A side automatic locking bolt mechanism

CN224825378UActive Publication Date: 2026-10-09XIAMEN HONGFA IND ROBOT CO LTD
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Patent Information

Application Number
CN202522295443.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-10-09
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

[0002]在自动生产线上,产品的螺栓一般是通过螺栓自动锁紧装置进行锁紧,如专利CN106826205B所公开的一种移动式螺栓螺母自动锁紧装置,是将待装配体固定在安装架上,再通过X轴驱动装置带动螺母固定装置和旋转螺栓装置移动到待装配体的通孔位置,再通过Y轴驱动装置带动螺母固定装置和旋转螺栓装置在纵向上移动对螺栓进行自动锁紧,该自动锁紧装置只能在X轴方向上移动旋转螺栓装置使其对准安装孔,无法左右移动,对于具有多排安装孔的产品,还需人工左右移动产品进行对准,操作麻烦

Benefits of technology

本申请的一种可侧面自动锁螺栓机构通过X轴驱动装置、Y轴驱动装置、Z轴驱动装置能够带动伺服拧紧模组在X轴、Y轴和Z轴方向上移动,使伺服拧紧模组可以在三维方向上移动,对螺栓进行吸附后,再自动对准被锁零件孔位将螺栓锁紧在零件孔内,实现全程自动化,无需人工操作定位。另外,伺服拧紧模组的拧紧套筒沿X轴方向延伸,即与X轴驱动装置平行,将X轴驱动装置安装在水平基座上时,Y轴驱动装置和Z轴驱动装置带动伺服拧紧模组左右和上下移动,使拧紧套筒和被锁零件孔位对齐,X轴驱动装置带动伺服拧紧模组朝向孔位靠近移动,同时,驱动件驱动拧紧旋转,可实现侧面对螺栓进行锁紧;同理,将X轴驱动装置安装在垂直式的基座上时,可实现垂直方向对螺栓进行锁紧,从而使其可以兼容多款产品。

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Abstract

The utility model provides a kind of side automatic locking bolt mechanism, including X-axis driving device, Y-axis driving device, Z-axis driving device and servo tightening module, wherein: the X-axis driving device, the Y-axis driving device and the Z-axis driving device can respectively drive the servo tightening module reciprocating movement along X-axis, Y-axis and Z-axis direction, realize three-dimensional movement;The servo tightening module includes driving part, tightening sleeve and vacuum generator, the tightening sleeve extends along X-axis direction, and it is hollow inside;The vacuum generator is communicated with the tightening sleeve, to enable the tightening sleeve can adsorb bolt, the driving part is used to drive the tightening sleeve rotation to tighten bolt.This mechanism structure is simple and reliable, degree of automation is high, and multiple products can be compatible.
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Description

Technical Field

[0001] This utility model relates to the technical field of automatic bolt locking devices, and more specifically, to a side-mounted automatic bolt locking mechanism. Background Technology

[0002] On automated production lines, bolts are typically tightened using automatic bolt locking devices, such as the movable automatic bolt and nut locking device disclosed in patent CN106826205B. This device fixes the assembly to a mounting frame, then uses an X-axis drive to move a nut fixing device and a rotating bolt device to the through-hole position on the assembly. A Y-axis drive then moves these devices longitudinally to automatically lock the bolts. However, this automatic locking device can only move the rotating bolt device in the X-axis direction to align it with the mounting hole; it cannot move left or right. For products with multiple rows of mounting holes, manual left-right movement is still required for alignment, making the operation cumbersome. Sometimes, products also require bolt tightening on the side, but this device can only tighten bolts vertically, resulting in low compatibility.

[0003] In view of this, the applicant hereby submits this application after studying the existing technology. Utility Model Content

[0004] This invention provides a side-mounted automatic bolt locking mechanism, which aims to improve at least one of the above-mentioned technical problems.

[0005] To solve the above-mentioned technical problems, this utility model provides a side-mounted automatic bolt locking mechanism, including an X-axis drive device, a Y-axis drive device, a Z-axis drive device, and a servo tightening module, wherein: The Y-axis drive device is connected to the X-axis drive device, and the X-axis drive device can drive the Y-axis drive device to reciprocate along the X-axis direction; the Z-axis drive device is connected to the Y-axis drive device, and the Y-axis drive device can drive the Z-axis drive device to reciprocate along the Y-axis direction; the servo tightening module is connected to the Z-axis drive device, and the Z-axis drive device can drive the servo tightening module to reciprocate along the Z-axis direction. The servo tightening module includes a drive unit, a tightening sleeve, and a vacuum generator. The tightening sleeve extends along the X-axis and is hollow inside. The vacuum generator is connected to the tightening sleeve so that the tightening sleeve can attract bolts. The drive unit is used to drive the tightening sleeve to rotate in order to tighten the bolts.

[0006] As a further optimization, an imaging system is also included, which is connected to the servo tightening module to assist the tightening sleeve in accurately adsorbing and tightening the bolt.

[0007] As a further optimization, the vacuum generator is connected to an adapter, the adapter has an air passage, the tightening sleeve passes through the adapter and through the air passage, and the side wall of the tightening sleeve has several through holes communicating with the air passage in the circumferential direction.

[0008] As a further optimization, the servo tightening module is connected to the Z-axis drive device via a bracket, and the drive component, the tightening sleeve, the vacuum generator, and the imaging system are all connected to the bracket.

[0009] As a further optimization, the Z-axis drive device is provided with a first slide, and the Z-axis drive device is connected to the Y-axis drive device through the first slide.

[0010] As a further optimization, the Y-axis drive device is provided with a second slide at the bottom, and the Y-axis drive device is connected to the X-axis drive device through the second slide.

[0011] As a further optimization, it also includes two parallel support bases, which extend along the X-axis direction and are arranged on both sides of the X-axis drive device, and the second slide is slidably connected to the two support bases.

[0012] As a further optimization, a control module is also included, which is used to control the operation of the X-axis drive device, the Y-axis drive device, the Z-axis drive device, and the servo tightening module.

[0013] By adopting the above technical solution, the present invention can achieve the following technical effects: This application discloses a side-mounted automatic bolt-locking mechanism. Through X-axis, Y-axis, and Z-axis drive devices, a servo tightening module can move along the X, Y, and Z axes, allowing the servo tightening module to move in three dimensions. After attracting the bolt, it automatically aligns with the hole in the part to be locked, tightening the bolt into the hole, achieving full automation without manual positioning. Furthermore, the tightening sleeve of the servo tightening module extends along the X-axis, parallel to the X-axis drive device. When the X-axis drive device is mounted on a horizontal base, the Y-axis and Z-axis drive devices move the servo tightening module left-right and up-down, aligning the tightening sleeve with the hole in the part. The X-axis drive device moves the servo tightening module closer to the hole, while the drive component rotates the tightening mechanism, enabling side-mounted bolt locking. Similarly, when the X-axis drive device is mounted on a vertical base, it enables vertical bolt locking, thus making it compatible with multiple products. Attached Figure Description

[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0015] Figure 1 This is a schematic diagram of a side-mounted automatic bolt locking mechanism from a first-view perspective. Figure 2 This is a schematic diagram of a side-mounted automatic bolt locking mechanism from a second perspective. Figure 3 This is a cross-sectional view of the adapter; The diagram is labeled as follows: 1-X-axis drive device; 11-support base; 2-Y-axis drive device; 21-second slide; 3-Z-axis drive device; 31-first slide; 41-drive component; 42-tightening sleeve; 43-vacuum generator; 44-adapter device; 45-air passage; 46-through hole; 47-bracket; 5-imaging system. Detailed Implementation

[0016] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this utility model, not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model. Therefore, the following detailed description of the embodiments of this utility model provided in the accompanying drawings is not intended to limit the scope of the claimed utility model, but merely represents selected embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0017] Example Depend on Figure 1 , Figure 2 As shown, this utility model embodiment provides a side-mounted automatic bolt locking mechanism, including an X-axis drive device 1, a Y-axis drive device 2, a Z-axis drive device 3, and a servo tightening module, wherein: The Y-axis drive device 2 is connected to the X-axis drive device 1, and the X-axis drive device 1 can drive the Y-axis drive device 2 to reciprocate along the X-axis direction; the Z-axis drive device 3 is connected to the Y-axis drive device 2, and the Y-axis drive device 2 can drive the Z-axis drive device 3 to reciprocate along the Y-axis direction; the servo tightening module is connected to the Z-axis drive device 3, and the Z-axis drive device 3 can drive the servo tightening module to reciprocate along the Z-axis direction. The servo tightening module includes a drive unit 41, a tightening sleeve 42, and a vacuum generator 43. The tightening sleeve 42 extends along the X-axis and is hollow inside. The vacuum generator 43 communicates with the tightening sleeve 42 to allow the tightening sleeve 42 to attract bolts. The drive unit 41 drives the tightening sleeve 42 to rotate and tighten the bolts. The drive unit 41 can be a rotary motor or the like.

[0018] In this embodiment, the servo tightening module achieves three-dimensional motion through the drive of X-axis drive device 1, Y-axis drive device 2, and Z-axis drive device 3. It first vacuum-adsorbs the bolt, then aligns the bolt with the hole in the locked part and tightens it, achieving full automation. When X-axis drive device 1 is installed on a horizontal base, it can automatically tighten bolts from the side; when installed on a vertical base, it can automatically tighten bolts vertically. This mechanism has a simple and reliable structure, is easy to adjust, and is applicable to multiple products, exhibiting high compatibility.

[0019] Furthermore, it also includes an imaging system 5, which is connected to the servo tightening module. The imaging system 5 can identify whether the tightening sleeve 42 has correctly attracted the bolt and whether the hole of the locked part is aligned, thereby assisting the tightening sleeve to accurately attract and tighten the bolt.

[0020] like Figure 3 As shown, the vacuum generator 43 is connected to an adapter 44. The adapter 44 has an air passage 45 communicating with the vacuum generator 43. The tightening sleeve 42 passes through the adapter 44 and can rotate within it. The tightening sleeve 42 also passes through the air passage 45, and several through holes 46 are circumferentially formed on the side wall of a section within the air passage 45, thus connecting the tightening sleeve 42 to the air passage 45. By providing the adapter 44, the tightening sleeve 42 can always maintain communication with the vacuum generator 43, preventing its connection from being affected by rotation. The adapter 44 also has sealing devices on both the inlet and outlet sides of the tightening sleeve 42 to prevent air leakage.

[0021] like Figure 1 and Figure 2As shown, the servo tightening module is connected to the Z-axis drive device 3 via a bracket 47. The drive component 41, the tightening sleeve 42, the vacuum generator 43, and the imaging system 5 are all connected to the bracket 47. The Z-axis drive device 3 has a first slide 31, which connects it to the Y-axis drive device 2. The bottom of the Y-axis drive device 2 has a second slide 21, which connects it to the X-axis drive device 1. The X-axis drive device 1, Y-axis drive device 2, and Z-axis drive device 3 can be electric cylinders. Two parallel support bases 11 are also provided at the bottom of the second slide 21. These two support bases 11 are respectively arranged on both sides of the X-axis drive device 1 and are parallel to it. The second slide 21 is slidably connected to the two support bases 11. The support bases 11 can be used to connect to a base; by providing two support bases 11, the overall stability of the mechanism can be improved.

[0022] Furthermore, it also includes a control module, which is used to control the operation of the X-axis drive device 1, Y-axis drive device 2, Z-axis drive device 3, and servo tightening module. The control module can also acquire information from the imaging system 5 and process the acquired information into control information to control the operation of the mechanism.

[0023] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A side-mounted automatic bolt locking mechanism, characterized in that, It includes an X-axis drive unit, a Y-axis drive unit, a Z-axis drive unit, and a servo tightening module, wherein: The Y-axis drive device is connected to the X-axis drive device, and the X-axis drive device can drive the Y-axis drive device to reciprocate along the X-axis direction; the Z-axis drive device is connected to the Y-axis drive device, and the Y-axis drive device can drive the Z-axis drive device to reciprocate along the Y-axis direction; the servo tightening module is connected to the Z-axis drive device, and the Z-axis drive device can drive the servo tightening module to reciprocate along the Z-axis direction. The servo tightening module includes a drive unit, a tightening sleeve, and a vacuum generator. The tightening sleeve extends along the X-axis and is hollow inside. The vacuum generator is connected to the tightening sleeve so that the tightening sleeve can attract bolts. The drive unit is used to drive the tightening sleeve to rotate in order to tighten the bolts.

2. The side-mounted automatic bolt locking mechanism according to claim 1, characterized in that... It also includes an imaging system connected to the servo tightening module to assist the tightening sleeve in accurately adsorbing and tightening the bolt.

3. The side-mounted automatic bolt locking mechanism according to claim 1, characterized in that... The vacuum generator is connected to an adapter, and the adapter has an air passage. The tightening sleeve passes through the adapter and through the air passage. The side wall of the tightening sleeve has several through holes that communicate with the air passage in the circumferential direction.

4. The side-mounted automatic bolt locking mechanism according to claim 2, characterized in that... The servo tightening module is connected to the Z-axis drive device via a bracket, and the drive component, the tightening sleeve, the vacuum generator, and the imaging system are all connected to the bracket.

5. The side-mounted automatic bolt locking mechanism according to claim 1, characterized in that... The Z-axis drive device is provided with a first slide, and the Z-axis drive device is connected to the Y-axis drive device through the first slide.

6. The side-mounted automatic bolt locking mechanism according to claim 1, characterized in that... The Y-axis drive device is provided with a second slide at its bottom, and the Y-axis drive device is connected to the X-axis drive device through the second slide.

7. A side-mounted automatic bolt locking mechanism according to claim 6, characterized in that... It also includes two parallel support bases, which extend along the X-axis and are arranged on both sides of the X-axis drive device. The second slide is slidably connected to the two support bases.

8. A side-mounted automatic bolt locking mechanism according to any one of claims 1-7, characterized in that... It also includes a control module, which is used to control the operation of the X-axis drive device, the Y-axis drive device, the Z-axis drive device, and the servo tightening module.

Citation Information

Patent Citations

  • A mobile automatic bolt and nut locking device

    CN106826205B