Endoscope lens finishing equipment
By designing an endoscope lens finishing equipment with synchronously moving and transferring components, the simultaneous processing of multiple lens sets was achieved, solving the problem of idle equipment, improving production efficiency and processing accuracy, and extending equipment life.
Patent Information
- Application Number
- CN202411251091.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2044-09-06
AI Technical Summary
The existing endoscope lens finishing equipment can only process one set at a time, which causes the equipment to be idle while waiting to load the next set of lenses, thus reducing production efficiency.
An endoscope lens finishing machine was designed. By setting up synchronous movement and transfer components, multiple lenses can be processed simultaneously. The machine includes an operating table, processing components, synchronous movement components, and synchronous transfer components. Components such as motors, threaded rods, and pulleys are used to achieve synchronous clamping and grinding of multiple lenses. Lenses can be quickly replaced through a load-bearing component to ensure continuous operation of the machine.
It enables simultaneous processing of multiple lens groups, reduces equipment waiting time, improves production efficiency, ensures continuous operation and processing accuracy of the equipment, extends the service life of the equipment, and improves the utilization efficiency of human resources.
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Figure CN119319509B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of endoscope lens processing, and particularly relates to an endoscope lens finishing equipment. BACKGROUND
[0002] A speculum is an advanced medical examination and treatment method, which sends an instrument capable of shooting a display into the human body through a pipeline, so as to visually observe the state of internal tissues and organs of the human body. The endoscope is widely used in clinical application.
[0003] The endoscope lens, as an important component of the endoscope, is a precision device integrating an image sensor, an optical lens, an illumination light source and other components. The endoscope lens is generally composed of a long rod-shaped glass rod after finishing and polishing and cleaning by a chemical solvent.
[0004] However, the existing endoscope finishing equipment can only process one group of endoscope lenses at a time, and the processing of only one group of endoscope lenses at a time means that the equipment needs to wait for the loading of new endoscope components after processing a group, which will cause the equipment to be idle in most of the time, thereby reducing the overall production efficiency. SUMMARY
[0005] In view of the problem that the existing equipment processes only one group of endoscope lenses at a time, which means that the equipment needs to wait for the loading of new endoscope components after processing a group, which will cause the equipment to be idle in most of the time, thereby reducing the overall production efficiency, the present application is proposed.
[0006] Therefore, the present application aims to provide an endoscope lens finishing equipment, which aims to: realize the simultaneous processing of multiple groups of lenses, and the simultaneous processing of multiple groups of lenses reduces the idle time of the equipment after processing a single group of lenses, so that the equipment can continue to operate, thereby greatly improving the production efficiency.
[0007] To solve the above technical problems, the present application provides the following technical scheme: an endoscope lens finishing equipment, comprising an operation table, a processing component arranged on the top of the operation table, a synchronous moving component arranged on the processing component, and a synchronous transfer component arranged on the top of the operation table.
[0008] The processing component comprises a moving and fixing assembly arranged in the inner cavity of the operation table, a rotating and fixing assembly arranged on the moving and fixing assembly, and a polishing assembly arranged on the top of the operation table. The rotating and fixing assembly comprises two groups of side mounting plates arranged above the operation table, three groups of rotating rods arranged on one side of the side mounting plates and penetrating through the side mounting plates, fixing sleeves arranged on one end of the rotating rods, belt pulleys arranged on the surfaces of one end of the rotating rods on one group of the side mounting plates, double-groove belt pulleys arranged on the surfaces of one end of the rotating rods on another group of the side mounting plates, a motor arranged on one side of one group of the side mounting plates and connected with one group of the rotating rods, and two groups of transmission belts arranged on the surfaces of the double-groove belt pulleys and sleeved with the belt pulleys respectively.
[0009] As a preferred scheme of the endoscope lens finishing equipment, the moving and fixing assembly comprises two groups of bidirectional threaded rods arranged on the two sides of the inner cavity of the operation table, one end of each of the bidirectional threaded rods extends to the outside of the operation table, a motor is arranged on one side of the operation table and the output end of the motor is connected with one end of the bidirectional threaded rod outside the operation table, an internal threaded sleeve block is arranged on the surface of the bidirectional threaded rod, two auxiliary slide rods are arranged on the two ends of the two sides of the inner cavity of the operation table, two groups of auxiliary sleeve blocks are arranged on the surface of the auxiliary slide rods, a connecting column is arranged on the top of the internal threaded sleeve block and the auxiliary sleeve blocks and extends to the top of the operation table, and the three connecting columns on the same side of the operation table are connected with the bottom of one group of the side mounting plates.
[0010] As a preferred scheme of the endoscope lens finishing equipment, the polishing assembly comprises a fixing base arranged on the two sides of the top of the operation table, a top bin arranged on the top of the fixing base, and a polishing plate arranged below the top bin.
[0011] As a preferred scheme of the endoscope lens finishing equipment, the synchronous moving component comprises an installation bottom plate arranged on one side of the top of the inner cavity of the top bin, a main rotating rod arranged on one side of the inner cavity of the top bin and penetrating through the installation bottom plate, and a plurality of bevel gears arranged on the surface of the main rotating rod.
[0012] As a preferred scheme of the endoscope lens finishing equipment, the synchronous moving component further comprises a plurality of reciprocating screw rods arranged on the two ends of the inner cavity of the top bin, an installation bottom plate arranged on one end of the surface of the reciprocating screw rod and connected with the top of the inner cavity of the top bin, an internal threaded sleeve block arranged on the surface of the reciprocating screw rod and connected with the top of the polishing plate, a bevel gear arranged on one end of the reciprocating screw rod and engaged with the bevel gear, and a synchronous assembly arranged on the top of one group of the side mounting plates.
[0013] As a preferred scheme of the endoscope lens finishing equipment, the synchronous assembly comprises fixed side plates arranged on the top of the side mounting plates, a connecting rotating rod arranged on one side of the fixed side plates and penetrating through the fixed side plates, an internal hexagonal rotating rod arranged on one side of the connecting rotating rod, an internal hexagonal slot arranged on one end of the main rotating rod close to the mounting plate, one end of the internal hexagonal rotating rod extending into the internal hexagonal slot, two belt pulleys two arranged on the surface of the connecting rotating rod and the output end of the motor, and two transmission belts two arranged on the surface of the two belt pulleys two.
[0014] As a preferred scheme of the endoscope lens finishing equipment, the synchronous transfer component comprises a transfer assembly arranged on the top of the operation table and a bearing assembly arranged on the transfer assembly.
[0015] As a preferred scheme of the endoscope lens finishing equipment, the transfer assembly comprises a transfer bottom bin arranged on the top of the operation table, a communication port one arranged on the top of the transfer bottom bin and communicating with the internal cavity of the transfer bottom bin, two communication ports two arranged on the two sides of the transfer bottom bin and communicating with the internal cavity of the transfer bottom bin, two threaded rods two arranged on the two ends of the internal cavity of the transfer bottom bin and extending out of the transfer bottom bin, a motor four arranged on one end of the transfer bottom bin and connected with the output end of the motor four and one end of the threaded rod two extending out of the transfer bottom bin, two sets of internal thread sleeve blocks three arranged on the surface of the threaded rod two and extending out of the transfer bottom bin through the communication port one, two side sliding rods arranged on the two ends of the internal cavity of the transfer bottom bin, and two sets of L-shaped connecting blocks arranged on the surface of the side sliding rods and extending out of the transfer bottom bin through the communication port two.
[0016] As a preferred scheme of the endoscope lens finishing equipment, the bearing assembly comprises a bearing bottom plate arranged on the top of the internal thread sleeve block three and connected with one end of the L-shaped connecting block extending out of the transfer bottom bin, two sets of moving top plates arranged above the bearing bottom plate, two positioning sliding columns arranged on the top of the bearing bottom plate and slidingly penetrating through the moving top plates, three sets of connecting horizontal plates arranged on the ends of the two sets of moving top plates close to each other, a motor three arranged on the top of the bearing bottom plate, a threaded rod one arranged on the output end of the motor three and penetrating through one set of connecting horizontal plates, three sets of rectangular columns arranged on the two sides of the top of the moving top plates, and arc-shaped placing blocks arranged on the top of the rectangular columns.
[0017] The endoscope lens finishing equipment has the following beneficial effects:
[0018] 1. The present application, through the movable setting of two groups of side mounting plates, single can be to three groups of endoscope lens clamping and finishing treatment, realize many groups of lens processing treatment at the same time, and many groups of lens processing reduces the idle time of equipment after waiting for single group of lens processing to complete, makes the equipment can continue to run, thereby improves the production efficiency.
[0019] 2. The present application, when the polishing plate and the rotating endoscope lens are polished and processed, through the mutual cooperation between the synchronous moving parts, the polishing plate can be driven to move back and forth above the endoscope lens, so that the surface of the lens can be fully polished, avoiding the problem of uneven surface caused by local excessive or insufficient, improving the processing precision, and the back and forth movement of the polishing plate helps to disperse the load on the equipment, reduces the wear and heat accumulation caused by long time single point contact, thereby prolonging the service life of the polishing plate.
[0020] 3. The present application, through the cooperation of the bearing assembly and the transfer assembly, the finished lens is quickly unloaded in the processing gap and replaced with a new lens to be processed, reducing the downtime and ensuring the continuity of production. Since the equipment can continuously process, the utilization rate of the equipment is maximized, and the idle time caused by waiting for lens replacement is reduced. The operator can quickly complete the lens replacement work in the processing gap without long waiting or other non-productive tasks, thereby improving the utilization efficiency of human resources. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0022] Among them:
[0023] Figure 1 It is the overall structure diagram of the endoscope lens finishing equipment of the present application.
[0024] Figure 2 It is the three-dimensional structure diagram of the machining part of the endoscope lens finishing equipment of the present application.
[0025] Figure 3 It is the three-dimensional structure diagram of the rotating fixing assembly of the endoscope lens finishing equipment of the present application.
[0026] Figure 4 It is the front view cross-sectional three-dimensional structure diagram of the operation table of the endoscope lens finishing equipment of the present application.
[0027] Figure 5 It is the overhead section view solid structure schematic diagram of the operation platform of the endoscope lens finishing equipment.
[0028] Figure 6 It is the front section view solid structure schematic diagram of the top bin of the endoscope lens finishing equipment.
[0029] Figure 7 It is the overhead section view solid structure schematic diagram of the top bin of the endoscope lens finishing equipment.
[0030] Figure 8 It is the solid structure schematic diagram of the synchronous assembly of the endoscope lens finishing equipment.
[0031] Figure 9 It is the solid structure schematic diagram of the bearing assembly of the endoscope lens finishing equipment.
[0032] Figure 10 It is the section view solid structure schematic diagram of the transfer bottom bin of the endoscope lens finishing equipment.
[0033] Explanation of reference signs:
[0034] 1, operation platform;
[0035] 2, processing component; 21, rotation fixing assembly; 211, side mounting plate; 212, rotation rod; 213, fixed sleeve; 214, double-groove pulley; 215, pulley one; 216, transmission belt one; 217, motor one; 22, moving fixing assembly; 221, bidirectional threaded rod; 222, internally threaded sleeve block one; 223, auxiliary sliding rod; 224, auxiliary sleeve block; 225, motor two; 226, connecting column; 23, polishing assembly; 231, fixed base; 232, top bin; 233, polishing plate;
[0036] 3, synchronous moving component; 31, main rotation rod; 32, mounting bottom plate one; 33, bevel gear one; 34, reciprocating screw rod; 35, internally threaded sleeve block two; 36, mounting bottom plate two; 37, bevel gear two; 38, synchronous assembly; 381, fixed side plate; 382, connecting rotation rod; 383, internally hexagonal rotation rod; 384, internally hexagonal slot; 385, pulley two; 386, transmission belt two;
[0037] 4, synchronous transfer component; 41, bearing assembly; 411, bearing bottom plate; 412, positioning sliding column; 413, moving top plate; 414, rectangular column; 415, arc-shaped placement block; 416, connecting horizontal plate; 417, motor three; 418, threaded rod one; 42, transfer assembly; 421, transfer bottom bin; 422, communication port one; 423, communication port two; 424, threaded rod two; 425, internally threaded sleeve block three; 426, motor four; 427, side sliding rod; 428, L-shaped connecting block. DETAILED DESCRIPTION
[0038] In order to make the above objectives, features and advantages of the present application more clear and easily understood, the specific embodiments of the present application are described in detail below with reference to the accompanying drawings.
[0039] In the following description, a lot of specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in other manners different from those described herein without departing from the scope of the present application, and those skilled in the art can make similar generalizations without departing from the present application. Therefore, the present application is not limited to the specific embodiments disclosed below.
[0040] Embodiment 1
[0041] Reference Figures 1-5 For the first embodiment of the present application, an endoscope lens finishing equipment is provided, which comprises an operation table 1, a machining component 2 arranged on the top of the operation table 1, a synchronous moving component 3 arranged on the machining component 2, and a synchronous transfer component 4 arranged on the top of the operation table 1.
[0042] The machining component 2 comprises a moving fixing assembly 22 arranged in the inner cavity of the operation table 1, a rotating fixing assembly 21 arranged on the moving fixing assembly 22, a polishing assembly 23 arranged on the top of the operation table 1, the rotating fixing assembly 21 comprises two groups of side mounting plates 211 arranged above the operation table 1, three groups of rotating rods 212 rotatably connected to one side of the side mounting plates 211, the rotating rods 212 penetrating through the side mounting plates 211, a fixed sleeve 213 fixedly installed at one end of the rotating rods 212, a belt pulley 215 arranged on one group of side mounting plates 211 and located on the surface of one end of the two groups of rotating rods 212, a double-groove belt pulley 214 arranged on the other group of side mounting plates 211 and located on the surface of one end of the two groups of rotating rods 212, a motor 217 fixedly installed on one side of one group of side mounting plates 211 and connected to one group of rotating rods 212, and two groups of transmission belts 216 sleeved on the surface of the double-groove belt pulley 214 and the belt pulley 215.
[0043] The moving fixing assembly 22 comprises a two-way threaded rod 221 rotatably connected on both sides of the inner cavity of the operation table 1, one end of the two-way threaded rod 221 extending to the outside of the operation table 1, a motor two 225 fixedly installed on one side of the operation table 1, the output end of the motor two 225 and the one end of the two-way threaded rod 221 located outside the operation table 1 being connected with each other, an inner thread sleeve block one 222 threadedly sleeved on the surface of the two-way threaded rod 221, two auxiliary slide rods 223 fixedly installed at both ends of the inner cavity on both sides of the operation table 1, two groups of auxiliary sleeve blocks 224 slidingly sleeved on the surface of the auxiliary slide rods 223, facilitating to improve the stability of the moving of the rotating fixing assembly 21, and a connecting column 226 fixedly installed at the top of the inner thread sleeve block one 222 and the auxiliary sleeve block 224, the connecting column 226 extending to the top of the operation table 1, and the three groups of connecting columns 226 on the same side of the operation table 1 and the bottom of one group of side installation plates 211 being connected with each other.
[0044] The polishing assembly 23 comprises a fixed base 231 fixedly installed on both sides of the top of the operation table 1, a top bin 232 fixedly installed on the top of the fixed base 231, and a polishing plate 233 arranged below the top bin 232.
[0045] In use, the three groups of endoscope lenses are placed between the two groups of side installation plates 211, then the motor two 225 is started to drive the two-way threaded rod 221 to rotate, so that the two groups of inner thread sleeve blocks one 222 are close to each other, then the two groups of side installation plates 211 are driven to be close to each other, and the three groups of endoscope lenses are clamped in the fixed sleeve 213 for fixing operation, then the motor one 217 is started to drive one group of rotating rods 212 on one group of side installation plates 211 to rotate, then through the cooperation between the double-groove belt pulley 214, the belt pulley one 215 and the two groups of transmission belts one 216, the three groups of rotating rods 212 on the group of side installation plates 211 are synchronously driven to rotate, then the endoscope lenses on the fixed sleeve 213 are driven to rotate, and through the mutual friction with the polishing plate 233 on the top bin 232, the finishing and polishing operation of the endoscope lenses is completed.
[0046] Embodiment 2
[0047] Reference Figures 1-8 For the second embodiment of the application, which is different from the first embodiment, the synchronous moving component 3 comprises an installation base plate one 32 fixedly installed on one side of the top of the inner cavity of the top bin 232, a main rotating rod 31 rotatably connected on one side of the inner cavity of the top bin 232, the main rotating rod 31 penetrating through the installation base plate one 32, facilitating to fix the main rotating rod 31, and a plurality of bevel gears one 33 fixedly sleeved on the surface of the main rotating rod 31.
[0048] The synchronous moving part 3 further comprises a plurality of reciprocating screw rods 34 rotatably connected at both ends of the inner cavity of the top bin 232, a mounting plate two 36 rotatably sleeved at one end of the surface of the reciprocating screw rod 34, and the top of the mounting plate two 36 is connected with the top of the inner cavity of the top bin 232, facilitating the mounting operation of the reciprocating screw rod 34, an internally threaded sleeve block two 35 threadedly connected at the surface of the reciprocating screw rod 34, and the bottom end of the internally threaded sleeve block two 35 is connected with the top of the polishing plate 233, a bevel gear two 37 fixedly sleeved at one end of the reciprocating screw rod 34, and the bevel gear two 37 and the bevel gear one 33 are meshed with each other, and a synchronous assembly 38 arranged at the top of the one set of side mounting plates 211.
[0049] The synchronous assembly 38 comprises a fixed side plate 381 fixedly mounted at the top of the one set of side mounting plates 211, a connecting rotating rod 382 rotatably connected at one side of the fixed side plate 381 and penetrating through the fixed side plate 381, an internal hexagonal rotating rod 383 fixedly connected at one side of the connecting rotating rod 382, an internal hexagonal slot 384 opened at one end of the main rotating rod 31 close to the mounting plate one 32, and one end of the internal hexagonal rotating rod 383 extends into the inner cavity of the internal hexagonal slot 384, facilitating the synchronous rotation of the main rotating rod 31 when the connecting rotating rod 382 rotates, a belt pulley two 385 fixedly sleeved at the surface of the connecting rotating rod 382 and the output end of the motor one 217, and a transmission belt two 386 sleeved at the surfaces of the two belt pulley two 385.
[0050] During use, when the motor one 217 drives the three sets of endoscope lenses clamped between the two sets of side mounting plates 211 to rotate, the connecting rotating rod 382 can be driven to rotate through the cooperation of the belt pulley two 385 and the transmission belt two 386, and the main rotating rod 31 can be driven to rotate through the cooperation of the internal hexagonal rotating rod 383 and the internal hexagonal slot 384 on the main rotating rod 31, and a plurality of reciprocating screw rods 34 can be driven to rotate through the cooperation of the bevel gear one 33 and the bevel gear two 37, so that the internally threaded sleeve block two 35 reciprocally moves on the surface of the reciprocating screw rod 34, and the polishing plate 233 can be driven to reciprocally move above the endoscope lens, thereby improving the polishing effect of the endoscope lens.
[0051] The remaining structure is the same as that of example 1.
[0052] Example 3
[0053] Reference Figures 1-10 For the third embodiment of the application, which is different from the second embodiment, the synchronous moving part 3 comprises a transfer assembly 42 arranged at the top of the operation table 1, and a bearing assembly 41 arranged on the transfer assembly 42.
[0054] The transfer assembly 42 comprises a transfer bottom bin 421 fixedly installed on the top of the operation table 1, a communication port one 422 opened on the top of the transfer bottom bin 421 and in communication with the inner cavity of the transfer bottom bin 421, communication ports two 423 opened on the two sides of the transfer bottom bin 421 and in communication with the inner cavity of the transfer bottom bin 421, threaded rods two 424 rotationally connected to the inner cavity of the transfer bottom bin 421 and extending to the outside of the transfer bottom bin 421 at the two ends, a motor four 426 fixedly installed at one end of the transfer bottom bin 421 and having an output end connected to one end of the threaded rods two 424 extending to the outside of the transfer bottom bin 421, two groups of inner threaded sleeve blocks three 425 threadedly sleeved on the surface of the threaded rods two 424 and extending to the outside of the transfer bottom bin 421 at the top, side slide rods 427 arranged at the two ends of the inner cavity of the transfer bottom bin 421, and two groups of L-shaped connecting blocks 428 fixedly connected to the surface of the side slide rods 427 and extending to the outside of the transfer bottom bin 421 through the communication ports two 423, so that the L-shaped connecting blocks 428 can slide on the surface of the side slide rods 427 to assist in supporting the bearing bottom plate 411 and improve the stability of the bearing bottom plate 411 during movement.
[0055] The bearing assembly 41 comprises a bearing bottom plate 411 fixedly installed on the top of the inner threaded sleeve blocks three 425 and having one end of the L-shaped connecting blocks 428 extending to the bottom connected to the outer end of the transfer bottom bin 421, two groups of moving top plates 413 arranged above the bearing bottom plate 411, positioning slide columns 412 fixedly installed on the top of the bearing bottom plate 411 at the two ends and slidingly penetrating the moving top plates 413, three groups of connecting horizontal plates 416 fixedly installed on the two groups of moving top plates 413 close to each other at one end, a motor three 417 fixedly installed on the top of the bearing bottom plate 411, threaded rods one 418 connected to the output end of the motor three 417 and penetrating one group of connecting horizontal plates 416, three groups of rectangular columns 414 fixedly installed on the top of the moving top plates 413 at the two sides, and arc-shaped placing blocks 415 fixedly installed on the top of the rectangular columns 414, which can be used for placing the endoscope lens.
[0056] During use, when the three groups of endoscope lenses clamped and fixed on the two groups of side installation plates 211 are polished, the operator places the three groups of unprocessed endoscope lenses on the moving top plate 413 close to the end of the operation table 1. When the three groups of endoscope lenses clamped and fixed on the two groups of side installation plates 211 are polished, the motor three 417 is started to drive the threaded rod one 418 to rotate, so that the moving top plate 413 rises, and the idle arc-shaped placing block 415 on the other moving top plate 413 rises below the processed endoscope lenses. Then the motor two 225 is started to drive the two groups of inner threaded sleeve blocks one 222 to move away from each other on the surface of the side installation plate 211, so that the two groups of side installation plates 211 move away from each other, cancel the clamping of the processed endoscope lenses, and place the processed endoscope lenses on the arc-shaped placing block 415;
[0057] Then the motor four 426 is started to drive the threaded rod two 424 to rotate, so that the two groups of inner threaded sleeve blocks three 425 move on the surface of the threaded rod two 424, thereby driving the bearing bottom plate 411 to move from one end above the operation table 1 to the other end. At the same time, the processed endoscope lenses on one group of moving top plates 413 also move to one end of the operation table 1, and the unprocessed endoscope lenses on the other group of moving top plates 413 move between the two groups of side installation plates 211. At this time, the motor two 225 is started to drive the two groups of inner threaded sleeve blocks one 222 to move close to each other, thereby driving the two groups of bidirectional threaded rods 221 to clamp the unprocessed endoscope lenses, and then performing the polishing operation.
[0058] The rest of the structure is the same as that of example 2.
[0059] It should be noted that the above examples are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, and they should be covered in the scope of the claims of the present application.
Claims
1. An endoscope lens finishing apparatus comprising an operation table (1), characterized in that: A processing component (2) is arranged on the top of the operating table (1), a synchronous moving component (3) is arranged on the processing component (2), and a synchronous transfer component (4) is arranged on the top of the operating table (1); The processing component (2) comprises a moving fixing assembly (22) arranged in the inner cavity of the operating table (1), a rotating fixing assembly (21) arranged on the moving fixing assembly (22), and a polishing assembly (23) arranged on the top of the operating table (1); the rotating fixing assembly (21) comprises two groups of side mounting plates (211) arranged above the operating table (1), three groups of rotating rods (212) arranged on one side of the side mounting plate (211), the rotating rod (212) penetrating through the side mounting plate (211), a fixing sleeve (213) arranged on one end of the rotating rod (212), a belt pulley one (215) arranged on the surface of one end of the rotating rod (212) of one group of the side mounting plate (211), a double-groove belt pulley (214) arranged on the surface of one end of the rotating rod (212) of another group of the side mounting plate (211), a motor one (217) arranged on one side of one group of the side mounting plate (211), the motor one (217) and one group of the rotating rod (212) being connected with each other, and two groups of transmission belts one (216) arranged on the surface of the double-groove belt pulley (214), the two groups of transmission belts one (216) being sleeved with each other and the belt pulley one (215); The polishing assembly (23) comprises a fixed base (231) arranged on both sides of the top of the operating table (1), a top bin (232) arranged on the top of the fixed base (231), and a polishing plate (233) arranged below the top bin (232); The synchronous moving component (3) comprises an installation bottom plate one (32) arranged on one side of the top of the inner cavity of the top bin (232), a main rotating rod (31) arranged on one side of the inner cavity of the top bin (232), the main rotating rod (31) penetrating through the installation bottom plate one (32), and a plurality of bevel gears one (33) arranged on the surface of the main rotating rod (31); The synchronous moving component (3) further comprises a plurality of reciprocating screw rods (34) arranged at both ends of the inner cavity of the top bin (232), an installation bottom plate two (36) arranged on one end of the surface of the reciprocating screw rod (34), the top of the installation bottom plate two (36) being connected with the top of the inner cavity of the top bin (232), an internally-threaded sleeve block two (35) arranged on the surface of the reciprocating screw rod (34), the bottom end of the internally-threaded sleeve block two (35) being connected with the top of the polishing plate (233), a bevel gear two (37) arranged on one end of the reciprocating screw rod (34), the bevel gear two (37) being engaged with the bevel gear one (33), and a synchronous assembly (38) arranged on the top of one group of the side mounting plate (211); Said synchronous assembly (38) comprises a fixed side plate (381) arranged on the top of a group of the side mounting plates (211), a connecting rotating rod (382) arranged on one side of the fixed side plate (381) and penetrating the fixed side plate (381), an inner hexagonal rotating rod (383) arranged on one side of the connecting rotating rod (382), an inner hexagonal slot (384) arranged on one end of the main rotating rod (31) close to the mounting bottom plate (32), one end of the inner hexagonal rotating rod (383) extending into the inner cavity of the inner hexagonal slot (384), a belt pulley two (385) arranged on the surface of the connecting rotating rod (382) and the output end of the motor one (217), and a transmission belt two (386) arranged on the surface of the two groups of the belt pulley two (385).
2. The inner lens lens finishing apparatus according to claim 1, characterized by: Said moving fixing assembly (22) comprises a bidirectional threaded rod (221) arranged in the inner cavity of the operation table (1) and extending to the outside of the operation table (1), a motor two (225) arranged on one side of the operation table (1), the output end of the motor two (225) and the end of the bidirectional threaded rod (221) located outside the operation table (1) being connected with each other, an inner threaded sleeve block one (222) arranged on the surface of the bidirectional threaded rod (221), an auxiliary sliding rod (223) arranged on both ends of the inner cavity of the operation table (1), two groups of auxiliary sleeve blocks (224) arranged on the surface of the auxiliary sliding rod (223), a connecting column (226) arranged on the top of the inner threaded sleeve block one (222) and the auxiliary sleeve block (224) and extending to the top of the operation table (1), and three groups of the connecting columns (226) on the same side of the operation table (1) and the bottom of a group of the side mounting plates (211) being connected with each other.
3. The inner lens lens finishing apparatus according to claim 2, characterized by: Said synchronous transfer component (4) comprises a transfer assembly (42) arranged on the top of the operation table (1) and a bearing assembly (41) arranged on the transfer assembly (42).
4. The inner lens lens finishing apparatus according to claim 3, characterized by: The transfer assembly (42) comprises a transfer bottom bin (421) arranged on the top of the operation table (1), a communication port I (422) arranged on the top of the transfer bottom bin (421), and the communication port I (422) and the inner cavity of the transfer bottom bin (421) are interconnected, a communication port II (423) arranged on both sides of the transfer bottom bin (421), and the communication port II (423) and the inner cavity of the transfer bottom bin (421) are interconnected, a threaded rod II (424) arranged at both ends of the inner cavity of the transfer bottom bin (421), and one end of the threaded rod II (424) extends to the outside of the transfer bottom bin (421), a motor IV (426) arranged at one end of the transfer bottom bin (421), and the output end of the motor IV (426) and the end of the threaded rod II (424) located outside the transfer bottom bin (421) are connected, two groups of inner threaded sleeve blocks III (425) arranged on the surface of the threaded rod II (424), and the top of the inner threaded sleeve block III (425) extends to the outside of the transfer bottom bin (421) through the communication port I (422), a side sliding rod (427) arranged at both ends of the inner cavity of the transfer bottom bin (421), and two groups of L-shaped connecting blocks (428) arranged on the surface of the side sliding rod (427), and the L-shaped connecting block (428) extends to the outside of the transfer bottom bin (421) through the communication port II (423).
5. The inner lens lens finishing apparatus according to claim 4, characterized by: The bearing assembly (41) comprises a bearing bottom plate (411) arranged on the top of the inner threaded sleeve block III (425), and one end of the L-shaped connecting block (428) located outside the transfer bottom bin (421) and the bottom of the bearing bottom plate (411) are connected, two groups of moving top plates (413) arranged above the bearing bottom plate (411), positioning slide columns (412) arranged at both ends of the top of the bearing bottom plate (411), and the positioning slide columns (412) slide through the moving top plates (413), three groups of connecting horizontal plates (416) arranged at one end of the two groups of moving top plates (413) close to each other, a motor III (417) arranged on the top of the bearing bottom plate (411), a threaded rod I (418) arranged on the output end of the motor III (417), and the threaded rod I (418) penetrates one group of connecting horizontal plates (416), three groups of rectangular columns (414) arranged on both sides of the top of the moving top plate (413), and arc-shaped placing blocks (415) arranged on the top of the rectangular column (414).
Citation Information
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