Automatic twist tube mounting device

The automatic twist tube installation device addresses manual attachment issues by using movable jigs and a twist tube expansion mechanism to ensure precise and wrinkle-free attachment, enhancing wire harness quality.

JP7760223B2Active Publication Date: 2025-10-27YAZAKI CORP
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Patent Information

Application Number
JP2024016899
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-02-07
Publication Date
2025-10-27
Estimated Expiration
2044-02-07

AI Technical Summary

Technical Problem

Existing twist tubes are manually attached to electric wires, leading to variations in attachment position and wrinkles during tape wrapping, which affects the quality of the wire harness.

Method used

An automatic twist tube installation device comprising a first and second jig that move toward and away from each other, holding electric wires, and a mechanism to feed and expand a twist tube over these jigs, ensuring uniform alignment and preventing wrinkles during tape wrapping.

Benefits of technology

The device allows for precise and automated attachment of twist tubes to electric wires, minimizing variations and ensuring neat tape wrapping without wrinkles, thereby improving the consistency of the wire harness.

✦ Generated by Eureka AI based on patent content.

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Abstract

To enable automatic attachment of a twist tube to an electric wire.SOLUTION: A twist tube automatic attaching apparatus 1 comprises: a first jig 7a and a second jig 7b which hold an electric wire 11 therebetween; a feed belt 63 which feeds a twist tube 9 and covers the twist tube onto outer surfaces of the first jig 7a and the second jig 7b; and a tape winding mechanism. The twist tube 9 covered onto the outer surfaces of the first jig 7a and the second jig 7b is positioned such that one end 9b in a winding direction of the twist tube 9 is located in a space between a first extension plate portion 72 and a second extension plate portion 75, and the other end 9a is located on an outer surface of the first extension plate portion 72. A tape 14 drawn out from a reel of the tape winding mechanism is passed through a slit S between the one end 9b and the other end 9a of the twist tube 9, and is wound around the outer periphery of the twist tube 9.SELECTED DRAWING: Figure 19
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Description

[Technical Field]

[0001] The present invention relates to an automatic twist tube attachment device for attaching a twist tube to an electric wire. [Background technology]

[0002] One example of a wire harness installed in a vehicle is one in which electric wires are covered with a twist tube, which is then fixed to the electric wires by wrapping tape around it. The twist tube is an electric wire sheathing material made by wrapping a resin sheet into a tubular shape and forming it. The twist tube is disclosed in, for example, Patent Document 1.

[0003] The ends of the wires in the wire harness are fitted with connectors that are larger in diameter than the twist tube, and these connectors cannot be passed through the twist tube. Therefore, when attaching the twist tube to the wires, the twist tube is opened against its elastic force in the closing direction, and the wires are inserted between the ends of the twist tube, and then the twist tube is fixed to the wires with tape. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2009-254076 Summary of the Invention [Problem to be solved by the invention]

[0005] The twist tubes have been attached to the wires by hand, rather than automatically by machine, which can lead to variations in the finished wire harness due to misalignment of the twist tube attachment position or wrinkles during tape wrapping.

[0006] SUMMARY OF THE INVENTION It is therefore an object of the present invention to provide a method for automatically attaching a twist tube to an electric wire. [Means for solving the problem]

[0007] The present invention provides an automatic twist tube installation device comprising a first jig and a second jig that are arranged to be able to move toward and away from each other and that hold electric wires between them in a close proximity; a moving means for moving the first jig and the second jig toward and away from each other; and a transport means for feeding out a twist tube that has been wrapped around and shaped with a resin sheet and placing it over the outer surfaces of the first jig and the second jig that are in a close proximity, wherein the twist tube when placed over the outer surfaces of the first jig and the second jig has one end and the other end separated in the winding direction. [Effects of the Invention]

[0008] According to the present invention, the twist tube can be automatically attached to the electric wire. [Brief explanation of the drawings]

[0009] [Figure 1] 1 is a diagram showing an automatic twist tube attachment device according to one embodiment of the present invention. [Figure 2] 2 is a diagram showing a diameter expansion jig and a twist tube mounting guide in FIG. 1. [Figure 3] 3 is a cross-sectional view of the first jig and the second jig of FIG. 2. [Figure 4] 3 is a diagram showing a state in which the first jig and the second jig in FIG. 2 are brought close to each other and hold an electric wire therebetween. [Figure 5] 5 is a cross-sectional view of the first jig and the second jig of FIG. 4. [Figure 6] FIG. 5 is a diagram showing only the diameter expansion jig of FIG. 4. [Figure 7] 5 is a diagram showing a state in which a twist tube is placed over the small diameter portion of the diameter expansion jig of FIG. 4. FIG. [Figure 8] FIG. 1 shows a twisted tube. [Figure 9]2 is a diagram showing how the rotating roller in FIG. 1 rotates the twisted tube along the outer peripheral surface of the diameter expansion jig. [Figure 10] 10 is a diagram showing a state in which the twisted tube of FIG. 9 is positioned in an open state maintaining portion of a diameter expansion jig. [Figure 11] 11 is a cross-sectional view of the twisted tube and the diameter expansion jig of FIG. 10. [Figure 12] 11 is a view showing a state in which the twist tube of FIG. 10 is placed over the outer surfaces of a first jig and a second jig. FIG. [Figure 13] 13 is a cross-sectional view of the twist tube, the first jig, and the second jig of FIG. 12. [Figure 14] 2 is a diagram for explaining the operation of the twist tube automatic attaching device of FIG. 1, showing a state in which the first jig and the second jig are separated from each other. FIG. [Figure 15] 15 is a diagram showing a state in which the first jig and the second jig in FIG. 14 approach each other and the tape winding mechanism starts winding the tape around the electric wire. FIG. [Figure 16] 16 is a diagram showing a state in which the first jig and the second jig in FIG. 15 are positioned directly below the tape wound around the electric wire. FIG. [Figure 17] 17 is a diagram showing a state in which twist tubes are placed over the outer surfaces of the first jig and the second jig in FIG. 16. FIG. [Figure 18] FIG. 18 is a view of the tape winding mechanism of FIG. 17 as seen obliquely from above. [Figure 19] FIG. 18 is a top view of the wires and twist tubes of FIG. 17. [Figure 20] 18 is a diagram showing a state in which the tape winding mechanism of FIG. 17 has resumed winding the tape around the electric wire and the twist tube. FIG. [Figure 21] 21 is a diagram showing a state in which the first jig and the second jig in FIG. 20 are retracted to below the twist tube. FIG. DETAILED DESCRIPTION OF THE INVENTION

[0010] An "automatic twist tube attaching device" according to one embodiment of the present invention will be described with reference to FIGS.

[0011] The automatic twist tube attaching device 1 shown in FIG. 1 is a device that automatically attaches a twist tube 9 (see FIG. 8) to an electric wire 11.

[0012] 8(a) and 8(b), twist tube 9 is an electric wire outer covering material in which a resin sheet is wound into a tubular shape and formed. In its natural state, in which no external force is applied, twist tube 9 is in a tubular state in which one end 9b and the other end 9a in the winding direction overlap.

[0013] The automatic twist tube attachment device 1 of this example covers two electric wires 11 with a twist tube 9 having an axial length of about 5 cm and a diameter of about 1 to 2 cm, and then secures the twist tube 9 to the two electric wires 11 by wrapping tape around the two electric wires 11. The two electric wires 11 are covered electric wires, and connectors 12 (only one of which is shown in FIG. 1) are attached to both ends. The twist tube 9, electric wires 11, and connectors 12 constitute an automotive wire harness.

[0014] The automatic twist tube installation device 1 includes a frame 10, a receiving section 3, an expansion jig 2, a means for transporting the twist tube 9, two rotating rollers 4 (rotating means), a sensor 5, a twist tube installation guide 7, a tape winding mechanism 8, moving means 15, 17, 18, and a control section (not shown) for controlling these, etc.

[0015] The frame 10 is fitted with a receiving section 3, a diameter expansion jig 2, a conveying means for the twisted tube 9, two rotating rollers 4, a sensor 5, a twisted tube mounting guide 7, etc. The frame 10 is rotatably attached to a moving means 17.

[0016] The moving means 15, 17, and 18 are means for moving the frame 10. The moving means 15 rotates the frame 10 relative to the moving means 17. The moving means 17 moves the frame 10 in the direction of the arrow D3 in FIG. 1. The moving means 18 moves the frame 10 in the direction of the arrow D2 in FIG. 1 via the moving means 17. In this example, the direction of the arrow D2 is the up-down direction, and the direction of the arrow D3 is the horizontal direction. In addition, the two electric wires 11 in FIG. 1 are held in a state of extending straight in the direction of the arrow D2 by a chuck or the like. That is, the moving means 17 moves the frame 10 in a direction perpendicular to the longitudinal direction of the electric wires 11 (horizontal direction), thereby moving the frame 10 toward or away from the electric wires 11. In addition, the moving means 18 moves the frame 10 in the longitudinal direction of the electric wires 11 (up-down direction).

[0017] The receiving section 3 is a section that receives the twisted tube 9 sent from twisted tube supply means (not shown), and is formed in a cylindrical shape.

[0018] The diameter expansion jig 2 expands the twisted tube 9 from its natural, wound state into an open state in which one end 9b and the other end 9a in the winding direction are spaced apart in the circumferential direction. As shown in Figure 6, the diameter expansion jig 2 has a small diameter section 21, an expanded diameter section 22, a large diameter section 23, and an open state maintaining section 24.

[0019] The small diameter portion 21 is formed in a cylindrical shape with a smaller diameter than the twist tube 9 in its natural state. The expanded diameter portion 22 is continuous with the small diameter portion 21 and is formed in a conical shape with a diameter that gradually increases as it moves away from the small diameter portion 21. The large diameter portion 23 is continuous with the expanded diameter portion 22 and is formed in a cylindrical shape with a circumferential length that is greater than the length from one end 9b to the other end 9a in the winding direction of the twist tube 9 in its unfolded state. The open state maintaining portion 24 is continuous with the large diameter portion 23. The open state maintaining portion 24 is provided with a main body portion 25 having an oval cross section and a rib 26 protruding from the underside 25b of the main body portion 25.

[0020] The small diameter portion 21 is located at one longitudinal end of the expansion jig 2, the expansion portion 22 and the large diameter portion 23 are located at the middle portion of the expansion jig 2 in the longitudinal direction, and the open state maintaining portion 24 is located at the other longitudinal end of the expansion jig 2.

[0021] The diameter expansion jig 2 is positioned so that the small diameter portion 21 is adjacent to the receiving portion 3. Therefore, the twisted tube 9 received by the receiving portion 3 passes through the inside of the receiving portion 3 and is then placed over the small diameter portion 21 of the diameter expansion jig 2 as shown in Figure 7. The twisted tube 9 shown in Figure 7 is placed over the diameter expansion jig 2 in the orientation shown in Figure 8(b), but it can also be placed over the diameter expansion jig 2 in the opposite orientation as shown in Figure 8(a). The orientation is determined by the convenience of the twisted tube supply means and cannot be selected by the automatic twisted tube installation device 1.

[0022] The means for transporting the twisted tube 9 include a pushing means (not shown) and a transporting means 6. The pushing means pushes out the rear end of the twisted tube 9 that is placed over the small diameter portion 21 of the diameter expansion jig 2, thereby transporting the twisted tube 9 along the diameter expansion jig 2 to partway through the open state maintaining section 24.

[0023] 10 to 13, the conveying means 6 further conveys the twisted tube 9, which has been conveyed partway through the open state maintaining section 24, downstream in the conveying direction and covers the outer surfaces of a first jig 7a and a second jig 7b, which will be described later. The first jig 7a and the second jig 7b are disposed in contact with or adjacent to an end surface 25c of the main body 25 (the end surface opposite the large diameter section 23).

[0024] The conveying means 6 in this example includes a drive pulley 61 connected to a drive source, a driven pulley 62, and a feed belt 63 stretched between these pulleys 61 and 62. The conveying means 6 positions the twisted tube 9 between the feed belt 63 and the upper surface 25a of the main body 25, and between the feed belt 63 and the first jig 7a and the second jig 7b, and conveys the twisted tube 9.

[0025] The twist tube 9 is transported by the extrusion means and positioned in the large-diameter portion 23 of the diameter expansion jig 2, thereby expanding the diameter, and a slit S is formed between one end 9b and the other end 9a in the winding direction, as shown in FIG. 9 . Next, the twist tube 9 is rotated along the outer circumferential surface of the large-diameter portion 23 by two rotating rollers 4, which will be described later. Next, the twist tube 9 is transported by the extrusion means and positioned in the open-state maintaining portion 24 of the diameter expansion jig 2, as shown in FIG. 11 , thereby maintaining the open state. That is, the main body 25 is positioned inside the open twist tube 9, and the rib 26 is positioned in the slit S of the twist tube 9, thereby maintaining the open state. The twist tube 9 in this open state is then transported by the transport means 6 and placed over the outer surfaces of the first jig 7a and the second jig 7b, which will be described later.

[0026] The two rotating rollers 4 face the large diameter portion 23 of the diameter expansion jig 2. As shown in Figure 9, the two rotating rollers 4 rotate the twist tube 9, which is positioned in the large diameter portion 23 and in an open state, along the outer circumferential surface of the large diameter portion 23. The two rotating rollers 4 rotate in the direction of arrow R1 shown in Figure 9, and the twist tube 9 is rotated in the direction of arrow R2, which is the opposite direction to R1.

[0027] The sensor 5 is disposed below the large diameter portion 23. The sensor 5 detects the positions of the one end 9b and the other end 9a in the winding direction of the twist tube 9 that is being rotated by the two rotating rollers 4, and sends a detection signal to the control unit when the one end 9b and the other end 9a are positioned at predetermined positions.

[0028] When the control unit receives a detection signal from the sensor 5, it stops the rotation of the rotating roller 4. In this example, as shown in Figure 9, the rotation of the rotating roller 4 is stopped when the slit S, which is the gap between one end 9b and the other end 9a in the winding direction, is located directly below the large diameter portion 23. In this state, the twist tube 9 is transported downstream, and the rib 26 of the diameter expansion jig 2 is positioned at the slit S.

[0029] As shown in Figures 2 to 5, the twist tube mounting guide 7 includes a first jig 7a, a second jig 7b, and cylinders 70a and 70b (moving means). The first jig 7a and the second jig 7b are arranged so that they can move toward and away from each other in the direction of arrow D1, and hold two electric wires 11 between them in the close position shown in Figures 4 and 5. The cylinders 70a and 70b move the first jig 7a and the second jig 7b toward and away from each other in the direction of arrow D1. In this example, the direction of arrow D1 is horizontal and perpendicular to the directions of arrows D2 and D3 (see Figure 1).

[0030] 5, the first jig 7a has a first opposing plate portion 71 that follows the electric wire 11 and a first extended plate portion 72 that extends from one end of the first opposing plate portion 71 toward the second jig 7b, and is formed with an L-shaped cross section. The second jig 7b has a second opposing plate portion 74 that faces the first opposing plate portion 71 and follows the electric wire 11, and a second extended plate portion 75 that extends from one end of the second opposing plate portion 74 toward the first opposing plate portion 71 and follows the electric wire 11, and is formed with an L-shaped cross section. The first jig 7a and the second jig 7b have approximately the same length as the twist tube 9 in the longitudinal direction of the electric wire 11.

[0031] When the first jig 7a and the second jig 7b are in a state where they are close to each other, the second extension plate 75 is positioned between the first extension plate 72 and the electric wire 11, and a space exists between the first extension plate 72 and the second extension plate 75. Furthermore, when the first jig 7a and the second jig 7b are in a state where they are close to each other, the feed belt 63 and the open state maintaining unit 24 are arranged on the other end side of the first opposing plate 71 and the second opposing plate 74 (the side where the first extending plate 72 and the second extending plate 75 are not provided).

[0032] 12 and 13, the above-mentioned conveying means 6 feeds out the twist tube 9 when the first jig 7a and the second jig 7b are in close proximity to each other, and covers the outer surfaces of the first jig 7a and the second jig 7b with the twist tube 9. At this time, the upstream portion of the twist tube 9 in the conveying direction (left side in FIG. 12) is positioned in the open state maintaining section 24 and maintained in an open state, and the twist tube 9 is gradually covered by the first jig 7a and the second jig 7b from the downstream portion in the conveying direction (right side in FIG. 12).

[0033] 13, one end 9b of the twist tube 9 in the winding direction is positioned in the space between the first extension plate 72 and the second extension plate 75, and the other end 9a of the twist tube 9 in the winding direction is positioned on the outer surface of the first extension plate 72. In other words, one end 9b and the other end 9a of the twist tube 9 are spaced apart, and the other end 9a is positioned farther from the wire 11 than the one end 9b. In addition, the illustrated example shows a state in which the twist tube 9 is placed on the diameter expansion jig 2 in the orientation shown in FIG. 8(b) and then placed on the first jig 7a and the second jigs 7b; however, even if the twist tube 9 is placed on the diameter expansion jig 2 in the orientation shown in FIG. 8(a), the same shape as that shown in FIG. 13 will be obtained.

[0034] The tape winding mechanism 8 includes a reel 81 around which the tape 14 is wound, a moving means for moving the reel 81 around the electric wires, etc. The tape winding mechanism 8 winds the tape 14 around the outer periphery of the twist tube 9 that is placed over the two electric wires 11, thereby fixing the twist tube 9 to the electric wires 11.

[0035] Next, a series of operations performed by the automatic twist tube attaching device 1 to attach the twist tube 9 to the electric wire 11 will be described.

[0036] First, the twisted tube 9 is supplied from the twisted tube supply means to the automatic twisted tube attaching device 1, and is received by the receiving section 3. At this time, the frame 10 is positioned at a position away from the electric wires 11.

[0037] Next, the moving means 15, 17 move the frame 10 toward the electric wires 11 as shown in Fig. 14. In the state shown in Fig. 14, the first jig 7a and the second jig 7b are positioned on either side of the two electric wires 11 in a spaced-apart state. The first jig 7a and the second jig 7b are also positioned below the tape winding mechanism 8.

[0038] Next, the first jig 7a and the second jig 7b move closer to each other. Then, as shown in Fig. 15, the tape winding mechanism 8 starts winding tape around the two electric wires 11 before the twist tube 9 is attached. The tape winding mechanism 8 temporarily stops after wrapping the tape 14 around the outer circumference of the two electric wires 11 for about one to two turns.

[0039] Next, the moving means 18 moves the frame 10 toward (upper side of) the tape winding mechanism 8 as shown in Fig. 16. In the state shown in Fig. 16, the tip ends (i.e., upper ends) of the first jig 7a and the second jig 7b are positioned directly below the tape 14 wound around the electric wire 11.

[0040] Next, the conveying means 6 feeds out the twisted tube 9 and places it over the outer surfaces of the first jig 7a and the second jig 7b as shown in Figures 17 to 19. In the state shown in Figures 17 to 19, the end of the twisted tube 9 on the downstream side in the conveying direction (i.e., the upper end) is positioned higher than the tip ends of the first jig 7a and the second jig 7b, and is positioned at the middle in the width direction of the tape 14 wound around the electric wire 11.

[0041] In this way, by covering the outer surfaces of the first jig 7a and the second jig 7b with the twist tube 9 during tape winding, the tape 14 between the reel 81 and the electric wire 11 that has been pulled out from the reel 81 is positioned between one end 9b and the other end 9a (slit S) of the twist tube 9. That is, the twist tube 9 is sent upward by the conveying means 6 while maintaining the state in which the slit S is formed between the one end 9b and the other end 9a by the first jig 7a and the second jig 7b. Therefore, the twist tube 9 is sent out without getting caught on the tape 14 that is being wound.

[0042] Next, as shown in Figure 20, the tape winding mechanism 8 resumes tape winding. As a result, the tape 14 is wound around the outer periphery of the twist tube 9, which is positioned around the outer periphery of the two electric wires 11. When tape winding around the twist tube 9 begins, the moving means 18 moves the frame 10 downward, as shown in Figure 21. As a result, the first jig 7a and the second jig 7b come out from inside the twist tube 9 and retreat below the twist tube 9.

[0043] Next, the tape winding mechanism 8 moves downward and winds the tape 14 around the outer periphery of the twist tube 9. That is, the tape winding mechanism 8 winds the tape 14 spirally around the outer periphery of the twist tube 9 until the entire twist tube 9 is covered with the tape 14, and then cuts the tape 14. In this way, the installation of the twist tube 9 is completed.

[0044] With the above-described automatic twist tube attachment device 1, although the overlapping direction of the twist tube 9 is not constant when it is supplied to the receiving section 3 (see FIG. 8), the diameter expansion jig 2 and the twist tube attachment guide 7 can be used to make the overlapping direction uniform. This allows the process of attaching the twist tube 9 to the electric wire 11 to be automated. Furthermore, by making the overlapping direction of the twist tube 9 uniform, it is possible to prevent wrinkles from occurring during tape wrapping. In this way, with the automatic twist tube attachment device 1, the twist tube 9 can be positioned with high precision relative to the electric wire 11, and the twist tube 9 can be neatly wrapped with tape without wrinkles. This minimizes variation in the finished wire harness.

[0045] The above-described embodiment merely shows a typical form of the present invention, and the present invention is not limited to this embodiment. In other words, the present invention can be implemented with various modifications within the scope of the gist of the present invention. As long as such modifications still include the configuration of the present invention, they are of course included in the scope of the present invention. [Explanation of symbols]

[0046] 1 Automatic twist tube installation device 2. Expansion jig 4 Rotating roller (rotating means) 5 sensors 6. Means of transport 7 Twist Tube Installation Guide 7a First jig 7b Second jig 8 Tape winding mechanism 9 Twisted Tube 11 Electric wire 70a, 70b Cylinder (contact and separation means)

Claims

1. a first jig and a second jig that are provided so as to be movable toward and away from each other and that hold the electric wire therebetween in a close proximity state; a contact / separation means for contacting and separating the first jig and the second jig; a conveying means for feeding out a twisted tube around which a resin sheet has been wound and formed, and for covering the outer surfaces of the first jig and the second jig which are in a close state, The twist tube in a state in which it is covered on the outer surfaces of the first jig and the second jig has one end and the other end separated in the winding direction. An automatic twist tube attachment device characterized by:

2. the first jig has a first opposing plate portion that is along the electric wire, and a first extending plate portion that extends from one end of the first opposing plate portion toward the second jig, the second jig has a second opposing plate portion that faces the first opposing plate portion and extends along the electric wire, and a second extending plate portion that extends from one end of the second opposing plate portion toward the first opposing plate portion and extends along the electric wire, When the first jig and the second jig are in a close proximity state, the second extension plate portion is positioned between the first extension plate portion and the electric wire, one end of the twist tube in the winding direction is positioned in the space existing between the first extension plate portion and the second extension plate portion, and the other end of the twist tube in the winding direction is positioned on the outer surface of the first extension plate portion.

2. The automatic twisted tube attaching device according to claim 1.

3. a tape winding mechanism for winding a tape around the outer periphery of the electric wire and the twist tube; the tape winding mechanism starts winding tape around the electric wire in a state before the twist tube is attached; During the tape winding process, the tape is pulled out from the reel and positioned between the reel and the electric wire, and is positioned between one end and the other end in the winding direction of the twist tube that is in a state of covering the outer surfaces of the first jig and the second jig.

2. The automatic twisted tube attaching device according to claim 1.

4. a diameter expansion tool that expands the twist tube from its natural state in which it is wound into a tubular shape to an open state in which one end and the other end in the winding direction are spaced apart in the circumferential direction; a conveying means for conveying the twisted tube, which is placed on one longitudinal end of the diameter expansion jig in a natural state, along the diameter expansion jig to the other longitudinal end, The first jig and the second jig are positioned on the other longitudinal end side of the diameter expansion jig.

2. The automatic twisted tube attaching device according to claim 1.

5. a rotating means for rotating the twist tube, which is placed over the diameter expansion jig and in the opened state, along the outer circumferential surface of the diameter expansion jig; a sensor for detecting the positions of one end and the other end in the winding direction of the twist tube rotated by the rotating means, The rotating means stops rotating when one end and the other end of the twist tube in the winding direction are positioned at predetermined positions.

5. The automatic twisted tube attaching device according to claim 4.

Citation Information

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