Laminated sheet

The laminated sheet design securely fixes an electric wire to a first sheet member by melting and filling spaces in a second sheet member, addressing material incompatibilities and enhancing functional capabilities.

JP7848904B2Active Publication Date: 2026-04-21AUTONETWORKS TECH LTD +2
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
AUTONETWORKS TECH LTD
Filing Date
2025-02-04
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing technologies face challenges in firmly fixing a second sheet member to a first sheet member due to material incompatibilities, leading to potential separation and inadequate performance compensation.

Method used

A laminated sheet configuration where a first sheet member, suitable for fixing an electric wire, is overlapped with a second sheet member that has spaces for the first sheet member to melt and fill, ensuring firm fixation through physical interaction rather than chemical adhesion, allowing the second sheet member to enhance other functions.

Benefits of technology

The laminated sheet design enables secure fixation of the electric wire to the first sheet member, enhancing peel strength and allowing for additional functions like sound insulation or rigidity without relying on chemical adhesion, while maintaining structural integrity under tensile forces.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a laminated sheet, in which a second sheet member is superimposed on a first sheet member to which an electric wire is fixed, in order for them to be firmly fixed.SOLUTION: The laminated sheet 30 includes a first sheet member 32, and a second sheet member 36 fixed to the other main surface side of the first sheet member 32, and in one of the first sheet member 32 and the second sheet member 36, a space 38 in which the other can be melted and filled in is formed, and the first sheet member 32 and the second sheet member 36 are superimposed in a state in which the other of the first sheet member 32 and the second sheet member is melted and filled in the one space 38 and solidified.SELECTED DRAWING: Figure 2
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Description

Technical Field

[0001] This invention relates to a wiring member including a linear transmission member and a sheet member.

Background Art

[0002] Patent Document 1 discloses a configuration in which covered electric wires are arranged in parallel on a soft resin sheet. As means for bonding the covered electric wire and the soft resin sheet, heat and pressure welding means and the like are disclosed.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] As the soft resin sheet, it is preferable to select a material suitable for bonding with the covered electric wire. For example, assuming that the covered electric wire and the soft resin sheet are bonded by heat and pressure welding means. In this case, as the soft resin sheet, it is preferable to use the same resin as the resin material of the covering, which is easily welded to the covering of the covered electric wire.

[0005] However, if a soft resin sheet suitable for bonding with the covered electric wire is selected, it may be inferior in other performances. In this case, it is conceivable to stack another sheet on the soft resin sheet to compensate for the other performance.

[0006] However, depending on the combination of materials of the soft resin sheet and another sheet, etc., there may be cases where the two cannot be firmly fixed by overlapping them.

[0007] Therefore, an object of the present invention is to enable the second sheet member to be firmly fixed by overlapping it on the first sheet member to which the electric wire is fixed. [Means for solving the problem]

[0008] To solve the above problems, the laminated sheet comprises a first sheet member and a second sheet member fixed to the other main surface side of the first sheet member, wherein a space is formed in one of the first sheet member and the second sheet member into which the other can melt and fill, and the first sheet member and the second sheet member are superimposed in a solidified state in which the other of the first sheet member has melted and filled the space in the one. [Effects of the Invention]

[0009] Because the first and second sheet members are superimposed on each other in a state where one melts and fills the space between the other and solidifies, the first and second sheet members can be firmly superimposed and fixed. Furthermore, since the first and second sheet members can be superimposed regardless of the quality of adhesion due to chemical interaction, for example, the first sheet member can be made of a material suitable for fixing to other members, and the second sheet member can be configured to ensure other functions. [Brief explanation of the drawing]

[0010] [Figure 1] This is a schematic perspective view showing a wiring member according to an embodiment. [Figure 2] This is a partial cross-sectional view along line II-II in Figure 1. [Figure 3] This is an explanatory diagram showing one step in the manufacturing process of wiring components. [Figure 4] This is a schematic perspective view showing a wiring member relating to the first modified example. [Figure 5] This is a schematic perspective view showing the wiring member related to the second modified example. [Figure 6] This is a partial cross-sectional view showing a wiring member related to the deformation described above. [Figure 7] This is an explanatory diagram showing an example of a wiring component made of a material that changes color due to heat. [Modes for carrying out the invention]

[0011] The wiring member and laminated sheet according to the embodiment will be described below.

[0012] Figure 1 is a schematic perspective view showing the wiring member 10, and Figure 2 is a partial cross-sectional view taken along line II-II in Figure 1.

[0013] The wiring member 10 comprises a linear transmission member 20 and a laminated sheet 30. The laminated sheet 30 is constructed by laminating a first sheet member 32 and a second sheet member 36.

[0014] The linear transmission member 20 can be any linear member that transmits electricity or light, etc. For example, the linear transmission member 20 may be a general electric wire having a core wire and an outer covering around the core wire, or it may be a shielded wire, enameled wire, nichrome wire, optical fiber, etc. As a linear transmission member that transmits electricity, it may be various signal lines or various power lines. A linear transmission member that transmits electricity may be used as an antenna, coil, etc. that sends signals or power to or receives them from space.

[0015] Here, the linear transmission member 20 is described as a general electric wire 20 (hereinafter simply referred to as electric wire 20). The electric wire 20 has a core wire 24 as the transmission line body and an insulating sheath 26 as the covering 26 that covers the core wire 24. Each description of the electric wire 20 is applicable to each example of the linear transmission member 20, except for configurations to which it is not applicable.

[0016] The core wire 24 is composed of one or more strands. The strands are made of conductors such as copper, copper alloy, aluminum, or aluminum alloy. If the core wire 24 is composed of multiple strands, the multiple strands may be twisted together. The insulating coating 26 is formed by extruding a resin material such as PVC (polyvinyl chloride) or PE (polyethylene) around the core wire 24. Here, the electric wire 20 is a so-called round electric wire with a circular cross-section.

[0017] Here, a plurality (three in FIG. 1) of electric wires 20 are fixed to the laminated sheet 30 in a parallel state. The electric wire 20 may be one or a plurality. The electric wire 20 may be bent and fixed on the laminated sheet 30. The plurality of electric wires 20 may be fixed to the laminated sheet 30 so as to branch in the middle.

[0018] The laminated sheet 30 is a sheet-like member to which the electric wire 20 is fixed on the main surface 31. By fixing the electric wire 20 on the main surface 31 of the laminated sheet 30, the electric wire 20 is held along a predetermined path on the main surface 31. The laminated sheet 30 may have flexibility that can be easily bent, or may be a member having rigidity enough to maintain a certain shape.

[0019] The laminated sheet 30 has a configuration in which a first sheet member 32 and a second sheet member 36 are laminated.

[0020] The first sheet member 32 is a sheet-like member. Here, the first sheet member 32 is formed in an elongated rectangular shape. The electric wire 20 is fixed to one main surface 33 of the first sheet member 32.

[0021] The second sheet member 36 is a sheet-like member. Here, the first sheet member 32 is formed in an elongated rectangular shape. The second sheet member 36 is fixed to the other main surface 34 of the first sheet member 32 in an overlapping state.

[0022] Here, the first sheet member 32 and the second sheet member 36 have the same shape, and the second sheet member 36 is fixed to the entire other main surface 34 of the first sheet member 32. The first sheet member may be larger than the second sheet member, and the second sheet member may be fixed to a part of the other main surface of the first sheet member. Conversely, the first sheet member may be smaller than the second sheet member, and the first sheet member may be fixed to a part of one main surface of the second sheet member.

[0023] Since the electric wire 20 is fixed to the first sheet member 32, the first sheet member 32 is considered to be a member more suitable for fixing the electric wire 20 compared to the second sheet member 36.

[0024] If a material suitable for fixing the electric wire 20 is used as the first sheet member 32, there is a risk that some function may be insufficient or lacking. Therefore, the second sheet member 36 is used to reinforce or add some function to the first sheet member 32.

[0025] The method of fixing the electric wire 20 to the first sheet member 32 may be to fix it at a contact point, to fix it at a non-contact point, or to use both methods in combination.

[0026] Here, "contact portion fixing" means that the portion where the linear transmission member (electric wire 20) and the first sheet member 32 come into contact is fixed together. Non-contact portion fixing refers to a fixing method that does not involve contact portion fixing, for example, by using other fixing members to press the linear transmission member (electric wire 20) toward the first sheet member 32, thereby maintaining the linear transmission member (electric wire 20) and the first sheet member 32 in a fixed state.

[0027] The method of fixing the contact area may be indirect fixing, direct fixing, or a combination of both in different areas. Indirect fixing of the contact area means that the linear transmission member (electric wire 20) and the first sheet member 32 are indirectly attached and fixed to each other via an intermediary member such as an adhesive, tack, or double-sided adhesive tape provided between them. Direct fixing of the contact area means that the linear transmission member (electric wire 20) and the first sheet member 32 are directly attached and fixed to each other without the use of an adhesive or the like. In direct fixing of the contact area, for example, it is conceivable that the resin contained in at least one of the linear transmission member (electric wire 20) and the first sheet member 32 is melted to cause them to stick together and be fixed.

[0028] In forming the state of direct fixation of the contact area, the resin may be melted by heat, for example, or by a solvent. In other words, the state of direct fixation of the contact area may be a state of direct fixation of the contact area by heat, or a state of direct fixation of the contact area by a solvent. Preferably, the state of direct fixation of the contact area by heat is preferred.

[0029] The means used to form the state of direct fixation of the contact area is not particularly limited, and various means, including known means such as welding, fusion, and welding, can be used. For example, when forming the state of direct fixation of the contact area by heat through welding, various welding means such as ultrasonic welding, heat-pressure welding, hot air welding, and high-frequency welding can be employed. When the state of direct fixation of the contact area is formed by these means, the linear transmission member (electric wire 20) and the first sheet member 32 are in a state of direct fixation of the contact area by that means. Specifically, for example, when the state of direct fixation of the contact area is formed by ultrasonic welding, the linear transmission member (electric wire 20) and the first sheet member 32 are in a state of direct fixation of the contact area by ultrasonic welding. The portion in which the state of direct fixation of the contact area by heat is formed by welding (the fixed portion between the linear transmission member (electric wire 20) and the first sheet member 32) may be called the welded portion, and the portion fixed by ultrasonic welding may be called the ultrasonic welded portion, the portion fixed by heat-pressure welding may be called the heat-pressure welded portion, and so on.

[0030] In the case of direct fixing of the contact points, either only the resin contained in the coating of the linear transmission member (electric wire 20) may melt, or only the resin contained in the first sheet member 32 may melt. In these cases, the melted resin may adhere to the outer surface of the other and solidify, forming a relatively clear interface. Also, in the case of direct fixing of the contact points, both the resin contained in the coating of the linear transmission member (electric wire 20) and the resin contained in the first sheet member 32 may melt. In this case, both resins may mix together and not form a clear interface. In particular, when the coating of the linear transmission member (electric wire 20) and the first sheet member 32 contain easily miscible resins, such as the same resin material, both resins may mix together and not form a clear interface.

[0031] As an example of non-contact fixing, it is conceivable that sewing thread, another sheet material, adhesive tape, etc., may be used to press the linear transmission member (electric wire 20) toward the first sheet member 32, thereby maintaining the linear transmission member (electric wire) and the sheet material in a fixed state.

[0032] Given the above-described fixing configurations, the significance of the first sheet member 32 being a member more suitable for fixing the electric wire 20 compared to the second sheet member 36 can be considered, for example, as follows.

[0033] As an example of indirect fixing of contact points, consider a configuration in which a linear transmission member (electric wire 20) and a first sheet member 32 are adhesively fixed to each other via an adhesive material such as an adhesive agent or double-sided adhesive tape provided between them. In this case, the first sheet member 32 is more suitable for fixing the electric wire 20 than the second sheet member 36, and it can be assumed that when the adhesive material is applied to both the first sheet member 32 and the second sheet member 36, the adhesive force applied to the first sheet member 32 is greater than the adhesive force applied to the second sheet member 36. Generally, the adhesive force of an adhesive material is small for materials with rough surfaces or surfaces with fine structures on the surface that can be separated, such as nonwoven fabrics.

[0034] As an example of indirect fixing of contact points, consider a configuration in which a linear transmission member (electric wire 20) and a first sheet member 32 are fixed together by an adhesive provided between them. In this case, it may be assumed that the first sheet member 32 has greater adhesive strength than the second sheet member 36 with respect to an adhesive suitable for bonding the linear transmission member (electric wire 20). Generally, adhesives exhibit good adhesion to materials with good compatibility (affinity), and in particular, good adhesion to resins of the same type. Therefore, it is preferable to use resins of the same type for the coating of the linear transmission member (electric wire 20) and the first sheet member 32.

[0035] As an example of fixing contact points, consider a configuration in which the linear transmission member (electric wire 20) and the first sheet member 32 are fixed by melting and solidifying the resin surface of at least one of them. As described above, at least one of the resin surfaces of the linear transmission member (electric wire 20) and the first sheet member 32 may be melted by heat or by a solvent. In this case, it can be assumed that the bonding force when at least one of the resin surface (coating) of the linear transmission member (electric wire 20) and the resin surface of the first sheet member 32 melts and solidifies and the two stick together is greater than the bonding force when at least one of the resin surface (coating) of the linear transmission member (electric wire 20) and the resin surface of the second sheet member 36 melts and solidifies and the two stick together. Generally, if two resin materials have good compatibility (affinity), they will exhibit good bonding force when at least one of them melts, and in particular, if they are resin materials of the same type, they will exhibit good bonding force. Therefore, it is preferable that the surface portion (coating) of the linear transmission member (electric wire 20) and the first sheet member 32 be made of the same type of resin. In other words, it is preferable that the compatibility between the resin of the surface portion of the linear transmission member and the resin of the first sheet member 32 is better than the compatibility between the resin of the surface portion of the linear transmission member and the resin of the second sheet member 36.

[0036] As a non-contact fixing method, consider a configuration in which a sewing thread surrounds the linear transmission member (electric wire 20) and is sewn to the first sheet member 32, thereby sewing the linear transmission member (electric wire 20) to the first sheet member 32. In this case, the first sheet member 32 is less likely to tear due to the sewing thread than the second sheet member 36, and therefore, the linear transmission member (electric wire 20) sewn to the first sheet member 32 by the sewing thread can be considered to be more firmly fixed than in a configuration in which it is sewn to the second sheet member 36 by the same method.

[0037] As an example of non-contact fixing, consider a configuration in which a sheet material, adhesive tape, etc., is fixed to the first sheet member 32 while covering the linear transmission member (electric wire 20), thereby fixing the linear transmission member (electric wire 20) to the first sheet member 32. In this case, if another sheet material, adhesive tape, etc., is fixed to the first sheet member 32 via an adhesive member, it may be considered that the adhesive force of the other sheet material, adhesive tape, etc., to the first sheet member 32 is greater than the adhesive force to the second sheet member 36.

[0038] In the cases where the sheet material for pressing down is fixed to the first sheet member 32 by adhesive, where the sheet material for pressing down is fixed to the first sheet member 32 by sewing thread, and where the sheet material for pressing down is fixed by melting the resin surface of at least one of the sheet material or the first sheet member 32, the above concept regarding the fixing method of the covering of the linear transmission member (electric wire 20) to the first sheet member 32 can be applied, respectively.

[0039] In summary, the reason why the first sheet member 32 is more suitable for fixing the linear transmission member (electric wire 20) compared to the second sheet member 36 can be understood as follows: When the linear transmission member (electric wire 20) is fixed to the first sheet member 32 and the second sheet member 36 in the same configuration, the fixing force of the linear transmission member (electric wire 20) to the first sheet member 32 is greater than the fixing force of the linear transmission member (electric wire 20) to the second sheet member 36.

[0040] Here, we will describe an example in which the linear transmission member (electric wire 20) is directly fixed to the first sheet member 32 at the contact point, or more specifically, in which the resin surface of at least one of the linear transmission member (electric wire 20) and the first sheet member 32 melts and solidifies, thereby fixing the linear transmission member (electric wire 20) to the first sheet member 32.

[0041] In this case, as described above, it may be assumed that the bonding force when at least one of the resin surface (coating) of the linear transmission member (electric wire 20) and the resin surface of the first sheet member 32 melts and solidifies, causing them to stick together, is greater than the bonding force when at least one of the resin surface (coating) of the linear transmission member (electric wire 20) and the resin surface of the second sheet member 36 melts and solidifies, causing them to stick together.

[0042] The material constituting the first sheet member 32 is not particularly limited as long as the above conditions are met. For example, the first sheet member 32 may be formed from a resin-containing material such as PVC (polyvinyl chloride), PET (polyethylene terephthalate), or PP (polypropylene). The suitability of each material can be determined in relation to the material of the resin surface (coating) of the linear transmission member (electric wire 20).

[0043] As described above, it is preferable that the resin surface (coating) of the linear transmission member (electric wire 20) and the first sheet member 32 be made of the same type of resin. For example, if the coating 26 of the electric wire 20 is made of a resin mainly composed of PVC (polyvinyl chloride), it is preferable that the first sheet member 32 be made of a resin mainly composed of PVC (polyvinyl chloride).

[0044] Furthermore, in this case, the first sheet member 32 has a uniformly filled interior. Ma It is described as a sheet-like material.

[0045] As described above, if the material of the first sheet member 32 is selected from the viewpoint of being suitable for fixing the electric wire 20, it is possible that some desirable function of the wiring member may be insufficient or lacking in some function.

[0046] For example, consider the case where the first sheet member 32 is formed from a resin mainly composed of PVC (polyvinyl chloride), matching the material of the insulation 26 of the electric wire 20, as described above. In this case, since PVC (polyvinyl chloride) is a resin that stretches easily, it may not be able to adequately withstand the tensile force applied to the wiring member 10, and a large tensile force may be acting on the electric wire 20 itself.

[0047] Therefore, the second sheet member 36 is superimposed on the first sheet member 32 and fixed in place. The second sheet member 36 is selected for the purpose of supplementing or adding some function to the first sheet member 32, so it is possible that one that is not suitable for fixing the electric wire 20 may be selected. The first sheet member 32 is selected to be suitable for fixing to the electric wire 20, so it is possible that it is not suitable for fixing the second sheet member 36 to the first sheet member 32 in a superimposed state.

[0048] For example, as described above, the first sheet member 32 is selected to be made of a resin mainly composed of PVC (polyvinyl chloride) to match the material of the insulation 26 of the electric wire 20. In this case, since the first sheet member 32 will be easily stretched, it is preferable to select a material that does not stretch easily as the second sheet member 36. For example, the second sheet member 36 may be made of a material that does not stretch easily, such as PP (polypropylene), PET (polyethylene terephthalate), or PE ( polyethylene It is assumed to be formed from resins such as ).

[0049] Next, we consider fixing the first sheet member 32 and the second sheet member 36 together by melting the resin surface of at least one of them. In this case, the first sheet member 32, which is formed of a resin mainly composed of PVC (polyvinyl chloride), is made of PP (polypropylene), PET (polyethylene terephthalate), PE ( polyethylene The second sheet member 36, which is made of a resin such as ), does not adhere well to the other, and the two may easily separate.

[0050] Therefore, the second sheet member 36 is made from the first sheet member 32, which has melted to form a space that can be filled into it. The first sheet member 32 and the second sheet member 36 are then superimposed on each other in a state where the first sheet member 32 has melted, filled into the space of the second sheet member 36, and solidified.

[0051] Here, a nonwoven sheet material is used as the second sheet material 36. The nonwoven sheet material is a material formed in a sheet shape by multiple fibers 37 intertwining without being woven. The fibers 37 are made of a resin that is less stretchable than the resin that constitutes the first sheet material 32, for example, PP (polypropylene), PET (polyethylene terephthalate), PA (polyamide), PE ( polyethylene By using such materials, the nonwoven sheet material itself becomes less prone to stretching. Therefore, by overlapping and joining the second sheet material 36 formed from such nonwoven sheet material to the first sheet material 32, the laminated sheet material 30 itself also becomes less prone to stretching. The nonwoven sheet material may contain an adhesive resin called a binder. The adhesive resin has a melting point lower than the melting point of the fibers 37 and plays the role of sticking the fibers 37 together. The adhesive resin may cover all or part of the plurality of fibers, or it may be mixed in separately from the fibers in fibrous or granular form.

[0052] The second sheet member 36, formed from a nonwoven sheet material, has spaces 38 formed between multiple fibers 37. These spaces 38 are spaces that can be filled by the melting of the first sheet member 32.

[0053] It is preferable to make the melting point of the second sheet member 36, formed from the nonwoven sheet member, higher than the melting point of the first sheet member 32. That is, in order to melt and fill the space 38 of the second sheet member 36 formed from the nonwoven sheet member with the first sheet member 32, it is preferable that the space 38 remains intact without collapsing while the first sheet member 32 is melted. To achieve this, it is preferable to make the melting point of the fibers 37 of the second sheet member 36 higher than the melting point of the first sheet member 32.

[0054] For example, the first sheet member 32 could be formed from a resin mainly composed of PVC (polyvinyl chloride) with a melting point of 85 to 210 degrees Celsius, and the fibers of the second sheet member 36 could be made of PP (polypropylene) with a melting point of approximately 250 degrees Celsius.

[0055] It is not essential that the melting point of the fibers 37 be higher than that of the first sheet member 32. The melting point of the adhesive resin does not need to be higher than that of the first sheet member 32. The melting point of the second sheet member 36 is the temperature of the main part (fibers 37) that forms the space 38.

[0056] The first sheet member 32 and the second sheet member 36 can be overlapped and fixed together, for example, as shown in Figure 3.

[0057] First, the first sheet member 32 and the second sheet member 36 are prepared. Then, with the first sheet member 32 and the second sheet member 36 overlapping, they are sandwiched between the first press member 50 and the second press member 52. A heater 54 is provided on at least one of the first press member 50 and the second press member 52. Preferably, the heater 54 is provided at least on the side of the first press member 50 that presses the first sheet member 32, so that the first sheet member 32 can be heated primarily.

[0058] When the first sheet member 32 and the second sheet member 36 are pressed and heated together by the first press member 50 and the second press member 52, at least a portion of the first sheet member 32 melts. The melted portion of the first sheet member 32 then flows into the spaces 38 of the fibers 37 of the second sheet member 36, filling those spaces.

[0059] After heating is stopped, the portion of the first sheet member 32 that has melted and filled the space 38 solidifies, and the first sheet member 32 and the second sheet member 36 are fixed together in an overlapping state.

[0060] When the first sheet member 32 is heated, the entire first sheet member 32 may melt, or only a portion of the side closer to the second sheet member 36 may melt. The melted portion of the first sheet member 32 may fill only the space 38 on the first sheet member 32 side of the second sheet member 36, or it may fill the entire space 38 in the thickness direction of the second sheet member 36. In Figure 2, the first sheet member 32 has melted and solidified, filling the space 38 on the first sheet member 32 side of the second sheet member 36, while at least a portion of the space 38 remains in the part of the second sheet member 36 that is away from the first sheet member 32.

[0061] The first sheet member 32 and the second sheet member 36 may be fixed together over their entire contact surface, or they may be fixed together at partial fixing points or areas.

[0062] The electric wire 20 may be fixed to the first sheet member 32 before fixing the first sheet member 32 and the second sheet member 36, or it may be fixed after fixing the first sheet member 32 and the second sheet member 36. If the first sheet member 32 and the second sheet member 36 are fixed after the electric wire 20 has been fixed to the first sheet member 32, the first sheet member 32 and the second sheet member 36 may be pressurized and heated while avoiding the fixing points of the electric wire 20.

[0063] The material and properties of the second sheet member 36 vary depending on the function that is to be supplemented or added to the first sheet member 32. For example, if the purpose is to supplement or add sound insulation, cushioning, etc., the second sheet member 36 may be a nonwoven sheet member made of easily stretchable fibers. Also, for example, if the purpose is to supplement or add rigidity, the second sheet member 36 may be a sheet with higher rigidity than the first sheet member 32.

[0064] With the wiring member 10 and laminated sheet 30 configured in this way, the first sheet member 32 is more suitable for fixing the electric wire 20 compared to the second sheet member 36, so the electric wire 20 can be firmly fixed to the first sheet member 32.

[0065] Furthermore, since the first sheet member 32 melts and fills the space 38 of the second sheet member 36 and solidifies, and the first sheet member 32 and the second sheet member 36 are superimposed on each other, the first sheet member 32 is fixed to the second sheet member 36 by an anchoring effect, increasing the peel strength and allowing the two to be firmly superimposed and fixed. In other words, since the first sheet member 32 and the second sheet member 36 are fixed mainly by physical action, the second sheet member 36 can be selected from any material without considering chemical adhesion to the electric wire 20, the first sheet member 32, etc., and it is easy to add or complement any desired function.

[0066] Furthermore, if the melting point of the first sheet member 32 is higher than that of the second sheet member 36, when the first sheet member 32 and the second sheet member 36 are pressed and heated while overlapped, the first sheet member 32 is more likely to melt while the space 38 remains in the second sheet member 36. As a result, the first sheet member 32 can be easily fixed in a solidified state after melting and filling the space 38 in the second sheet member 36. This allows the first sheet member 32 and the second sheet member 36 to be overlapped and fixed more securely.

[0067] Furthermore, the first sheet member 32 has a uniformly filled interior. Ma Because the first sheet member 36 is a sheet-like material, it is easy to securely fix the wire 20 to the first sheet member 32. Furthermore, because the second sheet member 36 is a nonwoven sheet material, numerous spaces 38 are formed between the intertwined fibers 37, and the melted first sheet member 32 easily fills these spaces 38. In this state, the multiple fibers 37 become intricately embedded inside the melted first sheet member 32, making it difficult for the melted first sheet member 32 to escape from the spaces 38 between the multiple fibers 37. For this reason, the first sheet member 32 and the second sheet member 36 can be firmly overlapped and fixed together.

[0068] Furthermore, in the second sheet member 36, which is a nonwoven sheet material, the first sheet member 32 melts and fills the space on the side of the first sheet member 32, and solidifies, while a space 38 remains in the part of the second sheet member 36 that is away from the first sheet member 32. Therefore, protective and sound-insulating performance can be obtained from the nonwoven sheet material.

[0069] Furthermore, if the resin material of the first sheet member 32 and the resin material on the surface of the linear transmission member (electric wire 20) (the material of the coating 26) are made of the same type of resin, it becomes easier to firmly fix the surface (coating 26) of the linear transmission member (electric wire 20) to the first sheet member 32.

[0070] For example, if the surface portion of the linear transmission member (the covering 26 of the electric wire 20) and the first sheet member 32 are formed from a resin mainly composed of polyvinyl chloride, the two can be firmly fixed together. Then, as the second sheet member 36, a resin that is less stretchable than the first sheet member 32 (for example, a less stretchable PP (polypropylene), PET (polyethylene terephthalate), PE ( polyethylene If formed with (etc.), the laminated sheet 30 as a whole can be made less prone to stretching, and when a tensile force is applied to the wiring member 10, this force can be absorbed by the laminated sheet 30, making it less likely for the electric wire 20 to be subjected to tensile force.

[0071] {Variable form} Based on the above embodiment, various modifications will be described.

[0072] In the above embodiment, the first sheet member 32 is uniformly filled inside Ma The example described uses a sheet-like component where the second sheet component 36 is a nonwoven sheet component.

[0073] Conversely, as shown in Figure 4, in the wiring member 110 of the first modified example, the first sheet member 132 to which the electric wire 20 is fixed is a nonwoven sheet member, and the second sheet member 136 has a uniformly filled interior. MaIt may also be a sheet-like member. In this case as well, if the first sheet member 132 is suitable for fixing the electric wire 20, the electric wire 20 can be firmly fixed to the first sheet member 132, and the first sheet member 132 and the second sheet member 136 can be firmly overlapped and fixed.

[0074] For example, the covering 26 of the electric wire 20 and the first sheet member 132, which is a nonwoven sheet member, may be formed from the same resin material such as polyvinyl chloride (PVC), so that the two are a combination suitable for fixing. Alternatively, for example, the second sheet member 136 may be made of PP (polypropylene), PET (polyethylene terephthalate), PE (which is less prone to stretching). polyethylene It may be formed with materials such as ) and may also be used to add resistance to stretching.

[0075] In other words, the first sheet member to which the electric wire is fixed may be a member having a gap, and the second sheet member may melt and fill the gap and solidify.

[0076] Furthermore, although the above embodiment was described in an example where the second sheet member 36 having the space 38 is a nonwoven sheet member, the second sheet member can be any member that has a space into which the first sheet member can melt, fill, and solidify.

[0077] For example, in the wiring member 210 according to the second modified example shown in Figure 5, a mesh-like member is used as the second sheet member 236. Figure 5 shows the state before the second sheet member 236 is fixed to the first sheet member 32. The mesh-like second sheet member 236 has spaces 238 between the linear members that are combined vertically and horizontally. In other words, the mesh is the spaces 238. The second sheet member 236 adds or complements the function of the first sheet member 32, similar to the embodiment described above. For example, the second sheet member 236 is made of a material that does not stretch easily, such as PP (polypropylene), PET (polyethylene terephthalate), PE ( polyethylene ), or it may be formed of metal or the like.

[0078] Then, similar to the embodiment described above, when the first sheet member 32 and the second sheet member 236 are overlapped and pressurized and heated, as shown in Figure 6, the first sheet member 32 melts and fills the space 238 (mesh) of the second sheet member 236, where it solidifies. This allows the electric wire 20 to be securely fixed to the first sheet member 32 while the first sheet member 32 and the second sheet member 236 are securely overlapped and fixed together.

[0079] The second sheet member can be any sheet in which a space is formed, and in addition to the mesh described above, it may also be a woven fabric made by combining threads vertically and horizontally, or a textile made by weaving threads. Since the woven fabric and mesh fabric have spaces formed between the combined or woven threads, the first sheet member can be melted and filled into these spaces and solidified. Alternatively, the second sheet member may have holes that penetrate from front to back, or a bottomed recess formed in the sheet, and the internal space of the hole or the internal space of the bottomed recess may be the space into which the first sheet member melts, fills, and solidifies.

[0080] Furthermore, when the electric wire 20 and the first sheet member 32 are fixed together by melting them with heat, it is preferable to be able to confirm whether or not heat has been properly applied to the electric wire 20 and the first sheet member 32 and that they are firmly fixed together.

[0081] To achieve this, it is advisable to provide a heat-sensitive material on at least one of the following: the first sheet member 32, which is a sheet to which the electric wire 20 is fixed, and the insulation 26 of the electric wire 20 (the resin forming the surface of the linear transmission member), as shown in the wiring member 310 in Figure 7. The heat-sensitive material may be mixed into the material forming the first sheet member 32 or the insulation 26, or it may be attached to their surfaces.

[0082] It is preferable that the heat-sensitive material changes color at a predetermined temperature above the temperature at which the contact portion between the electric wire 20 and the first sheet member 32 should be heated when the electric wire 20 and the first sheet member 32 are fixed together by heat (for example, the lower of the melting point of the electric wire 20 and the melting point of the first sheet member 32).

[0083] The material that changes color due to heat may change color irreversibly or reversibly. In order to check whether heat has been properly applied to the electric wire 20 and the first sheet member 32 even after a certain amount of time has elapsed since processing, it is preferable that the material that changes color due to heat changes color irreversibly. If the material that changes color due to heat changes color reversibly, it is preferable to inspect it visually during or immediately after heat processing, or using an image processing inspection device that has the function of capturing images with a camera and extracting the discolored areas.

[0084] Materials that change color irreversibly include compound pigments containing cobalt, nickel, copper, etc., which change color due to changes in composition caused by thermal decomposition or other means. For example, materials known as irreversible thermochromic coatings can be used as such materials.

[0085] As materials that change color reversibly, paints that utilize physical changes such as the transition of the crystalline system of a compound can be used. For example, paints using mercury(II) iodide salts can be used. As such materials, well-known irreversible thermochromic paints (such as Thermocolor, Temp-Alarm, Thermopaint, etc.) can be used.

[0086] In this example, when the electric wire 20 and the first sheet member 32 are heated and fixed together, the area 350 that is thoroughly heated will change color due to the heat. In contrast, the area 352 that is thoroughly heated will remain its original color or show only slight discoloration. Therefore, it is possible to visually confirm that the fixing has not been properly performed by applying heat.

[0087] In Figure 7, the electric wire 20 is fixed to the first sheet member 32 at multiple points, but the electric wire 20 may also be fixed to the first sheet member 32 along its entire longitudinal direction.

[0088] This configuration is not limited to the wiring member 10 described in the above embodiment, but can be broadly applied when fixing a linear transmission member (electric wire 20) to a sheet-like member.

[0089] At least one of the first sheet member 32 and the second sheet member 36 may be provided with a material that changes color with heat, so that when fixing the two together, it is possible to inspect whether or not heat has been applied to a desired location or area.

[0090] Furthermore, the configurations described in the above embodiments and each of the modified examples can be combined as appropriate, as long as they do not contradict each other. For example, by combining the first modified example and the second modified example, a mesh-like material is used as the first sheet member to which the electric wire 20 is fixed, and the second sheet member has a uniformly filled interior. Ma A sheet-like material may also be used.

[0091] Although this invention has been described in detail above, the above description is illustrative in all respects, and the invention is not limited thereto. It is understood that countless variations not illustrated can be envisioned without falling outside the scope of this invention.

[0092] This disclosure discloses the following aspects:

[0093] The wiring member according to the first embodiment comprises a linear transmission member, a first sheet member on which the linear transmission member is fixed to one main surface, and a second sheet member fixed to the other main surface side of the first sheet member, wherein the first sheet member is more suitable for fixing the linear transmission member than the second sheet member, a space is formed in one of the first sheet member and the second sheet member that the other can melt and fill, and the first sheet member and the second sheet member are superimposed on each other in a state where the other of the first sheet member has melted and filled the space in the one and solidified.

[0094] A second embodiment is a wiring member according to the first embodiment, wherein the melting point of one of the first sheet member and the second sheet member is higher than the melting point of the other.

[0095] A third embodiment is a wiring member according to the first or second embodiment, wherein the first sheet member has a uniformly filled interior. Ma The first sheet member is a sheet-like member, and the second sheet member is a nonwoven sheet member containing a plurality of fibers, with spaces formed between the plurality of fibers, and the first sheet member and the nonwoven sheet member are superimposed in a state where the first sheet member has melted and filled the spaces of the nonwoven sheet member and solidified.

[0096] The fourth embodiment is a wiring member according to the third embodiment, wherein the first sheet member melts and fills the space on the side of the nonwoven sheet member with the first sheet member, and the space remains in the portion of the nonwoven sheet member that is away from the first sheet member.

[0097] The fifth embodiment is a wiring member according to any one of the first to fourth embodiments, wherein the first sheet member is formed of the same type of resin as the covering of the linear transmission member.

[0098] The sixth embodiment is a wiring member according to any one of the first to fifth embodiments, wherein the covering of the linear transmission member and the first sheet member are made of a resin mainly composed of polyvinyl chloride, and the second sheet member is made of a resin that is less stretchable than the first sheet member.

[0099] The laminated sheet according to the seventh embodiment comprises a first sheet member and a second sheet member fixed to the other main surface side of the first sheet member, wherein a space is formed in one of the first sheet member and the second sheet member that the other can melt and fill, and the first sheet member and the second sheet member are superimposed on each other in a solidified state in which the other of the first sheet member has melted and filled the space in the one.

[0100] According to the first embodiment, the linear transmission member can be securely fixed to the first sheet member. Furthermore, since the first sheet member and the second sheet member are superimposed on each other in a state where the other melts, fills the space between the two sheet members and solidifies, the first sheet member and the second sheet member can be securely superimposed and fixed.

[0101] According to the second embodiment, when the first sheet member and the second sheet member are heated in an overlapping state, the other sheet member tends to melt first. Therefore, it is easy to process the material so that the other sheet member melts and fills the space between the first and second sheet members, resulting in a solidified state.

[0102] According to the third embodiment, the linear transmission member is made of a material that is uniformly filled inside. Ma It is easy to securely fix the sheet-like first sheet member. Furthermore, since the first sheet member and the nonwoven sheet member are superimposed on each other in a state where the first sheet member has melted and solidified, filling the spaces between the multiple fibers of the nonwoven sheet member, the first sheet member and the nonwoven sheet member can be kept firmly superimposed.

[0103] According to the fourth embodiment, since a space remains in the portion of the nonwoven sheet member that is separated from the first sheet member, protective performance and sound insulation can be obtained from the nonwoven sheet member.

[0104] According to the fifth embodiment, since the first sheet member is formed of the same type of resin as the coating of the linear transmission member, the coating of the linear transmission member can be easily fixed firmly to the first sheet member.

[0105] According to the sixth embodiment, the covering of the linear transmission member and the first sheet member are easily fixed together. Furthermore, since polyvinyl chloride is easily stretched, the second sheet member, which is made of a resin that is less stretchable than the first sheet member, can make the overlapping first and second sheet members less prone to stretching.

[0106] According to the seventh embodiment, the first sheet member and the second sheet member are superimposed on each other in a state where the other melts, fills the space between the two sheet members, and solidifies. This allows the first sheet member and the second sheet member to be firmly superimposed and fixed. Furthermore, since the first sheet member and the second sheet member can be superimposed regardless of the quality of adhesion due to chemical interaction, for example, the first sheet member can be made of a material suitable for fixing to other members, and the second sheet member can be configured to ensure other functions. [Explanation of symbols]

[0107] 10, 110, 210 Wiring components 20. Electric wires (linear transmission components) 26 Covering 30 Laminated Sheets 32, 132 First sheet member 33 One main surface of the first sheet member 34 Other main surface of the first sheet member 36, 136, 236 Second sheet member 37 Fibers 38, 238 space

Claims

1. First sheet member and A second sheet member fixed to the other main surface side of the first sheet member, A linear transmission member fixed to the first sheet member is exposed on the first sheet member, Equipped with, A space is formed in one of the first sheet member and the second sheet member that can be filled by the other sheet member melting. The first sheet member and the second sheet member are superimposed on each other in a solidified state in which the other sheet member has melted and filled the space of the first sheet member. A laminated sheet in which the first sheet member is formed of a resin containing polyvinyl chloride, and the second sheet member is formed of a resin containing polypropylene, polyamide, polyethylene terephthalate, or polyethylene.

2. A laminated sheet according to claim 1, A laminated sheet in which the melting point of one of the first sheet member and the second sheet member is higher than the melting point of the other.

3. A laminated sheet according to claim 1 or claim 2, The first sheet member is a sheet-like member with a uniformly filled interior. The second sheet member is a nonwoven sheet member containing a plurality of fibers, in which the spaces are formed between the plurality of fibers. A laminated sheet in which the first sheet member and the nonwoven sheet member are superimposed on each other, with the first sheet member melted and solidified in the space of the nonwoven sheet member.

4. The laminated sheet according to claim 3, In the nonwoven sheet member, the first sheet member melts and fills the space on the side of the first sheet member, and then solidifies. A laminated sheet in which the space remains in the portion of the nonwoven sheet member that is separated from the first sheet member.

Citation Information

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