Automatic scribing mechanism for rearview mirror lens of motorcycle

By designing an automated dicing mechanism, precise cutting of motorcycle rearview mirror lenses was achieved, solving the problems of insufficient structural design and cutting precision in existing technologies, and improving production efficiency and the consistency of cutting quality.

CN224258516UActive Publication Date: 2026-05-19ZHEJIANG QIAOYU ENGINE PARTS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG QIAOYU ENGINE PARTS CO LTD
Filing Date
2025-05-27
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing automated slitting mechanism for motorcycle rearview mirror lenses has an inadequate structural design, insufficient cutting precision, and is unable to meet the requirements of high-precision lenses, and its production efficiency is low.

Method used

An automated dicing mechanism was designed, comprising a lens switching station, a dicing operating arm, a horizontal motion mechanism, a vertical motion mechanism, and a cutting blade angle adjustment mechanism. The position and angle of the cutting blade are adjusted through horizontal and vertical motion, and the cutting force is adjusted by a buffer spring to achieve precise cutting.

Benefits of technology

It improves the cutting precision and production efficiency of motorcycle rearview mirror lenses, ensures consistent cutting quality, reduces operational difficulty, and adapts to the needs of lenses with different materials and thicknesses.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224258516U_ABST
    Figure CN224258516U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of motorcycle rearview mirror lens processing, and particularly relates to an automatic scribing mechanism for a motorcycle rearview mirror lens. The automatic scribing device comprises a device body, an automatic scribing mechanism is arranged on the device body, the automatic scribing mechanism comprises a lens switching station and a scribing operation arm, the lens switching station is located below the device body, and the scribing operation arm is located above the lens switching station. An equipment operation box is arranged below the lens switching station, a lower station driving motor is installed in the equipment operation box, the lower station driving motor is in transmission connection with the lens switching station, and the scribing operation arm comprises a horizontal movement mechanism, a vertical movement mechanism and a cutting knife angle adjusting mechanism. According to the utility model, through the design of the automatic scribing mechanism, the quick and accurate cutting of the rearview mirror lens of the motorcycle is realized.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of motorcycle rearview mirror lens processing technology, and relates to an automated slitting mechanism for motorcycle rearview mirror lenses. Background Technology

[0002] Traditionally, the processing of motorcycle rearview mirror lenses has relied primarily on manual labor, a method that is inefficient and yields inconsistent quality. However, with the continuous development of automation technology, more and more industries are beginning to introduce automated equipment to improve production efficiency and product quality.

[0003] However, despite the numerous advantages brought by automated scouring mechanisms, existing automated scouring mechanisms for motorcycle rearview mirror lenses still have some shortcomings. For example, the structural design of some mechanisms is not optimized enough, and the cutting accuracy of some mechanisms still needs to be improved to meet the market demand for high-precision lenses. Utility Model Content

[0004] The purpose of this invention is to address the above-mentioned problems by providing an automated slitting mechanism for motorcycle rearview mirror lenses.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An automated scouring mechanism for motorcycle rearview mirror lenses includes a machine body on which an automated scouring mechanism is mounted. The automated scouring mechanism includes a lens switching station and a scouring operating arm. The lens switching station is located below the machine body, and the scouring operating arm is located above the lens switching station. A machine operation box is located below the lens switching station, and a lower station drive motor is installed inside the machine operation box. The lower station drive motor is connected to the lens switching station. The scouring operating arm includes a horizontal movement mechanism, a vertical movement mechanism, and a cutting blade angle adjustment mechanism. The horizontal movement mechanism is mounted on the top of the machine body, the vertical movement mechanism is movably mounted on the horizontal movement mechanism, and the cutting blade angle adjustment mechanism is located on the vertical movement mechanism.

[0007] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, the horizontal motion mechanism includes a support beam, a first motor, a slider, a drive screw, and a guide rail. The support beam is fixedly installed above the machine body, and the drive screw and guide rail are located on the support beam. The two ends of the drive screw and guide rail are connected to the support beam through mounting blocks.

[0008] In the aforementioned automated lens sliding mechanism for motorcycle rearview mirrors, the first motor is located on one side of the support beam and is connected to the drive screw. The slider is mounted on the drive screw and the guide rail, and is threadedly connected to the drive screw and slidably connected to the guide rail.

[0009] In the aforementioned automated lens slitting mechanism for motorcycle rearview mirrors, the vertical movement mechanism includes a fixed plate, a slide block, and an electric telescopic rod. The fixed plate is movably mounted on the slide block, and the fixed plate and the slide block are connected by a slide rail. The electric telescopic rod is fixedly mounted on the top of the fixed plate, and the bottom of the electric telescopic rod is connected to the slide block.

[0010] In the aforementioned automated sliding mechanism for motorcycle rearview mirror lenses, one side of the fixing plate is connected to the slider via a connecting block, and the slider is provided with mounting holes.

[0011] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, the cutting blade angle adjustment mechanism includes a cutting blade mounting base, a second motor, and a cutting blade. The cutting blade mounting base is movably mounted on the front side of the slide, and the second motor is fixedly mounted on the rear side of the slide. The second motor and the cutting blade mounting base are connected by a rotating shaft drive.

[0012] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, a pressure rod and a guide rod are movably mounted on the cutting blade mounting base. The bottom of the pressure rod is fixedly connected to the cutting blade, and a support block is fixedly mounted above the pressure rod and the guide rod.

[0013] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, a buffer spring is provided inside the cutting blade mounting base. The buffer spring is sleeved on the pressure rod, and a limit block is fixedly provided below the buffer spring. The limit block is fixedly connected to the pressure rod.

[0014] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, an adjusting screw is installed on the limiting block. The bottom of the adjusting screw is threadedly connected to the limiting block, and a rotating rod is installed on the top of the adjusting screw. The top of the rotating rod passes through the cutting blade mounting seat and is connected to the support block. The support block and the rotating rod are rotatably connected by a bearing, and an adjusting column is installed on the top of the rotating rod.

[0015] In the aforementioned automated slitting mechanism for motorcycle rearview mirror lenses, an operation panel is provided on the machine body, and the operation panel is connected to the lower station drive motor, the first motor, and the second motor respectively.

[0016] Compared with existing technologies, the advantages of this utility model are:

[0017] 1. This utility model achieves rapid and precise cutting of motorcycle rearview mirror lenses through the design of an automated dicing mechanism. This mechanism not only improves production efficiency but also ensures consistent cutting quality, meeting the needs of large-scale production. Simultaneously, automated operation reduces manual intervention, lowers operational difficulty, and enhances the stability and reliability of the production process.

[0018] 2. This invention allows for adjustment of the compression of the buffer spring by adjusting the adjusting pin on the rotating rod, thereby adjusting the pressure of the cutting blade. This adjustment ensures that lenses of different materials and thicknesses can achieve suitable cutting results.

[0019] Other advantages, objectives and features of this invention will be partly apparent from the following description, and partly understood by those skilled in the art through study and practice of this invention. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0021] Figure 2 This is a schematic diagram of the internal structure of this utility model.

[0022] Figure 3 This is a side view of the vertical motion mechanism of this utility model.

[0023] Figure 4 This is a schematic diagram of the internal structure of the cutting blade mounting base of this utility model.

[0024] In the diagram: 1. Equipment body; 2. Lens switching station; 3. Scoring operating arm; 4. Equipment control box; 5. Lower station drive motor; 6. Horizontal motion mechanism; 7. Vertical motion mechanism; 8. Cutting blade angle adjustment mechanism; 9. Support beam; 10. First motor; 11. Slider; 12. Drive screw; 13. Guide rail; 14. Fixing plate; 15. Slide seat; 16. Electric telescopic rod; 17. Cutting blade mounting base; 18. Second motor; 19. Pressure rod; 20. Guide rod; 21. Buffer spring; 22. Limit block; 23. Adjusting screw; 24. Rotating rod; 25. Support block. Detailed Implementation

[0025] The present invention will be further described below with reference to the accompanying drawings.

[0026] like Figure 1-4As shown, an automated scouring mechanism for motorcycle rearview mirror lenses includes a machine body 1. An automated scouring mechanism is mounted on the machine body 1. The automated scouring mechanism includes a lens switching station 2 and a scouring operating arm 3. The lens switching station 2 is located below the machine body 1, and the scouring operating arm 3 is located above the lens switching station 2. A machine operation box 4 is located below the lens switching station 2. A lower station drive motor 5 is installed inside the machine operation box 4 and is connected to the lens switching station 2. The scouring operating arm 3 includes a horizontal movement mechanism 6, a vertical movement mechanism 7, and a cutting blade angle adjustment mechanism 8. The horizontal movement mechanism 6 is mounted on the top of the machine body 1, the vertical movement mechanism 7 is movably mounted on the horizontal movement mechanism 6, and the cutting blade angle adjustment mechanism 8 is located on the vertical movement mechanism 7.

[0027] Furthermore, the horizontal motion mechanism 6 includes a support beam 9, a first motor 10, a slider 11, a drive screw 12, and a guide rail 13. The support beam 9 is fixedly installed above the equipment body 1. The drive screw 12 and the guide rail 13 are located on the support beam 9. The two ends of the drive screw 12 and the guide rail 13 are connected to the support beam 9 through mounting blocks.

[0028] Specifically, the first motor 10 is located on one side of the support beam 9, and the first motor 10 is connected to the drive screw 12. The slider 11 is mounted on the drive screw 12 and the guide rail 13. The slider 11 is threadedly connected to the drive screw 12 and slidably connected to the guide rail 13.

[0029] In this embodiment, the horizontal motion mechanism 6 is used to drive the dicing arm 3 to move in the horizontal direction, ensuring that the cutting blade can be accurately aligned with the position of the lens to be cut.

[0030] Furthermore, the vertical motion mechanism 7 includes a fixed plate 14, a slide 15, and an electric telescopic rod 16. The fixed plate 14 is movably mounted on the slide 15, and the fixed plate 14 and the slide 15 are connected by a slide rail. The electric telescopic rod 16 is fixedly mounted on the top of the fixed plate 14, and the bottom of the electric telescopic rod 16 is connected to the slide 15.

[0031] Specifically, one side of the fixing plate 14 is connected to the slider 11 via a connecting block, and the slider 11 is provided with mounting holes.

[0032] In this embodiment, the vertical motion mechanism 7 is responsible for further adjusting the position of the cutting blade in the vertical direction based on the horizontal motion mechanism 6, so as to achieve precise cutting of the lens.

[0033] Furthermore, the cutting blade angle adjustment mechanism 8 includes a cutting blade mounting base 17, a second motor 18, and a cutting blade. The cutting blade mounting base 17 is movably mounted on the front side of the slide 15, and the second motor 18 is fixedly mounted on the rear side of the slide 15. The second motor 18 and the cutting blade mounting base 17 are connected by a rotating shaft.

[0034] In this embodiment, the cutting blade angle adjustment mechanism 8 can adjust the angle of the cutting blade as needed to adapt to the cutting requirements of lenses of different shapes and sizes.

[0035] Furthermore, a pressure rod 19 and a guide rod 20 are movably mounted on the cutting blade mounting base 17. The bottom of the pressure rod 19 is fixedly connected to the cutting blade, and a support block 25 is fixedly mounted above the pressure rod 19 and the guide rod 20.

[0036] Specifically, the cutting blade mounting base 17 is provided with a buffer spring 21 inside, the buffer spring 21 is sleeved on the pressure rod 19, and a limit block 22 is fixedly provided below the buffer spring 21, the limit block 22 is fixedly connected to the pressure rod 19.

[0037] In this embodiment, the buffer spring 21 provides a buffering effect for the cutting blade, ensuring the smoothness of the cutting process.

[0038] Furthermore, an adjusting screw 23 is installed on the limiting block 22. The bottom of the adjusting screw 23 is threadedly connected to the limiting block 22. A rotating rod 24 is installed on the top of the adjusting screw 23. The top of the rotating rod 24 passes through the cutting blade mounting seat 17 and is connected to the support block 25. The support block 25 and the rotating rod 24 are rotatably connected by a bearing. An adjusting column is installed on the top of the rotating rod 24.

[0039] In this embodiment, the adjusting screw 23 can control the position of the limiting block 22. During the cutting process, the compression degree of the buffer spring 21 can be adjusted by adjusting the adjusting column on the rotating rod 24, thereby adjusting the pressure of the cutting blade.

[0040] Furthermore, the equipment body 1 is provided with an operation panel, which is connected to the lower station drive motor 5, the first motor 10 and the second motor 18 respectively.

[0041] In this embodiment, the movement of the lower station drive motor 5, the first motor 10, and the second motor 18 can be controlled via the operation panel.

[0042] The working principle of this utility model is as follows:

[0043] First, the operation panel on the machine body 1 is activated, sending signals to the lower station drive motor 5, the first motor 10, and the second motor 18. The lower station drive motor 5 starts, driving the lens switching station 2 to perform the lens switching operation. Simultaneously, the first motor 10 starts, rotating the drive screw 12. Since the slider 11 is threadedly connected to the drive screw 12, the slider 11 moves horizontally along the guide rail 13 under the rotation of the drive screw 12. The movement of the slider 11 causes the fixed plate 14, which is connected to it via a connecting block, to move, thereby driving the overall movement of the vertical motion mechanism 7.

[0044] In the vertical motion mechanism 7, the electric telescopic rod 16 is activated, pushing or pulling the fixed plate 14 to move vertically relative to the slide 15. This movement drives the overall movement of the cutting blade angle adjustment mechanism 8, allowing the cutting blade to approach the lens to be cut.

[0045] After the cutting blade approaches the lens, the second motor 18 starts, driving the cutting blade mounting base 17 to rotate via a rotating shaft, thereby adjusting the angle of the cutting blade. The rotation of the cutting blade mounting base 17 drives the rotation of the pressure rod 19 and guide rod 20 mounted on it, as well as the rotation of the cutting blade. At the same time, the buffer spring 21 provides a buffering effect for the cutting blade, ensuring smoothness during the cutting process.

[0046] During the cutting process, the compression of the buffer spring 21 can be adjusted by adjusting the adjusting pin on the rotating rod 24, thereby adjusting the pressure of the cutting blade. This adjustment ensures that lenses of different materials and thicknesses can achieve suitable cutting results.

[0047] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model.

[0048] Although this document frequently uses terms such as 1. equipment body; 2. lens switching station; 3. dicing operating arm; 4. equipment control box; 5. lower station drive motor; 6. horizontal motion mechanism; 7. vertical motion mechanism; 8. cutting blade angle adjustment mechanism; 9. support beam; 10. first motor; 11. slider; 12. drive screw; 13. guide rail; 14. fixing plate; 15. slide block; 16. electric telescopic rod; 17. cutting blade mounting base; 18. second motor; 19. pressure rod; 20. guide rod; 21. buffer spring; 22. limit block; 23. adjusting screw; 24. rotating rod; 25. support block, etc., the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. An automated lens swivel mechanism for motorcycle rearview mirrors, comprising a machine body (1), characterized in that, An automated dicing mechanism is provided on the equipment body (1). The automated dicing mechanism includes a lens switching station (2) and a dicing operating arm (3). The lens switching station (2) is located below the equipment body (1), and the dicing operating arm (3) is located above the lens switching station (2). An equipment operation box (4) is provided below the lens switching station (2). A lower station drive motor (5) is installed inside the equipment operation box (4). The lower station drive motor (5) is connected to the lens switching station (2) for transmission. The dicing operating arm (3) includes a horizontal motion mechanism (6), a vertical motion mechanism (7), and a cutting blade angle adjustment mechanism (8). The horizontal motion mechanism (6) is installed on the top of the equipment body (1). The vertical motion mechanism (7) is movably installed on the horizontal motion mechanism (6). The cutting blade angle adjustment mechanism (8) is located on the vertical motion mechanism (7).

2. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 1, characterized in that, The horizontal motion mechanism (6) includes a support beam (9), a first motor (10), a slider (11), a drive screw (12), and a guide rail (13). The support beam (9) is fixedly installed above the equipment body (1). The drive screw (12) and the guide rail (13) are located on the support beam (9). The two ends of the drive screw (12) and the guide rail (13) are connected to the support beam (9) through mounting blocks.

3. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 2, characterized in that, The first motor (10) is located on one side of the support beam (9). The first motor (10) is connected to the drive screw (12) in a transmission connection. The slider (11) is mounted on the drive screw (12) and the guide rail (13). The slider (11) is threadedly connected to the drive screw (12) and slidably connected to the guide rail (13).

4. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 3, characterized in that, The vertical motion mechanism (7) includes a fixed plate (14), a slide (15), and an electric telescopic rod (16). The fixed plate (14) is movably mounted on the slide (15), and the fixed plate (14) and the slide (15) are connected by a slide rail. The electric telescopic rod (16) is fixedly mounted on the top of the fixed plate (14), and the bottom of the electric telescopic rod (16) is connected to the slide (15).

5. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 4, characterized in that, One side of the fixing plate (14) is connected to the slider (11) via a connecting block, and the slider (11) is provided with mounting holes.

6. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 5, characterized in that, The cutting blade angle adjustment mechanism (8) includes a cutting blade mounting base (17), a second motor (18), and a cutting blade. The cutting blade mounting base (17) is movably mounted on the front side of the slide (15), and the second motor (18) is fixedly mounted on the rear side of the slide (15). The second motor (18) and the cutting blade mounting base (17) are connected by a rotating shaft.

7. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 6, characterized in that, A pressure rod (19) and a guide rod (20) are movably mounted on the cutting blade mounting base (17). The bottom of the pressure rod (19) is fixedly connected to the cutting blade, and a support block (25) is fixedly mounted above the pressure rod (19) and the guide rod (20).

8. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 7, characterized in that, The cutting blade mounting base (17) is provided with a buffer spring (21) inside. The buffer spring (21) is sleeved on the pressure rod (19). A limit block (22) is fixedly provided below the buffer spring (21). The limit block (22) is fixedly connected to the pressure rod (19).

9. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 8, characterized in that, An adjusting screw (23) is installed on the limiting block (22). The bottom of the adjusting screw (23) is threadedly connected to the limiting block (22). A rotating rod (24) is installed on the top of the adjusting screw (23). The top of the rotating rod (24) passes through the cutting blade mounting seat (17) and is connected to the support block (25). The support block (25) and the rotating rod (24) are rotatably connected by a bearing. An adjusting column is installed on the top of the rotating rod (24).

10. The automated lens slitting mechanism for motorcycle rearview mirrors according to claim 9, characterized in that, An operation panel is provided on the body (1) of the equipment, and the operation panel is connected to the lower station drive motor (5), the first motor (10) and the second motor (18) respectively.