A grinding mortar for processing optical lenses

By designing a grinding bowl with automatic clamping and cleaning functions, the problems of unstable installation and inconvenient cleaning of the grinding bowl are solved, and an efficient lens processing process is achieved.

CN117226652BActive Publication Date: 2025-09-12JIANGXI CHAOLIAN OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202311355302.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-19
Publication Date
2025-09-12
Estimated Expiration
2043-10-19

AI Technical Summary

Technical Problem

The existing grinding mortar has poor installation stability and is inconvenient to clean, resulting in low processing efficiency and the equipment needs to be shut down for manual cleaning.

Method used

A grinding bowl for optical lens processing is designed, which includes a driving component, a flipping component, a mounting component, a transmission clamping component and a cleaning component. The automatic clamping, flipping and cleaning functions are used to achieve the continuity and efficiency of the grinding process.

Benefits of technology

The stable installation and efficient cleaning of the grinding bowl are achieved, equipment downtime is avoided, and processing efficiency and continuity are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a grinding bowl for optical lens processing, relating to the technical field of optical lens processing equipment. The present invention comprises: a drive assembly and a grinding bowl, wherein the drive assembly can be mounted on the rotating mechanism of an optical lens polishing machine, a grinding shaft is provided at the bottom of the grinding bowl, and a mounting block is provided at the bottom of the outer side of the grinding shaft; a flip assembly, wherein the flip assembly is provided on the outer side of the drive assembly; a mounting assembly, wherein mounting assemblies are provided at both ends of the flip assembly; a transmission clamping assembly, wherein the transmission clamping assembly is provided at the top of the drive assembly; and a cleaning assembly, wherein the cleaning assembly is provided at the bottom of the drive assembly. According to the present invention, through the arrangement of the drive assembly, the drive assembly simultaneously drives the transmission clamping assembly and the cleaning assembly to rotate, thereby simultaneously driving the grinding bowl to rotate and cleaning the used grinding bowl, thereby achieving high processing efficiency.
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Description

Technical Field

[0001] The present invention relates to the technical field of optical lens processing equipment, and in particular to a grinding mortar for optical lens processing. Background Art

[0002] Optical lens processing includes rough grinding, fine grinding, polishing, inspection, coring, and coating. Fine grinding requires placing the lens on a grinding bowl and then polishing it with a grinding dish. The grinding bowl and grinding dish polish the front and back of the lens respectively. During the polishing process, water containing polishing powder is injected into the grinding bowl. The grinding bowl and grinding dish rotate continuously in opposite directions to drive the polishing powder to adhere to the lens for polishing.

[0003] A Chinese patent (application number: CN202222036772.3) discloses an optical lens grinding bowl, which includes a bowl body and an arc-shaped grinding disc. The arc-shaped grinding disc is arranged on the top of the bowl body to form a grinding bowl, and the bottom of the bowl body is connected to a flange; the bottom of the arc-shaped grinding disc is connected to a positioning block, and the bottom of the arc-shaped grinding disc is provided with a mounting platform close to the inner wall. A mounting rod is movably provided in the mounting platform, and a mounting hole is provided on the side of the positioning block. One end of the mounting rod passes through the mounting platform and is provided in the mounting hole. The mounting rod is restricted in the bowl body by a locking mechanism.

[0004] This patent and the prior art have the following technical problems in actual use:

[0005] The grinding mortar is installed by inserting a mounting rod on the mortar body into a mounting hole. To remove the curved grinding disc, the mounting rod is simply pulled out of the mounting hole. However, manual installation not only provides poor firmness but can sometimes make it difficult to install properly, causing the mortar to fall out during use. Furthermore, during actual use, the mortar contains a large amount of grinding debris. To extend the lifespan of the mortar, the mortar must be cleaned after disassembly before preservation. However, existing mortars require manual secondary handling after disassembly, forcing the machine to shut down and wait for manual cleaning before processing another set of lenses, reducing processing efficiency and making the process inconvenient. Summary of the Invention

[0006] The purpose of the present invention is to solve the problems of poor installation stability of the grinding bowl, inability to clean the grinding bowl, and inconvenient processing. The present invention provides a grinding bowl for optical lens processing.

[0007] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:

[0008] A grinding bowl for optical lens processing, comprising: a drive assembly and a grinding bowl, wherein the drive assembly can be mounted on a rotating mechanism of an optical lens polishing machine; a grinding shaft is provided at the bottom of the grinding bowl, and a mounting block is provided at the bottom of the outer side of the grinding shaft;

[0009] A flip assembly is provided on the outside of the driving assembly;

[0010] Mounting components, both ends of the flip assembly are provided with mounting components, the grinding shaft can be plugged into the mounting components, and the mounting block can be snapped into the mounting components;

[0011] A transmission clamping assembly is provided on the top of the driving assembly for automatically clamping the grinding bowl;

[0012] A cleaning component is provided at the bottom of the driving component for cleaning the grinding bowl.

[0013] Furthermore, the driving assembly includes:

[0014] A mounting box, wherein the mounting box is mounted on a rotating mechanism of the optical lens polishing machine via bolts;

[0015] A sleeve shaft is rotatably mounted on the outer side of the mounting box, and the sleeve shaft can be sleeved on the output shaft of the rotating mechanism;

[0016] A keyway is provided on the inner wall of the sleeve shaft;

[0017] A driving bevel gear is rotatably mounted inside the mounting box, and the driving bevel gear is fixedly connected to the sleeve shaft;

[0018] A driven bevel gear is rotatably mounted inside the mounting box, and the driven bevel gear is meshed with the driving bevel gear.

[0019] Furthermore, the flip assembly includes:

[0020] A fixed shaft is welded to the outside of the mounting box;

[0021] A turning rod is rotatably mounted on the outer side of the fixed shaft;

[0022] A fixed gear rod, the outer side of the fixed shaft is fixedly connected to a fixed gear rod, the fixed gear rod is located on the side of the flip rod away from the installation box, and the top and bottom of the fixed gear rod are both provided with arc-shaped gear teeth;

[0023] A rotating wheel is rotatably mounted on the side of the flip rod away from the mounting box. Two groups of rotating wheels are provided, and both groups of rotating wheels can mesh with the arc-shaped gear teeth.

[0024] A rotating shaft is rotatably installed on one side of the flip rod close to the installation box, and the rotating shaft is fixedly connected to the rotating wheel.

[0025] Furthermore, two groups of jacks are provided inside the flip rod, and the two groups of jacks are distributed in a circle. Pins are inserted into the inside of the jacks, and a socket capable of receiving the pins is provided on the outside of the installation box.

[0026] Furthermore, the installation component includes:

[0027] A mounting seat, the outer side of the rotating shaft is fixedly connected with the mounting seat;

[0028] A top spring is provided on the top of the mounting seat;

[0029] A top ring is provided on the top of the top spring;

[0030] An installation shaft is rotatably installed inside the mounting seat;

[0031] A friction top groove is formed at the bottom of the mounting seat, and the bottom of the mounting shaft extends into the friction top groove;

[0032] A slide groove is provided on the inner wall of the mounting shaft so that the mounting block can pass through the slide groove;

[0033] A card slot is provided at the bottom of the installation shaft, and the installation card block can be snapped into the card slot.

[0034] Furthermore, the transmission clamping assembly includes:

[0035] A fixed outer ring, the top of the installation box is fixedly connected with a fixed outer ring;

[0036] A limiting inner ring is rotatably mounted inside the fixed outer ring;

[0037] A guide post is provided on the top of the limiting inner ring;

[0038] A lifting screw is rotatably mounted on the top of the mounting box, and the lifting screw is fixedly connected to the driven bevel gear;

[0039] A lifting threaded sleeve, wherein the outer side of the lifting screw is threadedly connected to the lifting threaded sleeve;

[0040] A guide block is provided on the outside of the lifting threaded sleeve, and the guide block is sleeved on the outside of the guide column;

[0041] A top block is provided on the top of the lifting threaded sleeve, and the top block can be inserted into the friction top groove.

[0042] Furthermore, a friction protrusion is provided on the top of the top block.

[0043] Furthermore, the transmission clamping assembly also includes:

[0044] A locking groove is provided on the outer side of the inner limiting ring;

[0045] A locking rod, wherein a through hole is provided inside the fixed outer ring, and a locking rod is inserted into the through hole. The locking rod can be snapped into the locking groove, and the end of the locking rod close to the locking groove is tapered;

[0046] A locking spring is provided between the locking rod and the fixed outer ring;

[0047] A positioning hole is provided on the top of the locking rod;

[0048] A positioning rod, wherein a positioning hole is provided on the top of the fixed outer ring, the positioning hole is connected to the through hole, and a positioning rod is inserted into the positioning hole;

[0049] A positioning spring is provided between the positioning rod and the fixed outer ring.

[0050] Furthermore, the cleaning component includes:

[0051] A driving ring, wherein the bottom of the mounting box is fixedly connected with the driving ring;

[0052] Wave groove: the bottom of the driving ring is provided with a wave groove;

[0053] A transmission shaft is rotatably mounted inside the drive ring and is fixedly connected to the driven bevel gear;

[0054] A mounting rod, the bottom of the transmission shaft is hinged with a mounting rod, and a torsion spring is provided at the hinge of the mounting rod;

[0055] A cleaning brush is installed at the bottom of the mounting rod;

[0056] A shift rod is provided on the outside of the mounting rod and is pressed into the wave groove.

[0057] The beneficial effects of the present invention are as follows:

[0058] 1. The present invention provides a transmission clamping assembly and a cleaning assembly at both ends of the bottom of the driving assembly, and both the transmission clamping assembly and the cleaning assembly are powered by the driving assembly. This can drive the grinding bowl to rotate to achieve the lens grinding effect, and can also clean the used grinding bowl. The device only needs to be flipped over to immediately grind another set of lenses. This has a compact structure and high processing efficiency.

[0059] 2. The present invention, through the arrangement of the flip assembly and the installation assembly, can automatically remove the debris in the grinding bowl when the grinding bowl is driven to rotate downward, so that the debris will not cause secondary damage to the grinding bowl during subsequent cleaning. This not only improves the subsequent cleaning efficiency, but also does not require equipment shutdown when the grinding bowl is disassembled when it is rotated downward, further improving processing efficiency.

[0060] 3. The present invention, through the arrangement of the transmission clamping assembly, can utilize the driving force of the grinding bowl to clamp the grinding bowl in advance, which not only has good clamping tightness, but also will not cause the situation of improper installation. If the grinding bowl is not properly installed, it will not be able to rotate normally, and the installation stability is high. BRIEF DESCRIPTION OF THE DRAWINGS

[0061] Figure 1 It is an overall schematic diagram of the present invention;

[0062] Figure 2 Schematic diagram of the internal structure of the drive assembly of the present invention;

[0063] Figure 3 is a schematic diagram of the flip assembly of the present invention;

[0064] Figure 4 is a schematic diagram of the installation assembly of the present invention from a first perspective;

[0065] Figure 5 is a schematic diagram of the installation assembly of the present invention from a second viewing angle;

[0066] Figure 6 is a schematic diagram of the transmission clamping assembly of the present invention;

[0067] Figure 7 is a schematic diagram of the cleaning assembly of the present invention;

[0068] Figure 8 It is a schematic diagram of a grinding mortar of the present invention.

[0069] Figure numerals: 1, driving assembly; 11, mounting box; 12, sleeve shaft; 13, keyway; 14, driving bevel gear; 15, driven bevel gear; 16, socket; 2, flip assembly; 21, fixed shaft; 22, flip rod; 23, fixed gear rod; 24, rotating wheel; 25, rotating shaft; 26, socket; 27, latch; 3, mounting assembly; 31, mounting seat; 32, top spring; 33, top ring; 34, mounting shaft; 35, friction top groove; 36, slide groove; 37, card slot; 4, transmission clamping assembly; 41, Fixed outer ring; 42. Limiting inner ring; 43. Guide column; 44. Lifting screw; 45. Lifting threaded sleeve; 46. Guide block; 47. Top block; 48. Friction protrusion; 49. Locking groove; 410. Locking rod; 411. Locking spring; 412. Positioning hole; 413. Positioning rod; 414. Positioning spring; 5. Cleaning assembly; 51. Drive ring; 52. Wave groove; 53. Transmission shaft; 54. Mounting rod; 55. Cleaning brush; 56. Push rod; 6. Grinding bowl; 7. Grinding shaft; 8. Mounting block. DETAILED DESCRIPTION

[0070] To make the objectives, technical solutions and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.

[0071] A grinding mortar for optical lens processing according to a preferred embodiment of the present invention will be described in detail below. Figures 1-8 As shown, a grinding bowl for optical lens processing includes: a driving component 1 and a grinding bowl 6, the driving component 1 can be installed on the rotating mechanism of the optical lens polishing machine, the bottom of the grinding bowl 6 is provided with a grinding shaft 7, and the bottom of the outer side of the grinding shaft 7 is provided with a mounting block 8, the outer side of the driving component 1 is provided with a flip component 2, and both ends of the flip component 2 are provided with mounting components 3, the grinding shaft 7 can be inserted into the mounting component 3, and the mounting block 8 can be clamped in the mounting component 3, the top of the driving component 1 is provided with a transmission clamping component 4 for automatically clamping the grinding bowl 6, and the bottom of the driving component 1 is provided with a cleaning component 5 for cleaning the grinding bowl 6.

[0072] First, install the drive component 1 on the rotating mechanism of the optical lens polishing machine, and then install the two sets of grinding bowls 6 to be used on the two sets of mounting components 3. At this time, control the rotation mechanism to operate, and the rotation mechanism gives driving force to the drive component 1. The drive component 1 drives the transmission clamping component 4 to operate. The transmission clamping component 4 clamps the grinding bowl 6 and drives the grinding bowl 6 to rotate. At this time, the external lens clamping device drives the lens to descend into the grinding bowl 6. As the grinding bowl 6 rotates relative to the lens, the lens is polished.

[0073] After the grinding is completed, the flip component 2 is controlled to rotate, and the flip component 2 drives the two groups of mounting components 3 to flip, and the two groups of mounting components 3 drive the two groups of grinding bowls 6 to change positions. The switching is convenient and the next group of lenses can be processed without stopping. At the same time, the grinding bowl 6 flips to dump the internal grinding debris. When the rotation mechanism is controlled to run again, the rotation mechanism gives driving force to the driving component 1, and the driving component 1 drives the transmission clamping component 4 and the cleaning component 5 to run at the same time. The grinding bowl 6 can be cleaned while the lens is polished, and the processing is convenient.

[0074] Furthermore, the drive assembly 1 includes: a mounting box 11, a sleeve shaft 12, a keyway 13, a driving bevel gear 14 and a driven bevel gear 15. The mounting box 11 is mounted on the rotating mechanism of the optical lens polishing machine by bolts. The outer side of the mounting box 11 is rotatably mounted with a sleeve shaft 12, and the sleeve shaft 12 can be sleeved on the output shaft of the rotating mechanism. A keyway 13 is provided on the inner wall of the sleeve shaft 12. The inner side of the mounting box 11 is rotatably mounted with a driving bevel gear 14, and the driving bevel gear 14 is fixedly connected to the sleeve shaft 12. The inner side of the mounting box 11 is rotatably mounted with a driven bevel gear 15, and the driven bevel gear 15 is meshed with the driving bevel gear 14.

[0075] During use, the mounting box 11 is installed on the rotating mechanism of the optical lens polishing machine by means of bolts, and then the sleeve shaft 12 is sleeved on the output shaft of the rotating mechanism and connected with the keyway 13 using the shaft key. When the rotating mechanism is running, the output shaft of the rotating mechanism drives the sleeve shaft 12 to rotate, the sleeve shaft 12 drives the active bevel gear 14 to rotate, the active bevel gear 14 drives the driven bevel gear 15 to rotate, and the driven bevel gear 15 can simultaneously drive the transmission clamping assembly 4 and the cleaning assembly 5 to operate.

[0076] Furthermore, the flip assembly 2 includes: a fixed shaft 21, a flip rod 22, a fixed gear rod 23, a rotating wheel 24 and a rotating shaft 25. The fixed shaft 21 is welded to the outside of the installation box 11, and the flip rod 22 is rotatably installed on the outside of the fixed shaft 21. The fixed gear rod 23 is fixedly connected to the outside of the fixed shaft 21. The fixed gear rod 23 is located on the side of the flip rod 22 away from the installation box 11. The top and bottom of the fixed gear rod 23 are provided with arc-shaped gear teeth. The rotating wheel 24 is rotatably installed on the side of the flip rod 22 away from the installation box 11. There are two groups of rotating wheels 24, and both groups of rotating wheels 24 can engage with the arc-shaped gear teeth. The rotating shaft 25 is rotatably installed on the side of the flip rod 22 close to the installation box 11, and the rotating shaft 25 is fixedly connected to the rotating wheel 24.

[0077] When the grinding bowl 6 needs to be switched, the flip rod 22 is rotated, and the flip rod 22 drives the mounting assembly 3 to rotate through the rotating shaft 25, and the mounting assembly 3 drives the grinding bowl 6 to rotate. When the rotating wheel 24 rotates to the arc-shaped gear position, the arc-shaped gear drives the rotating wheel 24 to rotate, and the rotating wheel 24 drives the rotating shaft 25 to rotate, and the rotating shaft 25 drives the mounting assembly 3 to rotate, and the mounting assembly 3 drives the grinding bowl 6 to rotate relative to the flip rod 22, changing the direction of the grinding part of the grinding bowl 6, so that when the grinding bowl 6 is rotated to the top or bottom of the mounting box 11, the grinding part is always facing upward, ensuring that grinding and cleaning can be carried out at the same time.

[0078] At the same time, when the wheel 24 rotates to the bottom arc-shaped gear position, the arc-shaped gear teeth drive the wheel 24 to rotate, the wheel 24 drives the rotating shaft 25 to rotate, the rotating shaft 25 drives the mounting assembly 3 to rotate, and the mounting assembly 3 drives the grinding bowl 6 to rotate. At this time, the grinding part of the grinding bowl 6 rotates from top to bottom, and then rotates to the top, so that the grinding bowl 6 can automatically dump the grinding debris, and the switching effect is good.

[0079] Furthermore, two groups of jacks 26 are provided inside the flip rod 22 , and the two groups of jacks 26 are distributed in a circle. Pins 27 are inserted into the jacks 26 , and a socket 16 capable of receiving the pins 27 is provided on the outside of the installation box 11 .

[0080] When the flip rod 22 is flipped over, the pin 27 is inserted into the socket 16. The pin 27 limits the rotation of the flip rod 22, so that the flip rod 22 can maintain a stable vertical state. At this time, since the flip rod 22 cannot rotate, the rotating wheel 24 cannot rotate under the restriction of the arc gear teeth. The rotating wheel 24 limits the rotation of the mounting assembly 3 through the rotating shaft 25, so that the lens grinding and the grinding bowl cleaning can remain stable.

[0081] Furthermore, the mounting assembly 3 includes: a mounting seat 31, a top spring 32, a top ring 33, a mounting shaft 34, a friction top groove 35, a slide groove 36 and a card slot 37. The outer side of the rotating shaft 25 is fixedly connected to the mounting seat 31, the top of the mounting seat 31 is provided with a top spring 32, the top of the top spring 32 is provided with a top ring 33, the inner part of the mounting seat 31 is rotatably installed with a mounting shaft 34, the bottom of the mounting seat 31 is provided with a friction top groove 35, the bottom of the mounting shaft 34 extends into the friction top groove 35, the inner wall of the mounting shaft 34 is provided with a slide groove 36 that can pass through the mounting block 8, the bottom of the mounting shaft 34 is provided with a card slot 37, and the mounting block 8 can be clamped in the card slot 37.

[0082] When installing the grinding bowl 6, the grinding shaft 7 can be inserted into the installation shaft 34, and the installation block 8 can slide in the slide groove 36. The grinding bowl 6 squeezes the top spring 32 through the top ring 33. When the installation block 8 passes through the slide groove 36, the grinding bowl 6 is rotated, and the grinding bowl 6 drives the installation block 8 to rotate through the grinding shaft 7. When the grinding bowl 6 rotates 90 degrees, the grinding bowl 6 is released. At this time, the top spring 32 drives the top ring 33 to rise, and the top ring 33 drives the grinding bowl 6 to rise. The grinding bowl 6 drives the installation block 8 to be clamped in the slot 37, completing the installation of the grinding bowl 6. The installation is convenient.

[0083] Furthermore, the transmission clamping assembly 4 includes: a fixed outer ring 41, a limiting inner ring 42, a guide column 43, a lifting screw 44, a lifting threaded sleeve 45, a guide block 46 and a top block 47. The top of the mounting box 11 is fixedly connected to the fixed outer ring 41, the internal rotation installation of the fixed outer ring 41 is the limiting inner ring 42, the top of the limiting inner ring 42 is provided with a guide column 43, the top of the mounting box 11 is rotatably installed with the lifting screw 44, the lifting screw 44 is fixedly connected to the driven bevel gear 15, the outer side of the lifting screw 44 is threadedly connected to the lifting threaded sleeve 45, the outer side of the lifting threaded sleeve 45 is provided with a guide block 46, the guide block 46 is sleeved on the outer side of the guide column 43, the top of the lifting threaded sleeve 45 is provided with a top block 47, and the top block 47 can be inserted into the friction top groove 35.

[0084] After the grinding bowl 6 is installed, the rotating mechanism is controlled to operate, and the output shaft of the rotating mechanism drives the sleeve shaft 12 to rotate, and the sleeve shaft 12 drives the active bevel gear 14 to rotate, and the active bevel gear 14 drives the driven bevel gear 15 to rotate, and the driven bevel gear 15 drives the lifting screw 44 to rotate. At this time, the limit inner ring 42 is locked, and the limit inner ring 42 cannot rotate. The limit inner ring 42 restricts the rotation of the lifting thread sleeve 45 through the guide column 43 and the guide block 46, and the lifting screw 44 rotates to drive the lifting thread sleeve 45 to rise, and the lifting thread sleeve 45 drives the top block 47 to rise, and the top block 47 is inserted into the friction top groove 35 and pressed against the bottom of the installation shaft 34. At this time, the limit inner ring 42 is unlocked, and the lifting screw 44 drives the lifting thread sleeve 45, and the lifting thread sleeve 45 drives the top block 47 to rotate. The top block 47 drives the installation shaft 34 to rotate through the friction force with the friction top groove 35, and the installation shaft 34 drives the grinding bowl 6 to rotate, thereby grinding the lens.

[0085] Furthermore, a friction protrusion 48 is provided on the top of the top block 47. Through this design, the friction between the top block 47 and the installation shaft 34 can be increased, so that the top block 47 can drive the installation shaft 34 to rotate more stably, and the transmission is stable.

[0086] Furthermore, the transmission clamping assembly 4 also includes: a locking groove 49, a locking rod 410, a locking spring 411, a positioning hole 412, a positioning rod 413 and a positioning spring 414. The outer ring of the limiting inner ring 42 is provided with a locking groove 49, and the interior of the fixed outer ring 41 is provided with a through hole. The interior of the through hole is connected with a locking rod 410, and the locking rod 410 can be clamped in the locking groove 49. The end of the locking rod 410 close to the locking groove 49 is conical in design. A locking spring 411 is provided between the locking rod 410 and the fixed outer ring 41. A positioning hole 412 is provided at the top of the locking rod 410, and a positioning socket is provided at the top of the fixed outer ring 41. The positioning socket is connected to the through hole, and the interior of the positioning socket is connected with a positioning rod 413. A positioning spring 414 is provided between the positioning rod 413 and the fixed outer ring 41.

[0087] At the beginning, the locking rod 410 is engaged in the locking groove 49, and the locking rod 410 limits the rotation of the limiting inner ring 42. When the control rotation mechanism is running, the output shaft of the rotation mechanism drives the sleeve shaft 12 to rotate, the sleeve shaft 12 drives the active bevel gear 14 to rotate, the active bevel gear 14 drives the driven bevel gear 15 to rotate, and the driven bevel gear 15 drives the lifting screw 44 to rotate. At this time, since the limiting inner ring 42 is restricted and cannot rotate, the limiting inner ring 42 limits the rotation of the lifting thread sleeve 45 through the guide column 43 and the guide block 46. The rotation of the lifting screw 44 drives the lifting thread sleeve 45 to rise, and the lifting thread sleeve 45 drives the top block 47 to rise. The top block 47 is inserted in the friction top groove 35 and presses on the bottom of the installation shaft 34. At this time, the friction between the top block 47 and the installation shaft 34 is greater than the locking The limiting force of the fixed rod 410, the limiting inner ring 42 pushes the locking rod 410 to slide out of the locking groove 49 through the locking groove 49, and the positioning hole 412 moves to the position of the positioning rod 413. Under the action of the positioning spring 414, the positioning rod 413 is automatically inserted into the positioning hole 412, and the locking rod 410 is locked. At this time, the limiting inner ring 42 is not restricted, the lifting screw 44 drives the lifting thread sleeve 45 to rotate, the lifting thread sleeve 45 drives the top block 47 to rotate, the top block 47 drives the installation shaft 34 to rotate, and the installation shaft 34 drives the grinding bowl 6 to rotate, so that the lens can be polished, so that the device does not need additional drive, and the grinding driving force of the grinding bowl 6 can be used to complete the clamping, and the structure is compact. At the same time, when the clamping fails, the grinding bowl cannot rotate normally if it is not installed in place, and the installation stability is high.

[0088] Furthermore, the cleaning assembly 5 includes: a drive ring 51, a wave groove 52, a transmission shaft 53, a mounting rod 54, a cleaning brush 55 and a lever 56. The bottom of the mounting box 11 is fixedly connected to the drive ring 51, and a wave groove 52 is provided at the bottom of the drive ring 51. The drive shaft 53 is rotatably installed inside the drive ring 51. The transmission shaft 53 is fixedly connected to the driven bevel gear 15. The bottom of the transmission shaft 53 is hinged with a mounting rod 54. A torsion spring is provided at the hinge of the mounting rod 54. A cleaning brush 55 is installed at the bottom of the mounting rod 54. A lever 56 is provided on the outside of the mounting rod 54, and the lever 56 is pressed in the wave groove 52.

[0089] The operation of the rotating mechanism is controlled, and the output shaft of the rotating mechanism drives the sleeve shaft 12 to rotate, the sleeve shaft 12 drives the active bevel gear 14 to rotate, the active bevel gear 14 drives the driven bevel gear 15 to rotate, and the driven bevel gear 15 drives the transmission shaft 53 to rotate, and the transmission shaft 53 drives the mounting rod 54 to rotate, and the mounting rod 54 drives the cleaning brush 55 to rotate. At the same time, the mounting rod 54 drives the shift rod 56 to rotate. Under the action of the torsion spring, the shift rod 56 is always pressed on the wave groove 52. When the mounting rod 54 drives the shift rod 56 to rotate relative to the wave groove 52, the shift rod 56 drives the mounting rod 54 to swing under the action of the wave groove 52, and the mounting rod 54 drives the cleaning brush 55 to swing. The cleaning brush 55 can swing while rotating, thereby improving the cleaning effect.

[0090] When the grinding bowl 6 needs to be flipped, the wheel 24 rotates to the bottom arc-shaped gear position, the arc-shaped gear drives the wheel 24 to rotate, the wheel 24 drives the rotating shaft 25 to rotate, the rotating shaft 25 drives the mounting assembly 3 to rotate, and the mounting assembly 3 drives the grinding bowl 6 to rotate. At this time, the grinding part of the grinding bowl 6 rotates from top to bottom, and then rotates to the top. At the same time, the shift rod 56 is located at the lowest position of the wave groove 52, and the shift rod 56 makes the mounting rod 54 tilted. The mounting rod 54 drives the cleaning brush 55 to a tilted state, so that the cleaning brush 55 will not affect the flipping of the grinding bowl 6, so that the cleaning brush 55 can be tightly pressed in the grinding bowl 6, the device runs stably, and the cleaning effect is good.

[0091] The above description of the disclosed embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A grinding mortar for optical lens processing, characterized in that: The invention comprises: a driving assembly (1) and a grinding bowl (6), wherein the driving assembly (1) can be mounted on a rotating mechanism of an optical lens polishing machine, a grinding shaft (7) is provided at the bottom of the grinding bowl (6), and a mounting block (8) is provided at the bottom of the outer side of the grinding shaft (7); a turning assembly (2), wherein the turning assembly (2) is provided at the outer side of the driving assembly (1); a mounting assembly (3), wherein both ends of the turning assembly (2) are provided with mounting assemblies (3), wherein the grinding shaft (7) can be plugged into the mounting assembly (3), and the mounting block (8) can be clamped into the mounting assembly (3); a transmission clamping assembly (4), wherein the top of the driving assembly (1) is provided with a transmission clamping assembly (4) for automatically clamping the grinding bowl (6); and a cleaning assembly (5), wherein the bottom of the driving assembly (1) is provided with a cleaning assembly (5) for cleaning the grinding bowl (6); The driving component (1) comprises: A mounting box (11), wherein the mounting box (11) is mounted on a rotating mechanism of the optical lens polishing machine via bolts; A sleeve shaft (12), the outer side of the mounting box (11) is rotatably mounted with a sleeve shaft (12), and the sleeve shaft (12) can be sleeved on the output shaft of the rotating mechanism; A keyway (13), wherein the inner wall of the sleeve shaft (12) is provided with a keyway (13); A driving bevel gear (14), wherein the mounting box (11) is internally rotatably mounted with the driving bevel gear (14), and the driving bevel gear (14) is fixedly connected to the sleeve shaft (12); A driven bevel gear (15), wherein the driven bevel gear (15) is rotatably mounted inside the mounting box (11), and the driven bevel gear (15) is meshed with the driving bevel gear (14); The flip assembly (2) includes: A fixed shaft (21), the outer side of the mounting box (11) is welded with a fixed shaft (21); A turning rod (22), the turning rod (22) is rotatably mounted on the outer side of the fixed shaft (21); A fixed gear rod (23), the outer side of the fixed shaft (21) is fixedly connected to the fixed gear rod (23), the fixed gear rod (23) is located on the side of the flip rod (22) away from the installation box (11), and the top and bottom of the fixed gear rod (23) are both provided with arc-shaped gear teeth; A rotating wheel (24), the rotating wheel (24) is rotatably mounted on a side of the flip rod (22) away from the mounting box (11), and two groups of the rotating wheels (24) are provided, and both groups of the rotating wheels (24) can mesh with the arc-shaped gear teeth; A rotating shaft (25), a rotating shaft (25) is rotatably mounted on a side of the flip rod (22) close to the installation box (11), and the rotating shaft (25) is fixedly connected to the rotating wheel (24); Two groups of jacks (26) are provided inside the flip rod (22), and the two groups of jacks (26) are distributed in a circumference. Pins (27) are inserted into the jacks (26), and a socket (16) capable of inserting the pins (27) is provided on the outside of the installation box (11).

2. The grinding mortar for optical lens processing according to claim 1, characterized in that: The installation component (3) includes: A mounting seat (31), the outer side of the rotating shaft (25) is fixedly connected to the mounting seat (31); A top spring (32), a top spring (32) is provided on the top of the mounting seat (31); a top ring (33), a top ring (33) is provided on the top of the top spring (32); A mounting shaft (34), wherein the mounting seat (31) is rotatably mounted with the mounting shaft (34); A friction top groove (35), wherein the bottom of the mounting seat (31) is provided with a friction top groove (35), and the bottom of the mounting shaft (34) extends into the friction top groove (35); A slide groove (36), wherein the inner wall of the mounting shaft (34) is provided with a slide groove (36) capable of passing the mounting block (8); A card slot (37) is provided at the bottom of the installation shaft (34), and the installation block (8) can be snapped into the card slot (37).

3. The grinding mortar for optical lens processing according to claim 2, characterized in that: The transmission clamping assembly (4) comprises: A fixed outer ring (41), the top of the installation box (11) is fixedly connected to the fixed outer ring (41); A limiting inner ring (42) is rotatably mounted inside the fixed outer ring (41); A guide post (43), wherein a guide post (43) is provided on the top of the limiting inner ring (42); A lifting screw (44), the top of the mounting box (11) is rotatably mounted with the lifting screw (44), and the lifting screw (44) is fixedly connected to the driven bevel gear (15); A lifting threaded sleeve (45), wherein the outer side of the lifting screw (44) is threadedly connected to the lifting threaded sleeve (45); A guide block (46), wherein the outer side of the lifting threaded sleeve (45) is provided with a guide block (46), and the guide block (46) is sleeved on the outer side of the guide column (43); A top block (47) is provided on the top of the lifting threaded sleeve (45), and the top block (47) can be inserted into the friction top groove (35).

4. The grinding mortar for optical lens processing according to claim 3, characterized in that: A friction protrusion (48) is provided on the top of the top block (47).

5. The grinding mortar for optical lens processing according to claim 4, characterized in that: The transmission clamping assembly (4) further comprises: A locking groove (49), wherein the outer side of the limiting inner ring (42) is provided with a locking groove (49); A locking rod (410), wherein a through hole is provided inside the fixed outer ring (41), and a locking rod (410) is inserted into the through hole. The locking rod (410) can be snapped into the locking groove (49), and one end of the locking rod (410) close to the locking groove (49) is tapered; A locking spring (411), wherein a locking spring (411) is provided between the locking rod (410) and the fixed outer ring (41); A positioning hole (412), wherein a positioning hole (412) is provided at the top of the locking rod (410); A positioning rod (413), wherein a positioning hole is provided on the top of the fixed outer ring (41), the positioning hole is connected to the through hole, and the positioning rod (413) is inserted into the positioning hole; A positioning spring (414) is provided between the positioning rod (413) and the fixed outer ring (41).

6. The grinding mortar for optical lens processing according to claim 5, characterized in that: The cleaning component (5) includes: A driving ring (51), the bottom of the mounting box (11) is fixedly connected to the driving ring (51); A wave groove (52), wherein the bottom of the driving ring (51) is provided with a wave groove (52); A transmission shaft (53), wherein the transmission shaft (53) is rotatably mounted inside the driving ring (51), and the transmission shaft (53) is fixedly connected to the driven bevel gear (15); A mounting rod (54), wherein the bottom of the transmission shaft (53) is hingedly connected to the mounting rod (54), and a torsion spring is provided at the hinge of the mounting rod (54); A cleaning brush (55), wherein a cleaning brush (55) is installed at the bottom of the mounting rod (54); A shift rod (56) is provided on the outside of the mounting rod (54), and the shift rod (56) is pressed into the wave groove (52).

Citation Information

Patent Citations

  • Optical lens grinding bowl

    CN217914519U

  • Novel false tooth machining cutter

    CN113579997A

  • Self-cleaning grinding device for biological medicine preparation

    CN212943183U