30, and it is difficult for a large peeling force to act on the welding part. Thus, the welding part of the electric wire 40 is set at a position as close to the shielded cable 30 as possible, and the shielded cable 30 can be firmly held. It should be noted that a linear transmission member 60 such as an electric wire may also be arranged on the retaining surface 22 separately. The linear transmission member 60 may also be welded to the retaining surface 22.

[0065] According to the wiring member 10 thus configured, the shielded cable 30 as an example of a linear transmission member is held on the holding surface 22 of the base member 20 by the electric wire 40 as an example of a linear member welded to the holding surface 22. Therefore, the shielded cable 30 is easily held on the base member 20.

[0066] For example, when the surface material of the shielded cable 30 is difficult to be welded to the holding surface 22 of the base member 20, the shielded cable 30 is held on the holding surface 22 by the electric wire 40 which is easily welded to the holding surface 22. An example of when the surface material of the shielded cable 30 is difficult to be welded to the holding surface 22 of the base member 20 is when the surface material of the coating 43 of the electric wire 40 has a property that the peel strength of the electric wire 40 relative to the holding surface 22 by welding is greater than the peel strength of the shielded cable 30 relative to the holding surface 22 by welding.

[0067] The linear member is a linear member that transmits power or light, and is the electric wire 40 here. Therefore, the electric wire 40 can transmit power or light and hold the shielded cable 30. Thus, the shielded cable 30 and the electric wire 40 can be integrated into a thin wiring member.

[0068] The plurality of one side paths 46 and the plurality of other side paths 47 are alternately arranged along the extending direction of the shielded cable 30. The shielded cable 30 is pressed and held on the holding surface 22 at multiple locations by the plurality of intersections 48 and 49 connecting the plurality of one side paths 46 and the plurality of other side paths 47.

[0069] Furthermore, since the electric wires 40 can extend obliquely and intersectingly with respect to the one-side path portion 46 and the other-side path portion 47 welded to the holding surface 22 , the electric wires 40 can be easily arranged.

[0070] In addition, the electric wire 40 is thinner than the shielded cable 30 and is therefore easy to bend. Therefore, the electric wire 40 can be welded to the holding surface 22 at a position as close as possible to the shielded cable 30, and the shielded cable 30 can be firmly held.

[0071] [Modifications]

[0072] A modification example based on the above-mentioned embodiment will be described. It should be noted that the same components as those described in the embodiment are denoted by the same reference numerals and their description will be omitted.

[0073] Figure 3 1 is a top view of the wiring member 110 of the first modified example. As shown in the figure, the linear transmission member 130 corresponding to the linear transmission member 30 may also include a curved path portion 132 curved on the holding surface 122 corresponding to the holding surface 22. In the first modified example, the base member is a sheet member 120 as in the above embodiment. The sheet member 120 is formed in an L-shaped curved shape.

[0074] The linear conveying member 130 is arranged on the holding surface 122 along a path that is bent in an L-shape similar to the overall shape of the sheet member 120. Both end portions of the linear conveying member 130 extend linearly along the linear portions on both end sides of the sheet member 120. The ends of the linear conveying member 130 extend from the ends of the sheet member 120 and are connected to the connectors 50 and 52. The middle portion of the linear conveying member 130 in the extending direction is bent at the bent portion of the sheet member 120. Here, the portion of the linear conveying member 130 extending from the bent path portion 132 is bent at an angle of 90°. The bent path portion 132 may be a portion of the linear conveying member 130 extending from the bent path portion 132 bent at an angle exceeding 90° and less than 180°, or may be bent at an angle less than 90°. The bent path portion 132 may be bent at an angle, or may be bent while being bent.

[0075] The linear member 140 corresponding to the linear member 40 crosses the linear conveying member 130 at positions on both sides of the curved path portion 132 in the extending direction of the linear conveying member 130. Here, the linear member 140 crosses the linear portion of the linear conveying member 130 located outside the curved path portion 132. The structure in which the linear member 140 holds the linear conveying member 130 is the same as that of the above-mentioned embodiment. In the portion along the curved path portion 132, the linear member 140 follows the curved path portion 132. The linear member 140 may also cross the curved path portion 132.

[0076] In the first modification, the two side portions of the linear conveying member 130 extending from the curved path portion 132 are held at a certain position in a direction orthogonal to the direction in which they extend by the linear member 140. Therefore, if the linear conveying member 130 is viewed as a whole, it is positioned along two different directions on the holding surface 122, and the linear conveying member 130 is held at a certain position on the holding surface 122.

[0077] The linear conveying member 130 may also be bent at two locations, and in the extending direction of the linear conveying member 130 , both outer extensions of each bent portion are held by the linear member 140 .

[0078] Figure 4 2 is a plan view showing a wiring member 210 according to a second modification. As shown in the figure, the wiring member 210 may include a plurality of linear transmission members 230. The linear transmission members 230 may have the same structure as the linear transmission members 30 described in the above embodiment.

[0079] The linear member 240 corresponding to the linear member 40 may be fused to the holding surface 22 in a state of intersecting the plurality of linear conveying members 230 .

[0080] In this example, a plurality of (two in this case) linear conveying members 230 are arranged in parallel. The plurality of linear conveying members 230 may be in contact or separated. The linear members 240 are fused to the holding surface 22 in the sheet member 20 on both outer sides of the parallel direction of the plurality of linear conveying members 230. The linear members 240 press and hold the plurality of linear conveying members 230 on the holding surface 22 by crossing with the plurality of linear conveying members 230 between the fused portions on the outer sides of the parallel direction of the plurality of linear conveying members 230.

[0081] According to this example, one linear member 240 can hold a plurality of linear transmission members 230. It should be noted that the linear member 240 can also be fused to the holding surface 22 between the plurality of linear transmission members 230. In this case, the linear member can also be arranged along the extension direction of the linear transmission member between the plurality of linear transmission members and fused to the holding surface. Moreover, at a plurality of locations in the linear member that connect one side of the plurality of linear transmission members to the other side, portions fused to the holding surface 22 and portions not fused to the holding surface 22 can be mixed between the plurality of linear transmission members 230.

[0082] Figure 5 3 is a plan view showing a wiring member 310 according to a third modification. As shown in the figure, the wiring member 310 may include a plurality of linear members 340. The linear members 340 may have the same structure as the linear members 40 described in the above embodiment.

[0083] The plurality of linear members 340 are fused to the holding surface 22 in a state of crossing the linear conveying member 30. In this example, the plurality of (five in this case) linear members 340 are arranged in a parallel state, drawing a repeated wave pattern on both sides of the linear conveying member 30, and are alternately fused to the holding surface 22 on one side and the other side of the linear conveying member 30. The plurality of linear members 340 may be in contact or separated.

[0084] Similar to the above-described embodiment, one end or both ends of the plurality of linear members 340 may be connected to a connector that is a connection destination of the linear transmission member 30 via an end of the sheet member 20 or the like.

[0085] According to this example, the linear conveying member 30 is firmly held by the plurality of linear members 340 .

[0086] Figure 6 4 is a top view of a wiring member 410 according to a fourth modification. As shown in the figure, the linear transmission member in the wiring member 410 may include a first linear transmission member 430A and a second linear transmission member 430B. The linear transmission members 430A and 430B may also have the same structure as the linear transmission member 30 described in the above embodiment.

[0087] In addition, the linear member in the wiring member 410 may also include a first linear member 440A and a second linear member 440B. The linear members 440A and 440B may also have the same structure as the linear member 40 described in the above embodiment. The first linear member 440A is fused to the holding surface 22 in a state of crossing the first linear transmission member 430A, and the first linear transmission member 430A is held. The second linear member 440B is fused to the holding surface 22 in a state of crossing the second linear transmission member 430B, and the second linear transmission member 430B is held.

[0088] In other words, in the present wiring member 410 , the plurality of linear transmission members 430A and 430B are held on the holding surface 22 by the different linear members 440A and 440B.

[0089] According to this example, the first linear conveying member 430A and the second linear conveying member 430B are firmly held by the different linear members 440A and 440B.

[0090] It should be noted that the structures described in the above embodiments and the modified examples can be appropriately combined as long as they do not contradict each other. Figure 4 or Figure 5 The retaining structures described in can also be mixed.

[0091] Description of symbols

[0092] 10 Wiring components

[0093] 20 Sheet member (base member)

[0094] 22 Keep surface

[0095] 28 Welding section

[0096] 30 Shielded cable (linear transmission component)

[0097] 32 Wire

[0098] 33 core wire

[0099] 34 Wrap

[0100] 35 Shielding layer

[0101] 36 Sheath

[0102] 40 Wire (linear member)

[0103] 41 core wire

[0104] 43 Wrap

[0105] 46 One side path

[0106] 47 Other side path

[0107] 48 First intersection

[0108] 49 Second intersection

[0109] 50 Connectors

[0110] 52 Connectors

[0111] 60 Linear transmission member

[0112] 110 Wiring components

[0113] 120 pieces

[0114] 122 Keep Surface

[0115] 130 Linear transmission member

[0116] 132 Curved Path

[0117] 140 Linear components

[0118] 210 Wiring components

[0119] 230 Linear transmission member

[0120] 240 Linear Components

[0121] 310 Wiring components

[0122] 340 Linear Components

[0123] 410 Wiring components

[0124] 430A first linear conveying member

[0125] 430B Second linear transmission member

[0126] 440A First linear member

[0127] 440B: second linear member.

Claims

1. A wiring component comprising: a base member having a retaining surface; A linear conveying member disposed on the holding surface side; and A linear member is arranged on the holding surface side, The linear member intersects the linear conveying member at a plurality of locations from a side opposite to the base member. The linear member is welded to the holding surface on both sides of the linear conveying member, The linear member comprises: A plurality of one-side path portions, arranged on one side of the linear conveying member; and a plurality of other side path portions, arranged on the other side of the linear transmission member, The plurality of one side path portions and the plurality of other side path portions are alternately arranged along the extending direction of the linear conveying member, At least a portion of each of the plurality of one-side path portions and at least a portion of each of the plurality of other-side path portions are welded to the holding surface.

2. The wiring member according to claim 1, wherein The surface material of the linear member has such a property that a peeling strength of the linear member with respect to the holding surface due to welding is greater than a peeling strength of the linear conveying member with respect to the holding surface due to welding.

3. The wiring member according to claim 1 or 2, wherein: The linear member is a linear member that transmits electric power or light.

4. The wiring member according to claim 1 or 2, wherein: The linear member crosses the linear conveying member obliquely.

5. The wiring member according to claim 1 or 2, wherein: The linear member is thinner than the linear conveying member.

6. The wiring member according to claim 1 or 2, wherein The linear conveying member includes a curved path portion that curves on the holding surface, The linear members intersect the linear conveying member at positions on both sides of the curved path portion in the extending direction of the linear conveying member.

7. The wiring member according to claim 1 or 2, wherein: The wiring member includes a plurality of the linear transmission members. The linear member is fused to the holding surface in a state of intersecting the plurality of linear conveying members.

8. The wiring member according to claim 1 or 2, wherein The wiring member includes a plurality of the linear members. The plurality of linear members are fused to the holding surface in a state of intersecting the linear conveying members.

9. The wiring member according to claim 1 or 2, wherein: The linear conveying member includes a first linear conveying member and a second linear conveying member, The linear member includes: a first linear member fused to the holding surface in a state of intersecting the first linear conveying member; and a second linear member fused to the holding surface in a state of intersecting the second linear conveying member.

Citation Information

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