Infrared glass profile forming device
Through the coordination of the cylinder and the pressure plate, the detachable design of the connecting plate and the slot, and the firearm heating, the problem of deformation of the pressure plate caused by excessive melt temperature is solved, and the efficient forming of infrared glass is achieved.
Patent Information
- Application Number
- CN202421517747.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-30
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-06-30
AI Technical Summary
In the existing infrared glass forming device, the melt temperature is too high, causing the pressure plate to deform, affecting the forming effect.
The cylinder and the pressure plate are used to cooperate with the pressure plate. Through the definition of the connecting plate and the connecting groove, the detachable design of the clamp plate and the clamp groove is combined with the blasting gun heating, the rapid replacement of the pressure plate and the temperature control are achieved.
Effectively prevent the pressure plate from deforming due to long-term heat, ensure the forming effect of infrared glass, and improve the operation convenience and efficiency of the forming device.
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Figure CN223074068U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a forming device, in particular to an infrared glass profile forming device, belonging to the technical field of infrared glass processing. Background Art
[0002] With the continuous development of technology, infrared glass is widely used in various electronic products and imaging devices. For example, it is used in biometric identification of terminal devices such as mobile phones. Existing infrared glass is usually obtained by coating a transparent glass. By coating the glass in multiple layers, high transmittance of infrared light and cut-off of visible light are achieved. During processing, after mixing the raw materials, they are melted by a melting furnace to form a melt, and then the melt flows onto a forming device and waits to be cooled and formed.
[0003] Among them, the "infrared glass profile forming device" disclosed in the patent application No. "CN202220900893.5" is also an increasingly mature technology, including a base, a heat-insulating cotton laid on the base, and a substrate arranged on the heat-insulating cotton; its characteristics also include a shaping mechanism that can be assembled and adjusted on the substrate, a heating device arranged in the heat-insulating cotton, and a circulating cooling structure arranged on the substrate. Through the setting of the shaping mechanism, the size of glass forming can be adjusted by moving the position of the side positioning block. Simple movement can be used for adjustment, and the operation is simple and convenient; through the setting of the heating device, on the one hand, it pre-heats the substrate, and on the other hand, it keeps the glass melt flowing onto the substrate warm, avoiding uneven overall temperature of the glass and resulting in difficult cooling time and affecting the overall quality. After further retrieval, the "glass forming equipment" disclosed in the patent application No. "CN201910325841.2" includes a forming frame, an air-floating tray assembly, an extrusion member, a laser generator and a protective cover. A processing chamber is arranged inside the forming frame. The air-floating tray assembly is installed in the processing chamber and includes an air-floating member and a tray. The air-floating member is installed at the bottom of the processing chamber, and the tray is installed on the air-floating member. The tray is used to support the glass. The extrusion member movably penetrates through the top of the forming frame and is arranged opposite to the tray. A temperature sensor is arranged inside the forming frame. The glass forming equipment is relatively easy to form glass lenses, and by setting the temperature sensor, the processing temperature inside it is easily sensed, thus facilitating subsequent temperature control.
[0004] However, the above methods still have the following defects in actual use: the melt has poor fluidity and needs to be pressed into shape, and the melt temperature is too high, which easily causes the pressing plate to be deformed by heat, affecting the forming of infrared glass. Therefore, the utility model provides an infrared glass profile forming device. Summary of the Utility Model
[0005] The purpose of the present utility model is to provide an infrared glass profile forming device to solve the problem that the melt temperature is too high, which easily causes the pressing plate to deform and affects the forming of infrared glass as mentioned in the above background technology.
[0006] To achieve the above object, the present utility model provides the following technical solution: An infrared glass profile forming device includes a processing table. A material receiving mechanism is provided at the top of the processing table. One side of the top of the processing table is connected with a support frame. A cylinder is provided at the top of the support frame. The piston rod of the cylinder penetrates through the top of the support frame and is connected with an assembly plate. A pressing plate is snap-connected to the bottom end of the assembly plate. Both sides of the top of the pressing plate are connected with connecting plates. Connecting grooves are respectively opened on both sides of the bottom end of the assembly plate. The connecting plates are snap-connected with the connecting grooves. Both sides inside the assembly plate are slidably connected with clamping plates. A clamping groove is opened on one side of the connecting plate. The clamping plates are snap-connected with the clamping grooves.
[0007] As a preferred technical solution of the present utility model, both sides inside the assembly plate are respectively provided with sliding grooves, and the sliding grooves communicate with the connecting grooves. The clamping plates are slidably connected inside the connecting grooves.
[0008] As a preferred technical solution of the present utility model, one side of the sliding groove is connected with a spring, and one end of the spring is connected with one side of the clamping plate.
[0009] As a preferred technical solution of the present utility model, adjusting grooves are respectively opened on both sides of the front of the assembly plate, and the adjusting grooves communicate with the sliding grooves. One side of the front of the clamping plate is connected with an operating rod, and the operating rod is slidably connected inside the adjusting grooves.
[0010] As a preferred technical solution of the present utility model, connecting rings are respectively connected to the tops of both sides of the support frame, and a blowtorch is arranged inside the connecting rings.
[0011] As a preferred technical solution of the present utility model, the material receiving mechanism includes a forming seat and a transmission groove. The forming seat is slidably connected to the top of the processing table. The transmission groove is opened on the top of the processing table. A moving seat is slidably connected inside the transmission groove. The top of the moving seat is connected with the middle part of the bottom end of the forming seat.
[0012] As a preferred technical solution of the present utility model, a threaded lead screw is rotatably connected inside the transmission groove through a bearing. The outer wall of the threaded lead screw is threadedly connected with the inside of the moving seat. Limiting grooves are respectively opened on both sides of the transmission groove. Slide plates are respectively connected to both sides of the moving seat, and the slide plates are slidably connected inside the limiting grooves.
[0013] As a preferred technical solution of the present utility model, one side of the top of the processing table is connected with a mounting plate, and a motor is arranged on the top of the mounting plate. One end of the threaded lead screw penetrates through one side of the processing table and is connected with the transmission shaft of the motor.
[0014] Compared with the related art, an infrared glass profile forming device provided by the present utility model has the following beneficial effects:
[0015] Through the cooperation of the air cylinder and the pressing plate, the pressing plate is driven to move downward to press and form the glass melt. Through the cooperation of the connecting plate and the connecting groove, the installation position of the pressing plate is limited. Through the cooperation of the clamping plate and the clamping groove, the pressing plate is installed at the bottom end of the assembly plate. On the contrary, when the clamping plate leaves the clamping groove, the pressing plate can be disassembled, so as to facilitate the replacement of the pressing plate deformed due to long-term heating and ensure the forming effect of the infrared glass. Description of the Drawings
[0016] Figure 1 It is a structural schematic diagram of the present utility model;
[0017] Figure 2 It is an exploded structural schematic diagram of the present utility model;
[0018] Figure 3 It is a sectional structural schematic diagram of the assembly plate of the present utility model;
[0019] Figure 4 For the present utility model Figure 2 Enlarged structural schematic diagram of part A.
[0020] In the figure: 1, processing table; 2, support frame; 3, air cylinder; 4, material receiving mechanism; 5, assembly plate; 6, pressing plate; 7, connecting plate; 8, connecting groove; 9, clamping plate; 10, clamping groove; 11, sliding groove; 12, spring; 13, adjusting groove; 14, operating rod; 15, connecting ring; 16, blowtorch; 401, forming seat; 402, transmission groove; 403, moving seat; 404, threaded lead screw; 405, limiting groove; 406, sliding plate; 407, mounting plate; 408, motor. Specific Embodiments
[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0022] Embodiment 1:
[0023] Please refer to Figures 1-4, the utility model provides an infrared glass profile forming device, which includes a processing table 1. A material receiving mechanism 4 is arranged at the top of the processing table 1. One side of the top of the processing table 1 is fixedly connected with a support frame 2. A cylinder 3 is fixedly arranged at the top of the support frame 2. The piston rod of the cylinder 3 penetrates through the top of the support frame 2 and is fixedly connected with an assembly plate 5. A pressing plate 6 is snap-connected to the bottom end of the assembly plate 5. The cylinder 3 drives the assembly plate 5 and the pressing plate 6 to press the glass melt into shape. Both sides of the top of the pressing plate 6 are fixedly connected with connecting plates 7. Connecting grooves 8 are respectively arranged on both sides of the bottom end of the assembly plate 5. The connecting plates 7 are snap-connected with the connecting grooves 8. The position of the connecting plates 7 is limited by the connecting grooves 8, and further the installation position of the pressing plate 6 is limited. Sliding plates 9 are respectively slidably connected to both sides inside the assembly plate 5. A clamping groove 10 is arranged on one side of the connecting plate 7. The sliding plates 9 are snap-connected with the clamping grooves 10. Moving the sliding plates 9 out of the clamping grooves 10 enables the pressing plate 6 to be disengaged from the limit, facilitating the removal of the pressing plate 6 deformed due to long-term heating;
[0024] Sliding grooves 11 are respectively arranged on both sides inside the assembly plate 5. The sliding grooves 11 are communicated with the connecting grooves 8. The sliding plates 9 are slidably connected inside the connecting grooves 8. The position where the sliding plates 9 move is limited by the sliding grooves 11;
[0025] One side of the sliding groove 11 is fixedly connected with a spring 12. A plurality of springs 12 are arranged and are equidistantly arranged on one side of the sliding groove 11. One end of the spring 12 is fixedly connected with one side of the sliding plate 9. Under the action of the spring 12, the sliding plate 9 can be automatically pushed into the clamping groove 10 to keep the sliding plate 9 snap-connected with the clamping groove 10;
[0026] Adjusting grooves 13 are respectively arranged on both sides of the front of the assembly plate 5. The adjusting grooves 13 are communicated with the sliding grooves 11. One side of the front of the sliding plate 9 is fixedly connected with an operating rod 14. The operating rod 14 is slidably connected inside the adjusting groove 13. Moving the operating rod 14 inside the adjusting groove 13 can drive the sliding plate 9 to leave the clamping groove 10, facilitating the pressing plate 6 to be disengaged from the limit;
[0027] Connecting rings 15 are respectively fixedly connected to the tops of both sides of the support frame 2. A blowtorch 16 is fixedly arranged inside the connecting rings 15. By turning on the two blowtorches 16, the forming seat 401 is heated to prevent difficult forming due to temperature reduction;
[0028] Specifically, first, move the two operating rods 14 towards the middle at the same time, driving the two sliding plates 9 to move, so that the sliding plates 9 disengage from the clamping grooves 10 and enter the inside of the sliding grooves 11, compressing the springs 12, enabling the connecting plates 7 to be disengaged from the limit. Then, move the pressing plate 6 downward to make the connecting plates 7 disengage from the connecting grooves 8, remove the pressing plate 6 deformed due to long-term heating. Then, place the new pressing plate 6 at the bottom end of the assembly plate 5 to make the connecting plates 7 enter the connecting grooves 8. Then, release the two operating rods 14. Under the reset of the springs 12, the sliding plates 9 are pushed into the clamping grooves 10 to complete the installation, thus facilitating the rapid replacement of the pressing plate 6 and ensuring the forming effect of the infrared glass.
[0029] Example 2:
[0030] The material receiving mechanism 4 includes a forming base 401 and a transmission groove 402. The forming base 401 is slidably connected to the top of the processing table 1. The forming base 401 can move left and right, and can move the forming base 401 below the melting furnace. The transmission groove 402 is opened at the top of the processing table 1. A moving seat 403 is slidably connected inside the transmission groove 402. The top of the moving seat 403 is fixedly connected to the middle of the bottom end of the forming base 401. The transmission groove 402 limits the position where the moving seat 403 moves, and further limits the position where the forming base 401 moves;
[0031] A threaded lead screw 404 is rotatably connected inside the transmission groove 402 through a bearing. The outer wall of the threaded lead screw 404 is threadedly connected to the inside of the moving seat 403. Under the threaded cooperation of the threaded lead screw 404 and the moving seat 403, the moving seat 403 moves linearly. Limiting grooves 405 are opened on both sides of the transmission groove 402. Slide plates 406 are fixedly connected to both sides of the moving seat 403. The slide plates 406 are slidably connected inside the limiting grooves 405. The limiting grooves 405 limit the position where the slide plates 406 move, and further limit the position where the moving seat 403 moves;
[0032] A mounting plate 407 is fixedly connected to one side of the top of the processing table 1. A motor 408 is fixedly arranged on the top of the mounting plate 407. One end of the threaded lead screw 404 penetrates through one side of the processing table 1 and is fixedly connected to the transmission shaft of the motor 408. Starting the motor 408 provides power for the threaded lead screw 404;
[0033] Specifically, first start the motor 408 to make the threaded lead screw 404 rotate. Under the threaded cooperation of the threaded lead screw 404 and the moving seat 403, the moving seat 403 moves linearly, driving the forming base 401 to move to one side, and moving the forming base 401 below the melting furnace for automatic material receiving.
[0034] During use, first start the motor 408 to make the threaded lead screw 404 rotate. Under the threaded cooperation of the threaded lead screw 404 and the moving seat 403, the moving seat 403 moves linearly, driving the forming base 401 to move to one side, and moving the forming base 401 below the melting furnace for automatic material receiving. After receiving the material, start the motor 408 again, move the forming base 401 below the pressing plate 6, and then turn on the two gas torches 16 to heat the forming base 401 for infrared glass forming. Then adjust the cylinder 3 to drive the pressing plate 6 to move down to press and form the glass melt;
[0035] The pressing plate 6 is prone to deformation when heated for a long time. At the same time, move the two operating rods 14 towards the middle, driving the two clamping plates 9 to move, so that the clamping plates 9 disengage from the clamping grooves 10 and enter the inside of the sliding grooves 11, squeezing the springs 12, causing the connecting plate 7 to be released from the limit. Then move the pressing plate 6 downward to make the connecting plate 7 disengage from the connecting groove 8, remove the pressing plate 6 deformed due to long-term heating. Then place the new pressing plate 6 at the bottom of the assembly plate 5, make the connecting plate 7 enter the connecting groove 8, and then release the two operating rods 14. Under the reset of the spring 12, push the clamping plates 9 into the clamping grooves 10 to complete the installation, thus facilitating the rapid replacement of the pressing plate 6 and ensuring the forming effect of the infrared glass.
[0036] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An infrared glass profile forming device, comprising a processing table (1), characterized in that, A receiving mechanism (4) is provided at the top of the processing table (1). One side of the top of the processing table (1) is connected to a support frame (2). A cylinder (3) is provided at the top of the support frame (2). The piston rod of the cylinder (3) penetrates through the top of the support frame (2) and is connected to an assembly plate (5). A pressing plate (6) is snap-connected to the bottom end of the assembly plate (5). Both sides of the top of the pressing plate (6) are connected to a connecting plate (7). Connecting grooves (8) are formed on both sides of the bottom end of the assembly plate (5). The connecting plate (7) is snap-connected to the connecting groove (8). Both sides inside the assembly plate (5) are slidably connected to a clamping plate (9). A clamping groove (10) is formed on one side of the connecting plate (7). The clamping plate (9) is snap-connected to the clamping groove (10).
2. The infrared glass profile forming device according to claim 1, characterized in that: Sliding grooves (11) are formed on both sides inside the assembly plate (5). The sliding grooves (11) communicate with the connecting grooves (8). The clamping plate (9) is slidably connected inside the connecting groove (8).
3. An infrared glass profile forming device according to claim 2, characterized in that: A spring (12) is connected to one side of the sliding groove (11). One end of the spring (12) is connected to one side of the clamping plate (9).
4. An infrared glass profile forming device according to claim 2, characterized in that: Adjusting grooves (13) are formed on both sides of the front of the assembly plate (5). The adjusting grooves (13) communicate with the sliding grooves (11). One side of the front of the clamping plate (9) is connected to an operating rod (14). The operating rod (14) is slidably connected inside the adjusting groove (13).
5. An infrared glass profile forming device according to claim 1, characterized in that: Connecting rings (15) are connected to the top of both sides of the support frame (2). A blowtorch (16) is provided inside the connecting ring (15).
6. An infrared glass profile forming device according to claim 1, characterized in that: The receiving mechanism (4) includes a forming seat (401) and a transmission groove (402). The forming seat (401) is slidably connected to the top of the processing table (1). The transmission groove (402) is formed on the top of the processing table (1). A moving seat (403) is slidably connected inside the transmission groove (402). The top of the moving seat (403) is connected to the middle of the bottom end of the forming seat (401).
7. An infrared glass profile forming device according to claim 6, characterized in that: A threaded lead screw (404) is rotatably connected inside the transmission groove (402) through a bearing. The outer wall of the threaded lead screw (404) is threadedly connected to the inside of the moving seat (403). Limiting grooves (405) are formed on both sides of the transmission groove (402). Both sides of the moving seat (403) are connected to a sliding plate (406). The sliding plate (406) is slidably connected inside the limiting groove (405).
8. An infrared glass profile forming device according to claim 7, characterized in that: An installation plate (407) is connected to one side of the top of the processing table (1). A motor (408) is provided on the top of the installation plate (407). One end of the threaded lead screw (404) penetrates through one side of the processing table (1) and is connected to the transmission shaft of the motor (408).
Citation Information
Patent Citations
Glass forming equipment
CN110104941B
Infrared glass profile forming device
CN216808586U