Glass product trimming mechanism

By setting up a rotating mechanism and a transportation mechanism during the glass product dressing process, rotating firing of materials is achieved, and uneven heating of materials caused by one-way injection is solved, and the processing quality is improved.

CN222990023UActive Publication Date: 2025-06-17GANSU JICHENG HONGYUN GLASS CO LTD
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Patent Information

Application Number
CN202420738085.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-10
Publication Date
2025-06-17
Estimated Expiration
2034-04-10

AI Technical Summary

Technical Problem

During the process of dressing glass products, one-way injection leads to uneven heating of the material, which reduces production quality.

Method used

By setting up a rotating mechanism and a transport mechanism, the glass products are rotated and fired during the dressing process, and controlled by a spraying mechanism, flow rate mechanism, pressurization mechanism and cooling mechanism to ensure that the material is uniformly heated during the rotation process.

Benefits of technology

Through rotary firing, the problem of uneven heating of materials caused by unidirectional firing is reduced, and the processing quality of glass products is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass product finishing, in particular to a glass product finishing mechanism, which is provided with a rotating mechanism and a conveying mechanism, so that materials can be rotationally fired in a glass product finishing process, and low processing quality caused by non-uniform heating of the materials due to unidirectional spray firing is reduced. Comprising a transportation mechanism; the device further comprises a rotating mechanism, a spraying and burning mechanism, a flow velocity mechanism, a pressurizing mechanism and a cooling mechanism, the rotating mechanism is installed on the conveying mechanism, the spraying and burning mechanism is installed on the conveying mechanism, the flow velocity mechanism is installed on the spraying and burning mechanism, the pressurizing mechanism is installed on the spraying and burning mechanism, and the cooling mechanism is installed at the upper end of the conveying mechanism. The conveying mechanism is used for conveying, the rotating mechanism is used for rotating, the spraying and burning mechanism is used for spraying and burning, the flow speed mechanism is used for controlling the air flow speed, the pressurizing mechanism is used for pressurizing and spraying air, and the cooling mechanism is used for cooling.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass product trimming, in particular to a glass product trimming mechanism. Background Art

[0002] Glass is an amorphous inorganic non-metallic material. Generally, it is made of a variety of inorganic minerals as the main raw materials, and a small amount of auxiliary raw materials are added. Its main components are silicon dioxide and other oxides. The main component of ordinary glass is silicate double salt, which is an amorphous solid with an irregular structure. It is widely used in buildings to isolate wind and let light through. It belongs to a mixture. There is also colored glass that shows color by mixing certain metal oxides or salts, and tempered glass obtained by physical or chemical methods. With the development of society, more and more glass products have entered people's lives.

[0003] In the existing glass product trimming mechanism, for example, a glass product trimming mechanism disclosed in the utility model patent with the application number 202021977947.5. This utility model designs a rotary conveyor belt, which can effectively automate the cyclic conveyance of glass products. Moreover, equidistant placement plates are added on the conveyor belt, which can simultaneously use flames to trim multiple glass products, with high trimming efficiency and meeting the production requirements of large quantities of glass products. Secondly, the rotatable placement plates enable the glass products to freely turn during flame trimming, increasing the comprehensiveness of trimming, with good trimming effect and improving the quality of glass products.

[0004] However, during the glass product trimming process, when the material passes through the blowtorch, the blowtorch sprays unidirectionally, resulting in uneven heating of the material and reducing the production quality. Summary of the Utility Model

[0005] To solve the above technical problems, the utility model provides a glass product trimming mechanism that can rotate and fire the material during the glass product trimming process by setting a rotating mechanism and a transporting mechanism, reducing the low processing quality caused by uneven heating of the material due to unidirectional spraying and burning.

[0006] A glass product trimming mechanism of the utility model includes a transporting mechanism; it also includes a rotating mechanism, a spraying and burning mechanism, a flow rate mechanism, a pressurizing mechanism, and a cooling mechanism. The rotating mechanism is installed on the transporting mechanism, the spraying and burning mechanism is installed on the transporting mechanism, the flow rate mechanism is installed on the spraying and burning mechanism, the pressurizing mechanism is installed on the spraying and burning mechanism, and the cooling mechanism is installed at the upper end of the transporting mechanism;

[0007] The transportation mechanism transports, the rotation mechanism rotates, the spraying and burning mechanism sprays and burns, the flow rate mechanism controls the air flow rate, the pressurization mechanism pressurizes and jets, and the cooling mechanism cools down; by turning on the transportation mechanism to transport the material, while cooperating with the rotation mechanism to rotate the material, by turning on the spraying and burning mechanism to carry out spraying and firing, by turning on the flow rate mechanism to control the spraying flow rate, by turning on the pressurization mechanism to compress and eject the air, and by turning on the cooling mechanism to cool down the material, so that during the glass product trimming process, the material can be rotated and fired, reducing the low processing quality caused by uneven heating of the material due to one-way spraying and burning.

[0008] Preferably, the transportation mechanism includes a transportation frame, two groups of sprockets, a first motor, a chain, and a conveyor belt. The two groups of sprockets are rotatably installed on the transportation frame. The first motor is installed inside the transportation frame, and the output end of the first motor is connected to the input end of one group of sprockets. The chain is installed around the two groups of sprockets, and the conveyor belt is installed at the upper end of the chain; by turning on the first motor to drive the sprockets to rotate, the sprockets rotate while cooperating with the chain to rotate, so that the conveyor belt rotates and transports in cooperation with the chain.

[0009] Preferably, the rotation mechanism includes a rack, multiple groups of gear discs, and multiple groups of placing plates. The rack is installed on the transportation frame. The multiple groups of gear discs are rotatably installed at the upper end of the conveyor belt, and each group of gear discs meshes with the rack. A group of placing plates is installed at the upper end of each group of gear discs; when the gear discs move and rotate by meshing with the rack, and at the same time, the material is placed by the placing plates.

[0010] Preferably, the spraying and burning mechanism includes a fuel tank, a pump, a combustion chamber, and a pipeline. The fuel tank is installed inside the transportation frame. The pump is installed at the rear end of the fuel tank, and the input end of the pump extends into the fuel tank. The combustion chamber is installed on the transportation frame. The input end of the pipeline is connected to the output end of the pump, and the output end of the pipeline extends into the combustion chamber; by turning on the pump, the fuel in the fuel tank is sprayed into the combustion chamber through the pipeline and ignited for spraying and burning.

[0011] Preferably, the flow rate mechanism includes a screw rod and a plug. The screw rod is threadedly connected inside the combustion chamber, and the plug is installed at the lower end of the screw rod; by rotating the screw rod to be in threaded cooperation with the combustion chamber, the plug cooperates with the combustion chamber to change the gap, thereby changing the air flow rate.

[0012] Preferably, the pressurization mechanism includes a fan blade shaft, a second motor, and two groups of gears. The fan blade shaft is rotatably installed inside the combustion chamber. The second motor is installed on the combustion chamber. The two groups of gears are respectively installed on the fan blade shaft and the output end of the second motor, and the two groups of gears mesh; by turning on the second motor, the fan blade shaft rotates through gear meshing to accelerate the air circulation.

[0013] Preferably, the cooling mechanism includes two sets of vertical frames, a fan, and four sets of damping linkages. The two sets of vertical frames are installed at the upper end of the transport frame. The fan is rotatably installed on the two sets of vertical frames. Every two sets of damping linkages are rotatably connected, and each set of vertical frames is rotatably connected to one set of damping linkages. Both sets of damping linkages are rotatably connected to the fan; by turning on the fan and cooperating with the damping linkages, the angle when blowing air to cool the material can be changed.

[0014] Compared with the prior art, the beneficial effects of the present utility model are as follows: By turning on the transport mechanism to transport the material, at the same time cooperating with the rotating mechanism to rotate the material, by turning on the spraying and burning mechanism to perform spraying and firing, by turning on the flow rate mechanism to control the spraying flow rate, by turning on the pressurizing mechanism to compress and eject air, and by turning on the cooling mechanism to cool the material, so that during the trimming process of glass products, the material can be rotated and fired, reducing the low processing quality caused by uneven heating of the material due to one-way spraying and burning. Brief Description of the Drawings

[0015] Figure 1 is the axonometric structure schematic diagram of the present utility model;

[0016] Figure 2 is the front view sectional axonometric structure schematic diagram of the present utility model;

[0017] Figure 3 is the first left view sectional axonometric structure schematic diagram of the present utility model;

[0018] Figure 4 is the second left view sectional axonometric structure schematic diagram of the present utility model;

[0019] Figure 5 is the enlarged left view sectional axonometric structure schematic diagram of the pressurizing mechanism of the present utility model;

[0020] Reference numerals in the drawings: 1, transport mechanism; 11, transport frame; 12, sprocket; 13, motor one; 14, chain; 15, conveyor belt; 2, rotating mechanism; 21, rack; 22, gear disk; 23, shelving plate; 3, spraying and burning mechanism; 31, fuel tank; 32, pump; 33, combustion chamber; 34, pipeline; 4, flow rate mechanism; 41, screw; 42, plug; 5, pressurizing mechanism; 51, fan blade shaft; 52, motor two; 53, gear; 6, cooling mechanism; 61, vertical frame; 62, fan; 63, damping linkage. Detailed Description of the Preferred Embodiments

[0021] To facilitate the understanding of the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The present utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present utility model more thorough and comprehensive.

[0022] Example 1

[0023] As Figures 1 to 5 shown, it includes a transport mechanism 1, and also includes a rotating mechanism 2, a spraying and burning mechanism 3, a flow velocity mechanism 4, a pressurizing mechanism 5, and a cooling mechanism 6. The rotating mechanism 2 is installed on the transport mechanism 1, the spraying and burning mechanism 3 is installed on the transport mechanism 1, the flow velocity mechanism 4 is installed on the spraying and burning mechanism 3, the pressurizing mechanism 5 is installed on the spraying and burning mechanism 3, and the cooling mechanism 6 is installed at the upper end of the transport mechanism 1;

[0024] The transport mechanism 1 conducts transportation, the rotating mechanism 2 rotates, the spraying and burning mechanism 3 sprays and burns, the flow velocity mechanism 4 controls the air flow velocity, the pressurizing mechanism 5 pressurizes and jets air, and the cooling mechanism 6 cools down;

[0025] The transport mechanism 1 includes a transport frame 11, two groups of sprockets 12, a first motor 13, a chain 14, and a conveyor belt 15. The two groups of sprockets 12 are rotatably installed on the transport frame 11. The first motor 13 is installed inside the transport frame 11, and the output end of the first motor 13 is connected to the input end of one group of sprockets 12. The chain 14 is installed around the two groups of sprockets 12, and the conveyor belt 15 is installed at the upper end of the chain 14;

[0026] The rotating mechanism 2 includes a rack 21, multiple groups of gear discs 22, and multiple groups of shelving plates 23. The rack 21 is installed on the transport frame 11. The multiple groups of gear discs 22 are rotatably installed at the upper end of the conveyor belt 15, and each group of gear discs 22 meshes with the rack 21. A group of shelving plates 23 is installed at the upper end of each group of gear discs 22;

[0027] The spraying and burning mechanism 3 includes a fuel tank 31, a pump 32, a combustion chamber 33, and a pipeline 34. The fuel tank 31 is installed inside the transport frame 11. The pump 32 is installed at the rear end of the fuel tank 31, and the input end of the pump 32 extends into the fuel tank 31. The combustion chamber 33 is installed on the transport frame 11. The input end of the pipeline 34 is connected to the output end of the pump 32, and the output end of the pipeline 34 extends into the combustion chamber 33;

[0028] The flow velocity mechanism 4 includes a screw 41 and a plug 42. The screw 41 is threadedly connected inside the combustion chamber 33, and the plug 42 is installed at the lower end of the screw 41;

[0029] The pressurizing mechanism 5 includes a fan blade shaft 51, a second motor 52, and two groups of gears 53. The fan blade shaft 51 is rotatably installed inside the combustion chamber 33. The second motor 52 is installed on the combustion chamber 33. The two groups of gears 53 are respectively installed on the fan blade shaft 51 and the output end of the second motor 52, and the two groups of gears 53 mesh;

[0030] The cooling mechanism 6 includes two sets of vertical frames 61, a fan 62, and four sets of damping linkages 63. The two sets of vertical frames 61 are installed at the upper end of the transport frame 11. The fan 62 is rotatably installed on the two sets of vertical frames 61. Every two sets of damping linkages 63 are rotatably connected, and each set of vertical frames 61 is rotatably connected to one set of damping linkages 63. Both sets of damping linkages 63 are rotatably connected to the fan 62;

[0031] By turning on the first motor 13 to drive the sprocket 12 to rotate, the sprocket 12 rotates while cooperating with the chain 14 to rotate, so that the conveyor belt 15 rotates and transports in cooperation with the chain 14. At the same time, when the gear disk 22 meshes with the rack 21, the gear disk 22 rotates while moving. At the same time, the material is placed on the placing plate 23. By turning on the pump 32, the fuel in the fuel tank 31 is sprayed into the combustion chamber 33 through the pipeline 34 and ignited for spraying combustion. By screwing the rotating screw 41 with the combustion chamber 33, the plug 42 cooperates with the combustion chamber 33 to change the gap, thereby changing the air flow rate. By turning on the second motor 52, the fan shaft 51 rotates through the engagement of the gear 53 to accelerate the air circulation. By turning on the fan 62 and cooperating with the damping linkage 63 to change the angle when blowing air to cool the material, during the trimming process of the glass product, the material can be rotated and fired, reducing the low processing quality caused by uneven heating of the material due to unidirectional spraying combustion.

[0032] As Figures 1 to 5 shown, for a glass product trimming mechanism of the present utility model, during operation, by turning on the first motor 13 to drive the sprocket 12 to rotate, the sprocket 12 rotates while cooperating with the chain 14 to rotate, so that the conveyor belt 15 rotates and transports in cooperation with the chain 14. At the same time, when the gear disk 22 meshes with the rack 21, the gear disk 22 rotates while moving. At the same time, the material is placed on the placing plate 23. By turning on the pump 32, the fuel in the fuel tank 31 is sprayed into the combustion chamber 33 through the pipeline 34 and ignited for spraying combustion. By screwing the rotating screw 41 with the combustion chamber 33, the plug 42 cooperates with the combustion chamber 33 to change the gap, thereby changing the air flow rate. By turning on the second motor 52, the fan shaft 51 rotates through the engagement of the gear 53 to accelerate the air circulation. By turning on the fan 62 and cooperating with the damping linkage 63 to change the angle when blowing air to cool the material.

[0033] The first motor 13, the pump 32, the second motor 52, and the fan 62 of the present utility model are purchased on the market. Those skilled in the art only need to install and operate according to the attached user manual, without the need for creative labor by those skilled in the art.

[0034] The main functions achieved by the present utility model are as follows: during the glass product trimming process, by setting a rotating mechanism and a conveying mechanism, during the glass product trimming process, the material can be rotated and fired, reducing the low processing quality caused by uneven heating of the material due to one-way spraying and firing.

[0035] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A glass product trimming mechanism, comprising a transport mechanism (1); characterized in that: The device also comprises a rotating mechanism (2), a spraying mechanism (3), a flow rate mechanism (4), a pressurizing mechanism (5) and a cooling mechanism (6); the rotating mechanism (2) is mounted on the transport mechanism (1); the spraying mechanism (3) is mounted on the transport mechanism (1); the flow rate mechanism (4) is mounted on the spraying mechanism (3); the pressurizing mechanism (5) is mounted on the spraying mechanism (3); and the cooling mechanism (6) is mounted on the upper end of the transport mechanism (1); The transport mechanism (1) performs transport, the rotating mechanism (2) performs rotation, the spraying mechanism (3) performs spraying, the flow rate mechanism (4) controls the air flow rate, the pressurizing mechanism (5) performs pressurized spraying, and the cooling mechanism (6) performs cooling.

2. A glass product trimming mechanism as claimed in claim 1, characterized in that: The transport mechanism (1) comprises a transport frame (11), two groups of sprocket wheels (12), a motor (13), a chain (14) and a conveyor belt (15). The two groups of sprocket wheels (12) are rotatably mounted on the transport frame (11), the motor (13) is mounted in the transport frame (11), and the output end of the motor (13) is connected to the input end of one group of sprocket wheels (12), the chain (14) is mounted on the two groups of sprocket wheels (12), and the conveyor belt (15) is mounted on the upper end of the chain (14).

3. A glass product repairing mechanism as claimed in claim 2, characterized in that: The rotating mechanism (2) comprises a rack (21), a plurality of gear plates (22) and a plurality of shelf plates (23). The rack (21) is mounted on a transport frame (11). The plurality of gear plates (22) are rotatably mounted on the upper end of a conveyor belt (15). Each set of gear plates (22) is meshed with the rack (21). A set of shelf plates (23) is mounted on the upper end of each set of gear plates (22).

4. A glass product repairing mechanism as claimed in claim 2, characterized in that: The spraying mechanism (3) comprises a fuel bin (31), a pump (32), a combustion chamber (33) and a pipeline (34); the fuel bin (31) is installed in a transport frame (11); the pump (32) is installed at the rear end of the fuel bin (31), and the input end of the pump (32) extends into the fuel bin (31); the combustion chamber (33) is installed on the transport frame (11); the input end of the pipeline (34) is connected to the output end of the pump (32), and the output end of the pipeline (34) extends into the combustion chamber (33).

5. A glass product repairing mechanism as claimed in claim 4, characterized in that: The flow rate mechanism (4) comprises a screw (41) and a plug (42). The screw (41) is connected in the combustion chamber (33) through threads, and the plug (42) is installed at the lower end of the screw (41).

6. A glass product repairing mechanism as claimed in claim 4, characterized in that: The pressurizing mechanism (5) comprises a fan blade shaft (51), a second motor (52) and two sets of gears (53), wherein the fan blade shaft (51) is rotatably mounted in the combustion chamber (33), the second motor (52) is mounted on the combustion chamber (33), the two sets of gears (53) are respectively mounted on the fan blade shaft (51) and the output end of the second motor (52), and the two sets of gears (53) are meshed.

7. A glass product trimming mechanism as claimed in claim 2, characterized in that: The cooling mechanism (6) comprises two groups of vertical frames (61), a fan (62) and four groups of damping connecting rods (63). The two groups of vertical frames (61) are mounted on the upper end of the transport frame (11). The fan (62) is rotatably mounted on the two groups of vertical frames (61). Every two groups of damping connecting rods (63) are rotatably connected. Each group of vertical frames (61) is rotatably connected to a group of damping connecting rods (63). Both groups of damping connecting rods (63) are rotatably connected to the fan (62).

Citation Information

Patent Citations

  • Glass product trimming assembly line

    CN213680385U