Lens assembling device for optical lens processing
By designing a lens assembly device for optical lens processing, the cleaning, grinding and assembly operations were synchronized, solving the problems of scattered processes, low efficiency and serious dust pollution in existing equipment, improving processing accuracy and efficiency, and enhancing the adaptability and cleanliness of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- JIANGSU DEYECHENG PRECISION MASCH CO LTD
- Filing Date
- 2026-03-16
- Publication Date
- 2026-06-09
AI Technical Summary
Existing optical lens processing equipment suffers from problems such as fragmented processes, low efficiency, serious dust pollution, and poor adaptability, making it difficult to achieve synchronous and coordinated operation of multiple processes, which affects processing accuracy and efficiency.
An optical lens assembly device for optical lens processing was designed. It uses a transmission device to link the cleaning, grinding and assembly areas. The workpiece is synchronously rotated and transferred through clamping and adsorption devices. Combined with a dust recovery device, the cleaning, grinding and assembly operations are synchronized, improving cleanliness and adaptability.
It enables synchronized operation of multiple processes, improves processing efficiency and precision, reduces dust pollution, enhances the versatility and adaptability of equipment, simplifies operation procedures, and reduces labor intensity and energy consumption.
Smart Images

Figure CN122165286A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of optical lens processing equipment technology, specifically to a lens assembly device for optical lens processing. Background Technology
[0002] The processing and assembly of optical lenses requires extremely high precision and cleanliness. In existing processes, lens cleaning, lens polishing, and lens assembly are mostly completed using decentralized equipment, requiring manual labor or multiple conveyor mechanisms to move workpieces. This not only occupies a large space and involves cumbersome operations, but also results in long processing cycles and low efficiency. Furthermore, dust generated during cleaning and polishing processes can easily spread into the surrounding environment, causing secondary pollution and affecting lens processing precision and product yield. Moreover, existing equipment is mostly driven by a single process, making it difficult to achieve simultaneous and coordinated operation of multiple processes. Its flexibility in adapting to different lens specifications and lens elements is also poor, further limiting processing efficiency and versatility. To address the aforementioned issues, it is necessary to design an integrated, efficient, and clean optical lens processing and assembly device to achieve multi-process integrated synchronous operation, improve processing accuracy and efficiency, and enhance equipment adaptability. Summary of the Invention
[0003] The present invention aims to provide a lens assembly device for optical lens processing, so as to solve the problems of existing equipment having scattered processes, low efficiency, serious dust pollution and poor adaptability, and realize integrated synchronous operation of cleaning, grinding and assembly, thereby improving the cleanliness, precision and versatility of processing.
[0004] To achieve the above objectives, the present invention provides the following technical solution: The technical solution provided by this invention is: a lens assembly device for optical lens processing, comprising a bracket, a collecting device fixedly disposed above the bracket, an equipment box fixedly disposed above the collecting device, a processing box fixedly disposed above the equipment box, a partition device symmetrically disposed inside the processing box, the processing box being divided into a cleaning area, a polishing area and an assembly area by the partition device, a clamping device disposed below one side of the processing box, a cleaning device adapted to the clamping device disposed above the processing box, an adsorption device disposed above the other side of the processing box, a polishing device adapted to the adsorption device disposed below the processing box, a transmission device connected to the cleaning device and the polishing device disposed on one side of the processing box, and a control panel fixedly disposed on one side of the processing box.
[0005] Furthermore, the collection device includes a collection box fixedly installed above the bracket, a through collection fan fixedly installed below the collection box, and collection pipes fixedly installed on both sides of the collection box. The other end of the collection pipes passes through the cleaning area and the grinding area respectively, for accurately collecting dust from the two workstations and avoiding secondary pollution.
[0006] Furthermore, the separating device includes a separating column fixedly installed inside the processing box, a separating groove being formed inside the separating column, a folding plate fixedly installed on the upper part of the inner wall of the processing box, a pull ring fixedly installed on one side of the folding plate, and the thickness of the folding plate being movably adapted to the separating groove, which can flexibly realize the separation and connection of areas and adapt to the needs of different processing stages.
[0007] Furthermore, the clamping device includes a clamping rotating plate fixedly installed inside the equipment box and rotated by a clamping motor. A clamping plate is symmetrically arranged above the clamping rotating plate. An electrically adjustable clamping head is provided on the surface of the clamping plate. A lens is clamped on the surface of the clamping head. The clamping force can be adaptively adjusted to stably clamp lenses of different specifications and realize the transfer of workpieces.
[0008] Furthermore, the cleaning device includes a retractable and rotatable cleaning rod installed on the upper part of the inner wall of the processing box. A cleaning shaft is fixedly provided below the cleaning rod, and a detachable cleaning sponge is provided below the cleaning shaft. Cleaning sponge rods are symmetrically provided on both sides of the cleaning shaft. The cleaning sponge is adapted to contact the inner wall of the lens, and the cleaning sponge rod is adapted to contact the outer wall of the lens. A cleaning gear is fixedly provided on the surface of the cleaning rod, which can simultaneously complete the cleaning of the inner and outer walls of the lens.
[0009] Furthermore, the adsorption device includes an adsorption plate mounted above the processing box and rotated by a drive motor. An adsorption machine is provided on the surface of the adsorption plate, and a matching adsorption telescopic rod is provided below the adsorption machine. An adsorption plate is provided below the adsorption telescopic rod, and a lens is adsorbed on the lower surface of the adsorption plate, which can stably adsorb the lens and realize the switching of work positions.
[0010] Furthermore, the polishing device includes a polishing bracket fixedly installed on the upper surface of the equipment box, a polishing gear above the polishing bracket, a synchronously rotating polishing rod above the polishing gear, and a detachable polishing disc above the polishing rod. The specifications of the polishing disc are adapted to the lens specifications, and the polishing disc can be replaced to adapt to different lens polishing needs, ensuring polishing accuracy.
[0011] Furthermore, the transmission device includes a transmission box fixedly installed on one side of the device. A transmission motor is fixedly installed on the lower inner wall of the transmission box. A transmission rod is adapted to the output end of the transmission motor. Two sets of first transmission gears are fixedly installed above the transmission rod. A first transmission belt and a second transmission belt are adapted to the surface of the first transmission gears. One end of the first transmission belt is connected to the cleaning gear. The other end of the second transmission belt is adapted to the second transmission gear. A positioning rod is provided at the shaft center of the second transmission gear and is movably engaged with the inner wall of the transmission box. A third transmission gear is fixedly installed on the lower surface of the positioning rod. A third transmission belt is adapted to the surface of the third transmission gear. The other end of the third transmission belt is adapted to the grinding gear, so as to realize the synchronous operation of the cleaning and grinding devices.
[0012] The beneficial effects of this technical solution are: (1) This invention provides core support for synchronous processing and assembly through a precise structural linkage layout. The transmission device, as the power linkage hub, adopts a combination structure of a single motor with multi-stage gears and synchronous belts to synchronously transmit power to the cleaning device and the polishing device, so that the cleaning of the inner and outer walls of the lens and the lens polishing process can start and stop at the same time, completely breaking the limitation of the independent drive of a single process in traditional equipment. At the same time, the clamping device and the adsorption device form a symmetrical rotation and transfer linkage structure. The two are synchronized through the control panel signal, which can achieve 180-degree precise rotation, synchronously transferring the workpiece to be processed to the corresponding pre-processing area. After processing, it is synchronously transferred to the assembly area. With the flexible opening and closing structure of the separation device, the physical isolation between the pre-processing area and the assembly area is achieved without hindering the linkage transfer of the workpiece, forming an integrated structural system of power linkage, station linkage and area linkage, laying a solid structural foundation for synchronous processing and assembly.
[0013] (2) This device can realize dual parallel operations of pretreatment and assembly, and loading and processing. Compared with the traditional step-by-step processing mode, the process efficiency has achieved a qualitative leap. When a group of workpieces is cleaned and polished for pretreatment, the operator can use the clamping and adsorption devices in the assembly area to complete the loading and positioning of the next group of workpieces. With the help of the linkage rotation structure of the two, after the pretreatment of the previous group of workpieces is completed, the workstation can be switched instantly. The new group of workpieces enters the pretreatment area, and the previous group of workpieces enters the assembly area, realizing the seamless connection and synchronous progress of loading, pretreatment and assembly processes. At the same time, the synchronous linkage of cleaning and polishing processes avoids the time loss of waiting for another process after the completion of a single process. Combined with the parallel operation of assembly and pretreatment, it significantly improves the efficiency of batch production.
[0014] (3) The dust collection device operates synchronously with the pretreatment process. The collection device accurately collects the dust generated during synchronous processing through a pipeline that runs through both areas. Combined with the regional isolation linkage of the separation device, it effectively avoids the impact of dust pollution on assembly accuracy. In addition, the structural design of the adjustable clamping head and the detachable grinding disc is compatible with the overall linkage system. It can meet the processing needs of workpieces of different specifications without disrupting the synchronous operation rhythm, thus achieving a synergistic improvement in versatility, efficiency and accuracy. Attached Figure Description
[0015] Figure 1 This is one of the structural schematic diagrams of a lens assembly device for optical lens processing proposed in this invention; Figure 2 This is a second schematic diagram of the structure of a lens assembly device for optical lens processing proposed in this invention; Figure 3 This is a schematic diagram of the internal cross-sectional structure of a lens assembly device for optical lens processing proposed in this invention; Figure 4 for Figure 3 Enlarged schematic diagram of the structure at point A in the middle; Figure 5 This is a cross-sectional planar structural diagram of a lens assembly device for optical lens processing proposed in this invention; Figure 6 for Figure 5 Enlarged schematic diagram of the structure at point B; Figure 7 This is a schematic diagram of the upper cross-sectional structure of a lens assembly device for optical lens processing proposed in this invention; Figure 8 This is a schematic diagram of the overall upper cross-sectional structure of a lens assembly device for optical lens processing proposed in this invention.
[0016] The corresponding labels in the attached diagram are named as follows: 1. Support; 2. Collection device; 201. Collection box; 202. Collection fan; 203. Collection pipe; 3. Equipment box; 4. Processing box; 5. Separating device; 501. Separating column; 502. Separating groove; 503. Folding plate; 504. Pull ring; 6. Cleaning area; 7. Grinding area; 8. Assembly area; 9. Clamping device; 901. Clamping rotating plate; 902. Clamping plate; 903. Clamping head; 904. Lens; 10. Cleaning device; 1001. Cleaning rod; 1002. Cleaning shaft; 1003. Cleaning sponge; 1004. Cleaning sponge rod; 1005. 11. Cleaning gear; 11. Adsorption device; 1101. Adsorption rotating plate; 1102. Adsorption machine; 1103. Adsorption telescopic rod; 1104. Adsorption disc; 12. Grinding device; 1201. Grinding bracket; 1202. Grinding gear; 1203. Grinding rod; 1204. Grinding disc; 13. Transmission device; 1301. Transmission motor; 1302. Transmission rod; 1303. First transmission gear; 1304. First transmission belt; 1305. Second transmission belt; 1306. Positioning rod; 1307. Second transmission gear; 1308. Third transmission gear; 1309. Third transmission belt; 14. Control panel. Detailed Implementation
[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0018] The specific implementation process is as follows: Example 1: Please see Figure 1-8The present invention provides a technical solution: a lens assembly device for optical lens processing, comprising a support 1, a collecting device 2 fixedly mounted above the support 1, an equipment box 3 fixedly mounted above the collecting device 2, a processing box 4 fixedly mounted above the equipment box 3, a separating device 5 symmetrically arranged inside the processing box 4, the processing box 4 being divided into a cleaning area 6, a polishing area 7, and an assembly area 8 by the separating device 5, a clamping device 9 located below one side of the processing box 4, a cleaning device 10 adapted to the clamping device 9 located above the processing box 4, an adsorption device 11 located above the other side of the processing box 4, a polishing device 12 adapted to the adsorption device 11 located below the processing box 4, a transmission device 13 connected to the cleaning device 10 and the polishing device 12 located on one side of the processing box 4, and a control panel 14 fixedly mounted on one side of the processing box 4. The various areas work together to complete the entire process of lens processing from pre-processing to assembly. The control panel 14 integrates all component control modules, and realizes automated and precise operation of each process through electrical signal commands.
[0019] The collection device 2 includes a collection box 201 fixedly installed above the bracket 1. A through collection fan 202 is fixedly installed below the collection box 201. Collection pipes 203 are fixedly installed on both sides of the collection box 201. The other end of the collection pipes 203 respectively passes through the cleaning area 6 and the polishing area 7, which is used to accurately collect dust from the two workstations and avoid secondary pollution.
[0020] The separating device 5 includes a separating column 501 fixedly installed inside the processing box 4. A separating groove 502 is provided inside the separating column 501. A folding plate 503 is fixedly provided on the upper part of the inner wall of the processing box 4. A pull ring 504 is fixedly provided on one side of the folding plate 503. The thickness of the folding plate 503 is movably adapted to the separating groove 502, which can flexibly realize the separation and connection of areas and adapt to the needs of different processing stages.
[0021] The clamping device 9 includes a clamping rotating plate 901 fixedly installed in the equipment box 3 and rotated by a clamping motor. A clamping plate 902 is symmetrically arranged above the clamping rotating plate 901. An electrically adjustable clamping head 903 is provided on the surface of the clamping plate 902. A lens 904 is clamped on the surface of the clamping head 903. The clamping force can be adaptively adjusted to stably clamp lenses of different specifications and realize the transfer of workpieces.
[0022] The cleaning device 10 includes a retractable and rotatable cleaning rod 1001 installed above the inner wall of the processing box 4. A cleaning shaft 1002 is fixedly provided below the cleaning rod 1001. A detachable cleaning sponge 1003 is provided below the cleaning shaft 1002. Cleaning sponge rods 1004 are symmetrically provided on both sides of the cleaning shaft 1002. The cleaning sponge 1003 is adapted to contact the inner wall of the lens 904, and the cleaning sponge rods 1004 are adapted to contact the outer wall of the lens 904. A cleaning gear 1005 is fixedly provided on the surface of the cleaning rod 1001, which can simultaneously complete the cleaning of the inner and outer walls of the lens.
[0023] The adsorption device 11 includes an adsorption rotating plate 1101 mounted above the processing box 4 and rotated by a drive motor. An adsorption machine 1102 is provided on the surface of the adsorption rotating plate 1101. A matching adsorption telescopic rod 1103 is provided below the adsorption machine 1102. An adsorption plate 1104 is provided below the adsorption telescopic rod 1103. A lens is adsorbed on the lower surface of the adsorption plate 1104, which can stably adsorb the lens and realize the switching of work positions.
[0024] The polishing device 12 includes a polishing bracket 1201 fixedly installed on the upper surface of the equipment box 3. A polishing gear 1202 is provided above the polishing bracket 1201. A synchronously rotating polishing rod 1203 is provided above the polishing gear 1202. A detachable polishing disc 1204 is provided above the polishing rod 1203. The specifications of the polishing disc 1204 are adapted to the lens specifications. The polishing disc can be replaced to adapt to different lens polishing needs and ensure polishing accuracy.
[0025] The transmission device 13 includes a transmission box fixedly installed on one side of the device. A transmission motor 1301 is fixedly installed on the lower inner wall of the transmission box. A transmission rod 1302 is adapted to the output end of the transmission motor 1301. Two sets of first transmission gears 1303 are fixedly installed above the transmission rod 1302. A first transmission belt 1304 and a second transmission belt 1305 are adapted to the surface of the first transmission gears 1303. One end of the first transmission belt 1304 is connected to the cleaning gear 1005. A second transmission gear 1307 is adapted to the other end of the second transmission belt 1305. A positioning rod 1306 is provided at the axial position of the second transmission gear 1307 and is movably engaged with the inner wall of the transmission box. A third transmission gear 1308 is fixedly installed on the lower surface of the positioning rod 1306. A third transmission belt 1309 is adapted to the surface of the third transmission gear 1308. The other end of the third transmission belt 1309 is adapted to the grinding gear 1202, so as to realize the synchronous operation of the cleaning and grinding devices.
[0026] Its working principle is as follows: Initial loading stage: The operator places the lens to be processed on the surface of the adsorption tray 1104 in the assembly area 8, and starts the adsorption machine 1102 through the control panel 14. The adsorption machine 1102 generates a stable negative pressure, and the lens is tightly adsorbed through the sealing gasket on the surface of the adsorption tray 1104 to prevent the lens from shifting or scratching the surface. At the same time, the lens 904 to be cleaned is placed between the two sets of clamping heads 903 of the clamping device 9. The control panel 14 issues a command, and the electric push rod drives the clamping plate 902 to move relative to each other along the slide rail. The clamping head 903 adaptively adjusts the clamping force according to the outer diameter of the lens 904. The built-in pressure sensor provides real-time feedback of the pressure value. When the preset safe clamping force is reached, it automatically stops to ensure that the lens 904 is stably clamped and without surface damage.
[0027] Workstation switching and area isolation: A synchronous rotation command is sent via control panel 14, simultaneously activating the drive motor of adsorption device 11 and the clamping motor of clamping device 9. This drives the adsorption rotating plate 1101 and clamping rotating plate 901 to rotate 180 degrees clockwise, precisely transferring the adsorption tray 1104 containing the lens to the polishing area 7, with the lens center aligned with the center of the polishing tray 1204. Simultaneously, the clamping head 903 holding the lens 904 is transferred to the cleaning area 6, with the lens 904 center aligned with the center of the cleaning sponge 1003. At this time, the adsorption device 11 and clamping device 9 in assembly area 8 are idle, facilitating subsequent material loading. The operator pulls the pull ring 504, flipping the folding plate 503 along the hinge and embedding it into the dividing groove 502 of the dividing column 501, completing the physical separation of the three areas and effectively preventing dust generated during subsequent cleaning and polishing processes from entering assembly area 8, ensuring a clean assembly environment.
[0028] Pre-treatment process: The transmission device 13 and the collection device 2 are simultaneously activated via the control panel 14 to achieve simultaneous pre-treatment and dust recovery. The transmission motor 1301 inside the transmission box is powered on and rotates via a key, driving the transmission rod 1302 to rotate. The two sets of first transmission gears 1303 on the transmission rod 1302 rotate synchronously, transmitting power through the first transmission belt 1304 and the second transmission belt 1305 respectively. Firstly, the first transmission belt 1304 drives the cleaning gear 1005 on the cleaning rod 1001 to rotate. Simultaneously, the telescopic cylinder of the cleaning device 10 pushes the cleaning rod 1001 downwards, causing the cleaning sponge 1003 below the cleaning shaft 1002 to embed into the inner wall of the lens 904. The two sides of the cleaning sponge rods 1004 adhere to the outer wall of the lens 904. Under the rotation of the cleaning rod 1001, the dust and oil stains on the inner and outer walls of the lens 904 are cleaned simultaneously. During the cleaning process, the cleaning rod 1001 can be extended or retracted. The cylinder is finely adjusted to ensure full coverage without any cleaning dead spots. Secondly, the second transmission belt 1305 drives the second transmission gear 1307 to rotate. The second transmission gear 1307 drives the positioning rod 1306 to rotate synchronously through the flat key. The third transmission gear 1308 below the positioning rod 1306 rotates accordingly. The third transmission belt 1309 links the grinding gear 1202. The grinding gear 1202 drives the grinding rod 1203 and the grinding disc 1204 to rotate at high speed through the flat key. At the same time, the suction telescopic rod 1103 of the suction device 11 slowly extends and retracts downward, so that the lens surface fits the grinding disc 1204. The lens surface is polished and deburred according to the preset grinding parameters. The detachable grinding disc 1204 can be replaced in advance according to the lens specifications to ensure that the grinding precision is adapted to the requirements.
[0029] Dust recovery is carried out simultaneously: the collecting fan 202 of the collecting device 2 is powered on, creating a negative pressure environment in the collecting box 201. Dust generated in the cleaning area 6 and debris generated in the grinding area 7 are sucked into the collecting box 201 through the collecting pipes 203 running through both sides. The sealed connection between the collecting pipes 203 and the processing box 4 prevents dust leakage, achieving centralized dust recovery. This not only avoids secondary pollution of workpieces and equipment by dust, but also improves the working environment for operators and reduces dust hazards. After pretreatment, the drive motor 1301 and the collecting fan 202 stop operating, the cleaning rod 1001 extends and retracts upward to reset, and the adsorption extension rod 1103 drives the lens upward to reset, completing the pretreatment process.
[0030] Parallel processing and assembly: While the first pre-processing step is underway, the operator can place the next set of lenses 904 and lenses to be processed on the idle clamping device 9 and adsorption device 11 in the assembly area 8, respectively, achieving parallel loading and pre-processing, saving time. After the first pre-processing is completed, the operator retracts the folding plate 503, removes the area separation, and controls the adsorption rotating plate 1101 and clamping rotating plate 901 to rotate 180 degrees synchronously again through the control panel 14, so that the processed lenses 904 and lenses are accurately transferred to the assembly area 8, and the lenses 904 and lenses to be processed are simultaneously transferred to the cleaning area 6 and the polishing area 7. At this time, the transmission device 13 and the collecting device 2 are restarted to pre-process the new set of workpieces. At the same time, the operator accurately assembles the pre-processed lenses 904 and lenses in the assembly area 8. There is no dust interference during the assembly process, which can improve the assembly accuracy and pass rate, realize the parallel processing of pre-processing and assembly, and significantly shorten the processing cycle of a single set of workpieces.
[0031] By repeating the above steps of feeding, station switching, pretreatment, and parallel assembly, continuous batch processing can be achieved. No manual workpiece transfer is required throughout the process. Mechanical transmission and automated control of the transmission device 13, clamping device 9, and adsorption device 11 complete the connection between each station, reducing the labor intensity of operators and avoiding workpiece damage and positioning deviations caused by manual transfer. A single drive motor 1301 drives the simultaneous operation of two processes, simplifying the equipment structure and reducing energy consumption and maintenance costs. The dust collection device 2 and the area isolation design of the separation device 5 significantly improve the cleanliness of the processing. The adjustable clamping head 903 of the clamping device 9 and the detachable grinding disc 1204 of the grinding device 12 make the equipment adaptable to various lens specifications 904 and lens processing, offering strong versatility and effectively improving equipment utilization and production efficiency.
[0032] The above descriptions are merely embodiments of the present invention, and common knowledge regarding specific technical solutions or characteristics is not elaborated upon here. It should be noted that those skilled in the art can make various modifications and improvements without departing from the technical solutions of the present invention, and these should also be considered within the scope of protection of the present invention. These modifications and improvements will not affect the effectiveness of the implementation of the present invention or the practicality of the patent. The scope of protection claimed in this application should be determined by the content of its claims, and the specific embodiments described in the specification can be used to interpret the content of the claims.
Claims
1. A lens assembly device for optical lens processing, comprising a support (1), characterized in that: A collection device (2) is fixedly provided above the support (1). An equipment box (3) is fixedly provided above the collection device (2). A processing box (4) is fixedly provided above the equipment box (3). A partition device (5) is symmetrically provided inside the processing box (4). The processing box (4) is divided into a cleaning area (6), a polishing area (7), and an assembly area (8) by the partition device (5). A clamping device (9) is provided on one side of the processing box (4). A cleaning device (10) adapted to the clamping device (9) is provided above the processing box (4). An adsorption device (11) is provided on the other side of the processing box (4). A polishing device (12) adapted to the adsorption device (11) is provided below the processing box (4). A transmission device (13) connected to the cleaning device (10) and the polishing device (12) is provided on one side of the processing box (4). A control panel (14) is fixedly provided on one side of the processing box (4).
2. The lens assembly apparatus for optical lens processing according to claim 1, characterized in that: The collection device (2) includes a collection box (201) fixedly installed above the bracket (1), a through collection fan (202) fixedly provided below the collection box (201), and collection pipes (203) fixedly provided on both sides of the collection box (201). The other end of the collection pipes (203) respectively passes through the cleaning area (6) and the polishing area (7).
3. The lens assembly apparatus for optical lens processing according to claim 1, characterized in that: The separating device (5) includes a separating column (501) fixedly installed in the processing box (4), a separating groove (502) is provided in the separating column (501), a folding plate (502) is fixedly provided on the upper part of the inner wall of the processing box (4), a pull ring (503) is fixedly provided on one side of the folding plate (502), and the thickness of the folding plate (502) is movably adapted to the separating groove (502).
4. The lens assembly apparatus for optical lens processing according to claim 1, characterized in that: The clamping device (9) includes a clamping rotating plate (901) fixedly installed in the equipment box (3) and rotated by a clamping motor. A clamping plate (902) is symmetrically arranged above the clamping rotating plate (901). An electrically adjustable clamping head (903) is provided on the surface of the clamping plate (902). A lens (904) is clamped on the surface of the clamping head (903).
5. The lens assembly apparatus for optical lens processing according to claim 4, characterized in that: The cleaning device (10) includes a retractable and rotatable cleaning rod (1001) installed on the upper inner wall of the processing box (4). A cleaning shaft (1002) is fixedly provided below the cleaning rod (1001). A detachable cleaning sponge (1003) is provided below the cleaning shaft (1002). Cleaning sponge rods (1004) are symmetrically provided on both sides of the cleaning shaft (1002). The cleaning sponge (1003) is adapted to contact the inner wall of the lens (904). The cleaning sponge rod (1004) is adapted to contact the outer wall of the lens (904). A cleaning gear (1005) is fixedly provided on the surface of the cleaning rod (1001).
6. The lens assembly apparatus for optical lens processing according to claim 1, characterized in that: The adsorption device (11) includes an adsorption plate (1101) mounted above the processing box (4) and rotated by a drive motor, an adsorption machine (1102) on the surface of the adsorption plate (1101), an adsorption telescopic rod (1103) adapted to the adsorption machine (1102) is provided below the adsorption telescopic rod (1103), an adsorption plate (1104) is provided below the adsorption telescopic rod (1103), and a lens is adsorbed on the lower surface of the adsorption plate (1104).
7. The lens assembly apparatus for optical lens processing according to claim 1, characterized in that: The polishing device (12) includes a polishing bracket (1201) fixedly installed on the upper surface of the equipment box (3). A polishing gear (1202) is provided above the polishing bracket (1201). A synchronously rotating polishing rod (1203) is provided above the polishing gear (1202). A detachable polishing disc (1204) is provided above the polishing rod (1203). The specifications of the polishing disc (1204) are adapted to the specifications of the lens.
8. The lens assembly apparatus for optical lens processing according to claim 7, characterized in that: The transmission device (13) includes a transmission box fixedly installed on one side of the device. A transmission motor (1301) is fixedly installed on the lower inner wall of the transmission box. A transmission rod (1302) is adapted to the output end of the transmission motor (1301). Two sets of first transmission gears (1303) are fixedly installed above the transmission rod (1302). A first transmission belt (1304) and a second transmission belt (1305) are adapted to the surface of the first transmission gears (1303). One end of the first transmission belt (1304) is connected to the cleaning gear (1305). 005) is connected to the second transmission belt (1305). The other end of the second transmission belt (1305) is adapted to be provided with a second transmission gear (1307). The shaft of the second transmission gear (1307) is provided with a positioning rod (1306) that is movably engaged with the inner wall of the transmission box. The lower surface of the positioning rod (1306) is fixedly provided with a third transmission gear (1308). The surface of the third transmission gear (1308) is provided with a matching third transmission belt (1309). The other end of the third transmission belt (1309) is adapted to be connected to the grinding gear (1202).