Toughening furnace for producing glass pot cover
By designing an automated tempered furnace for glass pot lid production, the motor drive gears and teeth meshing are used to achieve automatic removal of glass pot lids, and cooling is reduced through the heat dissipation mechanism, the problem of unsafe high-temperature operation is solved and safe and efficient production is achieved.
Patent Information
- Application Number
- CN202422150659.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The existing tempered furnace for glass pot lid production is not safe to operate in high temperature environments, which can easily cause damage to the operator and the operation steps are cumbersome.
A tempered furnace for production of glass pot covers including chassis, motors, gears, restriction frames and heat dissipation mechanisms is designed. The gears and teeth meshing of the motor drive the restriction frames to move, realize the automatic removal of the glass pot covers and reduce the temperature through the heat dissipation mechanism.
It realizes safe and automated operation in high temperature environments, reduces damage to operators, simplifies operating procedures, and improves production safety and efficiency.
Smart Images

Figure CN223118320U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toughening furnaces, in particular to a toughening furnace for producing glass pot lids. Background Art
[0002] A glass pot lid is a lid used to cover cookware and is made of glass. The shapes and sizes of glass pot lids are diverse to fit different types and sizes of cookware. Common shapes include round and square, with diameters or side lengths ranging from more than ten centimeters to dozens of centimeters.
[0003] During the production process of glass pot lids, a toughening furnace is required. The toughening furnace for producing glass pot lids can gradually increase the temperature of the surface and interior of the glass pot lid until it reaches the toughening temperature in a high-temperature environment. When the glass pot lid reaches the toughening temperature, strong wind or cooling liquid is sprayed onto the glass surface to cool it rapidly. This rapid cooling process will form compressive stress on the glass surface and tensile stress inside, thereby increasing the strength of the glass.
[0004] In the prior art, after the toughening furnace produces pot lids, it is necessary to manually take out the glass pot lids from the inside of the toughening furnace. Due to the high temperature, the glass pot lids will pose certain risks and cause certain injuries to the operators. Moreover, the operation process is cumbersome and cannot ensure the safety factor. Summary of the Utility Model
[0005] To make up for the above deficiencies, the utility model provides a toughening furnace for producing glass pot lids, aiming to improve the problems in the prior art that the glass pot lids will pose certain risks due to high temperature, cause certain injuries to the operators, and the operation process is cumbersome.
[0006] To achieve the above object, the utility model adopts the following technical scheme: A toughening furnace for producing glass pot lids includes a machine case. A first motor is connected to the inner bottom of the machine case. The top of the first motor is connected to a connecting rod. The top of the connecting rod is connected to a gear. A limiting frame is installed on the inner bottom wall of the machine case. Tooth teeth are connected to the front and back of the middle part of the inner side of the limiting frame. The gear is meshed with the tooth teeth. A bearing plate is connected to the top of the outer side of the limiting frame. A protective cover is installed on the right side of the outer wall of the machine case. A heat dissipation mechanism is installed on the inner top wall of the protective cover, and the heat dissipation mechanism is used to cool the materials.
[0007] As a further description of the above technical solution:
[0008] The heat dissipation mechanism includes a second motor, which is installed on the inner top wall of the protective cover. A fixing plate is connected to the outside of the second motor. The fixing plate is threadedly connected to the protective cover through a first bolt. The output end of the second motor is connected to a rotating rod, and the rotating rod is threadedly connected to a sliding block. Both the front and rear ends of the sliding block are slidably connected to sliding rods. The left and right ends of the sliding rods are connected to baffles, and the outer top of the baffles is connected to a fixing plate. The outer bottom of the sliding block is connected to a fan.
[0009] As a further description of the above technical solution:
[0010] Rollers are connected to the four corners at the bottom of the chassis, and a push rod is connected to the outside of the chassis.
[0011] As a further description of the above technical solution:
[0012] A hinge is installed in the upper middle part of the front side of the outer wall of the chassis, and a rotating plate is rotatably connected to the outside of the hinge.
[0013] As a further description of the above technical solution:
[0014] A ventilation pipe is connected to the top of the chassis, and a filter screen is installed at the top end of the ventilation pipe.
[0015] As a further description of the above technical solution:
[0016] Corner guards are provided at the four corners of the top of the chassis, and a second bolt is threadedly connected to the outside of the corner guards. The corner guards are threadedly connected to the chassis through the second bolt.
[0017] As a further description of the above technical solution:
[0018] A button is installed in the upper middle part of the front side of the outer wall of the chassis, and the button is electrically connected to the second motor.
[0019] As a further description of the above technical solution:
[0020] A handle is installed in the middle of the front side of the rotating plate, and a valve is installed on the front side of the top of the chassis.
[0021] The present utility model has the following beneficial effects:
[0022] 1. In the present utility model, a bearing plate is installed on the inner bottom wall of the chassis. The connecting rod is driven by the first motor, and the connecting rod is connected to the gear. Therefore, the gear is driven to rotate. The gear and the tooth are meshed to drive the limiting frame to move horizontally, and then the glass pot lid is transported out through the bearing plate.
[0023] 2. In the present utility model, the heat dissipation mechanism dissipates heat from the glass pot lid. The motor two drives the rotating rod, and the rotating rod rotates and moves in the sliding block. Since the bottom of the sliding block is connected with a fan, the fan will move along with the left and right translation of the sliding block. The sliding rods on both sides are connected to the baffle plate, and the sliding rods are used to limit the direction of the sliding block, which can prevent local low temperature and high temperature in other places. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is a three-dimensional view of the toughening furnace for producing glass pot lids proposed by the present utility model;
[0025] Figure 2 is a front view of the toughening furnace for producing glass pot lids proposed by the present utility model;
[0026] Figure 3 is an exploded view of the partial structure of the toughening furnace for producing glass pot lids proposed by the present utility model;
[0027] Figure 4 is a split view of the partial structure of the toughening furnace for producing glass pot lids proposed by the present utility model;
[0028] Figure 5 is a cross-sectional view of the partial structure of the toughening furnace for producing glass pot lids proposed by the present utility model;
[0029] Figure 6 is a bottom view of the toughening furnace for producing glass pot lids proposed by the present utility model.
[0030] LEGEND DESCRIPTION:
[0031] 1. Chassis; 2. Heat dissipation mechanism; 201. Motor two; 202. Fan; 203. Slide bar; 204. Sliding block; 205. Fixed plate; 206. Bolt one; 207. Baffle plate; 208. Rotating rod; 3. Hinge; 4. Rotating plate; 5. Roller; 6. Push rod; 7. Protective cover; 8. Corner guard; 9. Bolt two; 10. Restricting frame; 11. Ventilation pipe; 12. Valve; 13. Button; 14. Handle; 15. Carrier plate; 16. Gear; 17. Motor one; 18. Connecting rod; 19. Teeth; 20. Filter screen. DETAILED IMPLEMENTATION MANNER
[0032] 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 in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present utility model.
[0033] Refer to Figure 1 andFigure 4 , an embodiment provided by the present utility model: A motor one 17 is connected to the inner bottom of the chassis 1. The top of the motor one 17 is connected to a connecting rod 18. The top of the connecting rod 18 is connected to a gear 16. A limiting frame 10 is installed on the inner bottom wall of the chassis 1. Tooth teeth 19 are connected to the front and back of the middle part of the inner side of the limiting frame 10. The gear 16 is meshed with the tooth teeth 19. A bearing plate 15 is connected to the outer top of the limiting frame 10. A protective cover 7 is installed on the right side of the outer wall of the chassis 1. A heat dissipation mechanism 2 is installed on the inner top wall of the protective cover 7. The heat dissipation mechanism 2 is used to cool the materials. A hinge 3 is installed on the upper middle part of the front side of the outer wall of the chassis 1. A rotating plate 4 is rotatably connected to the outside of the hinge 3. A handle 14 is installed in the middle of the front side of the rotating plate 4. A valve 12 is installed on the front side of the top of the chassis 1.
[0034] Specifically, a motor one 17 is installed on the inner bottom of the chassis 1. The top of the motor one 17 is tightly connected to a connecting rod 18. A precise gear 16 is fixed at the top of the connecting rod 18. This design ensures the smooth and stable power transmission. The limiting frame 10 is embedded in the inner bottom wall of the chassis 1. Tooth teeth 19 are firmly welded to the front and back ends of the middle part of its inner side. These tooth teeth 19 are meshed with the gear 16 to achieve power transmission and movement. On the outer top of the limiting frame 10, the bearing plate 15 is fixed on it, providing a support platform for the glass pot lid. On the right side of the outer wall of the chassis 1, a protective cover 7 is installed. A heat dissipation mechanism 2 is installed on its inner top wall. The main function of this mechanism is to provide effective cooling treatment for the materials in the chassis 1. On the upper middle part of the front side of the outer wall of the chassis 1, a hinge 3 is cleverly installed. A rotating plate 4 is rotatably connected to the outside of the hinge 3. In the middle of the front side of the rotating plate 4, a handle 14 is also installed, enabling users to easily open and close the rotating plate 4. On the front side of the top of the chassis 1, the valve 12 is installed here. Its existence facilitates the air pressure adjustment or material discharge inside the chassis 1.
[0035] Refer to Figure 2 , Figure 3 and Figure 6 , the heat dissipation mechanism 2 includes a motor two 201. The motor two 201 is installed on the inner top wall of the protective cover 7. A fixing plate 205 is connected to the outside of the motor two 201. The fixing plate 205 is threadedly connected to the protective cover 7 through a bolt one 206. The output end of the motor two 201 is connected to a rotating rod 208. The rotating rod 208 is threadedly connected to a sliding block 204. The front and back ends of the sliding block 204 are slidably connected to sliding rods 203. The left and right ends of the sliding rods 203 are connected to baffles 207. The outer top of the baffles 207 is connected to the fixing plate 205. The outer bottom of the sliding block 204 is connected to a fan 202. Rolling wheels 5 are connected to the four corners of the bottom of the chassis 1. A push rod 6 is connected to the outside of the chassis 1. Rolling wheels 5 are connected to the four corners of the bottom of the chassis 1. A push rod 6 is connected to the outside of the chassis 1.
[0036] Specifically, the heat dissipation mechanism 2 has the second motor 201 as the core component. This motor is installed on the inner top wall of the protective cover 7. A stable fixing plate 205 is connected to the periphery of the second motor 201. This fixing plate 205 is tightly threadedly connected to the protective cover 7 by the first bolt 206, ensuring the stability and safety of the structure. The power output end of the second motor 201 is connected to a rotating rod 208. A clever threaded connection is adopted between this rotating rod 208 and the sliding block 204, making the power transmission more efficient and precise. The sliding block 204 is cleverly provided with sliding rods 203 at both its front and rear ends, enabling the sliding block 204 to slide smoothly on a stable track. The left and right ends of the sliding rods 203 are firmly connected to the baffles 207. These baffles 207 not only play a role in limiting the position but also form a stable mechanism with the whole through the fixing plate 205 at the outer top of them. The outer bottom of the sliding block 204 is connected to a fan 202. Through the fan 202, the heat dissipation capacity of the heat dissipation mechanism 2 is increased, enabling the whole mechanism to maintain a more stable temperature state during operation. In addition, at the four corners of the bottom of the chassis 1, rollers 5 are connected. These rollers 5 not only make the movement of the chassis 1 easy and convenient but also enhance the flexibility of the chassis 1. And on the outer side of the chassis 1, a push rod 6 is connected, further improving the portability of the chassis 1. The models of the first motor 17 and the second motor 201 are both InductionMotor.
[0037] Refer to Figure 1 and Figure 5 As shown in, a ventilation pipe 11 is connected to the outer top of the chassis 1. A filter screen 20 is installed at the top end of the ventilation pipe 11. At the four corners of the top of the chassis 1, corner guards 8 are provided. The outer side of the corner guards 8 is threadedly connected to the second bolt 9. The corner guards 8 are threadedly connected to the chassis 1 through the second bolt 9. In the upper middle part of the front side of the outer wall of the chassis 1, a button 13 is installed. The button 13 is electrically connected to the second motor 201.
[0038] Specifically, when the waste gas in the toughening furnace is discharged through the ventilation pipe 11, it will pass through the filter screen 20 for filtration. The corners at the top of the chassis 1 are too sharp, so corner guards 8 are added to reduce the damage caused by bumps. The corner guards 8 are threadedly connected to the second bolt 9, and the corner guards 8 are threadedly connected to the chassis 1 through the second bolt 9, which can be more fixed. A button 13 is installed in the upper middle part of the front side of the outer wall of the chassis 1. By pressing the button 13, the operation of the second motor 201 can be started.
[0039] After the glass pot lid is processed by the toughening furnace, the first motor 17 drives the top connecting rod 18 to rotate through kinetic energy. A limiting frame 10 is installed on the inner bottom wall of the chassis 1, and teeth 19 are firmly welded to both the front and rear ends of the middle part of its inner side. These teeth 19 are meshed with the gear 16. The teeth 19 are connected to the limiting frame 10, and the top end of the limiting frame 10 is connected to a bearing plate 15. As the first motor 17 operates, the glass pot lid on the bearing plate 15 will move and send out the material.
[0040] The output end of the second motor 201 can drive the rotating rod 208 fixed to the output end to move. The rotating rod 208 is threadedly connected to the sliding block 204. A fan 202 is connected to the outer bottom of the sliding block 204. The fan 202 will move back and forth. Holes are provided at the front and rear ends of the sliding block 204, and the sliding rod 203 will move in the holes. Baffles 207 are connected to the left and right ends of the sliding rod 203 to prevent the sliding rod 203 from moving and falling. The fixing plate 205 is threadedly connected to the protective cover 7 through the first bolt 206, and the heat dissipation mechanism 2 is fixed in the protective cover 7.
[0041] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. Tempering furnace for producing glass lids, including a machine case (1), characterized in that: At the inner bottom of the chassis (1), a first motor (17) is connected. At the top of the first motor (17), a connecting rod (18) is connected. At the top of the connecting rod (18), a gear (16) is connected. A limiting frame (10) is installed on the inner bottom wall of the chassis (1). At the front and back of the middle part inside the limiting frame (10), tooth teeth (19) are connected. The gear (16) is meshed with the tooth teeth (19). At the outer top of the limiting frame (10), a bearing plate (15) is connected. On the right side of the outer wall of the chassis (1), a protective cover (7) is installed. At the inner top wall of the protective cover (7), a heat dissipation mechanism (2) is installed. The heat dissipation mechanism (2) is used to cool the materials.
2. The toughening furnace for producing glass lids according to claim 1, characterized in that: The heat dissipation mechanism (2) includes a second motor (201). The second motor (201) is installed on the inner top wall of the protective cover (7). On the outside of the second motor (201), a fixing plate (205) is connected. The fixing plate (205) is threadedly connected to the protective cover (7) through a first bolt (206). At the output end of the second motor (201), a rotating rod (208) is connected. The rotating rod (208) is threadedly connected to a sliding block (204). At the front and back ends of the sliding block (204), sliding rods (203) are slidably connected. At the left and right ends of the sliding rods (203), baffles (207) are connected. At the outer top of the baffles (207), a fixing plate (205) is connected. At the outer bottom of the sliding block (204), a fan (202) is connected.
3. The toughening furnace for producing glass lids according to claim 1, characterized in that: At the four corners of the bottom of the chassis (1), rollers (5) are connected. On the outside of the chassis (1), a push rod (6) is connected.
4. The toughening furnace for producing glass pot lids according to claim 1, characterized in that: On the upper middle part of the front side of the outer wall of the chassis (1), a hinge (3) is installed. On the outside of the hinge (3), a rotating plate (4) is rotatably connected.
5. The toughening furnace for producing glass lids according to claim 1, characterized in that: On the outer top of the chassis (1), a ventilation pipe (11) is communicated. At the top of the ventilation pipe (11), a filter screen (20) is installed.
6. The toughening furnace for producing glass lids according to claim 1, wherein: At the four corners of the top of the chassis (1), corner guards (8) are provided. On the outside of the corner guards (8), second bolts (9) are threadedly connected. The corner guards (8) are threadedly connected to the chassis (1) through the second bolts (9).
7. The toughening furnace for producing glass pot lids according to claim 1, characterized in that: On the upper middle part of the front side of the outer wall of the chassis (1), a button (13) is installed. The button (13) is electrically connected to the second motor (201).
8. The toughening furnace for producing glass lids according to claim 4, characterized in that: At the middle part of the front side of the rotating plate (4), a handle (14) is installed. On the front side of the top of the chassis (1), a valve (12) is installed.