Tempered glass forming device
By introducing a heating plate and hot press plate structure into the tempered glass forming device, combined with an independent power supply mechanism and adjustment components, the problem of uneven forming caused by uneven temperature is solved, thereby improving the glass forming efficiency and the convenience and operability of the device.
Patent Information
- Application Number
- CN202520129256.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-20
AI Technical Summary
Existing tempered glass forming equipment suffers from uneven temperature during glass production, resulting in uneven forming. Furthermore, the equipment components are complex and difficult to install and operate, affecting work efficiency.
Employing a heating plate and hot press plate structure, molten glass from the storage tank flows into the mold plate for preheating and shaping. Combined with an independent power supply mechanism and adjustment components, it achieves uniform and rapid forming of glass on both sides. The height of the hot press plate can be adjusted via a telescopic rod for easy operation.
It achieves improved temperature uniformity and forming efficiency in glass forming, and the device structure is easy to install and operate, thus improving work efficiency.
Smart Images

Figure CN223793051U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of tempered glass production technology, specifically a tempered glass forming device. Background Technology
[0002] Tempered glass, also known as reinforced glass, is glass with compressive stress on its surface. It has good mechanical properties and thermal stability and is commonly used in building doors, windows, partitions, curtain walls, shop windows, furniture, and other fields. The production and forming process of tempered glass includes various manufacturing processes such as blowing, pressing, physical tempering, and chemical tempering. For example, the pressing method involves injecting molten glass into a mold and forming it under pressure.
[0003] Application number CN214400232U discloses a tempered glass forming device, including a support plate, a crossbeam, an upper mold, a side baffle, a motor, a bottom beam, a roller, a table, a first hydraulic oil pump, a second hydraulic oil pump, a hydraulic support rod, an electric telescopic rod, a vent, and an exhaust fan. A crossbeam is installed on the right end face of the support plate, an upper mold is installed on the lower end face of the crossbeam, a side baffle is installed on the right end face of the middle position of the support plate, a motor is installed on the left end face of the support plate, a bottom beam is installed on the right side of the lower end face of the support plate, a roller is installed on the right end face of the motor, a table is installed in the middle position of the roller, a first hydraulic oil pump is installed on the lower end face of the table, and a second hydraulic oil pump is installed on the upper end face of the upper mold. Compared with the prior art, this utility model has the following beneficial effects: it avoids the problem of tempered glass not being able to be formed, solves the problem that the original device cannot quickly cool and form tempered glass, and improves the forming effect of this utility model.
[0004] Existing technologies achieve rapid cooling and molding of tempered glass through components such as rollers, hydraulic pumps, and exhaust fans. However, during the glass production process, the exhaust fan is located on one side, which can easily lead to uneven heating on both sides of the glass, resulting in poor glass forming and unevenness on the outside, thus affecting the molding effect. The device involves multiple components such as upper mold, side baffles, motors, and bottom beams, which are not easy to install and operate, thus affecting the efficiency of tempered glass molding. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model relates to a tempered glass forming device, comprising a main body, which includes a power supply mechanism, an adjustment component, and an equipment housing. The power supply mechanism has a load-bearing plate on its exterior, with pillars around its bottom perimeter. A power supply pipe is located at the bottom of the load-bearing plate, and a motor is mounted on the top of the load-bearing plate. The adjustment component has a telescopic rod on its exterior, with a hot-pressing plate mounted on the top of the telescopic rod. The equipment housing has a power supply box on its exterior, with a partition on the top of the power supply box. A heating plate is located on the top of the partition, and a mold plate is mounted on the top of the heating plate. One side of the mold plate is connected to an infusion pipe and a storage tank. An equipment box is located on one side of the power supply box, and a support column is mounted on the bottom of the equipment box.
[0007] A heating plate and a hot press plate are set up. Molten glass from inside the storage tank flows into the mold plate through the infusion pipe. The bottom of the mold plate is equipped with a heating plate, which allows both sides of the glass to be preheated and shaped simultaneously. The glass is formed quickly with uniform temperature on both sides, avoiding uneven heating that would cause external unevenness, thereby improving the forming effect.
[0008] In addition, an independent power supply mechanism and adjustment components are set up, which makes it easy to install and operate the corresponding structural components. The height of the hot press plate is adjusted by the telescopic rod so that the hot press plate contacts the mold plate to carry out hot pressing and forming work. The flexible adjustment makes it easy to operate and improves the convenience of use and work efficiency of the device.
[0009] Furthermore, the load-bearing plate is square, the support column has two sets of columns that are centrally symmetrically distributed, and the power pipe has a round outer shell with its top connected to the motor.
[0010] Furthermore, the telescopic rod is cylindrical and has four groups of equally spaced holes. The heat dissipation holes are opened inside the hot press plate. All the heat dissipation holes are circular holes and are distributed in a straight line at equal distances. The top of the hot press plate is adapted to be connected to the power pipe.
[0011] Furthermore, the heating plate has two sets of electrical conduits on one side that are connected to the power motor inside the power supply box. The mold plate is square and has a square groove inside. An opening is opened in the middle of one side of the groove. The opening is circular and is adapted to connect with the infusion tube. One side of the infusion tube is connected to the inside of the storage tank.
[0012] Furthermore, the supporting column has two sets of square columns, and the bottom of the column is provided with a connecting plate, which is square and adapted to be connected to the middle of the supporting column.
[0013] This utility model has the following beneficial effects:
[0014] (1) This utility model: a heating plate and a hot pressing plate are provided. Molten glass liquid inside the storage tank flows into the mold plate through the liquid delivery pipe. A heating plate is provided at the bottom of the mold plate, so that both sides of the glass are preheated and shaped at the same time. The glass is formed quickly with uniform temperature on both sides, avoiding uneven heating that leads to unevenness on the outside, thereby improving the forming effect.
[0015] (2) This utility model: It is equipped with an independent power supply mechanism and adjustment components, which makes it easy to install and operate the corresponding structural components. The height of the hot press plate is adjusted by the telescopic rod so that the hot press plate contacts the mold plate to perform hot pressing molding. The flexible adjustment makes it easy to operate and improves the convenience and efficiency of the device.
[0016] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0017] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 This is a schematic diagram of the overall design of this utility model;
[0019] Figure 2 This is a schematic diagram of the overall structure of this utility model;
[0020] Figure 3 This is a schematic diagram of the power supply mechanism of this utility model;
[0021] Figure 4 This is a schematic diagram of the equipment chassis structure of this utility model;
[0022] The attached diagram lists the components represented by each number as follows:
[0023] In the diagram: 1. Power supply mechanism; 2. Adjustment component; 3. Equipment chassis; 101. Load-bearing plate; 102. Support column; 103. Power supply pipe; 104. Motor; 201. Telescopic rod; 202. Hot press plate; 301. Power supply box; 302. Partition plate; 303. Heating plate; 304. Mold plate; 305. Infusion pipe; 306. Storage tank; 307. Equipment box; 308. Support column. Detailed Implementation
[0024] 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.
[0025] Please see Figures 1-4 As shown, this utility model is a tempered glass forming device, including a main body, which includes a power supply mechanism 1, an adjustment component 2, and an equipment housing 3. The power supply mechanism 1 is provided with a load-bearing plate 101 on the outside, and supports 102 are provided around the bottom of the load-bearing plate 101. A power supply pipe 103 is provided at the bottom of the load-bearing plate 101, and a motor 104 is installed on the top of the load-bearing plate 101. The adjustment component 2 is provided with a telescopic rod 201 on the outside, and a hot press plate 202 is installed on the top of the telescopic rod 201. The equipment housing 3 is provided with a power supply box 301 on the outside, and a partition 302 is provided on the top of the power supply box 301. A heating plate 303 is provided on the top of the partition 302, and a mold plate 304 is installed on the top of the heating plate 303. An infusion pipe 305 and a storage tank 306 are connected to one side of the mold plate 304. An equipment box 307 is provided on one side of the power supply box 301, and a support column 308 is installed at the bottom of the equipment box 307.
[0026] A heating plate 303 and a hot press plate 202 are provided. Molten glass liquid inside the liquid storage tank 306 flows into the mold plate 304 through the liquid delivery pipe 305. The bottom of the mold plate 304 is provided with a heating plate 303, so that both sides of the glass are preheated and shaped at the same time. The glass is formed quickly with uniform temperature on both sides, avoiding uneven heating that would cause unevenness on the outside, thereby improving the forming effect.
[0027] In addition, an independent power supply mechanism 1 and adjustment component 2 are set up to facilitate the installation and operation of the corresponding structural components. The height of the hot press plate 202 is adjusted by the telescopic rod 201 so that the hot press plate 202 contacts the mold plate 304 to perform hot pressing molding. The flexible adjustment facilitates operation and improves the convenience and efficiency of the device.
[0028] The load-bearing plate 101 is a square plate, the support column 102 has two sets of columns that are centrally symmetrically distributed, and the power pipe 103 has a round tube shell on the outside and the top is connected to the motor 104.
[0029] The telescopic rod 201 is cylindrical and has four sets of equally spaced holes. The heat-dissipating holes are all circular and are distributed in a straight line at equal intervals. The top of the heat-dissipating plate 202 is adapted to and connected to the power pipe 103.
[0030] Two sets of electrical conduits are provided on one side of the heating plate 303, which are connected to the power supply motor inside the power supply box 301. The mold plate 304 is a square plate with a square groove inside. An opening is opened in the middle of one side of the groove. The opening is circular and is adapted to connect with the infusion tube 305. One side of the infusion tube 305 is connected to the inside of the storage tank 306.
[0031] The support column 308 has two sets of square columns, and the bottom of the column is provided with a connecting plate. The connecting plate is square and is adapted to be connected to the middle of the support column 308.
[0032] Working principle: When in use, the motor 104 and power supply box 301 at the top of the device are connected to the power supply. The liquid storage tank 306 on one side of the device casing 3 delivers molten glass liquid into the mold plate 304 through the liquid delivery pipe 305. The bottom of the mold plate 304 is equipped with a heating plate 303, which is connected to the power supply box 301 on one side to generate heat. The hot press plate 202 at the top moves downward through the telescopic rods 201 around the perimeter and contacts the surface of the mold plate 304 to perform hot pressing and shaping work, thus completing the tempered glass forming work. The glass is heated evenly on both sides, which improves the forming efficiency. At the same time, the independent structure of the device makes it easy to install and operate.
[0033] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A tempered glass forming apparatus, comprising a main body, the main body including a power supply mechanism (1), an adjustment component (2), and an equipment housing (3), characterized in that: The power supply mechanism (1) is provided with a load-bearing plate (101) on the outside, and the load-bearing plate (101) is provided with support columns (102) around the bottom of the load-bearing plate (101), and the load-bearing plate (101) is provided with a power pipe (103) at the bottom, and a motor (104) is installed on the top of the load-bearing plate (101). The adjustment assembly (2) is provided with a telescopic rod (201) on the outside, and a hot press plate (202) is installed on the top of the telescopic rod (201); The equipment chassis (3) is equipped with a power supply box (301) on the outside. The power supply box (301) is equipped with a partition (302) on the top. The partition (302) is equipped with a heating plate (303) on the top. The heating plate (303) is equipped with a mold plate (304) on the top. One side of the mold plate (304) is connected to an infusion tube (305) and a storage tank (306). The power supply box (301) is equipped with an equipment box (307) on one side. The equipment box (307) is equipped with a support column (308) at the bottom.
2. The tempered glass forming apparatus according to claim 1, characterized in that: The load-bearing plate (101) is a square plate, the support column (102) has two sets of columns that are centrally symmetrically distributed, and the power pipe (103) has a round tube shell on the outside and its top is connected to the motor (104).
3. The tempered glass forming apparatus according to claim 2, characterized in that: The telescopic rod (201) is cylindrical and has four groups of equally spaced holes. The heat-dissipating holes are opened inside the hot plate (202). The heat-dissipating holes are all circular holes and are distributed in a straight line at equal distances. The top of the hot plate (202) is adapted to be connected to the power pipe (103).
4. The tempered glass forming apparatus according to claim 3, characterized in that: The heating plate (303) has two sets of electrical conduits on one side that are connected to the power supply motor inside the power supply box (301). The mold plate (304) is a square plate with a square groove inside. An opening is opened in the middle of one side of the groove. The opening is circular and is adapted to connect with the infusion tube (305). One side of the infusion tube (305) is connected to the inside of the storage tank (306).
5. The tempered glass forming apparatus according to claim 3, characterized in that: The support column (308) has two sets of square columns, and the bottom of the column is provided with a connecting plate. The connecting plate is square and is adapted to be connected to the middle of the support column (308).
Citation Information
Patent Citations
Tempered glass forming device
CN214400232U