Damping device for the transfer of a watch movement

By designing a shock-absorbing device for transferring watch movements, and using components such as a lifting mechanism and a locking swing arm, the movement is flexibly clamped and fixed, and dustproofed. This solves the problems of vibration, impact and dust during the movement transfer process, and improves the safety and transfer efficiency of the movement.

CN121341543BActive Publication Date: 2026-02-24FUJIAN ZHONGCHEN PRECISION MOVEMENT CO LTD
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Patent Information

Application Number
CN202511902762.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-17
Publication Date
2026-02-24
Estimated Expiration
2045-12-17

AI Technical Summary

Technical Problem

During the transfer of a watch movement, existing technology is insufficient to effectively prevent vibration and impact on gears and hairspring components, as well as the entry of dust and foreign objects, which can lead to deformation, misalignment, and jamming of movement components.

Method used

A shock-absorbing device for transferring watch movements was designed, including a transfer and stacking rack assembly, a lifting mechanism, a movement shock-absorbing device, and a dustproof cover assembly. The lifting mechanism drives the locking swing arm and the shock-absorbing seat assembly to achieve flexible clamping and fixation of the movement and dust protection. The multi-layer stacking rack structure improves the transfer efficiency.

Benefits of technology

It achieves flexible clamping and fixation of the movement during the transfer process and dust protection, preventing vibration, impact and foreign object ingress, improving the safety and stability of the movement, reducing equipment space occupation and improving transfer efficiency.

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Abstract

The application provides a shock-absorbing device for watch movement transfer, belonging to the technical field of watch movement production, and comprising a transfer stack frame group, wherein a plurality of movement shock-absorbing devices are arranged on the top surface of the transfer stack frame group in an array, a lifting mechanism for pushing each movement shock-absorbing device to rise and open is arranged in the middle cavity of the transfer stack frame group, and a mobile battery and a switch are arranged on the right side of the transfer stack frame group, thereby forming a shock-absorbing device for watch movement transfer. Through the cooperative auxiliary matching design of the above-mentioned components, the movement main body is protected by the buffer shock-absorbing and deformation flexible multiple shock-absorbing combination, and the stable positioning protection and dust protection during transfer are realized, so that the safety performance during the movement main body transfer process is significantly improved.
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Description

Technical Field

[0001] This invention relates to a shock-absorbing device for transferring watch movements, belonging to the field of watch movement manufacturing technology. Background Technology

[0002] A mechanical watch consists of a movement and external components. The movement includes the transmission system, the power system, the winding and setting system, the escapement and regulating system, and the hands system. The movement parts are assembled together by plates and screws.

[0003] Watch movements require multiple transfers during production. During these transfers, it is crucial to protect the internal core components, such as gears and hairsprings, from vibration and impact to prevent deformation and misalignment that could lead to scrap. Additionally, dust protection is necessary during the transfer process to prevent dust and foreign objects from entering the movement's gaps and causing transmission problems. To address these needs, this invention proposes a shock-absorbing device for transferring watch movements. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the purpose of this invention is to provide a shock-absorbing device for transferring watch movements, so as to solve the existing problems.

[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: a shock-absorbing device for transferring watch movements, the structure of which includes a transfer stacking frame assembly, wherein multiple movement shock-absorbing devices are arrayed on the top surface of the transfer stacking frame assembly, and a lifting mechanism for pushing each movement shock-absorbing device to rise and open is installed in the central cavity of the transfer stacking frame assembly; a mobile battery and a switch are provided on the right side of the transfer stacking frame assembly, and the lifting mechanism and the switch are electrically connected to the mobile battery;

[0006] Each of the aforementioned movement shock absorption devices includes a sleeve, and a push-up inner seat is fitted inside the cavity of the sleeve. A shock absorption seat assembly is fitted on the top surface of the push-up inner seat. Multiple locking swing arms are arranged in a cross pattern around the periphery of the push-up inner seat. The outer side of each locking swing arm rolls against the side wall of the inner cavity of the sleeve. A shock absorption placement seat is provided on the top surface of the shock absorption seat assembly. The main body of the movement is placed in the center of the top surface of the shock absorption placement seat. Two dustproof cover assemblies are movably covered on the top surface of the sleeve.

[0007] Each of the aforementioned edge-locking swing arms includes a first hinge seat and a swing arm assembly. A first return spring is fitted at the hinge between the first hinge seat and the swing arm assembly, and an edge-locking adjustment component is fitted laterally at the upper end of the swing arm assembly.

[0008] When the lifting mechanism retracts and descends through the reset of the inner seat, it pulls down the edge adjustment components on each edge swing arm to flexibly fix the edge of the movement body to prevent vibration and impact. At the same time, it resets and closes the two dust cover groups to protect the movement body from dust.

[0009] A further improvement is that a lifting and lowering cavity is provided through the center of the front side of the transfer and palletizing rack assembly, and multiple shock-absorbing device slots and first sliding rod openings are arrayed on the top surface of the transfer and palletizing rack assembly. A battery mounting cavity is provided on the right side of the transfer and palletizing rack assembly. Multiple support legs are provided on the bottom side of the transfer and palletizing rack assembly, and a notch is provided on the bottom surface of each support leg. Multiple positioning protrusions aligned with the notches are provided on the top side of the transfer and palletizing rack assembly.

[0010] A further improvement is that the top surface of the sleeve is provided with a lifting groove, and the groove wall is provided with a plurality of sloping push blocks arranged in a cross shape to roll against the edge swing arm. The bottom center of the lifting groove is provided with a second slide rod opening aligned with the first slide rod opening. The groove edge of the lifting groove is provided with a cover edge for the two dustproof cover assemblies to be closed.

[0011] A further improvement is that the inner seat includes an inner seat body, and a slide rod is vertically arranged in the middle of the bottom surface of the inner seat body for passing through the first slide rod passage and the second slide rod passage, and a first compression spring for resetting and pulling down the inner seat body is fitted at the lower end of the slide rod.

[0012] A further improvement is that the shock-absorbing seat assembly is composed of a shock-absorbing base and a buffer seat assembly.

[0013] The shock-absorbing base has a buffer cavity in the middle of its top surface, and the bottom of the buffer cavity has multiple stabilizing rod slots spaced apart.

[0014] The buffer seat assembly includes a buffer seat body, and a placement groove is provided in the middle of the top surface of the buffer seat body. A plurality of stabilizing rods and second compression springs are provided at intervals on the bottom surface of the buffer seat body to align and fit with the stabilizing rod grooves.

[0015] A further improvement is that the swing arm assembly includes a swing arm body, and a positioning wheel frame is horizontally arranged on the left arm of the swing arm body to roll against the inclined surface on the slope push block. The top surface of the swing arm body on the left and right edge swing arms is vertically arranged with a push cover wheel frame for pushing and rolling open the dust cover assembly. The upper end of the swing arm body is horizontally provided with an adjustment screw hole and a support rod slide.

[0016] A further improvement is that the edge-locking adjustment assembly includes a transverse frame, and the left side of the transverse frame is provided with an adjusting screw and a support rod respectively fitted onto the adjusting screw hole and the support rod slide. The top surface of the transverse frame is provided with an elastic pressure plate, which is an elastic metal sheet, and the bottom surface of the elastic pressure plate is provided with a deformable edge-locking block.

[0017] The deformation edge block has an L-shaped structure, and a first deformation pressure cavity is provided in the middle of the deformation edge block. A first deformation pressure column and a second deformation pressure column are integrally formed at intervals on the L-shaped surface of the deformation edge block. The deformation edge block is made of rubber.

[0018] A further improvement is that a second compression chamber is longitudinally opened on the front side of the shock-absorbing placement seat, and a positioning groove for positioning the main body of the movement is opened on the top surface of the shock-absorbing placement seat, and the shock-absorbing placement seat is made of rubber.

[0019] A further improvement is that the two dustproof faceplate assemblies are formed by a second hinge seat and a faceplate hinge, and a second return spring is fitted at the hinge between the second hinge seat and the faceplate to enable the faceplate to automatically return to its closed position.

[0020] A further improvement is that the lifting mechanism includes a telescopic device, and the top surface of the telescopic device is laterally provided with a horizontal push plate for moving and pushing against the bottom surface of each slide rod, and multiple slide columns are fitted on the left and right sides of the horizontal push plate.

[0021] A further improvement is that the main body of the movement, the adjusting screw, and the telescopic device are all existing technologies, and their structures will not be described in detail here.

[0022] The beneficial effects of this invention are:

[0023] This invention provides a shock-absorbing device for transferring watch movements. The device comprises a base, a lifting inner base, a shock-absorbing seat assembly, a locking swing arm, a shock-absorbing placement seat, and a dustproof cover assembly. These components are combined with a lifting mechanism, a movable battery, and an opening mechanism on a transfer and stacking rack assembly. The shock-absorbing device uses a lifting mechanism as the power source for lifting, unfolding, and opening the various shock-absorbing components, making operation simple and convenient. Furthermore, the locking and closing mechanisms of the shock-absorbing components utilize multiple springs as a reset force. Additionally, the transfer and stacking rack assembly has a multi-layer stacking function, allowing the transfer equipment to transfer a larger number of rack assemblies at once, reducing the space occupied by the transfer equipment.

[0024] Furthermore, the rolling and lifting movement of each locking arm on the sloped side wall of the sleeve cavity allows for the opening and closing of the locking arms, facilitating the placement of the movement body on the shock-absorbing mounting base and automatically forming a flexible clamping fixation. It also allows for the opening and automatic closing of the dust cover assembly for dust protection. Additionally, the shock-absorbing base assembly provides a buffering and downward adjustment function during the clamping fixation process, preventing excessive stress on the flexible clamping fixation of the movement body due to the interaction between the elastic pressure plate, deformable locking block, and shock-absorbing mounting base. Furthermore, during subsequent transfer, the elastic pressure plate... The deformation-resistant edge block, the shock-absorbing placement seat, and the shock-absorbing seat assembly work together in multiple ways to provide strong buffering and flexible shock absorption. This prevents vibration impact on the main body of the movement during transfer, which could cause deformation or misalignment of the core gears and hairspring. It also prevents the main body of the movement from shifting and causing bumps or squeezing, which could lead to deformation of the clamps or detachment of the bearings. Through the coordinated design of the above-mentioned components, a combination of buffering and flexible shock absorption is used to protect the main body of the movement from shock, ensure stable positioning during transfer, and provide dust protection. This significantly improves the safety performance of the main body of the movement during transfer. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of a shock-absorbing device for transferring a watch movement according to the present invention;

[0026] Figure 2 For the present invention Figure 1 Enlarged view of part A in the image;

[0027] Figure 3 For the present invention Figure 2 Enlarged view of part B in the image;

[0028] Figure 4 This is a schematic diagram of the transfer and palletizing rack assembly structure of the present invention;

[0029] Figure 5 This is a diagram showing the unfolded state of the shock absorption device of the movement of the present invention;

[0030] Figure 6 This is a schematic diagram of the sleeve structure of the present invention;

[0031] Figure 7 This is a schematic diagram of the inner seat structure of the present invention;

[0032] Figure 8 This is a schematic diagram of the shock-absorbing seat assembly structure of the present invention;

[0033] Figure 9 This is a schematic diagram of the swing arm assembly structure of the present invention;

[0034] Figure 10 This is a schematic diagram of the edge adjustment component structure of the present invention;

[0035] Figure 11This is a schematic diagram of the shock-absorbing placement seat structure of the present invention;

[0036] Figure 12 This is a diagram illustrating the effect of the cover-pushing wheel frame of the present invention pushing the cover open. Detailed Implementation

[0037] To make the technical means, creative features, objectives and effects of this invention easier to understand, the invention will be further described below in conjunction with specific embodiments.

[0038] Please see Figures 1-12 This invention provides a shock-absorbing device for transferring watch movements: its structure includes a transfer stacking frame 1, on the top surface of which multiple movement shock-absorbing devices 2 are arrayed and mounted. A lifting mechanism 3 for pushing each movement shock-absorbing device 2 upwards and opening is installed within the central cavity of the transfer stacking frame 1. A mobile battery 4 and a switch 5 are located on the right side of the transfer stacking frame 1. The lifting mechanism 3, switch 5, and mobile battery 4 are electrically connected. Each movement shock-absorbing device 2 includes a sleeve 21, within which a lifting inner seat 22 is mounted. A shock-absorbing seat assembly 23 is mounted on the top surface of the lifting inner seat 22. Multiple locking swing arms 24 are arranged in a cross pattern around the periphery of the lifting inner seat 22. The outer sides of each locking swing arm 24 roll against the inner wall of the sleeve 21. The top surface of the shock-absorbing seat assembly 23 is provided with a shock-absorbing placement seat 25, and the main body of the movement 26 is placed in the middle of the top surface of the shock-absorbing placement seat 25. The top surface of the sleeve 21 is movably covered by two dustproof cover assemblies 27. Each of the edge-locking swing arms 24 includes a first hinge seat 241 and a swing arm assembly 242. A first return spring 243 is fitted at the hinge between the first hinge seat 241 and the swing arm assembly 242. An edge-locking adjustment component 244 is horizontally fitted at the upper end of the swing arm assembly 242. When the lifting mechanism 3 retracts and descends after the inner seat 22, the edge-locking adjustment component 244 on each edge-locking swing arm 24 is pulled down and closed to flexibly lock and fix the edge of the main body of the movement 26 to prevent vibration and impact. At the same time, the two dustproof cover assemblies 27 are reset and closed to protect the main body of the movement 26 from dust.

[0039] The transfer palletizing rack assembly 1 has a lifting and movable cavity 11 through the middle of its front side, and the top surface of the transfer palletizing rack assembly 1 has multiple shock-absorbing device slots 12 and a first sliding rod opening 13. The right side of the transfer palletizing rack assembly 1 has a battery mounting cavity 14. The bottom side of the transfer palletizing rack assembly 1 has multiple support legs 15, and the bottom surface of each support leg 15 has a notch 16. The top side of the transfer palletizing rack assembly 1 has multiple positioning protrusions 17 aligned with the notch 16.

[0040] The top surface of the sleeve 21 is provided with a lifting groove 211, and multiple sloping push blocks 212 arranged in a cross pattern on the groove wall of the lifting groove 211 are rolled against the edge swing arm 24. The bottom center of the lifting groove 211 is provided with a second slide rod opening 213 aligned with the first slide rod opening 13. The groove edge of the lifting groove 211 is provided with a cover edge 214 for the two dustproof cover assemblies 27 to be closed.

[0041] The inner seat 22 includes an inner seat body 221, and a slide rod 222 is vertically arranged in the middle of the bottom surface of the inner seat body 221 for passing through the first slide rod opening 13 and the second slide rod opening 213. A first compression spring 223 for resetting and pulling down the inner seat body 221 is fitted at the lower end of the slide rod 222.

[0042] The shock absorber assembly 23 is composed of a shock absorber base 231 and a buffer assembly 232. The shock absorber base 231 has a buffer cavity 2311 in the middle of its top surface, and the bottom of the buffer cavity 2311 has a plurality of stabilizing rod slots 2312 spaced apart. The buffer assembly 232 includes a buffer body 2321, and the top surface of the buffer body 2321 has a placement slot 2322 in the middle. The bottom surface of the buffer body 2321 is provided with a plurality of stabilizing rods 2323 and a second compression spring 2324 that are aligned and fitted with the stabilizing rod slots 2312.

[0043] The swing arm assembly 242 includes a swing arm body 2421. A positioning wheel frame 2422 is horizontally arranged on the left arm of the swing arm body 2421 to roll against the inclined surface on the slope push block 212. A push cover wheel frame 2423 for pushing and rolling open the dust cover assembly 27 is vertically arranged on the top surface of the swing arm body 2421 on the left and right side swing arms 24. An adjustment screw hole 2424 and a support rod slide 2425 are horizontally opened at the upper end of the swing arm body 2421.

[0044] The edge-locking adjustment assembly 244 includes a transverse frame 2441. The left side of the transverse frame 2441 is horizontally provided with an adjusting screw 2442 and a support rod 2443, which are respectively fitted onto the adjusting screw hole 2424 and the support rod slide 2425. The top surface of the transverse frame 2441 is provided with an elastic pressure plate 2444, which is an elastic metal sheet. The bottom surface of the elastic pressure plate 2444 is provided with a deformable edge-locking block 2445, which is an L-shaped structure. A first deformable pressure cavity 24451 is opened in the middle of the deformable edge-locking block 2445. A first deformable pressure column 24452 and a second deformable pressure column 24453 are integrally formed at intervals on the L-shaped surface of the deformable edge-locking block 2445. The deformable edge-locking block 2445 is made of rubber.

[0045] The front side of the shock-absorbing placement seat 25 has a second compression chamber 251 longitudinally formed, and the top surface of the shock-absorbing placement seat 25 has a positioning groove 252 for positioning the main body 26 of the movement. The shock-absorbing placement seat 25 is made of rubber.

[0046] The two dustproof face cover assemblies 27 are hinged together by a second hinge seat 271 and a face cover 272. A second return spring 273 is fitted at the hinge between the second hinge seat 271 and the face cover 272 to enable the face cover 272 to automatically return to its closed position.

[0047] The lifting mechanism 3 includes a telescopic device 31, and the top surface of the telescopic device 31 is provided with a horizontal push plate 32 for moving and pushing against the bottom surface of each slide rod 222. Multiple slide columns 33 are fitted on the left and right sides of the horizontal push plate 32.

[0048] Working principle:

[0049] Before placing the main body 26 of the movement, press switch 5 to extend telescopic device 31, causing horizontal push plate 32 to rise and push inner seat 22, shock absorber assembly 23, edge swing arm 24, and shock absorber placement seat 25 to rise. At this time, under the action of the first return spring 243, each edge swing arm 24 will cause the movement wheel frame 2422 on the swing arm assembly 242 to open upward on the inclined surface of the slope push block 212. At the same time, the two push cover wheel frames 2423 on the left and right sides push and roll open the two dust cover assemblies 27 during the upward unfolding process, so that the shock absorber placement seat 25 rises and is fully exposed. (Refer to the attached document.) Figure 5 This facilitates the subsequent use of a robotic arm's flexible gripper or manual operation to grasp and align the main body 26 of the mechanism onto the positioning slot 252.

[0050] After the main body 26 of the movement is inserted, it retracts via the telescopic device 31. Under the downward pulling force provided by the first compression spring 223, the inner push seat 22, the shock absorber assembly 23, the edge-clamping swing arm 24, and the shock absorber placement seat 25 descend as a whole. At this time, the travel wheel frame 2422 on each edge-clamping swing arm 24 will move downward on the inclined surface of the slope push block 212, causing the edge-clamping adjustment component 244 to swing towards the main body 26 of the movement. This allows the first deformation pressure column 24452 and the second deformation pressure column 24453 on the L-shaped surface of the deformable edge-clamping block 2445 to clamp and fix the upper edge of the main body 26 of the movement. During the clamping and fixing process, the elastic pressure plate 2444, the deformable edge-clamping block 2445, and the shock absorber placement seat 25 will all undergo adaptive deformation. Furthermore, the shock absorber assembly 23 will also make adaptive auxiliary buffering adjustments to prevent excessive force on the flexible clamping and fixing of the movement body 26 by the cooperation between the elastic pressure plate 2444, the deformation clamping block 2445, and the shock absorber placement seat 25. Through the above-mentioned adaptive adjustments, the flexible clamping and positioning of the movement body 26 will not have a hard-press fixing problem. In the subsequent transfer process, the elastic pressure plate 2444, the deformation clamping block 2445, the shock absorber placement seat 25 and the shock absorber assembly 23 will cooperate in many ways to provide strong buffering and shock absorption and deformation flexible shock absorption, to prevent the core gear and hairspring from deforming and misaligning due to vibration impact, and to prevent the movement body 26 from shifting and causing bumps and squeezing, which could lead to deformation of the clamping plate and bearing detachment.

[0051] On the other hand, during the descent of the cover roller 2423, the cover 272 automatically closes under the action of the second return spring 273, providing gap protection against dust and foreign objects falling into the movement body 26 during the transfer process. The final placement of the movement body 26 within the cavity of the sleeve 21 is shown in the attached diagram. Figure 2 .

[0052] In addition, the edge adjustment component 244 is also designed with a lateral adjustment function, which can be used to flexibly press and fix the main body 26 of the movement body with various diameter specifications. The self-adaptive downward buffer of the shock-absorbing seat 23 can also facilitate the flexible pressing and fixing of the main body 26 of the movement body with various thickness specifications. It is only necessary to replace the shock-absorbing placement seat 25 with the appropriate specification positioning groove 252.

[0053] In addition, the transfer palletizing rack group 1 adopts a multi-layer stacking structure design, which reduces the space occupied by the transfer equipment and enables the transfer equipment to transfer more transfer palletizing rack groups 1 at one time, thereby improving the transfer efficiency of the main body 26.

[0054] Furthermore, each transfer palletizing rack group 1 has its own portable battery, allowing each transfer palletizing rack group 1 to be used directly and independently without the need for a separate power supply, making operation more convenient.

[0055] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0056] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A shock-absorbing device for transferring a watch movement, characterized in that: Its structure includes a transfer and palletizing frame assembly, and multiple mechanism shock absorption devices are arrayed on the top surface of the transfer and palletizing frame assembly. A lifting mechanism for pushing each mechanism shock absorption device to rise and open is installed in the central cavity of the transfer and palletizing frame assembly. A mobile battery and a switch are provided on the right side of the transfer and palletizing frame assembly. The lifting mechanism and the switch are electrically connected to the mobile battery. Each of the aforementioned movement shock absorption devices includes a sleeve, and a push-up inner seat is fitted inside the cavity of the sleeve. A shock absorption seat assembly is fitted on the top surface of the push-up inner seat. Multiple locking swing arms are arranged in a cross pattern around the periphery of the push-up inner seat. The outer side of each locking swing arm rolls against the side wall of the inner cavity of the sleeve. A shock absorption placement seat is provided on the top surface of the shock absorption seat assembly. The main body of the movement is placed in the center of the top surface of the shock absorption placement seat. Two dustproof cover assemblies are movably covered on the top surface of the sleeve. Each of the aforementioned edge-locking swing arms includes a first hinge seat and a swing arm assembly. A first return spring is fitted at the hinge between the first hinge seat and the swing arm assembly, and an edge-locking adjustment component is fitted laterally at the upper end of the swing arm assembly. When the lifting mechanism retracts and descends through the reset of the inner seat, it pulls down the edge adjustment components on each edge swing arm to flexibly fix the edge of the movement body to prevent vibration and impact. At the same time, it resets and closes the two dust cover groups to protect the movement body from dust.

2. The shock-absorbing device for transferring a watch movement according to claim 1, characterized in that: The transfer palletizing rack assembly has a lifting cavity through the center of its front side, and multiple shock-absorbing device slots and first slide rod openings are arrayed on the top surface of the transfer palletizing rack assembly. A battery mounting cavity is provided on the right side of the transfer palletizing rack assembly. Multiple support legs are provided on the bottom side of the transfer palletizing rack assembly, and each support leg has a notch on its bottom surface. Multiple positioning protrusions aligned with the notches are provided on the top side of the transfer palletizing rack assembly.

3. The shock-absorbing device for transferring a watch movement according to claim 2, characterized in that: The top surface of the sleeve is provided with a lifting groove, and the groove wall is provided with a plurality of sloping push blocks arranged in a cross shape to roll against the edge swing arm. The bottom center of the lifting groove is provided with a second slide rod opening aligned with the first slide rod opening. The groove edge of the lifting groove is provided with a cover edge for the two dustproof cover assemblies to be closed.

4. The shock-absorbing device for transferring a watch movement according to claim 3, characterized in that: The inner seat includes an inner seat body, and a slide rod is vertically arranged in the middle of the bottom surface of the inner seat body for passing through the first slide rod opening and the second slide rod opening. A first compression spring for resetting and pulling down the inner seat body is fitted at the lower end of the slide rod.

5. A shock-absorbing device for transferring a watch movement according to claim 4, characterized in that: The shock-absorbing seat assembly consists of a shock-absorbing base and a buffer seat assembly. The shock-absorbing base has a buffer cavity in the middle of its top surface, and the bottom of the buffer cavity has multiple stabilizing rod slots spaced apart. The buffer seat assembly includes a buffer seat body, and a placement groove is provided in the middle of the top surface of the buffer seat body. A plurality of stabilizing rods and second compression springs are provided at intervals on the bottom surface of the buffer seat body to align and fit with the stabilizing rod grooves.

6. A shock-absorbing device for transferring a watch movement according to claim 5, characterized in that: The swing arm assembly includes a swing arm body, and a positioning wheel frame is horizontally arranged on the left arm of the swing arm body to roll against the inclined surface on the slope push block. The top surface of the swing arm body on the left and right side swing arms is vertically arranged with a push cover wheel frame for pushing and rolling open the dust cover assembly. The upper end of the swing arm body is horizontally provided with an adjustment screw hole and a support rod slide.

7. A shock-absorbing device for transferring a watch movement according to claim 6, characterized in that: The edge-locking adjustment assembly includes a transverse frame, and the left side of the transverse frame is provided with an adjusting screw and a support rod respectively fitted onto the adjusting screw hole and the support rod slide. The top surface of the transverse frame is provided with an elastic pressure plate, which is an elastic metal sheet. The bottom surface of the elastic pressure plate is provided with a deformable edge-locking block. The deformation edge block has an L-shaped structure, and a first deformation pressure cavity is provided in the middle of the deformation edge block. A first deformation pressure column and a second deformation pressure column are integrally formed at intervals on the L-shaped surface of the deformation edge block. The deformation edge block is made of rubber.

8. A shock-absorbing device for transferring a watch movement according to claim 7, characterized in that: The front side of the shock-absorbing mounting base has a second compression chamber longitudinally opened, and the top surface of the shock-absorbing mounting base has a positioning groove for positioning the main body of the movement. The shock-absorbing mounting base is made of rubber.

9. A shock-absorbing device for transferring a watch movement according to claim 8, characterized in that: The two dustproof face cover assemblies are formed by a second hinge seat and a face cover hinged together. A second return spring is fitted at the hinge between the second hinge seat and the face cover to enable the face cover to automatically return to its closed position.

10. A shock-absorbing device for transferring a watch movement according to claim 9, characterized in that: The lifting mechanism includes a telescopic device, and the top surface of the telescopic device is laterally provided with a horizontal push plate for moving and pushing against the bottom surface of each slide rod, and multiple slide columns are fitted on the left and right sides of the horizontal push plate.

Citation Information

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