Glass compression molding device
By designing a glass pressing and forming device that includes a moving platform and driving components, glass sheets of different thicknesses and patterns were prepared, solving the problem of difficulty in controlling thickness and pattern in the prior art, and improving the quality of glass sheets and experimental reliability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XINYI PHOTOVOLTAIC IND (ANHUI) HLDG CO LTD
- Filing Date
- 2025-06-18
- Publication Date
- 2026-05-19
AI Technical Summary
Existing technologies make it difficult to prepare glass sheets of different thicknesses and patterned glass with different designs, and the presence of obvious stripes inside the glass affects the experimental results.
A glass pressing and forming device was designed, including a moving platform, a support rod, a drive assembly, a fixed block, and a slider. The motor drives the chain to drive the sprocket and chain, thereby realizing the movement of the first pressing block and the second pressing block and controlling the thickness and pattern of the glass.
It can prepare glass plates of different thicknesses and patterned glass with different designs, meeting the needs of laboratory research and improving the quality of glass sheets and the reliability of experimental results.
Smart Images

Figure CN224258501U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass pressing and molding technology, and more specifically, to a glass pressing and molding apparatus. Background Technology
[0002] Currently, most experiments on glass melting rely on mold forming, making it difficult to control the thickness of the glass sheet, which is not conducive to the preparation of patterned glass. In addition, the glass has obvious stripes inside, which affects the experimental results.
[0003] The applicant discovered through a search that Chinese patent document application number 202311427149.3, published on March 8, 2024, discloses a glass plate stacking structure and its forming method for glass forming, as well as bulletproof glass, comprising: flat glass plates, at least three glass plates stacked on top of each other, the size of each glass plate increasing or decreasing sequentially according to the stacking direction, and a stacking difference existing at the edges of adjacent glass plates; a shielding layer, at least one shielding layer disposed between adjacent glass plates, the shielding layer being at least partially disposed along the edges of the glass plates and covering the stacking difference between adjacent glass plates; a gasket, the gasket being disposed between the shielding layer and the glass plate adjacent to the shielding layer, the size of the gasket being greater than or equal to the size of the glass plate adjacent to the shielding layer; this device also fails to solve the aforementioned technical problem.
[0004] Therefore, in order to improve or solve at least one of the above problems, it is necessary to provide a glass pressing and forming apparatus that can prepare glass sheets of different thicknesses and can prepare patterned glass with different patterns. Utility Model Content
[0005] The purpose of this invention is to provide a glass pressing and forming device that can prepare glass sheets of different thicknesses and patterned glass with different designs.
[0006] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a glass pressing and forming device, including a moving platform; a support rod and a driving component are provided on the moving platform; a fixed block and a slider are provided on the support rod; the slider is connected to the driving component; a first pressing block is detachably connected to the slider; a second pressing block is detachably connected to the fixed block; and molten glass is provided between the first pressing block and the second pressing block.
[0007] The drive assembly includes a motor; the motor is mounted on the moving platform; the support rod has a mounting groove; one end of the mounting groove has a first rotating shaft, and the other end of the mounting groove has a second rotating shaft; both the first and second rotating shafts are connected to sprockets; the motor is connected to the second rotating shaft; a chain is connected to the sprocket; and the slider is connected to the chain.
[0008] A connecting block is provided on one side of the slider; the connecting block is located in the mounting groove and is fixedly connected to the chain.
[0009] The slider includes a first side plate; the end of the first side plate is provided with a first limiting baffle; the fixing block includes a second side plate; the end of the second side plate is provided with a second limiting baffle; both sides of the support rod are provided with guide grooves; the first limiting baffle is disposed in the guide groove and is connected to a roller; the second limiting baffle is fixedly connected in the guide groove.
[0010] Both the first pressing block and the second pressing block are connected to a fixing plate; the fixing plate is connected to a stud; the fixing block and the slider are provided with threaded holes; the stud is connected in the threaded hole.
[0011] The fixing plate is provided with a fixing fork; the fixing fork is located on the side of the fixing plate away from the stud; both the first pressing block and the second pressing block are provided with connecting holes; the fixing fork is connected in the connecting holes.
[0012] The mobile platform is equipped with multiple steering wheels on the side away from the support rod; a controller is connected to the support rod; the controller is connected to the motor.
[0013] Both the first pressing block and the second pressing block are dense refractory blocks; both the first pressing block and the second pressing block are decorated with patterns.
[0014] The beneficial effects of this utility model are as follows:
[0015] This invention can be used in the laboratory for research on embossed and flat glass; this invention allows for the replacement of the first pressing block and the second pressing block as needed to prepare embossed glass with different patterns; this invention can control the stroke and speed of the first pressing block through the drive component to prepare glass plates of different thicknesses. Attached Figure Description
[0016] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:
[0017] Figure 1 This is a schematic diagram of the overall structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the support rod of this utility model.
[0019] Figure 3 This is a schematic diagram of the drive component of this utility model.
[0020] Figure 4 This is a schematic diagram of the structure of the first pressing block of this utility model.
[0021] The markings in the above figures are all:
[0022] The diagram is marked as follows:
[0023] 1. Mobile platform
[0024] 2. Support rod, 201. Guide groove,
[0025] 3. Fixing block, 301, threaded hole,
[0026] 4. Slider, 401, Connecting block,
[0027] 5. First pressing block, 501. Connecting hole.
[0028] 6. Second pressing block,
[0029] 7. Motor; 701. Mounting slot; 702. First rotating shaft; 703. Second rotating shaft; 704. Sprocket; 705. Chain.
[0030] 8. First side plate, 801. First limit baffle, 802. Roller
[0031] 9. Second side plate, 901. Second limit baffle,
[0032] 10. Fixing plate; 101. Stud; 102. Fixing fork.
[0033] 11. Steering wheel; 111. Controller. Detailed Implementation
[0034] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, in order to help those skilled in the art to have a more complete, accurate and in-depth understanding of the inventive concept and technical solution of this utility model, and to facilitate its implementation.
[0035] Figure 1-4 The glass pressing and forming apparatus shown includes a moving platform 1; a support rod 2 and a drive assembly are provided on the moving platform 1; a fixed block 3 and a slider 4 are provided on the support rod 2; the slider 4 is connected to the drive assembly; a first pressing block 5 is detachably connected to the slider 4; a second pressing block 6 is detachably connected to the fixed block 3; molten glass is provided between the first pressing block 5 and the second pressing block 6.
[0036] This invention can be used in the laboratory for research on embossed and flat glass; this invention can replace the first pressing block 5 and the second pressing block 6 as needed to prepare embossed glass with different patterns; this invention can control the stroke and speed of the first pressing block 5 through the drive component to prepare glass plates of different thicknesses.
[0037] The drive assembly includes a motor 7; the motor 7 is mounted on the moving platform 1; the support rod 2 is provided with a mounting groove 701; one end of the mounting groove 701 is provided with a first rotating shaft 702, and the other end of the mounting groove 701 is provided with a second rotating shaft 703; both the first rotating shaft 702 and the second rotating shaft 703 are connected to a sprocket 704; the motor 7 is connected to the second rotating shaft 703; a chain 705 is connected to the sprocket 704; and the slider 4 is connected to the chain 705.
[0038] The mobile platform 1 is a square stainless steel plate; the surface of the mobile platform 1 is flat, ensuring the center of gravity of the overall structure; the support rod 2 is a stainless steel rod; the support rod 2 is fixedly connected to one end of the top surface of the mobile platform 1; the motor 7 is fixedly connected to the top surface of the mobile platform 1; the motor 7 is installed on one side of the support rod 2; the mounting groove 701 is set vertically on one side of the support rod 2; mounting holes are provided on both sides of the top of the mounting groove 701, and both ends of the first rotating shaft 702 are inserted into the mounting holes. A sprocket 704 is fixedly connected to the first rotating shaft 702, and the first rotating shaft 702 can be mounted through the mounting holes. The mounting groove 701 rotates flexibly within the groove 701; a mounting hole is provided on one side of the bottom end of the mounting groove 701, and a through hole is provided on the other side; a sprocket 704 is fixedly connected to the second rotating shaft 703; one end of the second rotating shaft 703 is inserted into the mounting hole, and the other end of the second rotating shaft 703 passes through the through hole and is fixedly connected to the output shaft of the motor 7; a chain 705 is installed on the sprocket 704 on the first rotating shaft 702 and the second rotating shaft 703; when the motor 7 starts, the output shaft of the motor 7 drives the second rotating shaft 703 to rotate; the sprocket 704 on the second rotating shaft 703 drives the sprocket 704 on the first rotating shaft 702 to rotate through the chain 705.
[0039] A connecting block 401 is provided on one side of the slider 4; the connecting block 401 is located in the mounting groove 701 and is fixedly connected to the chain 705.
[0040] A connecting block 401 is provided on the side of the slider 4 near the support rod 2; the connecting block 401 and the slider 4 are an integral structure; the connecting block 401 is fixedly connected to the chain 705.
[0041] The slider 4 includes a first side plate 8; the end of the first side plate 8 is provided with a first limiting baffle 801; the fixing block 3 includes a second side plate 9; the end of the second side plate 9 is provided with a second limiting baffle 901; both sides of the support rod 2 are provided with guide grooves 201; the first limiting baffle 801 is provided in the guide groove 201, and the first limiting baffle 801 is connected to a roller 802; the second limiting baffle 901 is fixedly connected in the guide groove 201.
[0042] Both ends of the slider 4 are provided with first side plates 8; the first side plates 8, the first limiting baffle 801 and the slider 4 are an integral structure; the first limiting baffle 801 and the slider 4 are arranged in parallel; the first side plates 8 are simultaneously arranged perpendicular to the first limiting baffle 801 and the slider 4; both sides of the slider 4 are provided with guide grooves 201, which are arranged along the vertical direction; the first limiting baffle 801 is provided in the guide groove 201, thereby realizing the limiting and vertical guidance of the slider 4; the end of the first limiting baffle 801 is provided with a connecting groove, in which a mounting shaft is fixedly connected, and a roller 802 is movably connected on the mounting shaft; when the chain 705 drives the slider 4 to move vertically through the connecting block 401, the roller 802 can facilitate the vertical sliding operation of the slider 4 on the support rod 2.
[0043] The fixing block 3 has a second side plate 9 at both ends; the end of the second side plate 9 is provided with a second limiting baffle 901; the fixing block 3, the second side plate 9 and the second limiting baffle 901 are an integral structure; the second limiting baffle 901 is connected to the guide groove 201 by bolts, so that the fixing block 3 and the support rod 2 can be fixedly connected; the fixing block 3 and the slider 4 are both stainless steel blocks; the chain 705 is a stainless steel chain.
[0044] The first pressing block 5 and the second pressing block 6 are both connected to the fixing plate 10; the fixing plate 10 is connected to the stud 101; the fixing block 3 and the slider 4 are provided with threaded holes 301; the stud 101 is connected in the threaded hole 301.
[0045] Both the fixing block 3 and the slider 4 have two threaded holes 301 on the side away from the support rod 2; the fixing plate 10 is connected to two studs 101; the fixing plate 10 has stud mounting holes; one end of the stud 101 is threaded and threaded to the threaded hole 301, and the other end of the stud 101 is unthreaded and inserted into the stud mounting hole on the fixing plate 10; after the studs 101 are threaded to both the fixing block 3 and the slider 4, the fixing plate 10 is connected to the studs 101 to realize the installation of the fixing plate 10; the fixing plate 10 is a stainless steel plate.
[0046] The fixing plate 10 is provided with a fixing fork 102; the fixing fork 102 is located on the side of the fixing plate 10 away from the stud 101; the first pressing block 5 and the second pressing block 6 are both provided with connecting holes 501; the fixing fork 102 is connected in the connecting hole 501.
[0047] The fixing plate 10 has two fixing forks 102 on the side away from the stud 101; the fixing fork 102 is a cylinder; the first pressing block 5 and the second pressing block 6 are each provided with two connecting holes 501; the connecting hole 501 can be a semi-through hole or a through hole; the connecting hole 501 is the same size as the fixing fork 102; by inserting the fixing fork 102 into the connecting hole 501, the first pressing block 5 can be installed on the fixing plate 10 of the slider 4, and the second pressing block 6 can be installed on the fixing plate 10 of the fixing block 3.
[0048] The mobile platform 1 is equipped with multiple steering wheels 11 on the side away from the support rod 2; a controller 111 is connected to the support rod 2; the controller 111 is connected to the motor 7.
[0049] The bottom of the mobile platform 1 is connected to four steering wheels 11, which enables the device to move; the controller 111 can be a microcontroller; the controller 111 can control the motor 7 to turn on and off, rotate forward and backward and adjust the speed of the motor 7; the motor 7 is a servo motor.
[0050] Both the first pressing block 5 and the second pressing block 6 are dense refractory blocks; both the first pressing block 5 and the second pressing block 6 are decorated with patterns.
[0051] The first pressing block 5 and the second pressing block 6 can be patterned pressing blocks or unpatterned pressing blocks; the pattern is a raised or recessed shape.
[0052] The specific workflow of this utility model is as follows:
[0053] According to production requirements, select the first pressing block 5 and the second pressing block 6; install the first pressing block 5 on the fixing plate 10 of the slider 4, and install the second pressing block 6 on the fixing plate 10 of the fixing block 3; pour the molten glass onto the second pressing block 6, start the motor 7, and the first pressing block 5 moves towards the second pressing block 6; the motor 7 controls the downward stroke of the first pressing block 5, thereby controlling the forming thickness of the glass, and the first pressing block 5 and the second pressing block 6 press the glass to form patterns.
[0054] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention; or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.
Claims
1. A glass pressing and forming apparatus, characterized in that: The system includes a mobile platform (1); the mobile platform (1) is provided with a support rod (2) and a drive assembly; the support rod (2) is provided with a fixing block (3) and a slider (4); the slider (4) is connected to the drive assembly; the slider (4) is detachably connected to a first pressing block (5); the fixing block (3) is detachably connected to a second pressing block (6); and molten glass is provided between the first pressing block (5) and the second pressing block (6).
2. A glass pressing and forming apparatus according to claim 1, characterized in that: The drive assembly includes a motor (7); the motor (7) is mounted on the mobile platform (1); the support rod (2) is provided with a mounting groove (701); one end of the mounting groove (701) is provided with a first rotating shaft (702), and the other end of the mounting groove (701) is provided with a second rotating shaft (703); both the first rotating shaft (702) and the second rotating shaft (703) are connected to sprockets (704); the motor (7) is connected to the second rotating shaft (703); a chain (705) is connected to the sprocket (704); the slider (4) is connected to the chain (705).
3. A glass pressing and forming apparatus according to claim 2, characterized in that: A connecting block (401) is provided on one side of the slider (4); the connecting block (401) is located in the mounting groove (701), and the connecting block (401) is fixedly connected to the chain (705).
4. A glass pressing and forming apparatus according to any one of claims 2-3, characterized in that: The slider (4) includes a first side plate (8); the end of the first side plate (8) is provided with a first limiting baffle (801); the fixing block (3) includes a second side plate (9); the end of the second side plate (9) is provided with a second limiting baffle (901); the support rod (2) is provided with guide grooves (201) on both sides; the first limiting baffle (801) is provided in the guide groove (201), and the first limiting baffle (801) is connected to a roller (802); the second limiting baffle (901) is fixedly connected in the guide groove (201).
5. A glass pressing and forming apparatus according to claim 4, characterized in that: The first pressing block (5) and the second pressing block (6) are both connected to a fixing plate (10); the fixing plate (10) is connected to a stud (101); the fixing block (3) and the slider (4) are provided with threaded holes (301); the stud (101) is connected in the threaded hole (301).
6. A glass pressing and forming apparatus according to claim 5, characterized in that: The fixing plate (10) is provided with a fixing fork (102); the fixing fork (102) is located on the side of the fixing plate (10) away from the stud (101); the first pressing block (5) and the second pressing block (6) are both provided with connecting holes (501); the fixing fork (102) is connected in the connecting hole (501).
7. A glass pressing and forming apparatus according to any one of claims 5-6, characterized in that: The mobile platform (1) is provided with multiple steering wheels (11) on the side away from the support rod (2); a controller (111) is connected to the support rod (2); the controller (111) is connected to the motor (7).
8. A glass pressing and forming apparatus according to claim 7, characterized in that: Both the first pressing block (5) and the second pressing block (6) are dense refractory blocks; both the first pressing block (5) and the second pressing block (6) are decorated with patterns.