A transfer storage rack for polarizing lenses

By designing a stable transfer and storage rack structure, the problem of wear and tear on polarizing lenses during movement was solved, enabling stable transmission and accurate processing of the lenses.

CN119795124BActive Publication Date: 2025-12-02ZHANGZHOU AOJIE OPTICAL TECH CO LTD
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Patent Information

Application Number
CN202510310157.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2025-12-02
Estimated Expiration
2045-03-17

AI Technical Summary

Technical Problem

During transit storage, the hanging rods of polarizing lenses are prone to movement and rotation, causing wear and tear on adjacent lenses.

Method used

A transfer storage rack including a frame, casters, a hanging assembly, and a limiting assembly was designed. By setting up structures such as push plates, limiting plates, and connecting columns, the hanging rods can be stably fixed and accurately moved, avoiding lens wear.

Benefits of technology

This effectively prevents polarized lenses from coming into contact with each other and wearing out during movement, ensuring the stability and processing precision of the lenses.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the field of polarizing lens transfer and storage technology, and provides a transfer and storage rack for polarizing lenses, including a frame, multiple casters, multiple hooking components, and a limiting component. The hooking components include a first hooking frame, a second hooking frame, multiple hanging rods, a push plate, and multiple first springs. The two ends of each hanging rod are respectively hooked to the first hooking frame and the second hooking frame. Multiple first springs are disposed between the first hooking frame and the push plate. The limiting component includes an abutment frame, multiple second springs, a sliding frame, multiple limiting plates, and a connecting post. Multiple second springs are disposed between the abutment frame and the frame. The limiting plate abuts against the other end of the hanging rod. The connecting post is slidably connected to the frame, and the lower side of the connecting post has a first abutment surface, and the upper side of the connecting post has a second abutment surface. Based on this, wear and tear on the polarizing lenses can be minimized.
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Description

Technical Field

[0001] This application relates to the field of transfer storage for polarizing lenses, and more particularly to a transfer storage rack for polarizing lenses. Background Technology

[0002] Polarized lenses are lenses made based on the principle of light polarization. They allow light from only specific directions to pass through while blocking light from other directions, effectively reducing glare, reflected light, and scattered light, thereby improving visual clarity and comfort. Polarized lenses need to be transferred to processing equipment via a transfer storage rack for cleaning, strengthening, and drying.

[0003] In related technologies, the transfer storage rack includes a mounting frame, multiple hooking components, and multiple casters. The hooking components include two hooking frames and multiple hanging rods. The two hooking frames are fixedly connected to both sides of the mounting frame, and the two ends of the hanging rods are hooked to the two hooking frames for hanging polarizing lenses. The multiple casters are fixedly connected to the lower end of the mounting frame to realize the movement of the transfer storage rack.

[0004] During use, staff attach multiple polarizing lenses to their corresponding mounting rods. Then, multiple casters are used to push the mounting frame, moving it into the processing equipment. The movement of the mounting frame is then restricted by the brake pads of the casters. At this time, the robotic arm of the processing equipment moves the multiple mounting rods of each attachment component in sequence, moving each attachment rod to different workstations of the processing equipment to achieve processing such as cleaning, strengthening, and drying of the polarizing lenses.

[0005] However, in practical applications, when the mounting bracket is moved, multiple hanging rods are prone to moving and rotating, causing adjacent polarizing lenses to come into contact and easily leading to wear on the polarizing lenses. Therefore, improvements are needed. Summary of the Invention

[0006] To minimize wear and tear on polarizing lenses, this application provides a transfer storage rack for polarizing lenses.

[0007] The technical solution of the transfer storage rack for polarizing lenses provided in this application is as follows:

[0008] A transfer storage rack for polarizing lenses includes a frame, multiple casters, multiple mounting components, and a limiting component; the multiple casters are located at the lower end of the frame.

[0009] Multiple hanging components are spaced apart vertically; each hanging component includes a first hanging frame, a second hanging frame, multiple hanging rods, a push plate, and multiple first springs; the first hanging frame and the second hanging frame are respectively located on two inner sides of the frame; multiple hanging rods are spaced apart along the length of the first hanging frame, and the two ends of each hanging rod are respectively hung on the first hanging frame and the second hanging frame; the push plate is slidably connected to the first hanging frame, and multiple first springs are located between the first hanging frame and the push plate to drive the push plate to abut against one end of the hanging rod;

[0010] The limiting assembly includes an abutment frame, multiple second springs, a sliding frame, multiple limiting plates, and a connecting post. The abutment frame is slidably connected to the lower end of the frame in a vertical direction. The multiple second springs are disposed between the abutment frame and the frame to drive the abutment frame closer to the frame. The sliding frame is slidably connected to the frame in a vertical direction. The multiple limiting plates are spaced apart in the sliding frame in a vertical direction, each limiting plate being located in each of the second hanging frames and abutting against the other end of the hanging rod. The connecting post is slidably connected to the frame. The lower side of the connecting post has a first abutment surface that abuts against the abutment frame, and the upper side of the connecting post has a second abutment surface that abuts against the sliding frame.

[0011] When the connecting column approaches the frame, the abutment frame slides downward and the sliding frame slides upward, so that each of the limiting plates disengages from each of the hanging rods.

[0012] By adopting the above technical solution, in practical applications, both ends of each hanging rod are respectively hung on the first hanging frame and the second hanging frame. The operator abuts one end of the hanging rod against the push plate and compresses multiple first springs, while the other end of the hanging rod abuts against the limiting plate to achieve the clamping and fixing of the hanging rod. Multiple polarizing lenses are hung on the hanging rod. When the frame is moved by multiple casters, the rotation and movement of the hanging rod can be avoided as much as possible, so as to reduce the contact between adjacent polarizing lenses and thus minimize the wear of polarizing lenses.

[0013] When the frame moves to the processing equipment, the operator slides the connecting column closer to the frame. Under the action of the first contact surface, the contact frame slides downward to contact the ground, thus restricting the frame from sliding. This allows the robot arm of the processing equipment to accurately and stably lift multiple hanging rods. At the same time, under the action of the second contact surface, the sliding frame slides upward, causing each limiting plate to move upward. This releases the limiting plates from contacting the corresponding hanging rods, thus releasing the clamping and fixing of the hanging rods, so that the robot arm can lift multiple hanging rods.

[0014] Preferably, the hanging rod includes a rod body, and grooves are provided at both ends of the rod body.

[0015] By adopting the above technical solution and setting the groove, the robot arm can be engaged in the groove, thereby improving the stability of the robot arm's movement of the hanging rod and realizing the positioning of the hanging rod, so that the polarizing lens on the hanging rod can be processed more accurately at each workstation.

[0016] Preferably, the hanging rod further includes a ring body, which is disposed at one end of the rod body near the push plate. When the limiting plate moves away from the rod body, the push plate pushes the rod body under the drive of multiple first springs, so that the ring body contacts the first hanging frame.

[0017] By adopting the above technical solution, by setting the ring body and sliding the connecting column to make the sliding frame move upward, the limiting plate moves away from the rod body to release the contact with the rod body. At this time, the push plate slides under the drive of multiple first springs to push the rod body, so that the ring body contacts the inner side of the first hook frame, so as to ensure that the robot can be accurately engaged in the groove.

[0018] Preferably, the annular body is threadedly connected to the rod body.

[0019] By adopting the above technical solution, and by setting the ring body threaded to the rod body, the position of the ring body can be adjusted, thereby facilitating the adjustment of the position between the slot and the robot arm. In this way, the robot arm can be accurately engaged in the slot without the need for adjustment.

[0020] Preferably, the lower end of the limiting plate has a chamfer on the side near the hanging rod.

[0021] By adopting the above technical solution, and by setting a chamfer, when the limiting plate moves upward, one end of the hanging rod gradually disengages from the limiting plate through the chamfer, which can minimize the shaking of the polarizing lenses on the hanging rod, reduce the occurrence of contact between adjacent polarizing lenses, and thus minimize the wear of the polarizing lenses.

[0022] Preferably, the limiting plate is detachably connected to the sliding frame.

[0023] By adopting the above technical solution, the limiting plates are detachably connected to the sliding frame, which facilitates the installation of each limiting plate and each second hanging frame, and makes it easy to replace the limiting plates of different sizes to suit different hanging rods.

[0024] Preferably, the limiting component further includes a handle, which is located on the side of the frame near the first mounting frame.

[0025] By adopting the above technical solution and setting handles to facilitate the application of force by workers, the machine frame can be moved more easily.

[0026] Preferably, the limiting component further includes a force-applying plate, which is disposed at the end of the connecting post away from the abutment frame.

[0027] By adopting the above technical solution and setting a force-applying plate, force can be applied to the connecting column, thereby facilitating the sliding of the connecting column.

[0028] Preferably, the force-applying plate is rotatably connected to the connecting column, and by rotating the force-applying plate, the force-applying plate abuts against the inner side of the handle.

[0029] By adopting the above technical solution, by setting the force-applying plate to be rotatably connected to the connecting column, and sliding the connecting column so that the abutment frame abuts the ground, by rotating the force-applying plate so that the force-applying plate is located in the handle and abuts the inside of the handle, the connecting column is restricted from moving away from the frame, so that the abutment frame is stably kept abutting the ground.

[0030] Preferably, the limiting component further includes a third spring disposed between the frame and the force-applying plate to drive the connecting column away from the frame.

[0031] By adopting the above technical solution and setting a third spring to facilitate the reset of the connecting column, the frame maintains a gap between the abutment frame and the ground during movement, and the two ends of the hanging rod are stably pressed between the push plate and the limit plate.

[0032] In summary, this application includes at least one of the following beneficial technical effects:

[0033] 1. Both ends of each hanging rod are respectively attached to the first hanging frame and the second hanging frame. The operator abuts one end of the hanging rod against the push plate and compresses multiple first springs, while the other end abuts against the limiting plate to achieve the clamping and fixing of the hanging rod. Multiple polarizing lenses are attached to the hanging rod. When the frame is moved by multiple casters, the rotation and movement of the hanging rod can be avoided as much as possible, so as to reduce the contact between adjacent polarizing lenses and thus minimize the wear of polarizing lenses.

[0034] 2. After the frame moves to the processing equipment, the operator slides the connecting column so that the connecting column is close to the frame. Under the action of the first abutment surface, the abutment frame slides downward so that the abutment frame abuts the ground to restrict the frame from sliding. This allows the robot arm of the processing equipment to accurately and stably lift multiple hanging rods. At the same time, under the action of the second abutment surface, the sliding frame slides upward so that each limit plate moves upward. This releases the limit plate from abutting the corresponding hanging rod, thus releasing the clamping and fixing of the hanging rod, so that the robot arm can lift multiple hanging rods.

[0035] 3. By setting the ring body and sliding the connecting column, the sliding frame moves upward so that the limiting plate moves away from the rod body to release the contact with the rod body. The push plate slides under the drive of multiple first springs to push the rod body so that the ring body contacts the inner side of the first hook frame to ensure that the robot can be accurately engaged in the groove. Attached Figure Description

[0036] Figure 1 This is a schematic diagram of the overall structure of the transfer storage rack in the embodiments of this application;

[0037] Figure 2 This is a schematic diagram of the overall structure of the mounting component in the embodiments of this application;

[0038] Figure 3 This is a schematic diagram of the transfer storage rack structure in an embodiment of this application;

[0039] Figure 4 This is a schematic diagram of the overall structure of the connecting column in an embodiment of this application;

[0040] Figure 5 This is a schematic diagram of the overall structure of the hanging rod in the embodiments of this application;

[0041] Figure 6 This is a schematic diagram of the connection between the limiting plate and the hanging rod in an embodiment of this application.

[0042] Reference numerals: 1. Frame; 2. Casters; 3. Mounting assembly; 31. First mounting frame; 32. Second mounting frame; 33. Mounting rod; 331. Rod body; 332. Groove; 333. Ring body; 34. Push plate; 35. First spring; 4. Limiting assembly; 41. Abutment frame; 42. Second spring; 43. Sliding frame; 44. Limiting plate; 45. Connecting column; 451. First abutment surface; 452. Second abutment surface; 46. Chamfer; 47. Handle; 48. Force plate; 49. Third spring. Detailed Implementation

[0043] The following is in conjunction with the appendix Figure 1-6 This application will be described in further detail.

[0044] This application discloses a transfer storage rack for polarizing lenses.

[0045] Reference Figure 1 The transfer storage rack includes a rack 1, multiple casters 2, multiple mounting components 3, and a limiting component 4. In this embodiment, there are four casters 2, which are fixedly connected to the lower end of the rack 1 and are arranged in a rectangular shape to enable movement of the rack 1.

[0046] Reference Figure 1 and Figure 2Multiple hanging components 3 are arranged at intervals along the vertical direction. Specifically, each hanging component 3 includes a first hanging frame 31, a second hanging frame 32, multiple hanging rods 33, a push plate 34, and multiple first springs 35. The first hanging frame 31 and the second hanging frame 32 are respectively fixedly connected to the two inner sides of the frame 1 so that the first hanging frame 31 and the second hanging frame 32 are arranged opposite each other. The multiple hanging rods 33 are arranged at intervals along the length direction of the first hanging frame 31, and the two ends of each hanging rod 33 are respectively hung on the first hanging frame 31 and the second hanging frame 32. The push plate 34 is rectangular and slides in the first hanging frame 31 in the width direction of the first hanging frame 31. Multiple first springs 35 are spaced apart along the length of the first hook frame 31, and one end of each first spring 35 is fixedly connected to the first hook frame 31, and the other end is fixedly connected to the side of the push plate 34 away from the second hook frame 32, so as to drive the push plate 34 to approach the hanging rod 33, so that the push plate 34 abuts against one end of the hanging rod 33.

[0047] Reference Figure 1 and Figure 3 Meanwhile, the limiting component 4 includes an abutment frame 41, multiple second springs 42, a sliding frame 43, multiple limiting plates 44, and a connecting post 45. The abutment frame 41 is slidably connected to the lower end of the frame 1 and located below the second hanging frame 32. The sliding direction is vertical. Multiple second springs 42 are spaced apart along the length of the second hanging frame 32. One end of each second spring 42 is fixedly connected to the lower end of the frame 1, and the other end is fixedly connected to the abutment frame 41 to drive the abutment frame 41 closer to the frame 1, that is, to drive the abutment frame 41 to move upward, so that the abutment frame 41 is away from the ground.

[0048] The sliding frame 43 is slidably connected to the frame 1 and located above the abutment frame 41. The sliding direction is vertical. Multiple limiting plates 44 are fixedly connected to the sliding frame 43 and are spaced apart along the vertical direction. The number of limiting plates 44 is the same as the number of second hanging frames 32. Each limiting plate 44 is located in each second hanging frame 32 and abuts against the end of multiple hanging rods 33 away from the first hanging frame 31.

[0049] Reference Figure 3 and Figure 4The connecting column 45 is slidably connected to the frame 1, and the sliding direction is along the length of the hanging rod 33. The lower side of the connecting column 45 has an inclined first abutment surface 451, which abuts against the abutment frame 41. The upper side of the connecting column 45 has an inclined second abutment surface 452, which abuts against the sliding frame 43. By sliding the connecting column 45, the connecting column 45 moves closer to the frame 1, the abutment frame 41 slides downward, and the sliding frame 43 slides upward, causing each limiting plate 44 to disengage from its corresponding hanging rod 33. When sliding the connecting column 45, the first abutment surface 451 abuts against the abutment frame 41 first, and after sliding a certain distance, the second abutment surface 452 abuts against the sliding frame 43.

[0050] In practical applications, the operator first attaches both ends of each hanging rod 33 to the first hanging frame 31 and the second hanging frame 32 respectively. Then, one end of the hanging rod 33 abuts against the push plate 34 and compresses multiple first springs 35, while the other end of the hanging rod 33 abuts against the limiting plate 44 to achieve the pressing and fixing of the hanging rod 33. Multiple polarizing lenses are hung on the hanging rod 33. When the operator moves the frame 1 through multiple casters 2, the hanging rod 33 can be prevented from rotating and moving as much as possible to reduce the contact between adjacent polarizing lenses and thus minimize the wear of the polarizing lenses.

[0051] Meanwhile, after the frame 1 moves to the processing equipment, the operator can slide the connecting column 45 closer to the frame 1. Under the action of the first abutment surface 451, the abutment frame 41 slides downwards to abut the ground, thus restricting the sliding of the frame 1. This eliminates the need for casters 2 with brake pads or brake pads to restrict the sliding of the frame 1, thereby achieving the limiting of the frame 1 and allowing the processing equipment's robot arm to accurately and stably lift multiple hanging rods 33. Furthermore, under the action of the second abutment surface 452, the sliding frame 43 slides upwards, causing each limiting plate 44 to move upwards, releasing the abutment of the corresponding hanging rod 33 and releasing the clamping fixation, allowing the robot arm to lift multiple hanging rods 33.

[0052] Reference Figure 2 and Figure 5 In some embodiments, the hanging rod 33 includes a rod body 331, and both ends of the rod body 331 are provided with slots 332. The slots 332 are matched with the robot arm. Specifically, the robot arm can be engaged in the slots 332 during operation to improve the stability of the robot arm's movement of the hanging rod 33 and to achieve the positioning of the hanging rod 33, so that the polarizing lens on the hanging rod 33 can be processed more accurately at each workstation.

[0053] In some embodiments, the hanging rod 33 further includes a ring 333, which is fixedly connected to one end of the rod 331 near the push plate 34. The sliding frame 43 moves upward by sliding the connecting column 45, thereby driving the limiting plate 44 to move upward, so that the limiting plate 44 moves away from the rod 331, thereby releasing the contact with the rod 331. At this time, the push plate 34 slides under the drive of multiple first springs 35 to push the rod 331, so that the ring 333 contacts the inner side of the first hanging frame 31, thereby achieving the positioning and installation of the rod 331, and thus ensuring that the robot can be accurately engaged in the groove 332.

[0054] In some embodiments, the ring 333 is threaded to the rod 331. By rotating the ring 333, the position between the ring 333 and the rod 331 can be adjusted, thereby facilitating the adjustment of the position between the slot 332 and the robot. In this way, the robot can be accurately engaged in the slot 332 without the need for adjustment.

[0055] Reference Figure 6 In some embodiments, the lower end of the limiting plate 44 is provided with a chamfer 46 on the side near the rod 331. When the limiting plate 44 moves upward, one end of the rod 331 gradually disengages from the limiting plate 44 through the chamfer 46, which can minimize the shaking of the polarizing lenses on the hanging rod 33, thereby reducing the occurrence of contact between adjacent polarizing lenses and minimizing wear of the polarizing lenses.

[0056] Reference Figure 1 In some embodiments, the limiting plate 44 is detachably connected to the sliding frame 43. Specifically, the limiting plate 44 is fixedly connected to one side of the sliding frame 43 by bolts (not shown in the figure) to facilitate the installation between each limiting plate 44 and each second hanging frame 32, and to facilitate the replacement of limiting plates 44 of different sizes to suit different hanging rods 33, thereby improving applicability.

[0057] In some embodiments, the limiting component 4 further includes a handle 47, which is fixedly connected to the side of the frame 1 near the first mounting frame 31. The handle 47 is for the operator to hold and apply force, thereby facilitating the movement of the frame 1 and the transfer of the polarizing lens.

[0058] Reference Figure 1 and Figure 3 In some embodiments, the limiting component 4 further includes a force-applying plate 48, which is installed at the end of the connecting post 45 away from the abutment frame 41. The force-applying plate 48 is used by the operator to apply force. Since the area of ​​the force-applying plate 48 is much larger than one end of the connecting post 45, it is convenient to apply force to the connecting post 45, thereby facilitating the sliding of the connecting post 45.

[0059] In some embodiments, the force-applying plate 48 is rotatably connected to the connecting column 45. When the force-applying plate 48 is horizontal, force can be applied to slide the connecting column 45 so that the abutment frame 41 abuts against the ground. At this time, the force-applying plate 48 is rotated so that the force-applying plate 48 is in a vertical state and located in the handle 47. Under the action of the abutment frame 41 and the first abutment surface 451 and the sliding frame 43 and the second abutment surface 452, the connecting column 45 is reset to a certain distance, so that the force-applying plate 48 abuts against the inner side of the handle 47, thereby limiting the connecting column 45 from moving away from the frame 1, so that the abutment frame 41 is stably kept abutting against the ground.

[0060] In some embodiments, the limiting component 4 further includes a third spring 49, one end of which is fixedly connected to the outside of the frame 1 and the other end is fixedly connected to the force plate 48. The third spring 49 is sleeved on the connecting post 45, so that the third spring 49 drives the connecting post 45 away from the frame 1, so that the connecting post 45 can be reset, so that the force plate 48 can stably abut against the handle 47, thereby further ensuring that the abutment frame 41 is stably abutted against the ground.

[0061] The implementation principle of this embodiment is as follows: In practical application, the operator first attaches the two ends of each hanging rod 33 to the first hanging frame 31 and the second hanging frame 32 respectively, then abuts one end of the hanging rod 33 against the push plate 34 and compresses multiple first springs 35, and the other end of the hanging rod 33 abuts against the limiting plate 44 to achieve the pressing and fixing of the hanging rod 33. Multiple polarizing lenses are attached to the hanging rod 33. When the operator moves the frame 1 through multiple casters 2, the hanging rod 33 can be prevented from rotating and moving as much as possible, so as to reduce the contact between adjacent polarizing lenses and thus minimize the wear of polarizing lenses.

[0062] Meanwhile, after the frame 1 moves to the processing equipment, the operator can slide the connecting column 45 closer to the frame 1. Under the action of the first abutment surface 451, the abutment frame 41 slides downwards to abut the ground, thus restricting the sliding of the frame 1. In this way, the frame 1 can be limited without the need for casters 2 with brake pads, allowing the robot arm of the processing equipment to accurately and stably lift multiple hanging rods 33. Furthermore, under the action of the second abutment surface 452, the sliding frame 43 slides upwards, causing each limiting plate 44 to move upwards, releasing the abutment of the limiting plate 44 against the corresponding hanging rod 33, thus releasing the clamping and fixing of the hanging rod 33, so that the robot arm can lift multiple hanging rods 33.

[0063] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A transfer storage rack for polarizing lenses, characterized in that: It includes a frame (1), multiple casters (2), multiple mounting components (3) and a limiting component (4); the multiple casters (2) are located at the lower end of the frame (1); Multiple hanging components (3) are arranged at intervals along the vertical direction; each hanging component (3) includes a first hanging frame (31), a second hanging frame (32), multiple hanging rods (33), a push plate (34), and multiple first springs (35); the first hanging frame (31) and the second hanging frame (32) are respectively located on the two inner sides of the frame (1); multiple hanging rods (33) are arranged at intervals along the length direction of the first hanging frame (31), and the two ends of the hanging rods (33) are respectively hung on the first hanging frame (31) and the second hanging frame (32); the push plate (34) is slidably connected to the first hanging frame (31), and multiple first springs (35) are located between the first hanging frame (31) and the push plate (34) to drive the push plate (34) to abut against one end of the hanging rod (33); The limiting component (4) includes an abutment frame (41), a plurality of second springs (42), a sliding frame (43), a plurality of limiting plates (44), and a connecting post (45); the abutment frame (41) is slidably connected to the lower end of the frame (1) in the vertical direction, and the plurality of second springs (42) are disposed between the abutment frame (41) and the frame (1) to drive the abutment frame (41) closer to the frame (1); the sliding frame (43) is slidably connected to the frame (1) in the vertical direction; the plurality of limiting plates (44) are slidably connected to the frame (1) in the vertical direction. The sliding frame (43) is spaced apart in a straight direction, and each of the limiting plates (44) is located in each of the second hanging frames (32) and abuts against the other end of the hanging rod (33); the connecting column (45) is slidably connected to the frame (1), the lower side of the connecting column (45) is provided with a first abutting surface (451) and the first abutting surface (451) abuts against the abutting frame (41), the upper side of the connecting column (45) is provided with a second abutting surface (452) and the second abutting surface (452) abuts against the sliding frame (43); When the connecting column (45) approaches the frame (1), the abutment frame (41) slides downward and the sliding frame (43) slides upward, so that each of the limiting plates (44) disengages from each of the hanging rods (33); The limiting component (4) also includes a handle (47), which is located on the side of the frame (1) near the first hanging frame (31); The limiting component (4) also includes a force-applying plate (48), which is located at the end of the connecting post (45) away from the abutment frame (41); The force-applying plate (48) is rotatably connected to the connecting column (45), and by rotating the force-applying plate (48), the force-applying plate (48) abuts against the inside of the handle (47). The hanging rod (33) includes a rod body (331), and both ends of the rod body (331) are provided with grooves (332); The hanging rod (33) also includes a ring (333), which is located at one end of the rod (331) near the push plate (34). When the limiting plate (44) moves away from the rod (331), the push plate (34) pushes the rod (331) under the drive of multiple first springs (35) so that the ring (333) contacts the first hanging frame (31); the ring (333) is threaded to the rod (331). The lower end of the limiting plate (44) near the hanging rod (33) is provided with a chamfer (46); The limiting component (4) also includes a third spring (49), which is disposed between the frame (1) and the force plate (48) to drive the connecting column (45) away from the frame (1).

2. The transfer storage rack for polarizing lenses according to claim 1, characterized in that: The limiting plate (44) is detachably connected to the sliding frame (43).

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