Cooling water-recyclable cooling machine for glass production

By designing a glass production cooler with recyclable cooling water, the problem of water waste in the cooler is solved, the recycling of cooling water is achieved, energy consumption and equipment maintenance costs are reduced, and production stability and operational efficiency are ensured.

CN223319429UActive Publication Date: 2025-09-09GUANGDONG SHUNDE JINGWEI GLASS PROD CO LTD
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Patent Information

Application Number
CN202422304150.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-21
Publication Date
2025-09-09
Estimated Expiration
2034-09-21

AI Technical Summary

Technical Problem

Existing glass production coolers use a large amount of cooling water each time, resulting in a waste of water resources, especially in areas with scarce water resources. This increases energy consumption and equipment maintenance costs, affecting the environment and production operations.

Method used

A cooling machine for glass production with recyclable cooling water is designed, including water storage, transportation and collection components. By collecting used cooling water, filtering it and reusing it, water waste, energy consumption and maintenance costs are reduced.

Benefits of technology

It realizes the recycling of cooling water, reduces water waste, lowers energy consumption and equipment maintenance costs, and ensures production stability and operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of cooling machines for glass production, in particular to a cooling water recyclable cooling machine for glass production. The technical problems that in the prior art, a cooling machine needs a large amount of cooling water every time, water resources are wasted, energy conservation and emission reduction are not facilitated, cooling equipment needs to be maintained and cleaned frequently, the maintenance cost of the equipment is increased, the downtime of the equipment is prolonged, and inconvenience is caused to production and operation are solved. According to the technical scheme, the cooling water recyclable cooling machine for glass production comprises a main body bottom plate, a supporting assembly, a conveying assembly, a cooling assembly, a water storage assembly, a conveying assembly and a collecting assembly; by arranging the cooling water circulation structure, cooling water can be collected, filtered and purified for secondary use during use, waste of water resources is reduced, energy conservation and emission reduction are facilitated, maintenance and cleaning of cooling equipment are saved, the maintenance cost and downtime of the equipment are reduced, and production and operation are ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of cooling machines for glass production, in particular to a cooling machine for glass production with recyclable cooling water. Background Art

[0002] The purpose of using a cooler in glass production is to quickly reduce the temperature of the glass to ensure its stability and quality. During the glass production process, the glass is made into a high-temperature liquid and then needs to be cooled to form solid glass. The cooler helps the glass to quickly cool from a high-temperature state to the required temperature range by controlling the cooling rate and temperature. However, in the existing technology, a large amount of cooling water is required each time the cooler is used, resulting in a waste of water resources, especially in areas where water resources are scarce. This waste may have a negative impact on the environment and society, increase energy consumption, and is not conducive to energy conservation and emission reduction. In addition, the cooling equipment needs to be frequently maintained and cleaned to prevent blockage and pollution of the cooling system, which will increase the maintenance cost and downtime of the equipment, causing inconvenience to production and operations. Utility Model Content

[0003] In order to overcome the problem in the existing technology that a large amount of cooling water is required each time the cooler is used, resulting in a waste of water resources, especially in areas where water resources are scarce. This waste may have a negative impact on the environment and society, increase energy consumption, and is not conducive to energy conservation and emission reduction. In addition, the cooling equipment needs to be frequently maintained and cleaned to prevent blockage and pollution of the cooling system, which will increase the maintenance cost and downtime of the equipment, causing inconvenience to production and operation.

[0004] The technical solution of the utility model is: a cooling machine for glass production with recyclable cooling water, including a main body bottom plate, a supporting component, a conveying component, a cooling component, a water storage component, a conveying component and a collecting component. A plurality of supporting components are equidistantly arranged on the bottom surface of the main body bottom plate, a conveying component is arranged on the top surface of the main body bottom plate, a cooling component is arranged on the top surface of the conveying component, a water storage component is arranged on one side of the cooling component, a conveying component is arranged on the top surface of the water storage component, and a collecting component is arranged on one side of the cooling component.

[0005] Preferably, the main body bottom plate bears the weight, the supporting assembly supports the entire device, the conveying assembly conveys the glass plates to be cooled, the cooling assembly cools the plates, the water storage assembly stores cooling water, the conveying assembly conveys cooling water to the cooling structure, and the collecting assembly collects used cooling water and filters it for recycling.

[0006] Preferably, the support assembly includes support columns, support plates, support bolts, connecting columns and support rods. Several support columns are equidistantly arranged on the bottom surface of the main base plate, support plates are provided on the bottom surface of the support columns, and several support bolts are equidistantly arranged on the surface of the support plates. A connecting column is provided on one side of the support column, and a support rod is provided in the middle of the connecting column. When in use, the entire device is supported by the support columns, the gravity load is dispersed by the support plates, the device is fixed to the ground by the support bolts, the overall structure is made more solid by the connecting columns, and the middle of the device is supported by the support rods.

[0007] Preferably, the conveying assembly includes a limiting plate, a rotating shaft and a conveyor belt. Limiting plates are provided on both sides of the top surface of the main bottom plate, a rotating shaft is provided in the middle of the limiting plate, and a conveyor belt is provided on the surface of the rotating shaft. When in use, the limiting plates are used to prevent the glass plates from shifting during transportation, the conveyor belt is driven by the rotating shaft to transport the glass plates, and the glass plates are transferred to the cooling structure through the conveyor belt.

[0008] Preferably, the cooling assembly includes a guide plate and a mounting block. Guide plates are provided on both sides of the conveyor belt, and mounting blocks are provided on the outer sides of the guide plates. When in use, the guide plates are installed and connected to the mounting blocks to drain and collect used cooling water, and the cooling structure is installed through the mounting blocks to cool the glass plates.

[0009] Preferably, the water storage assembly includes a water storage block, a water storage display tank and a supplementary pipe. A water storage block is provided on one side of the drainage plate, a water storage display tank is provided on the outside of the water storage block, and a supplementary pipe is provided on one side of the water storage block. When in use, cooling water is stored through the water storage block, working information is displayed through the water storage display tank, and cooling water is supplemented through the supplementary pipe.

[0010] Preferably, the delivery assembly includes a water pump, a water pipe, a mounting pipe and a nozzle. The water pump is provided on the top surface of the water storage block, the water pipe is provided on the top surface of the water pump, the mounting pipe is provided at one end of the water pipe, and a plurality of nozzles are equidistantly provided on the east side of the mounting pipe. When in use, cooling water is pumped out by the water pump, the cooling water is delivered through the water pipe, the nozzle is installed through the mounting pipe, and the cooling water is sprayed onto the glass plate through the nozzle.

[0011] Preferably, the collection component includes a collection block, a collection display trough, a water pump, a water supply pipe, a drain outlet and a connecting port. A collection block is provided on one side of the mounting block, a collection display trough is opened on one side of the collection block, a water pump is provided on the bottom surface of the collection block, a water supply pipe is provided in the middle of the bottom surface of the collection block, a drain outlet is provided at the bottom of the mounting block, and one end of the water supply pipe is connected to the connecting port. When in use, used cooling water is collected by the collection block, working information is displayed by the collection display trough, filtered cooling water is extracted by the water pump, the filtered cooling water is transported to the water storage structure through the water supply pipe, waste water is discharged through the drain outlet, and cooling water is transported for secondary use through the connecting port.

[0012] Beneficial effects of the utility model:

[0013] 1. Compared with traditional chillers, which require a large amount of cooling water each time they are used, resulting in a waste of water resources, especially in areas where water resources are scarce. This waste may have a negative impact on the environment and society, increase energy consumption, and is not conducive to energy conservation and emission reduction. In addition, the cooling equipment needs to be frequently maintained and cleaned to prevent blockage and pollution of the cooling system, which will increase the maintenance cost and downtime of the equipment and cause inconvenience to production and operation. The chiller is equipped with a cooling water circulation structure, which can collect cooling water for filtration and purification for secondary use during use, reducing water waste and energy consumption, which is conducive to energy conservation and emission reduction, saving maintenance and cleaning of cooling equipment, reducing equipment maintenance costs and downtime, and ensuring production and operation;

[0014] 2. Collect used cooling water through the collection block, display working information through the collection display slot, extract and filter cooling water through the water pump, transport the filtered cooling water to the water storage structure through the water supply pipe, discharge waste water through the drain port, and transport cooling water for secondary use through the connection port;

[0015] 3. Store cooling water through the water storage block, display working information through the water storage display tank, replenish cooling water through the replenishing pipe, pump out cooling water through the water delivery pump, deliver cooling water through the water delivery pipe, install the nozzle through the installation pipe, and spray cooling water onto the glass plate through the nozzle. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 Shown is a schematic diagram of the first three-dimensional structure of a glass production cooling machine with recyclable cooling water according to the present invention;

[0017] Figure 2 Shown is a second three-dimensional structural schematic diagram of a glass production cooling machine with recyclable cooling water according to the present invention;

[0018] Figure 3 Shown is a schematic side view of a glass production cooling machine with recyclable cooling water according to the present invention;

[0019] Figure 4 Shown is a schematic diagram of a partial three-dimensional structure of a glass production cooling machine with recyclable cooling water according to the present invention;

[0020] Figure 5 Shown is a schematic diagram of a partial three-dimensional structure of a glass production cooling machine with recyclable cooling water according to the present invention;

[0021] Explanation of the accompanying drawings: 1. Main body bottom plate; 2. Support assembly; 3. Transmission assembly; 4. Cooling assembly; 5. Water storage assembly; 6. Conveying assembly; 7. Collection assembly; 201. Support column; 202. Support plate; 203. Support bolt; 204. Connecting column; 205. Support rod; 301. Limiting plate; 302. Rotating shaft; 303. Conveyor belt; 401. Drainage plate; 402. Mounting block; 501. Water storage block; 502. Water storage display tank; 503. Supplementary pipe; 601. Water pump; 602. Water pipe; 603. Mounting pipe; 604. Nozzle; 701. Collection block; 702. Collection display tank; 703. Water pump; 704. Water pipe; 705. Drain outlet; 706. Connection port. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0023] See also Figure 1 The utility model provides an embodiment: a cooling machine for glass production with recyclable cooling water, comprising a main body bottom plate 1, a supporting assembly 2, a conveying assembly 3, a cooling assembly 4, a water storage assembly 5, a conveying assembly 6 and a collecting assembly 7. Several supporting assemblies 2 are equidistantly arranged on the bottom surface of the main body bottom plate 1, a conveying assembly 3 is arranged on the top surface of the main body bottom plate 1, a cooling assembly 4 is arranged on the top surface of the conveying assembly 3, a water storage assembly 5 is arranged on one side of the cooling assembly 4, a conveying assembly 6 is arranged on the top surface of the water storage assembly 5, and a collecting assembly 7 is arranged on one side of the cooling assembly 4.

[0024] See also Figure 2-4In this embodiment, the support assembly 2 includes a support column 201, a support sheet 202, a support bolt 203, a connecting column 204 and a support rod 205. The bottom surface of the main body bottom plate 1 is equidistantly provided with a plurality of support columns 201, the bottom surface of the support column 201 is provided with a support sheet 202, and the surface of the support sheet 202 is equidistantly provided with a plurality of support bolts 203. A connecting column 204 is provided on one side of the support column 201, and a support rod 205 is provided in the middle of the connecting column 204. When in use, the entire device is supported by the support column 201, the gravity bearing is dispersed by the support sheet 202, the device is fixed to the ground by the support bolt 203, the overall structure is made more solid by the connecting column 204, and the middle of the device is supported by the support rod 205. The transmission assembly 3 includes a limit plate 301, a rotating shaft 3 02 and conveyor belt 303, both sides of the top surface of the main body bottom plate 1 are provided with limit plates 301, the middle part of the limit plate 301 is provided with a rotating shaft 302, and the surface of the rotating shaft 302 is provided with a conveyor belt 303. When in use, the limit plate 301 is used to prevent the glass plate from shifting during transportation, and the conveyor belt 303 is driven by the rotating shaft 302 to transport the glass plate, and the glass plate is transferred to the cooling structure through the conveyor belt 303. The cooling assembly 4 includes a guide plate 401 and a mounting block 402. Guide plates 401 are provided on both sides of the conveyor belt 303, and a mounting block 402 is provided on the outer side of the guide plate 401. When in use, the guide plate 401 is installed and connected to the mounting block 402 to drain and collect the used cooling water, and the cooling structure is installed through the mounting block 402 to cool the glass plate;

[0025] The water storage component 5 includes a water storage block 501, a water storage display tank 502 and a replenishing pipe 503. The water storage block 501 is provided on one side of the guide plate 401. The water storage display tank 502 is provided on the outside of the water storage block 501. The replenishing pipe 503 is provided on one side of the water storage block 501. When in use, cooling water is stored through the water storage block 501, working information is displayed through the water storage display tank 502, and cooling water is replenished through the replenishing pipe 503. The conveying component 6 includes a water conveying unit. Pump 601, water pipe 602, installation pipe 603 and nozzle 604. The top surface of the water storage block 501 is provided with a water pump 601, the top surface of the water pump 601 is provided with a water pipe 602, one end of the water pipe 602 is provided with an installation pipe 603, and a number of nozzles 604 are equidistantly arranged on the east side of the installation pipe 603. When in use, cooling water is pumped out by the water pump 601, the cooling water is transported through the water pipe 602, and the nozzles 604 are installed through the installation pipe 603. 04. Cooling water is sprayed onto the glass plate through the nozzle 604. The collecting component 7 includes a collecting block 701, a collecting and displaying slot 702, a water pump 703, a water supply pipe 704, a drain port 705 and a connecting port 706. A collecting block 701 is provided on one side of the mounting block 402. A collecting and displaying slot 702 is provided on one side of the collecting block 701. A water pump 703 is provided on the bottom surface of the collecting block 701. A water supply pipe 704 is provided in the middle of the bottom surface of the collecting block 701. A drain port 705 is provided at the bottom of the mounting block 402. One end of the water supply pipe 704 is connected to the connecting port 706. When in use, used cooling water is collected by the collecting block 701, working information is displayed by the collecting and displaying slot 702, filtered cooling water is extracted by the water pump 703, the filtered cooling water is transported to the water storage structure through the water supply pipe 704, waste water is discharged through the drain port 705, and cooling water is transported for secondary use through the connecting port 706.

[0026] During operation, first, the entire device is supported by the support column 201, the support plate 202 is used to distribute the weight, the device is fixed to the ground by the support bolt 203, the overall structure is made more solid by the connecting column 204, the middle of the device is supported by the support rod 205, the limit plate 301 is used to prevent the glass plate from shifting during transportation, the conveyor belt 303 is driven by the rotating shaft 302 to transport the glass plate, the glass plate is transferred to the cooling structure by the conveyor belt 303, the used cooling water is drained and collected by the installation block 402, and the cooling structure is installed by the installation block 402 to cool the glass plate;

[0027] Then, cooling water is stored through the water storage block 501, working information is displayed through the water storage display tank 502, cooling water is replenished through the replenishing pipe 503, cooling water is extracted through the water pump 601, cooling water is transported through the water pipe 602, nozzle 604 is installed through the installation pipe 603, cooling water is sprayed onto the glass plate through the nozzle 604, used cooling water is collected through the collection block 701, working information is displayed through the collection display tank 702, filtered cooling water is extracted through the water pump 703, filtered cooling water is transported to the water storage structure through the water supply pipe 704, waste water is discharged through the drain port 705, and cooling water is transported for secondary use through the connection port 706.

[0028] Through the above steps, the main body bottom plate 1 bears the weight, the support component 2 supports the entire device, the conveying component 3 conveys the glass plate to be cooled, the cooling component 4 cools the plate, the water storage component 5 stores cooling water, the conveying component 6 conveys the cooling water to the cooling structure, and the collection component 7 collects the used cooling water and filters it for recycling.

[0029] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the purpose of the present invention.

Claims

1. A cooling machine for glass production with recyclable cooling water, comprising a main body bottom plate (1); characterized in that: The invention also includes a support component (2), a transmission component (3), a cooling component (4), a water storage component (5), a conveying component (6) and a collecting component (7). The bottom surface of the main body bottom plate (1) is provided with a plurality of support components (2) at equal intervals. The top surface of the main body bottom plate (1) is provided with a transmission component (3). The top surface of the transmission component (3) is provided with a cooling component (4). One side of the cooling component (4) is provided with a water storage component (5). The top surface of the water storage component (5) is provided with a conveying component (6). One side of the cooling component (4) is provided with a collecting component (7).

2. The glass production cooling machine with recyclable cooling water according to claim 1, characterized in that: The support assembly (2) comprises a support column (201), a support plate (202), a support bolt (203), a connecting column (204) and a support rod (205); a plurality of support columns (201) are equidistantly arranged on the bottom surface of the main body bottom plate (1); a support plate (202) is provided on the bottom surface of the support column (201); a plurality of support bolts (203) are equidistantly arranged on the surface of the support plate (202); a connecting column (204) is provided on one side of the support column (201); and a support rod (205) is provided in the middle of the connecting column (204).

3. The glass production cooling machine with recyclable cooling water according to claim 2, characterized in that: The conveying assembly (3) comprises a limiting plate (301), a rotating shaft (302) and a conveyor belt (303). The limiting plates (301) are provided on both sides of the top surface of the main body bottom plate (1). The rotating shaft (302) is provided in the middle of the limiting plate (301), and the conveyor belt (303) is provided on the surface of the rotating shaft (302).

4. The glass production cooling machine with recyclable cooling water according to claim 3, characterized in that: The cooling assembly (4) comprises a guide plate (401) and a mounting block (402). The guide plates (401) are provided on both sides of the conveyor belt (303), and the mounting block (402) is provided on the outer side of the guide plate (401).

5. The glass production cooling machine with recyclable cooling water according to claim 4, characterized in that: The water storage assembly (5) comprises a water storage block (501), a water storage display tank (502), and a replenishing pipe (503). The water storage block (501) is provided on one side of the drainage plate (401). The water storage display tank (502) is provided on the outside of the water storage block (501). The replenishing pipe (503) is provided on one side of the water storage block (501).

6. The glass production cooling machine with recyclable cooling water according to claim 4, characterized in that: The delivery assembly (6) includes a water delivery pump (601), a water delivery pipe (602), a mounting pipe (603) and a nozzle (604). The water delivery pump (601) is provided on the top surface of the water storage block (501). The water delivery pipe (602) is provided on the top surface of the water delivery pump (601). The mounting pipe (603) is provided at one end of the water delivery pipe (602). A plurality of nozzles (604) are equidistantly provided on the east side of the mounting pipe (603).

7. The glass production cooling machine with recyclable cooling water according to claim 6, characterized in that: The collecting assembly (7) comprises a collecting block (701), a collecting display tank (702), a water pump (703), a water supply pipe (704), a drain port (705) and a connecting port (706). The collecting block (701) is provided on one side of the mounting block (402). The collecting block (701) is provided with a collecting display tank (702) on one side. The collecting block (701) is provided with a water pump (703) on the bottom surface of the collecting block (701). The water supply pipe (704) is provided in the middle of the bottom surface of the collecting block (701). The drain port (705) is provided on the bottom of the mounting block (402). One end of the water supply pipe (704) is connected to the connecting port (706).