Wire arrangement tool

By designing a linkage clamping and cable management mechanism, the problems of difficult product placement and easy damage in existing cable management fixtures are solved, and efficient cable management operation is achieved.

CN223599387UActive Publication Date: 2025-11-25LANTO ELECTRONIC LIMITED
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Patent Information

Application Number
CN202423173264.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-25
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing cable management clamps have wire limiting blocks that are too close to the product body when clamping the product, making it difficult to place the product and easy to damage it, thus affecting cable management efficiency.

Method used

A cable management fixture was designed, comprising a support base, a drive module, a clamping mechanism, and a cable management mechanism. The drive module rotates to achieve linkage between the clamping mechanism and the cable management mechanism, clamping the product body and moving the cable management mechanism to the cable management position, avoiding interference and simplifying the operation process.

Benefits of technology

It improves the ease of placing and retrieving the product itself, prevents damage to the product during cable management, and significantly improves the efficiency of cable management operations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model belongs to the technical field of electronic product, disclose a kind of wire arrangement tool.The wire arrangement tool includes bearing seat, drive module, clamping mechanism and wire arrangement mechanism, bearing seat is provided with bearing groove, bearing groove is configured as the product body with wiring harness is carried;Drive module is rotatably installed in bearing seat;Clamping mechanism is installed in bearing seat, when drive module rotates, product body in bearing groove can be driven by clamping mechanism clamping;Wire arrangement mechanism is installed in bearing seat, and wire arrangement mechanism has wire arrangement groove, clamping mechanism clamps product body, when drive module rotates, wire arrangement mechanism can be driven to move to wire arrangement position, and in wire arrangement position, wiring harness is limited and is contained in wire arrangement groove.The wire arrangement tool can prevent wire arrangement mechanism from causing interference to product body when non-wire arrangement operation, greatly facilitate the placement and taking of product body;And drive module can drive clamping mechanism and wire arrangement mechanism action simultaneously when rotating, greatly improve the efficiency of wire arrangement operation.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic product technical field especially relates to a wire arranging tool. BACKGROUND

[0002] In the production process of electronic products, the wire harness of the product needs to be arranged and stored to ensure the neatness and efficient management of the wire harness. When arranging the wire, the staff needs to first place the product body on the clamp for fixation, and then manually arrange and shape the wires on the product body along the wire limiting guide block, thereby completing the wire arranging operation.

[0003] The existing wire arranging clamp is close to the placement position of the product body when clamping the product in order to achieve better wire arranging effect and neatness, which leads to difficult placement of the product body and easy bumping of the product body, causing damage to the product, and thus is not conducive to improving the work efficiency of wire arranging. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a wire arranging tool which is simple in structure, convenient to operate and capable of improving the efficiency of offline operation.

[0005] To achieve this purpose, the utility model adopts the following technical scheme:

[0006] The utility model provides a wire arranging tool, which comprises:

[0007] A bearing seat is provided with a bearing groove which is configured to bear a product body with a wire harness;

[0008] A driving module is rotatably installed on the bearing seat;

[0009] A clamping mechanism is installed on the bearing seat, and the driving module can drive the clamping mechanism to clamp the product body in the bearing groove when rotating;

[0010] A wire arranging mechanism is installed on the bearing seat, and the wire arranging mechanism has a wire arranging groove. When the clamping mechanism clamps the product body and the driving module rotates, the wire arranging mechanism can be driven to move to a wire arranging position, and the wire harness is limited and accommodated in the wire arranging groove at the wire arranging position.

[0011] As a preferred, the clamping mechanism comprises a first clamping module and a second clamping module, the first clamping module is slidably connected to the bearing seat along a first direction, the second clamping module is slidably connected to the bearing seat along a second direction, the first direction and the second direction are arranged at an included angle, and the first direction and the second direction are both perpendicular to the depth direction of the bearing groove;

[0012] The driving module is capable of driving the first clamping module to abut against the product body along the first direction when the driving module rotates.

[0013] As preferred, the clamping mechanism further comprises a first elastic member, which is clamped between the first clamping module and the bearing seat and is configured to drive the first clamping module to abut against the product body.

[0014] As preferred, the clamping mechanism further comprises a second elastic member, which is clamped between the second clamping module and the bearing seat and is configured to drive the second clamping module to abut against the product body when the first clamping module moves away from the bearing slot.

[0015] As preferred, the driving module comprises an abutting block, which is provided with a convex surface and a concave surface, the convex surface and the concave surface extend around the rotation axis of the driving module and are smoothly connected.

[0016] The first clamping module is provided with a contact head, which is configured to abut against the convex surface or the concave surface, and the distance between the convex surface and the contact head is smaller than the distance between the concave surface and the contact head along the first direction.

[0017] As preferred, the driving module further comprises a shaft body and a handle, the shaft body is rotationally arranged on the bearing seat, the abutting block is arranged on the shaft body, the handle is connected to the shaft body, and the rotation of the shaft body can drive the convex surface and the concave surface to abut against the contact head respectively.

[0018] As preferred, the wire arranging mechanism comprises a wire arranging block, which is slidingly connected to the bearing seat, the wire arranging slot is arranged on the wire arranging block, the wire arranging block is provided with a driving hole, the driving module is provided with a cam portion, the cam portion is arranged in the driving hole, and the driving module is capable of moving the wire arranging block by the cam portion when the driving module rotates.

[0019] As preferred, the wire arranging mechanism further comprises a wire arranging elastic member, which is clamped between the wire arranging block and the bearing seat and is configured to drive the wire arranging slot to move to the wire arranging position.

[0020] As preferred, a plurality of limiting columns are symmetrically arranged on the wire arranging block, the limiting columns respectively abut against the wire harness at the wire arranging position, the limiting columns symmetrically arranged form an arranging channel, and the arranging channel is arranged opposite to the wire arranging slot.

[0021] As preferred, the wire arrangement tool further comprises a pressing plate, the pressing plate is rotationally connected to the bearing seat, and the pressing plate can press the product body against the groove bottom of the bearing groove.

[0022] The utility model discloses the beneficial effect lies in:

[0023] 1. The utility model provides a wire arrangement tool, including bearing seat, drive module, clamping mechanism and wire arrangement mechanism, and clamping mechanism and wire arrangement mechanism all install in bearing seat, because bearing seat is provided with the bearing groove for containing product body, therefore the product body with wire harness can be stably placed on bearing seat.

[0024] 2. Because drive module can drive clamping mechanism to clamp product body when rotating, therefore the wire arrangement tool can fix the product body in the bearing groove, and because drive module can also drive wire arrangement mechanism to move to the wire arrangement position when rotating to make wire harness limit and contain in wire arrangement groove, thereby facilitating the staff to successfully complete wire arrangement work.

[0025] 3. The wire arrangement tool can drive wire arrangement mechanism to move to the wire arrangement position through drive module freely, prevents wire arrangement mechanism from causing interference to product body when not wire arrangement, greatly facilitates the placement and taking of product body, and drive module can drive clamping mechanism and wire arrangement mechanism to act simultaneously when rotating, therefore clamping mechanism and wire arrangement mechanism form linkage structure, convenient operation, and the efficiency of wire arrangement work is greatly improved. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 It is the structure schematic diagram of clamping mechanism and drive module provided by the utility model specific embodiment,

[0027] Figure 2 It is the top view of clamping mechanism and drive module provided by the utility model specific embodiment,

[0028] Figure 3 It is the top view of wire arrangement tool provided by the utility model specific embodiment,

[0029] Figure 4 It is the axonometric view of wire arrangement tool provided by the utility model specific embodiment,

[0030] Figure 5 It is the exploded view of drive module, first clamping module and wire arrangement block provided by the utility model specific embodiment,

[0031] Figure 6 It is the side view of wire arrangement mechanism provided by the utility model specific embodiment.

[0032] In the drawing,

[0033] 100 - product body;

[0034] 200 - wiring harness;

[0035] 1 - bearing seat; 11 - shell; 111 - bearing groove; 112 - first stop; 113 - second stop; 12 - seat body;

[0036] 2 - drive module; 21 - abutting block; 211 - convex surface; 212 - concave surface; 22 - shaft body; 221 - cam portion; 23 - handle;

[0037] 3 - clamping mechanism; 31 - first clamping module; 311 - contact; 312 - push block; 313 - transmission frame; 32 - second clamping module; 33 - first elastic member; 34 - second elastic member;

[0038] 4 - wire arranging mechanism; 41 - wire arranging block; 411 - wire arranging groove; 412 - driving hole; 413 - limiting column; 42 - wire arranging elastic member;

[0039] 5 - pressing plate;

[0040] 6 - wire clamping module; 61 - support shaft; 62 - wire clamping block; 63 - fixed block; 64 - wire clamping elastic member. DETAILED DESCRIPTION

[0041] The utility model will be described in further detail below in combination with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the utility model, and not to limit the utility model. In addition, it should be noted that, in order to facilitate the description, only the part related to the utility model is shown in the drawings, not all structures.

[0042] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected", "fixed" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated, it can be mechanically connected, or it can be electrically connected, it can be directly connected, or it can be indirectly connected through an intermediate medium, it can be the internal communication of two elements or the interaction relationship of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0043] In the utility model, unless another definite provision and limitation, first feature is in second feature "on" or "under" can include that first and second features are in direct contact, also can include that first and second features are not in direct contact but contact through other feature between them. Moreover, first feature is in second feature "on", "above" and "upper surface" include that first feature is in second feature directly above and obliquely above, or just indicate that first feature horizontal height is higher than second feature. First feature is in second feature "under", "below" and "under" include that first feature is in second feature directly below and obliquely below, or just indicate that first feature horizontal height is less than second feature.

[0044] In the description of the present embodiment, the terms "upper", "lower", "right", "left" and other orientation or position relationship are based on the orientation or position relationship shown in the drawings, only for the convenience of description and simplification of operation, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second" are only used to distinguish in the description, and have no special meaning.

[0045] As Figures 1 to 4The utility model provides a kind of wire arrangement tool, the wire arrangement tool includes bearing seat 1, drive module 2, clamping mechanism 3 and wire arrangement mechanism 4, bearing seat 1 is provided with bearing groove 111, bearing groove 111 is configured as the product body 100 with wiring harness 200 is carried.Because bearing seat 1 is provided with the bearing groove 111 for accommodating product body 100 in the embodiment, the product body 100 with wiring harness 200 can be stably placed on bearing seat 1.Drive module 2 is rotatably installed on bearing seat 1;Clamping mechanism 3 is installed on bearing seat 1, when drive module 2 rotates, it can drive clamping mechanism 3 to clamp product body 100 in bearing groove 111;Wire arrangement mechanism 4 is installed on bearing seat 1, and wire arrangement mechanism 4 has wire arrangement groove 411, clamping mechanism 3 clamps product body 100, when drive module 2 rotates, it can drive wire arrangement mechanism 4 to move to wire arrangement position, at wire arrangement position, wiring harness 200 is limited to accommodate in wire arrangement groove 411.Specifically, bearing seat 1 includes shell 11 and seat body 12, drive module 2, clamping mechanism 3 and wire arrangement mechanism 4 are all arranged in seat body 12, shell 11 is covered on seat body 12 and is bolted with seat body 12, and bearing groove 111 is opened on shell 11;Because drive module 2 can drive clamping mechanism 3 to clamp product body 100 when rotating, the wire arrangement tool can fix product body 100 in bearing groove 111;Because drive module 2 can also drive wire arrangement mechanism 4 to move to wire arrangement position when rotating, so that wiring harness 200 is limited to accommodate in wire arrangement groove 411, so that staff can smoothly complete wire arrangement operation;The wire arrangement tool can drive wire arrangement mechanism 4 to move to wire arrangement position freely by drive module 2, prevent wire arrangement mechanism 4 from interfering with product body 100 when not wire arrangement, greatly facilitate the placement and taking of product body 100;And drive module 2 can drive clamping mechanism 3 and wire arrangement mechanism 4 to act simultaneously when rotating, so that clamping mechanism 3 and wire arrangement mechanism 4 form linkage structure, convenient to operate, greatly improve the efficiency of wire arrangement operation.

[0046] It can be understood that when rotating drive module 2, clamping mechanism 3 acts first and clamps product body 100 before wire arrangement mechanism 4 moves to wire arrangement position, the purpose is to avoid wire arrangement mechanism 4 in wire arrangement position from interfering with wiring harness 200 or product body 100 when product body 100 has not reached the designated fixed position.

[0047] In order to improve the fixing effect on product body 100, clamping mechanism 3 clamps product body 100 from two directions. Figures 1 to 3As shown, the clamping mechanism 3 comprises a first clamping module 31 and a second clamping module 32, the first clamping module 31 is slidingly connected to the bearing seat 1 along a first direction, the second clamping module 32 is slidingly connected to the bearing seat 1 along a second direction, the first direction and the second direction are arranged at an angle, and both the first direction and the second direction are perpendicular to the depth direction of the bearing groove 111; when the driving module 2 rotates, it can drive the first clamping module 31 to abut against the product body 100 along the first direction, and when the first clamping module 31 moves, it can drive the second clamping module 32 to abut against the product body 100 along the second direction; it can be understood that the driving module 2 drives the first clamping module 31 and the second clamping module 32 to clamp the product body 100 along the first direction and the second direction respectively, and both the first direction and the second direction are perpendicular to the depth direction of the bearing groove 111, so as to effectively improve the fixing effect of the product body 100, and since the first clamping module 31 can drive the second clamping module 32 to move synchronously when moving, the first clamping module 31 and the second clamping module 32 form a linkage structure under the driving of the driving module 2, without the need for workers to rotate the driving module 2 multiple times to drive the first clamping module 31 and the second clamping module 32 respectively, thereby simplifying the clamping process of the product body 100 and greatly facilitating the operation.

[0048] Specifically, the first clamping module 31 and the second clamping module 32 are slidingly arranged on the seat body 12 along the first direction and the second direction respectively, the shell 11 is provided with a first stop block 112 and a second stop block 113, the first stop block 112 is used to cooperate with the first clamping module 31 to abut against the product body 100 along the first direction, and the second stop block 113 is used to cooperate with the second clamping module 32 to abut against the product body 100 along the second direction, the first direction is perpendicular to the second direction, thereby maximizing the clamping stability of the product body 100 in the plane.

[0049] Specifically, as Figure 1 and Figure 2As shown, the clamping mechanism 3 further comprises a first elastic member 33 clamped between the first clamping module 31 and the bearing seat 1, configured to drive the first clamping module 31 to abut against the product body 100; the clamping mechanism 3 further comprises a second elastic member 34 clamped between the second clamping module 32 and the bearing seat 1, configured to drive the second clamping module 32 to abut against the product body 100 when the first clamping module 31 moves away from the bearing groove 111. In this embodiment, the worker can control the forward rotation and reverse rotation of the driving assembly 2. When the driving assembly 2 rotates forward, the driving assembly 2 drives the first clamping module 31 to move in the first direction to compress the first elastic member 33, and at the same time, the first clamping module 31 drives the second clamping module 32 to compress the second elastic member 34, so that the first clamping module 31 and the second clamping module 32 move away from the bearing groove 111 at the same time, thereby facilitating the worker to take or place the product body 100 in the bearing groove 111; when the driving assembly 2 rotates reversely, the first clamping module 31 and the second clamping module 32 move towards the bearing groove 111 under the elastic force of the first elastic member 33 and the second elastic member 34 respectively, so as to abut against the product body 100 in the bearing groove 111. Exemplarily, the first elastic member 33 and the second elastic member 34 are compression springs.

[0050] Specifically, as shown in Figure 2 The first clamping module 31 has a first push inclined surface arranged at an angle with the first direction, and the second clamping module 32 has a second push inclined surface matched with the first push inclined surface, which abuts against the first push inclined surface. When the first clamping module 31 moves in the first direction, the first clamping module 31 converts the movement in the first direction into the movement of the second clamping module 32 in the second direction through the sliding cooperation of the first push inclined surface and the second push inclined surface, thereby forming a linkage structure, so that the worker only needs to rotate the driving assembly 2 to simultaneously drive the first clamping module 31 and the second clamping module 32 to move.

[0051] The structure of the clamping mechanism 3 can be set according to actual needs, as long as it can realize the effective driving of the driving assembly 2 on the clamping mechanism 3. Exemplarily, as shown in Figure 1 and Figure 5As shown, the driving module 2 comprises a resisting block 21 provided with a convex contact surface 211 and a concave contact surface 212, which extend around the rotation axis of the driving module 2 and are smoothly connected; the first clamping module 31 comprises a contact head 311, a push block 312 and a transmission frame 313, the contact head 311 is arranged on the transmission frame 313, the push block 312 is connected to the transmission frame 313 and is used to abut against the product body 100, the transmission frame 313 is slidingly arranged on the seat body 12 along a first direction, a first elastic member 33 abuts against the transmission frame 313, the contact head 311, the push block 312 and the transmission frame 313 are integrally formed, the contact head 311 is configured to abut against the convex contact surface 211 or the concave contact surface 212, and along the first direction, the distance between the convex contact surface 211 and the contact head 311 is smaller than the distance between the concave contact surface 212 and the contact head 311.

[0052] Specifically, the action process of the clamping mechanism 3 is as follows: when the driving module 2 drives the resisting block 21 to rotate forward and rotate by a certain angle, the convex contact surface 211 on the resisting block 21 will abut against the contact head 311, then the transmission frame 313 will move along the first direction under the pushing of the resisting block 21 and compress the first elastic member 33, thereby driving the push block 312 to move away from the bearing groove 111 along the first direction, at the same time, the second clamping module 32 moves away from the bearing groove 111 along the second direction under the sliding cooperation of the first pushing inclined surface and the second pushing inclined surface, and compresses the second elastic member 34; at this time, the clamping mechanism 3 is in a loose state, which is convenient for taking or placing the product body 100; when the driving module 2 drives the resisting block 21 to rotate reversely and rotate by a certain angle, the concave contact surface 212 on the resisting block 21 will abut against the contact head 311, then the transmission frame 313 will move along the first direction under the elastic force of the first elastic member 33, thereby driving the push block 312 to move close to the product body 100 in the bearing groove 111 along the first direction, until the push block 312 abuts against the product body 100 and presses the product body 100 against the first stop block 112, at the same time, the second clamping module 32 moves close to the product body 100 in the bearing groove 111 along the second direction under the elastic force of the second elastic member 34, until the product body 100 is pressed against the second stop block 113, at this time, the clamping mechanism 3 is in a clamping state, and the product body 100 is fixed in the bearing groove 111.

[0053] The specific structure of the driving module 2 can be set according to actual needs, as long as it can realize the driving control of the clamping mechanism 3 and the wire arranging mechanism 4 through rotation. Figure 1 and Figure 2As shown, the driving module 2 further comprises a shaft body 22 and a handle 23, the shaft body 22 is rotatably arranged on the bearing seat 1, the abutting block 21 is arranged on the shaft body 22, and the handle 23 is connected to the shaft body 22, and the shaft body 22 can drive the convex surface 211 and the concave surface 212 to abut against the contact head 311 respectively; it can be understood that the handle 23 is used for being held by a hand, thereby facilitating the rotation of the shaft body 22, and the convenience of the rotation of the shaft body 22 is improved.

[0054] Specifically, the transmission hole is arranged on the transmission frame 313, the shaft body 22 is arranged in the transmission frame 313 and connected to the wire arrangement mechanism 4, the abutting block 21 is arranged on the shaft body 22 and located in the transmission hole, and the contact head 311 is also located in the transmission hole and extends along the first direction.

[0055] Further, as shown in Figure 1 and Figure 5 , the wire arrangement mechanism 4 comprises a wire arrangement block 41, the wire arrangement block 41 is slidably connected to the bearing seat 1, the wire arrangement groove 411 is arranged on the wire arrangement block 41, the wire arrangement block 41 is provided with a driving hole 412, the driving module 2 is provided with a cam portion 221, the cam portion 221 is arranged in the driving hole 412, and when the driving module 2 rotates, the wire arrangement block 41 can be moved by the cam portion 221. Specifically, the wire arrangement block 41 is vertically movably arranged on the seat body 12, the wire arrangement groove 411 is arranged on the top of the wire arrangement block 41, when the driving module 2 rotates forward, the wire arrangement block 41 is driven by the driving module 2 to rise to the wire arrangement position; when the driving module 2 reversely rotates, the wire arrangement block 41 is driven by the driving module 2 to descend to the top of the product body 100 and the wire harness 200, thereby preventing the product body 100 from being damaged by accidental knocking when the product body 100 is taken or placed. The cam portion 221 is arranged on the shaft body 22 along the length direction of the shaft body 22, the cam portion 221 is circumferentially provided with a smooth connection of a flat surface and an arc surface, along the radial direction of the shaft body 22, the flat surface is close to the rotation axis of the shaft body 22 relative to the arc surface, and when the shaft body 22 rotates, the flat surface and the arc surface can abut against the lower bottom surface of the driving hole 412 respectively, so that the wire arrangement block 41 vertically rises or descends.

[0056] As shown in Figure 1 and Figure 6As shown, the wire arrangement mechanism 4 further comprises a wire arrangement elastic member 42 clamped between the wire arrangement block 41 and the bearing seat 1, configured to drive the wire arrangement groove 411 to move to the wire arrangement position, so that the wire arrangement block 41 can automatically move to the wire arrangement position under the action of the elastic force, facilitating operation. Specifically, the action process of the wire arrangement mechanism 4 is as follows: when the shaft body 22 rotates forward and rotates by a certain angle, the flat surface of the cam portion 221 will abut against the lower bottom surface of the drive hole 412, and then the wire arrangement block 41 will rise vertically to the wire arrangement position under the action of the elastic force of the wire arrangement elastic member 42; when the shaft body 22 reversely rotates and rotates by a certain angle, the arc surface of the cam portion 221 will abut against the lower bottom surface of the drive hole 412, and then the wire arrangement block 41 will descend vertically under the pushing of the arc surface and compress the wire arrangement elastic member 42, until the top of the wire arrangement block 41 is lower than the product body 100 and the wire harness 200. Exemplarily, the wire arrangement elastic member 42 is a compression spring.

[0057] The limiting column 413 is arranged to abut against the wire harness 200, so that the worker can bend and stretch the wire harness 200 into the wire arrangement groove 411. Exemplarily, as shown in Figure 5 and Figure 6 As shown, the wire arrangement block 41 is symmetrically provided with the limiting column 413, which respectively abuts against the wire harness 200 at the wire arrangement position, and the limiting columns 413 symmetrically arranged form an arrangement channel therebetween, which is arranged opposite to the wire arrangement groove 411. In this embodiment, the wire arrangement jig further comprises a wire clamping module 6 for shaping the wire harness 200 stretched into the wire arrangement groove 411 to finally complete the wire arrangement operation, the wire clamping module 6 comprises a supporting shaft 61, a wire clamping block 62, a fixed block 63 and a wire clamping elastic member 64, the supporting shaft 61 and the fixed block 63 are fixedly arranged on the shell 11, the wire clamping block 62 is provided with two, both of which are slidingly arranged on the supporting shaft 61, and the wire clamping elastic member 64 is arranged between each wire clamping block 62 and the shell 11, and the wire clamping block 62 can abut against the middle fixed block 63 under the action of the elastic force of the wire clamping elastic member 64; the specific operation mode is as follows: first, move the wire clamping block 62 along the supporting shaft 61 to leave a space between the wire clamping block 62 and the fixed block 63 for the wire harness 200 to pass through, then pass the wire harness 200 arranged in the wire arrangement groove 411 through the space between the wire clamping block 62 and the fixed block 63, and then release the wire clamping block 62, so that the wire clamping block 62 presses the wire harness 200 against the fixed block 63 under the action of the elastic force of the wire clamping elastic member 64, thereby completing the wire arrangement operation. Exemplarily, the wire clamping elastic member 64 is a compression spring.

[0058] As shown in Figure 2 and Figure 4As shown, in order to ensure the stability of the product body 100 on the bearing seat 1, the wire arrangement tool further comprises a pressing plate 5, the pressing plate 5 is rotationally connected to the bearing seat 1, and the pressing plate 5 can press the product body 100 against the groove bottom of the bearing groove 111. Exemplarily, the pressing plate 5 is rotationally arranged on the shell 11 through a torsional spring, and the pressing plate 5 can be pressed against the product body 100 under the elastic force of the torsional spring. Figure 3 In order to clearly show the structure on the shell 11, the pressing plate 5 is hidden.

[0059] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the utility model, and are not a limitation on the embodiments of the utility model. For ordinary skilled in the art, various obvious changes, re-adjustment and replacement can be made without departing from the protection scope of the utility model. Here, it is not necessary and impossible to enumerate all the embodiments. Any modification, equivalent replacement and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model claim.

Claims

1. A wire management tool, characterized by, The utility model relates to a kind of product body clamping device, including: Bearing seat (1), the bearing seat (1) is provided with bearing groove (111), the bearing groove (111) is configured to carry product body (100) with wire harness (200); Driving module (2), rotation is installed in the bearing seat (1); Clamping mechanism (3), is installed in the bearing seat (1), when the driving module (2) rotates, the product body (100) in the bearing groove (111) can be driven by the clamping mechanism (3) clamping; Wire arrangement mechanism (4), is installed in the bearing seat (1), the wire arrangement mechanism (4) has wire arrangement groove (411), when the driving module (2) rotates, the wire arrangement mechanism (4) can be driven to move to wire arrangement position, at the wire arrangement position, wire harness (200) is limited to contain in the wire arrangement groove (411).

2. The wire management tool of claim 1, wherein, The clamping mechanism (3) includes first clamping module (31) and second clamping module (32), the first clamping module (31) is slidably connected to the bearing seat (1) along a first direction, the second clamping module (32) is slidably connected to the bearing seat (1) along a second direction, the first direction and the second direction are arranged at an angle, and the first direction and the second direction are both perpendicular to the depth direction of the bearing groove (111); When the driving module (2) rotates, the first clamping module (31) can be driven to abut against the product body (100) along the first direction, and when the first clamping module (31) moves, the second clamping module (32) can be driven to abut against the product body (100) along the second direction.

3. The wire management tool of claim 2, wherein, The clamping mechanism (3) further includes a first elastic member (33), the first elastic member (33) is clamped between the first clamping module (31) and the bearing seat (1), and is configured to drive the first clamping module (31) to abut against the product body (100).

4. The wire management tool of claim 2, wherein, The clamping mechanism (3) further includes a second elastic member (34), when the first clamping module (31) moves away from the bearing groove (111), the second clamping module (32) abuts against the second clamping module (32) and moves away from the bearing groove (111), the second elastic member (34) is clamped between the second clamping module (32) and the bearing seat (1), and is configured to drive the second clamping module (32) to abut against the product body (100).

5. The wire management tool of claim 3, wherein, The driving module (2) includes an abutting block (21), the abutting block (21) is provided with a convex surface (211) and a concave surface (212), the convex surface (211) and the concave surface (212) extend around the rotation axis of the driving module (2) and are smoothly connected; The first clamping module (31) is provided with a contact head (311), the contact head (311) is configured to abut against the convex surface (211) or the concave surface (212), and the distance between the convex surface (211) and the contact head (311) is smaller than the distance between the concave surface (212) and the contact head (311) along the first direction.

6. The wire management tool of claim 5, wherein, The driving module (2) further comprises a shaft body (22) and a crank (23), the shaft body (22) is rotationally arranged on the bearing seat (1), the abutting block (21) is arranged on the shaft body (22), the crank (23) is connected to the shaft body (22), and the shaft body (22) is rotatable to drive the convex surface (211) and the concave surface (212) to abut the contact (311) respectively.

7. The wire management tool of claim 1, wherein, The wire arrangement mechanism (4) comprises a wire arrangement block (41), the wire arrangement block (41) is slidingly connected to the bearing seat (1), the wire arrangement groove (411) is arranged on the wire arrangement block (41), the wire arrangement block (41) is provided with a driving hole (412), the driving module (2) is provided with a cam portion (221), the cam portion (221) is arranged in the driving hole (412), and the driving module (2) is rotatable to push the wire arrangement block (41) to move through the cam portion (221).

8. The wire management tool of claim 7, wherein, The wire arrangement mechanism (4) further comprises a wire arrangement elastic member (42), the wire arrangement elastic member (42) is clamped between the wire arrangement block (41) and the bearing seat (1) and is configured to drive the wire arrangement groove (411) to move to the wire arrangement position.

9. The wire management tool of claim 7, wherein, The wire arrangement block (41) is symmetrically provided with a limiting column (413), the limiting column (413) abuts the wire harness (200) respectively at the wire arrangement position, and the symmetrically arranged limiting columns (413) form an arrangement channel therebetween, and the arrangement channel is arranged opposite to the wire arrangement groove (411).

10. The wire management tool of claim 1, wherein, The wire arrangement tool further comprises a pressing plate (5), the pressing plate (5) is rotationally connected to the bearing seat (1), and the pressing plate (5) can press the product body (100) against the groove bottom of the bearing groove (111).