Transfer device for curved tempered glass
By designing a curved tempered glass transfer device with clamping mechanism one and clamping mechanism two, the problem of cumbersome manual limiting in the existing technology is solved, and rapid limiting and efficient transfer are achieved. It is suitable for diverse production scenarios and improves the convenience and safety of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHANGJIAGANG YANDING GLASS CO LTD
- Filing Date
- 2025-06-05
- Publication Date
- 2026-05-15
AI Technical Summary
Existing curved tempered glass transfer devices require manual limiters, which makes operation cumbersome, time-consuming, increases labor costs, and reduces work efficiency.
A curved tempered glass transfer device is designed, which includes a clamping mechanism one and a clamping mechanism two. The clamping mechanism one limits the center of the glass, and the clamping mechanism two limits the edge of the glass. The limiting positions can be adjusted. The limiting mechanism slides inside the trolley to limit the clamping mechanism, which simplifies the operation process.
It achieves rapid limit positioning, reduces manual operation time, improves work efficiency, lowers labor costs, broadens the scope of application, and enhances stability and safety. It is suitable for transporting curved tempered glass of different lengths and thicknesses.
Smart Images

Figure CN224241065U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass transportation equipment technology, specifically a curved tempered glass transfer device. Background Technology
[0002] In the glass processing and transportation industry, curved tempered glass is widely used due to its unique performance and aesthetic appeal. Its transfer process is crucial to product quality and safety. However, existing curved tempered glass transfer devices have some shortcomings.
[0003] To ensure stable transport, manual positioning is required each time a curved tempered glass panel is placed. This process is not only tedious but also extremely time-consuming, significantly reducing work efficiency and increasing labor costs. Utility Model Content
[0004] The purpose of this invention is to provide a curved tempered glass transfer device to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution:
[0006] A curved tempered glass transfer device, comprising:
[0007] Glass transfer mechanism, including trolleys;
[0008] Clamping mechanism one, consisting of several units, is fixed at equal intervals on the trolley at the center, and can limit the center of the curved tempered glass;
[0009] Clamping mechanism two, consisting of several units, is fixed at equal intervals on both sides of the trolley. It can limit the edge of the curved tempered glass and adjust the limiting position.
[0010] A limiting mechanism, sliding inside the trolley, can limit the clamping mechanism one and clamping mechanism two, wherein the limiting mechanism includes:
[0011] The second square rod is provided in three sets, which slide at equal intervals inside the trolley. Several inclined frames are fixedly connected at equal intervals to the outer wall of the second square rod.
[0012] Square rod three is fixed between one end of three sets of square rod two. A threaded rod is screwed onto the outer wall of square rod three at the center. One end of the threaded rod is rotatably connected to the outer wall of the cart, and the other end of the threaded rod is fixedly connected to a handle.
[0013] Furthermore, the glass transfer mechanism includes:
[0014] Square groove 1 is provided in several places, which are equally spaced on both sides of the trolley. Two square holes 1 are equally spaced on the inner top wall of square groove 1, a round hole 1 is provided on the inner top wall of square groove 1, and a square hole 2 is provided at one end of the inner top wall of square groove 1.
[0015] Slide 1 is located on the trolley at one side of square hole 1;
[0016] Two chutes are provided, one on each side of the first chute on the trolley.
[0017] Square groove two, with several of them set at equal intervals, is located at the center of the trolley;
[0018] There are two chutes, one on each side of the trolley.
[0019] Preferably, the clamping mechanism includes:
[0020] There are two square frames, which are slidably inserted into the inner walls of the two sides of the square groove, and a support frame is fixedly connected between the two square frames.
[0021] Limiting frame one is fixed to the outer wall of support frame one;
[0022] Spring 1 is fixed between the outer wall of support frame 1 and the inner wall of square groove 2;
[0023] Square rod one slides against the inner wall of square groove two. Two inclined brackets one are fixedly connected at equal intervals at the bottom end of square rod one. The outer wall of inclined bracket one slides against the inner wall of square groove two.
[0024] Limiting bracket two, several of which are fixed at equal intervals to the outer wall of square rod one.
[0025] Preferably, the clamping mechanism two includes:
[0026] Square frame 2 slides inside the square hole 1, and a support frame 2 is fixedly connected between the two square frames 2. A spring 2 is fixedly connected between the outer wall of the support frame 2 and the inner wall of the square groove 1.
[0027] The second inclined frame slides against the inner wall of the first square groove. The outer wall of the second inclined frame is fixedly connected to a slide rail, and an L-shaped frame is slidably inserted into the slide rail.
[0028] L-shaped frame two slides inside the slide groove one. Both L-shaped frame two and L-shaped frame one are rotatably connected to a fixed frame two at one end. Both sides of the fixed frame two are rotatably connected to rubber rollers.
[0029] A coil spring is fixed between the outer wall of the second fixed frame and the outer walls of the first and second L-shaped frames.
[0030] Preferably, the clamping mechanism two includes:
[0031] There are several circular holes, which are equally spaced and opened on the outer walls of both sides of the support frame.
[0032] Four square holes are formed on the outer wall of the L-shaped frame;
[0033] A slider slides on the outer wall of an L-shaped frame. A pin is slidably inserted into the outer wall of the slider, and the outer wall of the pin engages with the inside of a round hole.
[0034] Pin 2 slides on the outer wall of L-shaped frame 2, and the outer wall of pin 2 is engaged with the round hole 2.
[0035] Preferably, the clamping mechanism two includes:
[0036] Fixed frame one, fixed between two adjacent L-shaped frames one and L-shaped frame two;
[0037] Square hole three is formed on the outer wall of support frame two, and the inside of square hole three is slidably inserted into fixed frame one.
[0038] Preferably, the outer wall of the inclined frame three is slidably connected to the sliding groove two and the sliding groove three.
[0039] Compared with the prior art, the beneficial effects of this utility model are:
[0040] 1. By using clamping mechanism one in conjunction with clamping mechanism two, the curved tempered glass can be quickly positioned without the need for manual operation, saving a lot of time. Especially in batch transfer operations, it can significantly reduce the preparation time for placing individual glass pieces, speed up the transfer process, improve overall work efficiency, and reduce labor costs.
[0041] 2. By setting up a clamping mechanism two, the position of the rubber rollers can be adjusted according to the length of the curved tempered glass. This means that whether it is thin or thick curved tempered glass, or products of different lengths, they can be effectively limited and stably transported on the glass transfer mechanism. This greatly expands the applicability of the glass transfer mechanism and improves its versatility in diverse production and transfer scenarios. Moreover, all the parallel rubber rollers can be adjusted by simply operating the fixing frame one, which effectively improves the convenience of operation and work efficiency.
[0042] 3. By shaking the handle, all support frames one or two can be limited. The operation is simple and easy to understand, which lowers the skill threshold for operators and improves operating efficiency. At the same time, the further limiting increases the stability of the curved tempered glass during the transportation process. Even in bumpy or vibrating transportation environments, it can ensure the stability of the glass and improve the safety of the transfer. Attached Figure Description
[0043] Figure 1This is a schematic diagram of the overall structure of this utility model;
[0044] Figure 2 This is a partial cross-sectional view of the trolley structure in this utility model;
[0045] Figure 3 This is a schematic diagram of the second square channel structure of this utility model;
[0046] Figure 4 This is a schematic diagram of the clamping mechanism in this utility model;
[0047] Figure 5 This is a schematic diagram of the clamping mechanism two in this utility model;
[0048] Figure 6 This is a partial structural diagram of the clamping mechanism 2 in this utility model;
[0049] Figure 7 This is a schematic diagram of the limiting mechanism in this utility model.
[0050] In the diagram: 100, Glass transfer mechanism; 110, Trolley; 111, Square channel one; 112, Square hole one; 113, Round hole one; 114, Square hole two; 115, Slide one; 116, Slide two; 117, Square channel two; 118, Slide three; 200, Clamping mechanism one; 210, Square frame one; 211, Support frame one; 212, Limiting frame one; 213, Inclined frame one; 214, Spring one; 215, Square rod one; 216, Limiting frame two; 300, Clamping mechanism two; 310, Square frame two; 311 312. Support frame 2; 313. Spring 2; 314. Square hole 3; 315. Round hole 2; 326. Inclined frame 2; 327. Slide rail; 328. L-shaped frame 1; 329. Fixed frame 1; 320. Square hole 4; 321. Slider; 322. Pin 1; 333. L-shaped frame 2; 334. Pin 2; 345. Fixed frame 2; 346. Rubber roller; 347. Coil spring; 400. Limiting mechanism; 411. Square rod 2; 412. Inclined frame 3; 413. Square rod 3; 414. Threaded rod; 415. Handle. Detailed Implementation
[0051] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0052] Please see Figure 1-7In this embodiment of the invention, a curved tempered glass transfer device includes a glass transfer mechanism 100, which includes a trolley 110. Several clamping mechanisms 200 are provided, evenly spaced and fixed to the center of the trolley 110, limiting the center of the curved tempered glass. Several clamping mechanisms 300 are provided, evenly spaced and fixed to both sides of the trolley 110, limiting the edges of the curved tempered glass and allowing adjustment of the limiting positions. A limiting mechanism 400 slides inside the trolley 110, limiting the clamping mechanisms 200 and 300. Several square grooves 111 are provided, evenly spaced and located on both sides of the trolley 110. Furthermore, two square holes 112 are equally spaced on the top wall of the inner wall of the square groove 111, and a round hole 113 is also provided on the top wall of the inner wall of the square groove 111. A square hole 114 is also provided at one end of the top wall of the inner wall of the square groove 111. A sliding groove 115 is provided on the trolley 110 located on one side of the square hole 112. Two sliding grooves 116 are provided, respectively provided on the trolley 110 located on both sides of the sliding groove 115. Several square grooves 117 are provided, equally spaced on the trolley 110 located at the center. Two sliding grooves 118 are provided, respectively provided on the trolley 110 located on both sides of the square groove 117. The clamping mechanism 200 includes the following parts: two square frames 210 are provided, respectively on both sides of the square groove 117. The inner wall slides and is connected to the support frame 211, which is fixedly connected between the two square frames 210. The limiting frame 212 is fixed to the outer wall of the support frame 211. The spring 214 is fixed between the outer wall of the support frame 211 and the inner wall of the square groove 217. The square rod 215 slides with the inner wall of the square groove 217. Two inclined frames 213 are fixedly connected at equal intervals at the bottom of the square rod 215. The outer wall of the inclined frame 213 slides with the inner wall of the square groove 217. Several limiting frames 216 are provided and fixed at equal intervals on the outer wall of the square rod 215. The clamping mechanism 200 includes the following parts: the square frame 210 slides inside the square hole 112. The support frame 211 is fixedly connected between the two square frames 210. A spring 312 is fixedly connected between the outer wall of the second 311 and the inner wall of the first square groove 111. The second inclined bracket 320 slides with the inner wall of the first square groove 111. A slide rail 321 is fixedly connected to the outer wall of the second inclined bracket 320. An L-shaped bracket 322 is slidably inserted into the slide rail 321. The second L-shaped bracket 330 slides with the inside of the first slide groove 115. A fixed bracket 340 is rotatably connected to one end of the second L-shaped bracket 330 and the first L-shaped bracket 322. Rubber rollers 341 are rotatably connected to both sides of the fixed bracket 340. A coil spring 342 is fixed between the outer wall of the fixed bracket 340 and the outer walls of the first L-shaped bracket 322 and the second L-shaped bracket 330. By using the clamping mechanism 200 in conjunction with the clamping mechanism 300, the curved tempered glass can be quickly positioned.
[0053] The clamping mechanism 2 300 also includes the following parts: several round holes 2 314 are provided, which are equally spaced on both sides of the outer wall of the support frame 2 311; square holes 4 324 are provided on the outer wall of the L-shaped frame 1 322; slider 325 slides on the outer wall of the L-shaped frame 1 322; and a pin 1 326 is slidably inserted into the outer wall of slider 325, and the outer wall of pin 1 326 is inserted into the inner part of round hole 2 314; pin 2 331 slides on... The outer wall of L-shaped frame 330 is fitted with the outer wall of pin 331 and the round hole 314. The fixing frame 323 is fixed between two adjacent L-shaped frames 322 and L-shaped frame 330. The square hole 313 is opened on the outer wall of support frame 311, and the inside of the square hole 313 is slidably inserted into the fixing frame 323. By providing clamping mechanism 300, the position of rubber roller 341 can be adjusted according to the length of curved tempered glass.
[0054] The limiting mechanism 400 includes the following parts: three sets of square rods 410 are provided, which slide at equal intervals inside the trolley 110. Several inclined frames 411 are fixedly connected at equal intervals on the outer wall of the square rods 410. The outer wall of the inclined frames 411 is slidably inserted into the slide grooves 116 and 118. The square rod 412 is fixed between one end of the three sets of square rods 410. A threaded rod 413 is screwed into the outer wall of the square rod 412 at the center. One end of the threaded rod 413 is rotatably connected to the outer wall of the trolley 110. The other end of the threaded rod 413 is fixedly connected to a handle 414. By shaking the handle 414, all support frames 211 or support frames 311 can be limited. The operation is simple and easy to understand, reducing the skill threshold for operators.
[0055] Specifically, during operation, the operator places the curved tempered glass on support frame 1 (211) and support frame 2 (311). Under the influence of gravity, support frame 1 (211) and support frame 2 (311) move downwards, causing square frame 1 (210) to press against inclined frame 1 (213). This causes inclined frame 1 (213) and square rod 1 (215) to move towards limiting frame 1 (212) until limiting frame 2 (216) and limiting frame 1 (212) are in contact with the curved tempered glass at its center, thus limiting the curved tempered glass. Rubber pads are installed on limiting frame 1 (212) and limiting frame 2 (216) to prevent abrasion of the curved tempered glass. Square frame 2 (310) then presses against inclined frame 2 (320), causing L-shaped frame 1 (322) and one set of rubber rollers 341 to move towards the opposite set until both sets of rubber rollers 341 are in contact with the curved tempered glass. When one rubber roller 341... After contacting the curved tempered glass, 41 rotates to make the adjacent rubber roller 341 also stick to the curved tempered glass, limiting the curved tempered glass. When it is necessary to adjust the limiting position of the clamping mechanism 300 according to the length of the curved tempered glass, all the pins 326 and 331 are pulled out, the fixing frame 323 is pushed, and all the parallel rubber rollers 341 are moved to the designated position. After adjustment, the pins 326 and 331 are inserted into the corresponding round holes 314 for limiting. When all the curved tempered glass is placed on the trolley 110, the operator twists the handle 414 to drive the threaded rod 413 to engage with the square rod 412, and drives the inclined frame 411 to move to the outer wall of the support frame 211 or the support frame 311 to limit the overall position.
[0056] Example 1
[0057] like Figure 4-6As shown, in this embodiment, the clamping mechanism 200 includes the following parts: two square frames 210 are provided, which are slidably inserted into the inner walls on both sides of the square groove 117, and a support frame 211 is fixedly connected between the two square frames 210. A limiting frame 212 is fixed on the outer wall of the support frame 211. A spring 214 is fixed between the outer wall of the support frame 211 and the inner wall of the square groove 117. A square rod 215 slides with the inner wall of the square groove 117, and two inclined frames 213 are fixedly connected at equal intervals at the bottom end of the square rod 215. The outer wall of the inclined frame 213 slides with the inner wall of the square groove 117. Several limiting frames 216 are provided and fixed at equal intervals on the outer wall of the square rod 215. The clamping mechanism 300 includes the following parts: its square... The second frame 310 slides inside the square hole 112, and a support frame 311 is fixedly connected between the two square frames 310. A spring 312 is fixedly connected between the outer wall of the support frame 311 and the inner wall of the square groove 111. The inclined frame 320 slides inside the square groove 111, and a slide rail 321 is fixedly connected to the outer wall of the inclined frame 320. An L-shaped frame 322 is slidably inserted inside the slide rail 321. The L-shaped frame 330 slides inside the slide groove 115. A fixed frame 340 is rotatably connected to one end of both the L-shaped frame 330 and the L-shaped frame 322. Rubber rollers 341 are rotatably connected to both sides of the fixed frame 340. A coil spring 342 is fixed between the outer wall of the fixed frame 340 and the outer walls of the L-shaped frame 322 and the L-shaped frame 330.
[0058] In this embodiment, the operator places the curved tempered glass on support frame 211 and support frame 311. Under the influence of gravity, support frame 211 and support frame 311 move downwards, causing square frame 210 to press against inclined frame 213. This causes inclined frame 213 and square rod 215 to move towards limiting frame 212 until limiting frame 216 and limiting frame 212 are in contact with the center of the curved tempered glass, thus limiting its position. Rubber pads are provided on limiting frame 212 and limiting frame 216 to prevent wear on the curved tempered glass. Square frame 310 then presses against inclined frame 320, causing L-shaped frame 322 and its... One set of rubber rollers 341 moves towards the opposite set until both sets of rubber rollers 341 are in contact with the curved tempered glass. When one rubber roller 341 contacts the curved tempered glass, it rotates, causing the adjacent rubber roller 341 to also contact the curved tempered glass, thus limiting the movement of the curved tempered glass. Through the cooperation of clamping mechanism 200 and clamping mechanism 300, the curved tempered glass can be quickly limited when placed, without the need for manual operation, saving a lot of time. Especially in batch transfer operations, it can significantly reduce the preparation time for placing individual glass, speed up the transfer rhythm, improve overall work efficiency, and reduce labor costs.
[0059] like Figure 5-6As shown, in this embodiment, the clamping mechanism 2 300 further includes the following parts: several circular holes 2 314 are provided, which are equally spaced on the outer walls of both sides of the support frame 2 311; a square hole 4 324 is provided on the outer wall of the L-shaped frame 1 322; a slider 325 slides on the outer wall of the L-shaped frame 1 322, and a pin 1 326 is slidably inserted into the outer wall of the slider 325, and the outer wall of the pin 1 326 is inserted into the circular hole 2 314; a pin 2 331 slides on the outer wall of the L-shaped frame 2 330, and the outer wall of the pin 2 331 is inserted into the circular hole 2 314; a fixing frame 1 323 is fixed between two adjacent L-shaped frames 1 322 and L-shaped frames 2 330; a square hole 3 313 is provided on the outer wall of the support frame 2 311, and the inside of the square hole 313 is slidably inserted into the fixing frame 1 323.
[0060] In practice, when it is necessary to adjust the limiting position of the clamping mechanism 300 according to the length of the curved tempered glass, all the pins 326 and 331 are pulled out, the fixing frame 323 is pushed, and all the parallel rubber rollers 341 are moved to the designated position. After adjustment, the pins 326 and 331 are inserted into the corresponding holes 314 for limiting. With the clamping mechanism 300, the position of the rubber rollers 341 can be adjusted according to the length of the curved tempered glass. This means that whether it is thin or thick curved tempered glass, or products of different lengths, they can be effectively limited and stably transported on the glass transfer mechanism 100, which greatly expands the application range of the glass transfer mechanism 100 and improves its versatility in diverse production and transfer scenarios. Moreover, all the parallel rubber rollers 341 can be adjusted by operating the fixing frame 323, which effectively improves the convenience of operation and work efficiency.
[0061] Example 2
[0062] like Figure 7 As shown, in this embodiment, the limiting mechanism 400 includes the following parts: three sets of square rods 410 are provided, which slide at equal intervals inside the trolley 110, and several inclined frames 411 are fixedly connected at equal intervals on the outer wall of the square rods 410, and the outer wall of the inclined frames 411 is slidably inserted into the sliding grooves 116 and 118. The square rod 412 is fixed between one end of the three sets of square rods 410, and a threaded rod 413 is screwed and connected at the center of the outer wall of the square rod 412. One end of the threaded rod 413 is rotatably connected to the outer wall of the trolley 110, and the other end of the threaded rod 413 is fixedly connected to a handle 414.
[0063] In practice, after all the curved tempered glass is placed on the trolley 110, the operator twists the handle 414, causing the threaded rod 413 to engage with the square rod 412, which in turn moves the inclined frame 411 to fit against the outer wall of the support frame 211 or the support frame 311, thus limiting the overall position. By shaking the handle 414, all support frames 211 or 311 can be limited. The operation is simple and easy to understand, reducing the skill threshold for operators and improving operational efficiency. At the same time, the further limiting increases the stability of the curved tempered glass during transportation, ensuring the stability of the glass even in bumpy or vibrating transportation environments, thus improving the safety of the transfer.
[0064] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0065] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A curved tempered glass transfer device, characterized in that, include: A glass transfer mechanism (100) includes a trolley (110); Clamping mechanism 1 (200) is provided in several parts, which are fixed at equal intervals on the trolley (110) at the center; Clamping mechanism two (300) is provided in several parts, which are fixed at equal intervals on both sides of the trolley (110); A limiting mechanism (400) slides inside the trolley (110), wherein the limiting mechanism (400) includes: Square rod two (410) is provided in three sets, which slide at equal intervals inside the trolley (110). Several inclined frame three (411) are fixedly connected at equal intervals on the outer wall of square rod two (410). Square rod three (412) is fixed between one end of three sets of square rod two (410). A threaded rod (413) is screwed onto the outer wall of square rod three (412) at the center. One end of the threaded rod (413) is rotatably connected to the outer wall of the trolley (110). A handle (414) is fixedly connected to the other end of the threaded rod (413).
2. The curved tempered glass transfer device according to claim 1, characterized in that, The glass transfer mechanism (100) includes: Square groove 1 (111) is provided in several places, and is equally spaced on both sides of the trolley (110). Two square holes 1 (112) are equally spaced on the inner top wall of square groove 1 (111). A round hole 1 (113) is provided on the inner top wall of square groove 1 (111). A square hole 2 (114) is provided at one end of the inner top wall of square groove 1 (111). Slide 1 (115) is provided on the trolley (110) on one side of square hole 1 (112); There are two slides (116), which are respectively opened on the trolley (110) on both sides of slide one (115); Square groove 2 (117) is provided in several places, and is equally spaced on the trolley (110) at the center; There are two chutes (118), which are respectively located on the trolley (110) on both sides of the square chutes (117).
3. The curved tempered glass transfer device according to claim 2, characterized in that, The clamping mechanism one (200) includes: There are two square frames (210), which are slidably inserted into the inner walls of the two sides of the square groove (117), and a support frame (211) is fixedly connected between the two square frames (210). Limiting frame 1 (212) is fixed to the outer wall of support frame 1 (211); Spring 1 (214) is fixed between the outer wall of support frame 1 (211) and the inner wall of square groove 2 (117); Square rod one (215) slides against the inner wall of square groove two (117). Two inclined brackets one (213) are fixedly connected at equal intervals at the bottom end of square rod one (215). The outer wall of inclined bracket one (213) slides against the inner wall of square groove two (117). Limiting bracket two (216) is provided in several units, which are fixed at equal intervals to the outer wall of square rod one (215).
4. The curved tempered glass transfer device according to claim 3, characterized in that, The clamping mechanism two (300) includes: Square frame two (310) slides inside the square hole one (112), and a support frame two (311) is fixedly connected between the two square frames two (310). A spring two (312) is fixedly connected between the outer wall of the support frame two (311) and the inner wall of the square groove one (111). The second inclined frame (320) slides against the inner wall of the first square groove (111). The outer wall of the second inclined frame (320) is fixedly connected to a slide rail (321). An L-shaped frame (322) is slidably inserted into the slide rail (321). L-shaped frame two (330) slides inside the sliding groove one (115). One end of L-shaped frame two (330) and L-shaped frame one (322) are rotatably connected to fixed frame two (340). Both sides of fixed frame two (340) are rotatably connected to rubber rollers (341). A coil spring (342) is fixed between the outer wall of the second fixing frame (340) and the outer walls of the first L-shaped frame (322) and the second L-shaped frame (330).
5. The curved tempered glass transfer device according to claim 4, characterized in that, The clamping mechanism two (300) includes: The second round hole (314) is provided in several places, and is opened at equal intervals on both sides of the outer wall of the second support frame (311); Square hole four (324) is opened on the outer wall of L-shaped frame one (322); The slider (325) slides on the outer wall of the L-shaped frame (322). The outer wall of the slider (325) is slidably connected to the pin (326), and the outer wall of the pin (326) is engaged with the inside of the round hole (314). Pin 2 (331) slides on the outer wall of L-shaped frame 2 (330), and the outer wall of pin 2 (331) is engaged with round hole 2 (314).
6. The curved tempered glass transfer device according to claim 5, characterized in that, The clamping mechanism two (300) includes: Fixing bracket one (323) is fixed between two adjacent L-shaped bracket one (322) and L-shaped bracket two (330); Square hole three (313) is opened on the outer wall of support frame two (311), and the inside of square hole three (313) is slidably inserted into fixed frame one (323).
7. A curved tempered glass transfer device according to claim 6, characterized in that, The outer wall of the inclined frame three (411) is slidably inserted into the sliding groove two (116) and the sliding groove three (118).