Movable buckle

By designing a movable snap buckle, the sliding cooperation between the cable tie assembly and the snap body is solved, and the various types and quantity problems caused by changes in the fixed position of the wire harness are achieved, achieving cost reduction and versatility improvement.

CN223052656UActive Publication Date: 2025-07-01JILIN JIYI EMBODIED INTELLIGENT ROBOT CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421535132.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-01
Publication Date
2025-07-01
Estimated Expiration
2034-07-01

AI Technical Summary

Technical Problem

Due to the integrated structure, existing wiring harness fixed snaps need to increase in various types and quantities when changing the fixed position, which is high in cost and low in versatility.

Method used

A movable snap buckle is designed to ensure stability and reliability through the sliding fit between the cable tie assembly and the snap body.

Benefits of technology

The position of the cable ties is adjusted according to the actual fixed position of the wiring harness, which reduces the type and number of fixed buckles, improves versatility and stability, and reduces costs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223052656U_ABST
    Figure CN223052656U_ABST
Patent Text Reader

Abstract

The movable buckle comprises a buckle body and a binding belt assembly, the buckle body comprises a buckle body and a bearing plate which are connected with each other, the binding belt assembly comprises a binding belt and a fixing piece which are connected with each other, a sliding way is formed in the bearing plate, sliding grooves are formed in the two opposite sides of the sliding way in the extending direction of the sliding way, and each sliding groove is provided with an inner tooth groove; the fixing part comprises two oppositely-arranged side plates, the free ends of the side plates oppositely extend outwards to form a pair of clamping jaws, the side plates extend into the sliding ways and slide in the extending direction of the sliding ways, the clamping jaws extend into the sliding grooves respectively, and at least part of the clamping jaws are matched with the inner tooth grooves in a clamped mode so that the cable tie assembly can be fixed to the sliding ways. According to the technical scheme, through the sliding fit of the binding belt assembly and the buckle body, the problems that after the wire harness fixing position is changed, the types and the number of used fixing buckles are increased, the cost is increased, and the universality is low are solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present disclosure relates to the technical field of wire harness fixing, and particularly to a movable buckle. Background Art

[0002] A wire harness is an important component of a vehicle, and the reliability of the wire harness fixing directly affects the performance and quality of the whole vehicle. At present, wire harness fixing buckles are usually used to fix the wire harness to ensure the reliability of the wire harness fixing.

[0003] However, since the current wire harness fixing buckles are usually of an integral structure, that is, the distance between the fixing end and the wire harness fixing end of the wire harness fixing buckle remains unchanged. When the fixing position of the wire harness changes, a wire harness fixing buckle that matches it needs to be used for fixing the wire harness, resulting in an increasing variety and quantity of wire harness fixing buckles, and a higher cost. Moreover, due to the inability to adjust the distance according to the actual fixing position of the wire harness, the versatility of the entire wire harness fixing buckle is low. Summary of the Utility Model

[0004] Embodiments of the present disclosure provide a movable buckle to at least partially solve the problems that when the fixing position of the wire harness changes, the types and quantities of fixing buckles used increase, resulting in increased costs and low versatility.

[0005] The specific technical solutions provided by the embodiments of the present disclosure are as follows:

[0006] The present disclosure provides a movable buckle, including a buckle body and a cable tie assembly. The buckle body includes a buckle and a bearing plate connected to each other. The cable tie assembly includes a cable tie and a fixing member connected to each other. A slideway is provided on the bearing plate. Along the extending direction of the slideway, chutes are respectively arranged on two opposite sides of the slideway, and the chutes have internal tooth grooves; the fixing member includes two oppositely arranged side plates. A pair of clamping claws extend outward relatively at the free ends of the side plates. The side plates extend into the slideway and slide along the extending direction of the slideway. The clamping claws respectively extend into the chutes, and at least part of the clamping claws are clamped and matched with the internal tooth grooves to fix the cable tie assembly on the slideway.

[0007] Preferably, along the extending direction of the slideway, tooth-shaped protrusions are arranged at intervals in the chute. Two adjacent tooth-shaped protrusions and the bottom wall of the chute form the internal tooth groove, and the width of the bottom wall of the internal tooth groove is greater than or equal to the width of the clamping claw.

[0008] Preferably, a side wing is respectively arranged on one side of the two side plates facing away from each other. The extending direction of the side wing is perpendicular to the extending direction of the side plate. The side wing is configured such that when the side wing is pressed downwards, the two clamping claws approach each other and disengage from the internal tooth groove, so that the fixing member moves along the extending direction of the slideway.

[0009] Preferably, the outer surface of the flank is provided with anti-slip lines, and the extending direction of the anti-slip lines is perpendicular to the extending direction of the flank.

[0010] Preferably, the height dimension of the chute is greater than or equal to the thickness dimension of the claw; the distance between the side plates is greater than the sum of the heights of the two claws protruding from the side plates.

[0011] Preferably, an arc transition section is provided at the end of the claw facing the inner tooth groove.

[0012] Preferably, a plurality of chutes are arranged side by side along the height direction of the slideway, and an inner tooth groove is arranged in each chute.

[0013] Preferably, a plurality of slideways are arranged side by side along the width direction of the carrier plate, and each slideway is slidably matched with at least one cable tie assembly.

[0014] Preferably, the flank, the claw and the side plate are integrally injection-molded.

[0015] Preferably, baffles for blocking the slideway are arranged on at least one side at both ends of the slideway.

[0016] The beneficial effects of the present disclosure are as follows:

[0017] The cable tie assembly is matched with the slideway and the inner tooth groove on the buckle body through the side plate and the claw on the fixing piece, and the side plate is slidably arranged in the slideway, so as to realize the sliding of the cable tie assembly on the slideway, and the position of the cable tie assembly can be adjusted according to the actual fixing position of the wire harness to meet the fixing requirements of different positions; the claw is clamped and matched with the inner tooth groove to fix the cable tie assembly on the carrier plate, ensuring the stability and reliability of the buckle; through the sliding fit between the cable tie assembly and the buckle body, the problem that after the fixing position of the wire harness changes, the types and quantities of fixing buckles used increase, resulting in increased costs and low versatility is solved. Description of the Drawings

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present disclosure, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present disclosure. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 It is a schematic diagram of the overall structure of the mobile buckle in the embodiment of the present disclosure;

[0020] Figure 2 is Figure 1 a schematic diagram of the structure of the buckle body in

[0021] Figure 3 is a schematic cross-sectional structure diagram of the cable tie assembly in a fixed state on the buckle body;

[0022] Figure 4 is a schematic cross-sectional structure diagram of the cable tie assembly in an unlocked state on the buckle body;

[0023] Figure 5 is Figure 1 a schematic top view structure diagram of the cable tie assembly in

[0024] Figure 6 is a schematic overall structure diagram of another structure of the buckle body in the embodiment of the present disclosure;

[0025] Figure 7 is a schematic cross-sectional structure diagram of the cable tie assembly in a fixed state on the buckle body with another structure;

[0026] Figure 8 is a schematic cross-sectional structure diagram of the cable tie assembly in an unlocked state on the buckle body with another structure.

[0027] Reference numerals:

[0028] 1. Buckle body; 101. Buckle; 102. Carrier plate; 103. Slideway; 104. Chute; 105. Inner tooth groove; 2. Cable tie assembly; 201. Cable tie; 202. Fixing member; 2021. Side plate; 2022. Claw; 203. Flank; 204. Arc transition section; 3. Anti-slip pattern; 4. Baffle. Detailed implementation manners

[0029] The following describes the preferred embodiments of the present disclosure with reference to the accompanying drawings of the specification. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present disclosure, and are not used to limit the present disclosure. And without conflict, the embodiments in the present disclosure and the features in the embodiments can be combined with each other.

[0030] This embodiment provides a movable buckle, as Figures 1 to 8As shown in the figure, it includes a buckle body 1 and a cable tie assembly 2. The buckle body 1 may include a buckle 101 and a carrier plate 102 which are connected to each other. The cable tie assembly 2 may include a cable tie 201 and a fixing member 202 which are connected to each other. A slideway 103 is formed on the carrier plate 102. Along the extending direction of the slideway 103, chutes 104 are respectively arranged on two opposite sides of the slideway 103, and the chutes 104 have internal tooth grooves 105. The fixing member 202 includes two oppositely arranged side plates 2021. Opposite free ends of the side plates 2021 extend outwards relatively to form a pair of clamping claws 2022. The side plates 2021 extend into the slideway 103 and slide along the extending direction of the slideway 103. The clamping claws 2022 respectively extend into the chutes 104, and at least part of the clamping claws 2022 is clamped and matched with the internal tooth grooves 105 to fix the cable tie assembly 2 on the slideway 103.

[0031] In this embodiment, the buckle body 1 can be made of a strong and durable metal material to ensure the stability and reliability during long-term use. The buckle 101 and the carrier plate 102 are firmly connected by welding or detachable means to form an integral structure. The slideway 103 formed on the carrier plate 102 is strip-shaped, and the surface of the slideway 103 is smooth to reduce the resistance of the fixing member 202 during the sliding process. The cable tie 201 is made of a flexible material such as nylon, polyester, etc., and has good flexibility and wear resistance. The two side plates 2021 on the fixing member 202 are arranged parallel to each other, and can freely extend into the slideway 103 on the carrier plate 102 and can slide along the extending direction of the slideway 103 to realize the movement of the cable tie assembly 2 on the slideway 103. The clamping claws 2022 are arranged towards the chutes 104. The clamping claws 2022 are parallel to the plane where the chutes 104 are located, and the clamping claws 2022 can extend into the chutes 104 and be clamped and matched with the internal tooth grooves 105, so as to realize the fixing of the cable tie assembly 2 on the slideway 103 to ensure that the cable tie 201 will not loosen or slide after being fixed.

[0032] In actual use, when it is necessary to fix the wire harness, first, according to the actual fixing position of the wire harness, the side plates 2021 of the fixing member 202 extend into the slideway 103 of the carrier plate 102. By sliding the fixing member 202, it moves along the slideway 103 to a suitable position. When the fixing member 202 reaches the predetermined position, the clamping claws 2022 thereon will be clamped and matched with the internal tooth grooves 105 in the chutes 104, thereby fixing the cable tie assembly 2. Then, the cable tie 201 is passed through the wire harness to complete the fixing.

[0033] Through the above technical solution, the cable tie assembly 2 is engaged with the slideway 103 and the internal tooth groove 105 on the buckle body 1 through the side plate 2021 and the claw 2022 on the fixing member 202. The side plate 2021 is slidably arranged in the slideway 103 to realize the sliding of the cable tie assembly 2 on the slideway 103. The position of the cable tie assembly 2 can be adjusted according to the actual fixing position of the wire harness to meet the fixing requirements at different positions. The claw 2022 is engaged with the internal tooth groove 105 to fix the cable tie assembly 2 on the bearing plate 102, ensuring the stability and reliability of the buckle 101. Through the sliding fit between the cable tie assembly 2 and the buckle body 1, the problem that after the fixing position of the wire harness changes, the types and quantities of the used fixing buckles 101 increase, resulting in increased costs and low versatility is solved.

[0034] In some embodiments, referring to Figure 2 and Figure 3 , along the extending direction of the slideway 103, tooth-shaped protrusions are arranged at intervals in the chute 104. The adjacent two tooth-shaped protrusions and the bottom wall of the chute 104 form the internal tooth groove 105. The width of the bottom wall of the internal tooth groove 105 is greater than or equal to the width of the claw 2022. By adjusting the intervals and quantities of the tooth-shaped protrusions, buckles 101 with different fixing spacings and fixing points can be designed, improving the flexibility of their use. The width of the bottom wall of the internal tooth groove 105 is greater than or equal to the width of the claw 2022, ensuring that when the claw 2022 extends into the chute 104 and attempts to engage with the internal tooth groove 105, the claw 2022 can smoothly enter the internal tooth groove 105 without causing the engagement failure or damage to the claw 2022 due to the width mismatch. Moreover, such a design enables the claw 2022 to completely enter the internal tooth groove 105 and be in close contact with the bottom wall of the chute 104, providing a more stable and firm fixing effect, capable of resisting external tensile forces and impact forces, and ensuring that the cable tie assembly 2 does not loosen or move.

[0035] In some embodiments, referring to Figure 3 and Figure 4, on the opposite sides of the two side plates 2021, a side wing 203 is respectively arranged. The extending direction of the side wing 203 is perpendicular to the extending direction of the side plate 2021. The side wing 203 is configured such that when the side wing 203 is pressed downward, the two claw members 2022 approach each other and disengage from the internal tooth groove 105, causing the fixing member 202 to move along the extending direction of the slideway 103. The arrangement of the side wing 203 enables convenient adjustment and fixation of the fixing member 202 on the slideway 103. Specifically, the staff presses the side wing 203 downward to make the two claw members 2022 approach each other and disengage from the internal tooth groove 105, thereby releasing the fixed state of the fixing member 202 on the slideway 103 and enabling it to move along the extending direction of the slideway 103. This operation method makes the adjustment process simple and fast. The staff can move it to any position as needed, improving work efficiency. When the fixing member 202 reaches the predetermined position, simply releasing the side wing 203 causes the claw members 2022 to automatically snap into the internal tooth groove 105 to achieve fixation, making the adjustment of the fixed position very precise and improving the reliability of the device.

[0036] In some embodiments, as Figure 5 shown, the outer surface of the side wing 203 is provided with anti-slip lines 3. The extending direction of the anti-slip lines 3 is perpendicular to the extending direction of the side wing 203. With this arrangement, the friction during pressing is increased, preventing finger slippage and further improving the reliability of the device.

[0037] In some embodiments, referring to Figure 3 and Figure 4 , the height dimension of the sliding groove 104 is greater than or equal to the thickness dimension of the claw member 2022. Such a design can ensure that the claw member 2022 slides smoothly in the sliding groove 104 and will not be stuck or blocked due to the sliding groove 104 being too narrow, reducing the friction and wear between components and extending the service life of the buckle 101. The distance between the two side plates 2021 is greater than the sum of the heights by which the two claw members 2022 protrude from the side plates 2021. In this way, when the claw members 2022 extend into the sliding groove 104 and snap into the internal tooth groove 105, there is sufficient space for relative movement between the two claw members 2022, ensuring that the claw members 2022 can completely snap into the internal tooth groove 105, thereby achieving firm fixation. At the same time, it can also ensure that the claw members 2022 can completely disengage from the internal tooth groove 105, thereby enabling the movement of the cable tie assembly 2 in the slideway 103, further improving the stability and reliability of the device.

[0038] In some embodiments, referring to Figure 2 and Figure 4, the end of the jaw 2022 facing the inner tooth groove 105 is provided with an arc transition section 204. The arc transition section 204 can reduce the direct contact between the jaw 2022 and the edge of the chute 104 when the jaw 2022 extends into or exits the inner tooth groove 105, thereby reducing jamming and friction. This not only makes the sliding of the jaw 2022 smoother, reduces the resistance during operation, but also extends the service life of the buckle 101 and facilitates installation.

[0039] In some embodiments, referring to Figure 6 , Figure 7 and Figure 8 , a plurality of chutes 104 are arranged in parallel along the height direction of the slideway 103, and an inner tooth groove 105 is arranged in each chute 104. With this arrangement, the jaws 2022 on the fixing member 202 can be selected to cooperate with the inner tooth grooves 105 in different chutes 104, thereby providing multiple fixing position options, increasing the flexibility and adaptability of the buckle 101. At the same time, since there are multiple chutes 104 to choose from, the position of the fixing member 202 can be adjusted more precisely, achieving more subtle position adjustment and meeting higher precision requirements.

[0040] In some embodiments, a plurality of slideways 103 are arranged in parallel along the width direction of the bearing plate 102, and each slideway 103 is slidably matched with at least one cable tie assembly 2. By arranging a plurality of slideways 103 in parallel along the width direction of the bearing plate 102, the space of the bearing plate 102 can be fully utilized, enabling multiple cable tie assemblies 2 to work simultaneously and independently, improving the efficiency and space utilization rate of the entire system. Each slideway 103 is slidably matched with at least one cable tie assembly 2, allowing the cable tie assembly 2 to slide freely on the slideway 103, thereby achieving flexible adjustment and positioning of the wire harness fixation. The flexibility and adjustability of the system are increased. At the same time, when multiple cable tie assemblies 2 work simultaneously on multiple slideways 103, a stronger Pythagorean theorem can be provided, thereby enhancing the stability of the wire harness.

[0041] In some embodiments, the side wings 203, the jaws 2022 and the side plate 2021 are integrally injection-molded. The integral injection molding technology greatly improves the production efficiency, and also makes the connection between the side wings 203, the jaws 2022 and the side plate 2021 stronger, with higher overall stability. The risk of component loosening or falling off is reduced, and the reliability and durability of the product are improved.

[0042] In some embodiments, as Figure 2 shown, baffles 4 for blocking the slideway 103 are provided on at least one side at both ends of the slideway 103. The baffles 4 can effectively prevent the cable tie assembly 2 from detaching from the slideway 103, improving the reliability of the device. At the same time, the baffles 4 are closely connected to the structure of the slideway 103 and can also enhance the overall stability of the slideway 103.

[0043] Although the preferred embodiments of the present disclosure have been described, additional changes and modifications can be made to these embodiments by those skilled in the art once they learn of the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications that fall within the scope of the present disclosure.

[0044] Obviously, those skilled in the art can make various changes and modifications to the embodiments of the present disclosure without departing from the spirit and scope of the embodiments of the present disclosure. Thus, if these modifications and variations of the embodiments of the present disclosure fall within the scope of the claims of the present disclosure and their equivalent technologies, the present disclosure also intends to include these modifications and variations.

Claims

1. A movable buckle, characterized in that: It includes a buckle body and a cable tie assembly, the buckle body includes a buckle and a supporting plate connected to each other, the cable tie assembly includes a cable tie and a fixing member connected to each other, a slideway is provided on the supporting plate, and slide grooves are respectively provided on two opposite sides of the slideway along the extension direction of the slideway, and the slide groove has an internal tooth groove; the fixing member includes two oppositely arranged side plates, and a pair of claws extend outward at the free ends of the side plates relative to each other, the side plates extend into the slideway and slide along the extension direction of the slideway, the claws extend into the slide grooves respectively, and the claws are at least partially engaged with the internal tooth grooves to fix the cable tie assembly on the slideway.

2. The movable buckle according to claim 1, characterized in that: Along the extension direction of the slideway, tooth-shaped protrusions are arranged at intervals in the slide groove, and two adjacent tooth-shaped protrusions and the bottom wall of the slide groove constitute the inner tooth groove, and the width of the bottom wall of the inner tooth groove is greater than or equal to the width of the claw.

3. The movable buckle according to claim 1, characterized in that: A side wing is respectively provided on the opposite sides of the two side plates, and the extension direction of the side wing is perpendicular to the extension direction of the side plate. The side wing is constructed so that when the side wing is pressed downward, the two claws approach each other and disengage from the inner tooth groove, so that the fixing member moves along the extension direction of the slide.

4. The movable buckle according to claim 3, characterized in that: The outer surface of the side wing is provided with anti-skid patterns, and the extending direction of the anti-skid patterns is perpendicular to the extending direction of the side wing.

5. The movable buckle according to claim 1, characterized in that: The height dimension of the slide groove is greater than or equal to the thickness dimension of the clamping claw; the distance between the side plates is greater than the sum of the heights of the two clamping claws protruding from the side plates.

6. The movable buckle according to claim 1, characterized in that: An arc-shaped transition section is arranged at the end of the clamping claw facing the inner tooth groove.

7. The movable buckle according to claim 1, characterized in that: A plurality of the slide grooves are arranged in parallel along the height direction of the slideway, and each of the slide grooves is provided with an inner tooth groove.

8. The movable buckle according to claim 1, characterized in that: A plurality of slideways are arranged in parallel along the width direction of the bearing plate, and each of the slideways is slidably matched with at least one of the cable tie assemblies.

9. The movable buckle according to claim 3, characterized in that: The side wings, the clamping claws and the side plates are integrally formed by injection molding.

10. The movable buckle according to claim 1, characterized in that: At least one side of both ends of the slideway is provided with a baffle for blocking the slideway.