Mobile phone optical lens polishing device
Through automated loading and fixing of mobile phone optical lens polishing devices combining vertical drive components and rotary drive components, the problem of low efficiency and accuracy in the prior art is solved, the lens surface type adaptability adjustment is realized, and the polishing efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202422287459.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing mobile phone optical lens polishing device has not achieved automatic loading, fixing and polishing, and the polishing efficiency and accuracy need to be improved, and the polishing column cannot be adaptively adjusted according to the convex or concave surface of the lens.
The loading mechanism, solid material parts and polishing mechanism are used to achieve automatic loading and fixing. Combined with the vertical drive assembly and the rotary drive assembly, the polishing column can be lifted and floatingly installed at the output end of the rotary drive assembly, adapting to different lens surface types.
It improves polishing efficiency and accuracy, meets the adaptive adjustment needs of different lens surface types, and is highly practical.
Smart Images

Figure CN223071086U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of devices for mobile phone optical lenses, in particular to a polishing device for mobile phone optical lenses. Background Art
[0002] Optical lenses for mobile phones need to be polished during the production and processing process. Optical lenses are divided into convex lenses, concave lenses and flat lenses. When polishing convex lenses and concave lenses, adjustments need to be made according to the convex or concave surface. The polishing devices in the prior art do not realize the automatic feeding, fixing and polishing of optical lenses by adopting a feeding mechanism, a solid material fixing part and a polishing mechanism. The polishing efficiency and polishing accuracy need to be improved. The polishing column is not installed on the output end of the rotary drive assembly in a liftable and floating manner, which is not convenient for adaptive adjustment according to the convex or concave surface of the optical lens. Therefore, in view of this current situation, there is an urgent need to develop a polishing device for mobile phone optical lenses to meet the actual use requirements. Summary of the Utility Model
[0003] In view of this, in view of the deficiencies of the prior art, the main purpose of the present utility model is to provide a polishing device for mobile phone optical lenses, which realizes the automatic feeding, fixing and polishing of optical lenses by adopting a feeding mechanism, a solid material fixing part and a polishing mechanism, improves the polishing efficiency and polishing accuracy, and is convenient for adaptive adjustment according to the convex or concave surface of the optical lens by installing the polishing column on the output end of the rotary drive assembly in a liftable and floating manner, and has strong practicability.
[0004] To achieve the above purpose, the present utility model adopts the following technical solutions:
[0005] A polishing device for mobile phone optical lenses includes a workbench, a solid material fixing part for fixing an optical lens, a feeding mechanism for feeding the optical lens onto the solid material fixing part, and a polishing mechanism for polishing the optical lens. The solid material fixing part is installed on the workbench; the feeding mechanism corresponds to the solid material fixing part; the polishing mechanism is located above the solid material fixing part; the polishing mechanism includes a vertical driving assembly, a rotary driving assembly and a polishing column. The rotary driving assembly is installed on the output end of the vertical driving assembly, and the polishing column is installed on the output end of the rotary driving assembly in a liftable and floating manner.
[0006] As a preferred solution: The polishing mechanism further includes an elastic member, which is located between the rotary driving assembly and the polishing column. The polishing column is installed on the output end of the rotary driving assembly in a liftable and floating manner through the elastic member; the polishing column has elasticity.
[0007] As a preferred solution: The rotary driving assembly includes a rotary driving cylinder and a rotary seat. The rotary driving cylinder is installed on the output end of the vertical driving assembly, the rotary seat is installed on the shaft end of the rotary driving cylinder, and the polishing column is detachably installed on the rotary seat.
[0008] As a preferred solution: The vertical driving assembly includes a support, a vertical driving cylinder, and a vertical sliding seat. The vertical driving cylinder is installed on the support, the vertical sliding seat is installed at the shaft end of the vertical driving cylinder, and the rotary driving cylinder is installed on the vertical sliding seat.
[0009] As a preferred solution: The feeding mechanism includes a transverse driving source, a transverse sliding seat, a vertical driving source, a vertical sliding seat, and a jaw cylinder. The transverse driving source is installed on the workbench, the transverse sliding seat is installed at the output end of the transverse driving source, the vertical driving source is installed on the transverse sliding seat, the vertical sliding seat is installed at the output end of the vertical driving source, and the jaw cylinder is installed on the vertical sliding seat.
[0010] As a preferred solution: The transverse driving source includes a transverse driving motor and a lead screw. The transverse driving motor is installed on the workbench, the lead screw is installed at the shaft end of the transverse driving motor, and the lead screw is rotationally engaged with the transverse sliding seat; the vertical driving source is a vertical driving cylinder, the vertical sliding seat is installed at the shaft end of the vertical driving cylinder, there are two jaw cylinders, and the two jaw cylinders are symmetrically installed on the vertical sliding seat.
[0011] As a preferred solution: The solid material piece is a suction cup, and an inward depression is formed on the upper side of the suction cup to form a material placing groove for placing the optical lens.
[0012] Compared with the prior art, the present invention has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solutions, by adopting the feeding mechanism, the solid material piece, and the polishing mechanism, the feeding, fixing, and polishing of the optical lens are realized automatically, improving the polishing efficiency and polishing accuracy; by adopting the vertical driving assembly and the rotary driving assembly, the vertical adjustment and rotation of the polishing column are realized, meeting the position requirements of the polishing column; by installing the polishing column in a liftable and floating manner at the output end of the rotary driving assembly, it is convenient to make adaptive adjustments according to the convex or concave surface of the optical lens, and the practicability is strong.
[0013] To more clearly illustrate the structural features and functions of the present invention, the following will be described in detail in combination with the drawings and specific embodiments. Description of the Drawings
[0014] Figure 1 It is a first - perspective three - dimensional structural schematic diagram of the mobile phone optical lens polishing device of the present invention;
[0015] Figure 2 It is a second - perspective three - dimensional structural schematic diagram of the mobile phone optical lens polishing device of the present invention;
[0016] Figure 3 It is a three - dimensional structural schematic diagram of the feeding mechanism of the present invention;
[0017] Figure 4 Schematic three-dimensional structure diagram of the rotation drive assembly and polishing column of the present utility model.
[0018] Explanation of the attached drawing reference numerals:
[0019] In the figure: 10, workbench; 20, solid material piece; 21, material placing groove; 30, feeding mechanism; 31, transverse movement drive source; 32, transverse movement sliding seat; 33, vertical movement drive source; 34, vertical movement sliding seat; 35, jaw cylinder; 40, polishing mechanism; 41, vertical drive assembly; 411, support; 412, vertical drive cylinder; 413, vertical sliding seat; 42, rotation drive assembly; 421, rotation drive cylinder; 422, rotation seat; 43, polishing column. Specific embodiments
[0020] As shown in the present utility model Figures 1 to 4 A polishing device for mobile phone optical lenses includes a workbench 10, a solid material piece 20 for fixing the optical lens, a feeding mechanism 30 for feeding the optical lens onto the solid material piece 20, and a polishing mechanism 40 for polishing the optical lens. Among them:
[0021] The solid material piece 20 is installed on the workbench 10; the feeding mechanism 30 corresponds to the solid material piece 20; the polishing mechanism 40 is located above the solid material piece 20; the polishing mechanism 40 includes a vertical drive assembly 41, a rotation drive assembly 42, and a polishing column 43. The rotation drive assembly 42 is installed at the output end of the vertical drive assembly 41, and the polishing column 43 is installed at the output end of the rotation drive assembly 42 in a liftable and floating manner.
[0022] The feeding mechanism 30 feeds the optical lens onto the solid material piece 20. The optical lens is fixed on the solid material piece 20. The vertical drive assembly 41 of the polishing mechanism 40 drives the rotation drive assembly 42 and the polishing column 43 to move up and down, so that the polishing column 43 is docked with the optical lens. The rotation drive assembly 42 drives the polishing column 43 to rotate to polish the optical lens. The polishing column 43 is installed at the output end of the rotation drive assembly 42 in a liftable and floating manner, which is convenient for adaptive adjustment according to the concave or convex surface of the optical lens.
[0023] By adopting the feeding mechanism 30, the solid material piece 20, and the polishing mechanism 40, the feeding, fixing, and polishing of the optical lens are realized automatically, improving the polishing efficiency and polishing accuracy. By adopting the vertical drive assembly 41 and the rotation drive assembly 42, the vertical adjustment and rotation of the polishing column 43 are realized, meeting the position requirements of the polishing column 43. By installing the polishing column 43 at the output end of the rotation drive assembly 42 in a liftable and floating manner, it is convenient for adaptive adjustment according to the convex or concave surface of the optical lens, and it has strong practicability.
[0024] The loading mechanism 30 includes a transverse movement drive source 31, a transverse movement slide 32, a vertical movement drive source 33, a vertical movement slide 34, and a jaw cylinder 35. The transverse movement drive source 31 is installed on the workbench 10. The transverse movement slide 32 is installed at the output end of the transverse movement drive source 31. The vertical movement drive source 33 is installed on the transverse movement slide 32. The vertical movement slide 34 is installed at the output end of the vertical movement drive source 33. The jaw cylinder 35 is installed on the vertical movement slide 34.
[0025] The transverse movement drive source 31 drives the transverse movement slide 32 to move horizontally. The vertical movement drive source 33 drives the vertical movement slide 34 to move vertically. The jaw cylinder 35 clamps the optical lens.
[0026] The transverse movement drive source 31 includes a transverse movement drive motor and a lead screw. The transverse movement drive motor is installed on the workbench 10. The lead screw is installed at the shaft end of the transverse movement drive motor. The lead screw is rotationally engaged with the transverse movement slide 32. The vertical movement drive source 33 is a vertical movement drive cylinder. The vertical movement slide 34 is installed at the shaft end of the vertical movement drive cylinder. There are two jaw cylinders 35, and the two jaw cylinders 35 are symmetrically installed on the vertical movement slide 34.
[0027] The material fixing member 20 is a suction cup. An inward depression is formed on the upper side of the suction cup to form a material placing groove 21 for placing the optical lens.
[0028] By using a transverse movement drive motor and a lead screw, the accuracy of the position movement of the transverse movement slide 32 is improved. By using the material placing groove 21, the placement stability of the optical lens is ensured.
[0029] The polishing mechanism 40 further includes an elastic member. The elastic member is located between the rotary drive assembly 42 and the polishing column 43. The polishing column 43 is installed at the output end of the rotary drive assembly 42 in a liftable and floating manner through the elastic member. The polishing column 43 has elasticity.
[0030] The elastic member is a spring. The upper end of the spring is connected to the output end of the rotary drive assembly 42. The lower end of the spring is connected to the upper end of the polishing column 43. The liftable and floating of the polishing column 43 is realized by using the spring.
[0031] The rotary drive assembly 42 includes a rotary drive cylinder 421 and a rotary seat 422. The rotary drive cylinder 421 is installed at the output end of the vertical drive assembly 41. The rotary seat 422 is installed at the shaft end of the rotary drive cylinder 421. The polishing column 43 is detachably installed on the rotary seat 422.
[0032] The vertical drive assembly 41 includes a support 411, a vertical drive cylinder 412, and a vertical slide 413. The vertical drive cylinder 412 is installed on the support 411. The vertical slide 413 is installed at the shaft end of the vertical drive cylinder 412. The rotary drive cylinder 421 is installed on the vertical slide 413.
[0033] The vertical drive assembly 41 facilitates vertical position adjustment of the rotary drive assembly 42 , and the rotary drive assembly 42 facilitates driving the polishing column 43 to rotate.
[0034] The usage and principle of the mobile phone optical lens polishing device are as follows:
[0035] The loading mechanism loads the optical lens onto the solid material part, and the optical lens is fixed on the solid material part. The vertical driving component of the polishing mechanism drives the rotating driving component and the polishing column to move up and down, so that the polishing column is connected to the optical lens; the rotating driving component drives the polishing column to rotate to polish the optical lens. The polishing column can be installed in a lifting and floating manner at the output end of the rotating driving component, so as to facilitate adaptive adjustment according to the concave or convex surface of the optical lens.
[0036] The design focus of the utility model is that the loading, fixing and polishing of the optical lens are automatically realized by adopting a feeding mechanism, a fixing part and a polishing mechanism, thereby improving the polishing efficiency and polishing accuracy; the vertical adjustment and rotation of the polishing column are realized by adopting a vertical drive component and a rotary drive component, thereby meeting the position requirements of the polishing column; and by installing the polishing column in a liftable and floating manner at the output end of the rotary drive component, it is convenient to make adaptive adjustments according to the convex or concave surface of the optical lens, and the utility model is highly practical.
[0037] The above description is only a preferred embodiment of the present invention and does not limit the technical scope of the present invention. Therefore, any slight modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. A polishing device for mobile phone optical lenses, characterized in that: It includes a workbench, a fixing member for fixing an optical lens, a feeding mechanism for feeding the optical lens onto the fixing member, and a polishing mechanism for polishing the optical lens. The fixing member is installed on the workbench; the feeding mechanism corresponds to the fixing member; the polishing mechanism is located above the fixing member; the polishing mechanism includes a vertical driving component, a rotation driving component, and a polishing column. The rotation driving component is installed at the output end of the vertical driving component, and the polishing column is installed on the output end of the rotation driving component in a liftable and floating manner.
2. The mobile phone optical lens polishing device according to claim 1, wherein: The polishing mechanism further includes an elastic member. The elastic member is located between the rotation driving component and the polishing column. The polishing column is installed on the output end of the rotation driving component in a liftable and floating manner through the elastic member; the polishing column has elasticity.
3. The mobile phone optical lens polishing device according to claim 1, characterized in that: The rotation driving component includes a rotation driving cylinder and a rotation seat. The rotation driving cylinder is installed at the output end of the vertical driving component, the rotation seat is installed at the shaft end of the rotation driving cylinder, and the polishing column is detachably installed on the rotation seat.
4. The mobile phone optical lens polishing device according to claim 3, wherein: The vertical driving component includes a support, a vertical driving cylinder, and a vertical sliding seat. The vertical driving cylinder is installed on the support, the vertical sliding seat is installed at the shaft end of the vertical driving cylinder, and the rotation driving cylinder is installed on the vertical sliding seat.
5. The mobile phone optical lens polishing device according to claim 1, characterized in that: The feeding mechanism includes a transverse movement driving source, a transverse movement sliding seat, a vertical movement driving source, a vertical movement sliding seat, and a jaw cylinder. The transverse movement driving source is installed on the workbench, the transverse movement sliding seat is installed at the output end of the transverse movement driving source, the vertical movement driving source is installed on the transverse movement sliding seat, the vertical movement sliding seat is installed at the output end of the vertical movement driving source, and the jaw cylinder is installed on the vertical movement sliding seat.
6. The mobile phone optical lens polishing device according to claim 5, wherein: The transverse movement driving source includes a transverse movement driving motor and a lead screw. The transverse movement driving motor is installed on the workbench, the lead screw is installed at the shaft end of the transverse movement driving motor, and the lead screw is rotationally matched with the transverse movement sliding seat; the vertical movement driving source is a vertical movement driving cylinder, the vertical movement sliding seat is installed at the shaft end of the vertical movement driving cylinder, and there are two jaw cylinders, and the two jaw cylinders are symmetrically installed on the vertical movement sliding seat.
7. The mobile phone optical lens polishing device according to claim 1, characterized in that: The fixing member is a suction cup, and an inward depression is formed on the upper side of the suction cup to form a material placing groove for placing the optical lens.