Glass cooling device capable of recycling water

By designing a water-recycling glass cooling device, utilizing a circulating water system and a support motor structure, the problems of water waste and uneven cooling in glass cooling are solved, achieving efficient and flexible cooling effects and convenient equipment maintenance, thereby improving production efficiency and equipment applicability.

CN223882642UActive Publication Date: 2026-02-06DONGGUAN HONGTENG GLASS CO LTD
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Patent Information

Application Number
CN202520540805.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-02-06
Estimated Expiration
2035-03-26

AI Technical Summary

Technical Problem

Existing glass cooling methods suffer from problems such as water waste, uneven cooling, low cooling efficiency, poor equipment versatility, and high maintenance difficulty.

Method used

Design a water-recycling glass cooling device, comprising a circulation tank, an external water pump, an internal water pump, a filter assembly, a support frame, and a nozzle, to achieve water recycling. The nozzle position is adjusted by the support frame and a motor-driven screw structure, and efficient filtration is achieved by combining multi-layer filter plates and arc-shaped filter screens.

Benefits of technology

It enables the recycling of water resources, improves cooling efficiency and quality, reduces equipment costs and maintenance difficulty, expands the scope of equipment application, and extends service life.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a glass cooling device capable of recycling water, which comprises a cooling box, a circulating tank arranged on the side surface of the cooling box, a cooling frame arranged inside the cooling box, a bracket arranged above the cooling box, a connecting pipe arranged on one side of the cooling box, an external water pump arranged at the upper end of the circulating tank, and a water outlet arranged at the lower end of the connecting pipe, and a filter group is arranged in the cooling box. According to the glass cooling device capable of recycling water, by arranging structures such as the support and the filter set, water is evenly sprayed on glass through the spray pipes on the inner side of the support, heat is rapidly taken away, the cooling time is shortened, and the production efficiency is improved; according to the movable design, the position of the spray pipe can be flexibly adjusted according to the glass condition, the cooling quality is enhanced, equipment maintenance is facilitated, accurate and efficient filtration and impurity removal are achieved through multiple layers of filter plates and arc-shaped filter screens of the filter set, and the glass cooling quality is improved; the detachable connection mode is convenient to clean and replace the filter plate, the maintenance cost is reduced, and the glass cooling work is assisted to be efficiently and stably carried out.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass cooling device technical field, more specifically, relate to a kind of glass cooling device of circulating water. BACKGROUND

[0002] In the glass manufacturing process, glass forming needs to be cooled to ensure the quality and performance of glass.

[0003] At present, the common glass cooling mode is mostly water cooling, but this traditional cooling method has many drawbacks. On the one hand, a large amount of water resources is directly discharged after being used once, causing serious waste of water resources; on the other hand, the cooling method is single, the position of the spray pipe is fixed, and it is difficult to adjust flexibly according to the shape, thickness and actual cooling demand of the glass, resulting in uneven cooling of the glass, the heat cannot be quickly and effectively removed, the cooling time is long, the efficiency is low, the production progress is affected, and the cooling quality is poor, which is prone to defects and reduces the product qualification rate; the height of the cooling frame cannot be adjusted, only specific size glass can be adapted, and for different size glass products or plates, it cannot be ensured that they are in the best cooling position, the spray water cannot be fully covered, which limits the universality of the equipment, and the enterprise needs to purchase multiple cooling equipment to meet different glass cooling demands, increasing the cost. In addition, the existing cooling device has limited cooling efficiency, which cannot meet the large-scale and high-efficiency glass production demand.

[0004] The utility model can further improve the efficiency of glass cooling and reduce the waste of water resources. UTILITY MODEL CONTENT

[0005] The utility model aims to solve the technical problems in the above background art and provides a glass cooling device with circulating water.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a glass cooling device with circulating water, comprising: a cooling box, a circulating tank is arranged on the side of the cooling box, a cooling frame is arranged inside the cooling box, a support is arranged above the cooling box, a connecting pipe is arranged on one side of the cooling box, one end of the connecting pipe is connected with the circulating tank, an external water pump is arranged on the upper end of the circulating tank, and a filter group is arranged inside the cooling box.

[0007] The cooling frame comprises two limiting plates and a mesh plate, the mesh plate is installed at the bottom of the limiting plate, the mesh plate can be embedded in the inside of the cooling box, the support is nested on the outer surface of the cooling box, the spray pipe is embedded in the inner side of the support, the water inlet pipe is connected with the external water pump on one side of the spray pipe, and the other end of the water inlet pipe is connected with the external water pump.

[0008] Further preferred: the two limiting plates are fixedly installed with hydraulic rods at the bottom, the bottom of the hydraulic rod is connected with the upper end frame of the cooling box, the limiting plate is in the shape of "T", and the two sides of the limiting plate are flush with the two sides of the cooling box.

[0009] Further preferred: the two sides of the cooling box are fixedly installed with positioning blocks, the positioning block is hollow inside, the positioning block is provided with a motor on one side, the motor output end is fixedly installed with a screw rod, the bracket bottom can be embedded in the positioning block, the screw rod can penetrate through the two sides of the bracket bottom, and the screw rod and the bracket are in threaded connection.

[0010] Further preferred: the filter group comprises a plurality of filter plates and connecting plates, the filter holes of the plurality of filter plates gradually decrease from top to bottom, and the filter screen of the plurality of filter plates is arranged in an arc shape.

[0011] Further preferred: the two sides of the cooling box are provided with positioning grooves inside, the connecting plate can be embedded in the positioning groove, and the connecting plate and the positioning groove are detachably connected, and the upper end of the connecting plate is provided with a pull ring.

[0012] Further preferred: the cooling box is provided with an internal water pump, one end of the internal water pump is connected with the connecting pipe, and the internal water pump is installed below the filter group.

[0013] Further preferred: the mesh plate is located above the filter group, and the mesh plate and the filter group are located inside the cooling box.

[0014] Further preferred: the external water pump is connected with a conduit at the water inlet end, and one end of the conduit is embedded in the circulating tank.

[0015] Beneficial effects:

[0016] 1. By setting the bracket, the embedded spray pipe design can make the water evenly sprayed on the glass surface, realizing omnidirectional and efficient cooling. Compared with the single spraying mode, the heat of the glass can be quickly taken away, the glass cooling time is greatly shortened, the production efficiency is significantly improved, and the structure of the positioning block on both sides of the cooling box cooperates with the motor and the screw rod, so that the bracket can move forward and backward along the screw rod. This feature allows the distance and angle between the spray pipe and the glass to be flexibly changed according to the shape, thickness and actual cooling effect of the glass during the glass cooling process, and the glass is precisely aligned for spraying, further strengthening the cooling effect and improving the quality of glass cooling. In addition, during equipment maintenance, the movable bracket facilitates the movement of the spray pipe to the appropriate position, facilitating the inspection, cleaning and replacement of the spray pipe, reducing the difficulty of equipment maintenance and improving the maintenance efficiency.

[0017] 2. By setting up with the filter group, the inside embedded nozzle design, the water can be evenly sprayed to the glass surface, realize all-round, high efficiency cooling, compared with single spraying mode, can take away the heat of glass more quickly, greatly shorten the glass cooling time, significantly improve the production efficiency, and the positioning block of the cooling box two sides cooperate with the structure of motor and screw rod, the support can move along the screw rod forward and backward, this characteristic makes in the glass cooling process, can change the distance and angle between the nozzle and the glass according to the shape, thickness and actual cooling effect of the glass, accurate alignment glass spray, further strengthen the cooling effect, improve the quality of glass cooling, in addition, during equipment maintenance, the movable support facilitates the nozzle to move to the appropriate position, facilitate the nozzle to check, clean and replace, reduce the equipment maintenance difficulty, improve the maintenance efficiency;

[0018] 3. As described above, the glass cooling device with circulating water, by setting up with the support and filter group structure, the support inside nozzle makes the water evenly spray glass, quickly take away the heat, shorten the cooling time, improve the production efficiency; its movable design, can flexibly adjust the nozzle position according to the glass situation, strengthen the cooling quality, and facilitate equipment maintenance, the multilayer filter plate and arc filter screen of filter group realize accurate, efficient filtration, remove impurities, improve the quality of glass cooling; detachable connection mode facilitates cleaning, replace filter plate, reduce maintenance cost, prolong the service life of equipment, protect the good operation of the device, help glass cooling work efficient, stable development. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the whole structure schematic view of the utility model.

[0020] Figure 2 It is the internal structure schematic view of the cooling box of the utility model.

[0021] Figure 3 It is the nozzle structure schematic view of the utility model.

[0022] Figure 4 It is the filter group structure schematic view of the utility model.

[0023] Figure 5 It is the cooling frame structure schematic view of the utility model.

[0024] Figures 1-5 Middle: 1, cooling box;101, connecting pipe;102, positioning block;103, motor;104, screw rod;105, positioning groove;106, built-in water pump;2, circulating tank;201, external water pump;202, conduit;3, cooling frame;301, limit plate;302, screen plate;303, hydraulic rod;4, support;401, nozzle;402, water inlet pipe;5, filter group;501, multilayer filter plate;502, connecting plate. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the utility model will be described clearly and completely. Figures 1-5 The technical solutions in the embodiments of the utility model will be described clearly and completely.

[0026] Please refer to Figures 1-5 The utility model discloses a glass cooling device of circulating water, including: cooling box 1, the side of cooling box 1 is provided with circulating tank 2, the inside of cooling box 1 is provided with cooling frame 3, the top of cooling box 1 is provided with support 4, one side of cooling box 1 is provided with connecting pipe 101, and one end of connecting pipe 101 is connected with circulating tank 2, and the upper end of circulating tank 2 is provided with external water pump 201, and the inside of cooling box 1 is provided with filter group 5;Cooling frame 3 includes two limit plates 301 and screen plate 302, and screen plate 302 is installed at the bottom of limit plate 301, and screen plate 302 can be embedded in the inside of cooling box 1, and support 4 is nested on the outer surface of cooling box 1, and the inside of support 4 is embedded with spray pipe 401, and one side of spray pipe 401 is connected with water inlet pipe 402, and the other end of water inlet pipe 402 is connected with external water pump 201;The inside of cooling box 1 is provided with built-in water pump 106, one end of built-in water pump 106 is connected with connecting pipe 101, and built-in water pump 106 is installed below filter group 5;The water inlet end of external water pump 201 is connected with conduit 202, and one end of conduit 202 is embedded in the inside of circulating tank 2;

[0027] After the external water pump 201 is turned on, water in the circulating tank 2 is pumped out through the conduit 202, and the water flows into the spray pipe 401 embedded in the inner side of the support 4 through the water inlet pipe 402, the spray pipe 401 uniformly sprays the water on the glass in the cooling box 1, and the primary cooling of the glass is realized, at this time, the water flows to the bottom of the cooling box 1 under the action of gravity, carrying the heat generated during the cooling process of the glass and the impurities carried, and the water at the bottom of the cooling box 1 is pumped to the circulating tank 2 through the connecting pipe 101 under the action of the built-in water pump 106, in this process, the water flows through the filter group 5 inside the cooling box 1, the filter group 5 can intercept and filter the impurities in the water, to ensure that the water entering the circulating tank 2 is relatively clean, and to prepare for subsequent circulation, the water entering the circulating tank 2 is extracted again by the external water pump 201, and the above-mentioned spraying and cooling and reflux filtering circulation process is repeated, to continuously provide a water source for the cooling of the glass, realize the recycling of water resources, through the cooperative operation of the external water pump 201, the built-in water pump 106, the circulating tank 2 and the cooling box 1, the water is continuously circulated in the system, which greatly reduces the waste of water resources, significantly reduces the water consumption compared with the traditional one-time water cooling method, and conforms to the sustainable development concept, the filter group 5 arranged inside the cooling box 1 can remove the impurities in the water during the reflux of the water to the circulating tank 2, which not only ensures the cleanliness of the circulating water and prevents the impurities from causing scratches on the surface of the glass during the spraying process, but also reduces the risk of equipment failure caused by the accumulation of impurities, and prolongs the service life of the entire cooling device, the design of the spray pipe 401 inside the support 4 enables the water to be uniformly sprayed onto the surface of the glass, realizing omnidirectional and efficient cooling, compared with the single spraying method, the heat of the glass can be removed more quickly, the glass cooling time is shortened, and the production efficiency is improved, at the same time, the mesh plate 302 structure of the cooling frame 3 is convenient for glass placement and is conducive to uniform distribution of water flow, further optimizing the cooling effect, facilitating installation, maintenance and repair of the equipment, and reducing equipment management cost.

[0028] In the embodiment of the utility model, the two limiting plates 301 are fixedly installed with hydraulic rods 303 at the bottom, the hydraulic rods 303 are connected with the upper end frame of the cooling box 1 at the bottom, the limiting plate 301 is in the shape of T, the two limiting plates 301 are flush with the two sides of the cooling box 1, the cooling box 1 is fixedly installed with positioning blocks 102 at the two sides, the positioning block 102 is hollow inside, the positioning block 102 is provided with a motor 103 at one side, the motor 103 is fixedly installed with a screw rod 104 at the output end, the support 4 can be embedded in the inside of the positioning block 102, the screw rod 104 can penetrate through the two sides of the bottom of the support 4, and the screw rod 104 is in threaded connection with the support 4.

[0029] When it is necessary to adjust the position of the cooling frame 3 in the cooling box 1, the hydraulic rods 303 at the bottom of the limiting plates 301 are started. The hydraulic rods 303 are elongated or shortened, driving the limiting plates 301 and the mesh plates 302 connected thereto to rise or fall. Since the limiting plates 301 are in the shape of a "T" and are flush with the two sides of the cooling box 1, this ensures the stability of the cooling frame 3 during the lifting process, preventing it from deviating. By adjusting the height of the cooling frame 3, the cooling needs of glasses of different sizes can be met, ensuring that the glass is in the best cooling position, so that the spray water can fully cover the surface of the glass. The positioning blocks 102 inside the cooling box 1 are hollow, and the output end of the motor 103 drives the screw rod 104 to rotate after being started. Since the bracket 4 can be embedded into the inside of the positioning block 102, and the screw rod 104 penetrates through the two sides of the bottom of the bracket 4 and is threadedly connected with the bracket 4, the rotation of the screw rod 104 will make the bracket 4 move along the axial direction of the screw rod 104. By controlling the forward and reverse rotation of the motor 103, the forward and backward movement of the bracket 4 on the cooling box 1 can be realized, thereby adjusting the distance and angle between the spray pipe 401 and the glass. In this way, during the glass cooling process, the position of the spray pipe 401 can be flexibly changed according to the shape, thickness and actual cooling effect needs of the glass, so as to achieve the best spray cooling effect. The design of the adjustable height of the cooling frame 3 makes the glass cooling device able to adapt to the cooling work of glasses of various specifications and sizes. Whether it is a small glass product or a large glass plate, the glass can be placed in the ideal cooling area by adjusting the height of the cooling frame 3, greatly expanding the application range of the equipment, improving the universality of the equipment, and reducing the cost of purchasing multiple cooling equipment due to different glass specifications. The movable function of the bracket 4 makes the spray pipe 401 able to more accurately aim at the glass for spraying. For glasses of different shapes and thicknesses, the relative position and angle of the spray pipe 401 and the glass can be changed by adjusting the position of the bracket 4, ensuring that the spray water uniformly and efficiently acts on the surface of the glass, taking away more heat, further strengthening the cooling effect and improving the quality and efficiency of glass cooling. During equipment maintenance and cleaning, the cooling frame 3 can be raised to facilitate the cleaning and maintenance of the bottom of the cooling box 1 and other components such as the filter group 5. At the same time, by moving the bracket 4, the spray pipe 401 can be moved to the appropriate position, facilitating the inspection, cleaning and replacement of the spray pipe 401, reducing the difficulty of equipment maintenance, improving the maintenance efficiency and prolonging the service life of the equipment. The application of the hydraulic rods 303 and the motor 103 realizes the automatic adjustment of the height of the cooling frame 3 and the position of the bracket 4. Compared with manual adjustment, the operation is more convenient and fast, and the adjustment amplitude can be accurately controlled, improving the stability and accuracy of the equipment operation, enhancing the automation level of the entire glass cooling device, reducing manual intervention and labor intensity.

[0030] The utility model discloses a filter group 5 includes multilayer filter plate 501 and connecting plate 502, and multilayer filter plate 501 filter hole gradually decreases from top to bottom, and multilayer filter plate 501 filter screen is arc-shaped and is arranged;

[0031] When the water flow after cooling glass flows downwards from the upper portion of cooling box 1 and passes through filter group 5, the water flow first contacts the uppermost filter plate, and since the filter holes of multilayer filter plate 501 gradually decrease from top to bottom, the uppermost filter plate first intercepts larger impurities, and as the water flow continues to penetrate downwards, smaller impurities are filtered by the filter plates with smaller filter holes in the lower layers in turn. The arc-shaped filter screen increases the contact area between the water flow and the filter screen, enabling the water flow to be filtered more fully and effectively improving the filtering efficiency. When filter group 5 needs to be cleaned or the filter plates need to be replaced, the worker can pull the pull ring at the upper end of connecting plate 502 to extract connecting plate 502 from positioning groove 105, and then take out the entire filter group 5 from cooling box 1. This detachable connection method facilitates the operation of filter group 5. The design of the filter holes of multilayer filter plate 501 decreasing in size realizes layered and accurate filtration of impurities of different sizes, ensures higher cleanliness of the circulating water, and further strengthens the filtering effect due to the increased contact area of the arc-shaped filter screen, effectively removing various impurities in the water to prevent the impurities from causing damage to the glass surface due to circulation in the cooling device, improving the glass cooling quality. The detachable connection of filter group 5 and cooling box 1 through positioning groove 105 and connecting plate 502 greatly facilitates equipment maintenance, and the worker can easily take out filter group 5 to clean the filter plates and remove accumulated impurities. When the filter plates are damaged or the filtering effect decreases, new filter plates can also be conveniently replaced, reducing maintenance cost and difficulty, improving the normal operation time of the equipment, and reducing the wear and blockage risk of the internal pipes, water pump, and other components of the cooling device, for example, reducing the wear of the impurities on the impeller of the built-in water pump 106 and reducing the probability of pipe blockage due to impurity accumulation, thereby prolonging the service life of the entire cooling device, saving equipment replacement cost for the enterprise, ensuring that the circulating water can continuously meet the requirements of glass cooling, reducing the discharge and replenishment of circulating water due to water quality problems, further improving the recycling rate of water resources, and conforming to the concepts of environmental protection and sustainable development.

[0032] Working principle: water circulation, external water pump 201 start, through the pipe 202 from the circulating tank 2 water, water through the inlet pipe 402 into the support 4 in the spray pipe 401, spray pipe 401 will be sprayed to the cooling box 1 in the glass, complete the initial cooling, cooling water under the action of gravity, with heat and impurities flow to the bottom of the cooling box 1, then be built-in water pump 106 through the connecting pipe 101 back to the circulating tank 2, again by the external water pump 201 extraction, such as cycle, realize the efficient recycling of water resources, cooling process, the inside of the support 4 spray pipe 401 design makes the water evenly sprayed glass, all around to take away the heat, cooling frame 3 of the mesh plate 302 structure, both convenient to put glass, also conducive to the uniform distribution of water flow, optimize the cooling effect, and, cooling frame 3 bottom of the hydraulic rod 303 can adjust the height of the cooling frame 3, adapt to different size glass cooling demand, to ensure that the glass is in the best cooling position, so that the spray water fully cover, filter link, filter group 5 in the cooling box 1 is composed of multiple filter plate 501 and connecting plate 502, filter plate filter hole from top to bottom, filter screen is arc, water flow through the filter group 5, the upper filter plate first intercept large particles, the lower layer in turn filter small particles, arc filter screen increases the contact area, improve the filtering efficiency, in addition, the cooling box 1 both sides of the positioning block 102 in the motor 103 drive screw 104 rotation, because the support 4 bottom and screw 104 threaded connection, can realize the support 4 move forward and backward, adjust the distance and angle of spray pipe 401 and glass, according to the shape of the glass, thickness and cooling effect demand, flexible change spray pipe 401 position, reach the best spray cooling effect.

Claims

1. A water recyclable glass cooling apparatus comprising: Cooling box (1), characterized by: the cooling box (1) side is provided with circulating tank (2), the cooling box (1) inside is provided with cooling frame (3), the cooling box (1) top is provided with support (4), the cooling box (1) one side is provided with connecting pipe (101), the connecting pipe (101) one end is connected with circulating tank (2), the circulating tank (2) upper end is provided with external water pump (201), the cooling box (1) inside is provided with filter group (5); The cooling frame (3) includes two limiting plates (301) and a mesh plate (302), the mesh plate (302) is installed at the bottom of the limiting plate (301), the mesh plate (302) can be embedded in the cooling box (1), the support (4) is nested on the outer surface of the cooling box (1), the spray pipe (401) is embedded in the inner side of the support (4), the water inlet pipe (402) is connected to one side of the spray pipe (401), and the other end of the water inlet pipe (402) is connected with the external water pump (201).

2. A water-cooled glass cooling device according to claim 1, wherein: The hydraulic rod (303) is fixedly installed at the bottom of the limiting plate (301), the bottom of the hydraulic rod (303) is connected with the upper end frame of the cooling box (1), the limiting plate (301) is in the shape of a "T", and the two limiting plates (301) are flush with the two sides of the cooling box (1).

3. The water recyclable glass cooling device of claim 1, wherein: The positioning block (102) is fixedly installed on the two sides of the cooling box (1), the positioning block (102) is hollow, the motor (103) is arranged on one side of the positioning block (102), the screw rod (104) is fixedly installed on the output end of the motor (103), the bottom of the support (4) can be embedded in the positioning block (102), the screw rod (104) can penetrate through the two sides of the bottom of the support (4), and the screw rod (104) is in threaded connection with the support (4).

4. The water recyclable glass cooling device of claim 1, wherein: The filter group (5) includes a plurality of filter plates (501) and a connecting plate (502), the filter holes of the plurality of filter plates (501) gradually decrease from top to bottom, and the filter screen of the plurality of filter plates (501) is arranged in an arc shape.

5. A water-cooled glass cooling device according to claim 4, wherein: The connecting plate (502) can be embedded in the positioning groove (105), and the connecting plate (502) and the positioning groove (105) are detachably connected, and the connecting plate (502) is provided with a pull ring.

6. The water recyclable glass cooling device of claim 1, wherein: The cooling box (1) is provided with an internal water pump (106), one end of the internal water pump (106) is connected with the connecting pipe (101), and the internal water pump (106) is installed below the filter group (5).

7. The water recyclable glass cooling device of claim 1, wherein: The mesh plate (302) is located above the filter group (5), and the mesh plate (302) and the filter group (5) are located in the cooling box (1).

8. The water recyclable glass cooling device of claim 1, wherein: The external water pump (201) is connected with a conduit (202) at the water inlet end, and one end of the conduit (202) is embedded in the circulating tank (2).