Process cooling water recovery device for production

By designing a process cooling water recovery device with staged filtration and cooling, the problems of high temperature of the recovered coolant and poor filtration effect were solved, achieving efficient filtration and rapid cooling, ensuring that the cooling water can be recycled immediately, and improving production efficiency.

CN223564584UActive Publication Date: 2025-11-18SHANGHAI JUYI AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202423220746.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-11-18
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

In existing cooling water recovery devices, the temperature of the recovered coolant is too high to be recycled immediately, and the single-use filtration results in poor filtration efficiency.

Method used

A process cooling water recovery device is designed, comprising a water storage tank, a first filtration mechanism, a second filtration mechanism, an air-cooling mechanism, and a cooling mechanism. The device reduces the water temperature through staged filtration and cooling mechanisms, and achieves rapid cooling by utilizing a semiconductor refrigeration chip assembly and an air-cooling mechanism.

Benefits of technology

It achieves efficient filtration and rapid cooling, ensuring that the recycled water can be recycled immediately after the temperature drops, thus improving the filtration effect and production efficiency.

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Abstract

The utility model relates to the technical field of cooling water recovery, in particular to a process cooling water recovery device for production, which comprises a recovery device, the recycling device is composed of a recycling mechanism, moving wheels and an uninterruptible power supply, the recycling mechanism is composed of a water storage tank, a first filtering mechanism, a second filtering mechanism, an air cooling mechanism and a cooling mechanism, the first filtering mechanism is installed on one side of the water storage tank, and the second filtering mechanism is installed at the bottom end of the water storage tank. The water purifier has the beneficial effects that large-particle solids are filtered through the first filtering mechanism, filtered water is guided to the second filtering mechanism to filter particles, the filtering effect on the water can be improved through stage-by-stage filtering, the filtered water is guided into the water storage tank, the water is cooled through the cooling mechanism, and the cooling effect of the water purifier is improved. And the recycled water can be used after the temperature of the recycled water is reduced, great convenience is achieved, and meanwhile the cooling mechanism can be used for cooling through the air cooling mechanism during use.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooling water recovery technical field especially relates to a production process cooling water recovery device. BACKGROUND

[0002] Traditional cooling water usage mode usually accompanies a large amount of water resource waste. For example, in the glass fiber production process, the cooling of the leakage plate mainly depends on the water gun water, which not only causes the waste of water resources, but also increases the environmental burden. Cooling water recovery technology has important significance in many industrial fields, especially in today's increasingly scarce water resources, effective recovery and utilization of cooling water can not only reduce the waste of water resources, but also improve production efficiency and reduce production cost.

[0003] Chinese patent number CN202323262451.6 discloses a circulating cooling water recovery device, which comprises a device body, a collecting hopper is installed on the device body, a filter plate is arranged in the collecting hopper, a filter core is connected to the bottom side of the filter plate, a support frame is installed on the outer side of the filter core, a partition plate is arranged on the bottom side of the support frame, a detector is installed on the partition plate, a motor is arranged in the partition plate, a rotating rod is connected to the upper side of the motor, and an anti-overflow plate is installed on the bottom side of the rotating rod.

[0004] The utility model in use, the temperature of the cooling liquid after recovery is relatively high, and it cannot be immediately recycled. At the same time, during the filtering process, one-time filtering will result in poor filtering effect. UTILITY MODEL CONTENT

[0005] The utility model aims at solving the defects in the prior art that the temperature of the cooling liquid after recovery is relatively high, and it cannot be immediately recycled. At the same time, during the filtering process, one-time filtering will result in poor filtering effect, and provides a production process cooling water recovery device.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0007] A production process cooling water recovery device is designed, which comprises a recovery device; the recovery device is composed of a recovery mechanism, a moving wheel and an uninterruptible power supply; the uninterruptible power supply is installed on the upper side of the recovery mechanism; and the moving wheel is rotatably installed at the bottom end of the recovery mechanism.

[0008] The recycling mechanism is composed of a water storage tank, a first filtering mechanism, a second filtering mechanism, an air cooling mechanism and a cooling mechanism, a water outlet pipe is installed at the lower side of one side of the water storage tank, the first filtering mechanism is installed at one side of the water storage tank, the second filtering mechanism is installed at the bottom end of the water storage tank, the first filtering mechanism is installed at the bottom end and one side of the upper end of the second filtering mechanism, the other side of the upper end of the second filtering mechanism is connected with the bottom end of one side of the water storage tank, the cooling mechanism is installed at the other side of the water storage tank, and the air cooling mechanism is installed at the outside of the cooling mechanism.

[0009] Further, the first filtering mechanism is composed of an inner cylinder and an outer cylinder, the inner cylinder is installed at one side of the inside of the recycling mechanism, the inner cylinder is internally installed with a propulsion mechanism, the outer cylinder is installed at the outside of the inner cylinder, and the inner cylinder is installed with a filter cylinder at the inside segment of the outer cylinder.

[0010] Further, a water inlet pipe is installed at the upper end of the inner cylinder, a waste outlet is installed at the lower end of the inner cylinder, and a control valve is installed at the upper side of the waste outlet.

[0011] Further, the propulsion mechanism is composed of a shaft, a spiral blade and a power mechanism, the shaft is rotatably installed at the inside of the inner cylinder, the spiral blade is welded at the outside of the shaft, the shaft is installed at the bottom end of the power mechanism through the inner cylinder at the upper end, the power mechanism is installed at the upper end of the inner cylinder, the power mechanism is composed of an electric motor and a speed changer, the speed changer is installed at the upper end of the inner cylinder, and the electric motor is installed at the upper side of the speed changer.

[0012] Further, the air cooling mechanism is composed of an air duct and a fan, the air duct is installed at one side of the water storage tank, the fan is installed at the upper end inside the air duct, an air inlet is installed at the upper end of the air duct, an air outlet is installed at the bottom end of the air duct, and filter screens are installed at the upper side of the air inlet and the air outlet.

[0013] Further, the upper end inside the air duct is composed of a conical hole plate, and the conical hole plate is installed at the upper end inside the air duct.

[0014] Further, the second filtering mechanism is composed of a baffle and a filter plate, the baffles are spaced apart and welded at both sides inside the second filtering mechanism, and the filter plate is installed at the position between the baffles inside the second filtering mechanism.

[0015] Further, the water storage tank is composed of a cooling area and a water storage area, the cooling area is close to the cooling mechanism, and the cooling area and the water storage area are separated by a partition.

[0016] Further, the cooling mechanism comprises a refrigeration cavity and a semiconductor refrigerating sheet group, the semiconductor refrigerating sheet group is installed in the refrigeration cavity, the refrigeration cavity is installed at one side of the air cooling mechanism, a second heat conduction plate is installed at the outside of the refrigeration cavity, one end of the second heat conduction plate extends into the air cooling mechanism, the other end of the second heat conduction plate extends into the refrigeration cavity and contacts with the semiconductor refrigerating sheet group, a first heat conduction plate is installed at the inside of the refrigeration cavity, one end of the first heat conduction plate extends into the refrigeration cavity and contacts with the refrigeration end of the semiconductor refrigerating sheet group, and the other end of the first heat conduction plate extends into the water storage tank.

[0017] The production process cooling water recycling device has the advantages that:

[0018] 1. The first filtering mechanism filters the solid with large particles, and the water after filtering is guided to the second filtering mechanism to filter the particles, so that the filtering effect of the water is improved, the water after filtering is guided into the water storage tank, the cooling mechanism is used to cool the water, and the water after the temperature of the recycled water is reduced can be used, which is very convenient, and the cooling mechanism can be cooled by the air cooling mechanism during use.

[0019] 2. The cooling mechanism is used, the semiconductor refrigerating sheet group is used to cool the side of the refrigeration cavity close to the water storage tank, and the first heat conduction plate is used to exchange heat between the refrigeration cavity and the water storage tank, so that the water in the water storage tank can be quickly cooled, and the heat generated by the heating end of the semiconductor refrigerating sheet group is guided into the air cooling mechanism through the second heat conduction plate, and the heating end of the semiconductor refrigerating sheet group is quickly cooled by the air cooling mechanism. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a structural schematic view of the utility model;

[0021] Figure 2 It is a structural schematic view of the utility model;

[0022] Figure 3 It is a structural schematic view of the first filtering mechanism of the utility model;

[0023] Figure 4 It is a structural schematic view of the first filtering mechanism of the utility model;

[0024] Figure 5 It is a structural schematic view of the cooling mechanism of the utility model.

[0025] As shown in the figure, the device comprises a recovery device 1, a recovery mechanism 2, a filter screen 3, an air inlet 4, an uninterrupted power supply 5, a first heat-conducting plate 6, a water outlet pipe 7, a waste outlet 8, a water inlet pipe 9, a power mechanism 10, an electric motor 11, a speed changer 12, a first filter mechanism 13, a baffle 14, a second filter mechanism 15, a filter plate 16, a moving wheel 17, an air outlet 18, an air duct 19, an air cooling mechanism 20, a cooling mechanism 21, a fan 22, a conical hole plate 23, a cooling area 24, a partition 25, a water storage area 26, a water storage tank 27, a control valve 28, an inner cylinder 29, a filter cylinder 30, an outer cylinder 31, a propelling mechanism 32, a spiral blade 33, a shaft 34, a refrigeration cavity 35, a second heat-conducting plate 36, and a semiconductor refrigeration sheet group 37. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application.

[0027] Embodiment, please refer to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , a process cooling water recovery device for production, comprising a recovery device 1; the recovery device 1 is composed of a recovery mechanism 2, a moving wheel 17 and an uninterrupted power supply 5; the uninterrupted power supply 5 is installed on the upper side of the recovery mechanism 2; and the moving wheel 17 is rotatably installed at the bottom end of the recovery mechanism 2.

[0028] The recovery mechanism 2 is composed of a water storage tank 27, a first filter mechanism 13, a second filter mechanism 15, an air cooling mechanism 20 and a cooling mechanism 21; the water outlet pipe 7 is installed at the lower side of one side of the water storage tank 27; the first filter mechanism 13 is installed at one side of the water storage tank 27; the second filter mechanism 15 is installed at the bottom end of the water storage tank 27; the first filter mechanism 13 is connected to the upper end of one side of the second filter mechanism 15; the upper end of the other side of the second filter mechanism 15 is connected to the bottom end of one side of the water storage tank 27; the cooling mechanism 21 is installed at the outer position of the other side of the water storage tank 27; and the air cooling mechanism 20 is installed at the outer position of the cooling mechanism 21.

[0029] Further, the first filtering mechanism 13 is composed of an inner cylinder 29 and an outer cylinder 31, the inner cylinder 29 is installed at one side of the recycling mechanism 2, the inner cylinder 29 is internally provided with a pushing mechanism 32, the outer cylinder 31 is installed at the outer side of the inner cylinder 29, the inner cylinder 29 is installed at the inner segment of the outer cylinder 31 and is provided with a filtering cylinder 30, in use, the pushing mechanism 32 is used to pump water into the inner cylinder 29, the water entering the inner cylinder 29 will be filtered by the filtering cylinder 30 and then enter the inner cylinder 31, the water entering the inner cylinder 31 will be guided into the second filtering mechanism 15, and the solid waste generated by the filtering will be pushed downward and guided out by the pushing mechanism 32.

[0030] Further, the inner cylinder 29 is provided with a water inlet pipe 9 at the upper end and a waste outlet 8 at the lower end, and the waste outlet 8 is provided with a control valve 28 at the upper side, the water inlet pipe 9 is used to guide water to the first filtering mechanism 13, the waste outlet is used to guide waste out, and the control valve 28 is used to open and close the waste outlet 8.

[0031] Further, the pushing mechanism 32 is composed of a shaft 34, a spiral blade 33 and a power mechanism 10, the shaft 34 is rotatably installed in the inner cylinder 29, the spiral blade 33 is welded to the outer side of the shaft 34, the upper end of the shaft 34 penetrates the inner cylinder 29 and is installed at the bottom end of the power mechanism 10, the power mechanism 10 is installed at the upper end of the inner cylinder 29, the power mechanism 10 is composed of a motor 11 and a speed changer 12, the speed changer 12 is installed at the upper end of the inner cylinder 29, and the motor 11 is installed at the upper side of the speed changer 12, in use, the power mechanism 10 is started by the switch, the motor 11 drives the shaft 34 to rotate through the speed changer 12, the shaft 34 drives the spiral blade 33 to rotate in the process of rotation, the spiral blade 33 can pump water into the inner cylinder 29 and guide the solid waste generated by the filtering downward or out in the process of rotation.

[0032] Further, the air cooling mechanism 20 is composed of an air duct 19 and a fan 22, the air duct 19 is installed at one side of the water storage tank 27, the fan 22 is installed at the upper end of the air duct 19, the air duct 19 is provided with an air inlet 4 at the upper end and an air outlet 18 at the bottom end, and the air inlet 4 and the air outlet 18 are provided with a filter screen 3 at the upper side, in use, the fan 22 is started by the switch, the fan 22 guides external air into the air duct 19 through the air inlet 4, the flowing air cools the refrigeration mechanism, the air after absorbing heat is guided out through the air outlet 18, and the filter screen 3 is used to protect the air inlet 4 and the air outlet 18 and filter air.

[0033] Further, the upper end of the air duct 19 is provided with a conical hole plate 23, which is arranged at the upper end of the air duct 19. The conical hole plate 23 is arranged to reduce the diameter of the air flow, so that the air can quickly pass through the conical hole plate 23, thereby increasing the air flow speed and increasing the cooling effect of the refrigeration mechanism.

[0034] Further, the second filter mechanism 15 is composed of a baffle plate 14 and a filter plate 16. The baffle plate 14 is arranged at both sides of the second filter mechanism 15. The filter plate 16 is arranged between the baffle plates 25 in the second filter mechanism 15. In use, the filter plate 16 filters small particles in the water, and the baffle plate 14 is arranged to make the water flow in an S shape in the second filter mechanism 15, thereby improving the filtering effect of the filter plate 16.

[0035] Further, the water storage tank 27 is composed of a cooling area 24 and a water storage area 26. The cooling area 24 is close to the cooling mechanism 21, and the cooling area 24 and the water storage area 26 are separated by the baffle plate 25. In use, the filtered water is first introduced into the cooling area 24, and then the cooled water is introduced into the water storage area 26 by overflow, thereby quickly and uniformly cooling the water in the water storage tank 27.

[0036] Further, the cooling mechanism 21 is composed of a refrigeration cavity 35 and a semiconductor refrigeration sheet group 37. The semiconductor refrigeration sheet group 37 is arranged in the refrigeration cavity 35. The refrigeration cavity 35 is arranged at one side of the air cooling mechanism 20. The second heat conduction plate 36 is arranged at the outer side of the refrigeration cavity 35. One end of the second heat conduction plate 36 extends into the air cooling mechanism 20, and the other end of the second heat conduction plate 36 extends into the refrigeration cavity 35 and contacts the semiconductor refrigeration sheet group 37. The first heat conduction plate 6 is arranged at the inner side of the refrigeration cavity 35. One end of the first heat conduction plate 6 extends into the refrigeration cavity 35 and contacts the refrigeration end of the semiconductor refrigeration sheet group 37, and the other end of the first heat conduction plate 6 extends into the water storage tank 27. In use, the semiconductor refrigeration sheet group 37 cools the side of the refrigeration cavity 35 close to the water storage tank 27, and the first heat conduction plate 6 exchanges heat between the refrigeration cavity 35 and the water storage tank 27, thereby quickly cooling the water in the water storage tank 27. In use, the heat generated by the heating end of the semiconductor refrigeration sheet group 37 is conducted to the air cooling mechanism 20 through the second heat conduction plate 36, and the air cooling mechanism 20 quickly cools the heating end of the semiconductor refrigeration sheet group 37.

[0037] The working mode is as follows: when the recycling device 1 is in use, the recycling mechanism 2 is moved by the moving wheel 17, the uninterruptible power supply 5 is arranged to supply power to the recycling mechanism 2 when power supply is abnormal, so that the recycling mechanism 2 can be normally used, when the recycling mechanism 2 is in use, the first filtering mechanism 13, the air cooling mechanism 20 and the cooling mechanism 21 are turned on by the switch, the first filtering mechanism 13 draws water and performs primary filtering, the first filtering mechanism 13 filters solid with large particles, the filtered water is guided to the second filtering mechanism 15 to filter microparticles, the filtering effect of water is improved by the staged filtering, the filtered water is guided into the water storage tank 27, the water is cooled by the cooling mechanism 21, and the recycled water can be used after the water temperature is reduced, which is very convenient, and the cooling mechanism 21 can be cooled by the air cooling mechanism 20 when in use

[0038] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. A process cooling water recovery device for production, comprising a recovery device (1); characterized by: The recycling device (1) is composed of a recycling mechanism (2), a moving wheel (17) and an uninterrupted power supply (5), the uninterrupted power supply (5) is installed on the upper side of the recycling mechanism (2), and the moving wheel (17) is rotatably installed on the bottom end of the recycling mechanism (2). The recycling mechanism (2) is composed of a water storage tank (27), a first filtering mechanism (13), a second filtering mechanism (15), an air cooling mechanism (20) and a cooling mechanism (21), the water outlet pipe (7) is installed on the lower side of one side of the water storage tank (27), the first filtering mechanism (13) is installed on one side of the water storage tank (27), the second filtering mechanism (15) is installed at the bottom end of the water storage tank (27), the first filtering mechanism (13) is installed at the bottom end and one side of the upper end of the second filtering mechanism (15), the other side of the upper end of the second filtering mechanism (15) is connected with the bottom end of one side of the water storage tank (27), the cooling mechanism (21) is installed on the other side of the water storage tank (27) The air cooling mechanism (20) is installed outside the position of the cooling mechanism (21).

2. The process cooling water recovery device for production according to claim 1, characterized by: The first filtering mechanism (13) is composed of an inner cylinder (29) and an outer cylinder (31), the inner cylinder (29) is installed on one side of the inside of the recycling mechanism (2), the inner cylinder (29) is internally provided with a propelling mechanism (32), the outer cylinder (31) is installed on the outside of the inner cylinder (29), and the inner cylinder (29) is installed in the inner cylinder (29) The filter cylinder (30) is installed in the inner cylinder (29).

3. The process cooling water recovery device for production according to claim 2, characterized by: The upper end of the inner cylinder (29) is provided with a water inlet pipe (9), the lower end of the inner cylinder (29) is provided with a waste outlet (8), and the upper side of the waste outlet (8) is provided with a control valve (28).

4. The process cooling water recovery device for production according to claim 2, characterized by: The propelling mechanism (32) is composed of a shaft (34), a spiral blade (33) and a power mechanism (10), the shaft (34) is rotatably installed in the inner cylinder (29), the spiral blade (33) is welded on the outer side of the shaft (34), the shaft (34) passes through the inner cylinder (29) and is installed at the bottom end of the power mechanism (10), the power mechanism (10) is installed at the upper end of the inner cylinder (29), the power mechanism (10) is composed of an electric motor (11) and a speed changer (12), the speed changer (12) is installed at the upper end of the inner cylinder (29), and the electric motor (11) is installed on the upper side of the speed changer (12).

5. The process cooling water recovery device for production according to claim 2, characterized by: The air cooling mechanism (20) is composed of an air duct (19) and a fan (22), the air duct (19) is installed on one side of the water storage tank (27), the fan (22) is installed at the upper end inside the air duct (19), the air duct (19) is provided with an air inlet (4) at the upper end, the air duct (19) is provided with an air outlet (18) at the bottom end, and the air inlet (4) and the air outlet (18) are provided with a filter screen (3) on the upper side.

6. The process cooling water recovery device for production according to claim 5, characterized by: The inner end of the air duct (19) is provided with a conical hole plate (23), and the conical hole plate (23) is installed at the inner end of the air duct (19).

7. The process cooling water recovery device for production according to claim 2, characterized by: The second filtering mechanism (15) is composed of a baffle (14) and a filtering plate (16), the baffle (14) is welded at two sides inside the second filtering mechanism (15), and the filtering plate (16) is installed between the baffles (25) inside the second filtering mechanism (15).

8. The process cooling water recovery device for production according to claim 3, characterized by: The water storage tank (27) is composed of a cooling area (24) and a water storage area (26), the cooling area (24) is close to the cooling mechanism (21), and the cooling area (24) and the water storage area (26) are separated by the baffles (25).

9. The process cooling water recovery device for production use according to claim 4, characterized by: The cooling mechanism (21) is composed of a refrigeration cavity (35) and a semiconductor refrigeration sheet group (37), the semiconductor refrigeration sheet group (37) is installed inside the refrigeration cavity (35), the refrigeration cavity (35) is installed at one side inside the air cooling mechanism (20), a second heat conduction plate (36) is installed at an outer side of the refrigeration cavity (35), one end of the second heat conduction plate (36) extends into the air cooling mechanism (20), the other end of the second heat conduction plate (36) extends into the refrigeration cavity (35) and contacts the semiconductor refrigeration sheet group (37), and a first heat conduction plate (6) is installed at an inner side of the refrigeration cavity (35), one end of the first heat conduction plate (6) extends into the refrigeration cavity (35) and contacts a refrigeration end of the semiconductor refrigeration sheet group (37), and the other end of the first heat conduction plate (6) extends into the water storage tank (27).

Citation Information

Patent Citations

  • Circulating cooling water recovery device

    CN221420826U