High-temperature water circulation mold temperature controller

By introducing cooling components of fans and heat insulation boards into the high-temperature water circulation mold temperature controller, combined with cooling water circulation and air heat dissipation, the problems of poor heat dissipation and maintenance difficulties caused by exposed water pumps are solved, and stable operation and efficient maintenance of the equipment are achieved.

CN223314540UActive Publication Date: 2025-09-09ANHUI ECHOM SCI & TECH
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Patent Information

Application Number
CN202422011198.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-20
Publication Date
2025-09-09
Estimated Expiration
2034-08-20

AI Technical Summary

Technical Problem

The water pump of the existing high-temperature water circulation mold temperature controller is exposed to the outside and is easily affected by environmental unstable factors, resulting in reduced heat dissipation effect, frequent equipment failures, and difficult maintenance.

Method used

A cooling component including a fan and a heat shield is designed. By combining cooling water circulation and wind heat dissipation, the water pump is protected, the equipment stability and heat dissipation effect are enhanced, and the water pump is installed with bolts for easy maintenance.

Benefits of technology

It improves the stability and heat dissipation efficiency of the equipment, reduces energy consumption, extends the life of the equipment, simplifies the maintenance process, and ensures the safe operation of the equipment in high temperature environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of mold temperature controllers, in particular to a high-temperature water circulation mold temperature controller, which comprises a shell, a side panel for preventing dust from entering the shell is mounted on the side surface of the shell, a hot water outlet for hot water to flow out is mounted on the side surface of the shell, and a cold water return port for cold water to flow back is mounted below the hot water outlet. An air outlet used for heat dissipation is formed in the side face of the shell, a water tank used for storing circulating water is installed on one side of the upper end in the shell, one side of the water tank is connected with a heating tank used for heating water through an injection tank, a hot water pipe connected with a hot water outlet is arranged on the surface of the heating tank, and a backflow pipe used for cold water backflow is arranged at the lower end of the hot water pipe. Through the cooling assembly designed behind the water pump, the situation that equipment operation is affected by temperature rise caused by long-time trial operation in the operation process is prevented, the stability of the equipment is enhanced, meanwhile, temperature reduction is conducted through backflow cooling water, and resources are greatly saved.
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Description

Technical Field

[0001] The utility model relates to the technical field of mold temperature controllers, in particular to a high-temperature water circulation mold temperature controller. Background Art

[0002] With the rapid development of modern industrial production, the requirements for temperature control are becoming increasingly stringent. Especially in certain fields such as precision machining and mold manufacturing, temperature stability and accuracy are directly related to product quality and production efficiency. Therefore, high-temperature water-circulating mold temperature controllers, as an important temperature control device, play a vital role in industrial production.

[0003] However, most of the existing high-temperature water circulation mold temperature controllers only have simple heat dissipation for the water pump or no heat dissipation structure. The entire internal part of the equipment is exposed to the outside to dissipate the internal heat. The instability of the external environment, such as temperature, humidity, dust and other factors, may have an adverse effect on the normal operation of the water pump, resulting in a decrease in equipment efficiency or even failure. Secondly, the exposed water pump is prone to dust accumulation, which further reduces the heat dissipation effect and increases the difficulty of maintenance and cleaning, affecting its work efficiency. Therefore, we need to design a high-temperature water circulation mold temperature controller that can dissipate heat from the water pump inside the machine. Utility Model Content

[0004] The present invention aims to solve the problems existing in the prior art and provides the following technical solutions:

[0005] A high-temperature water circulation mold temperature controller comprises a shell, a side panel inside the shell to prevent dust from entering is installed on the side of the shell, a hot water outlet for hot water to flow out is installed on the side of the shell, a cold water return port for cold water to return is installed below the hot water outlet, an air outlet for heat dissipation is installed on the side of the shell, a water tank for storing circulating water is installed on one side of the upper end of the interior of the shell, one side of the water tank is connected to a heating tank for heating water through an injection tank, a hot water pipe connected to the hot water outlet is provided on the surface of the heating tank, a return pipe for cold water return is provided at the lower end of the hot water pipe, one end of the return pipe is connected to a water pump, and a cooling component for cooling the insulation board is provided on the rear side of the water pump.

[0006] As an improvement of the above technical solution, the cooling component includes a fan, which is installed in a groove opened on the outer wall at the lower end of one side of the shell, and the fan is installed behind the motor. The cold water return port passes through the outer wall of the shell and is connected to the connecting groove installed at the lower end of one side of the inner shell. The periphery of the water pump is isolated by an insulation board. A plurality of cold water diversion pipes are installed at the lower end of the connecting groove, and a confluence groove is installed at the water outlet end of the cold water diversion pipe. Cold water transmission pipes are provided on both sides of the confluence groove, one end of the cold water transmission pipe is connected to a cold water connecting pipe, and one end of the cold water connecting pipe is connected to a confluence pipe, the confluence pipe is connected to the output port of the water pump, and the confluence pipe passes through the insulation board and is connected to the return pipe.

[0007] As an improvement to the above technical solution, side heat dissipation holes for internal heat dissipation are provided at the lower end of the side surface of the side panel.

[0008] As an improvement to the above technical solution, a dustproof plate is installed at the front end of the fan.

[0009] As an improvement of the above technical solution, the water pump is installed inside the housing by bolts.

[0010] The beneficial effects of the utility model are as follows: a water tank for storing circulating water is installed on one side of the upper end of the shell, a heating tank for heating water is connected to one side of the water tank through an injection tank, a hot water pipe connected to the hot water outlet is provided on the surface of the heating tank, a return pipe for cold water return is provided at the lower end of the hot water pipe, one end of the return pipe is connected to a water pump, and a cooling component for cooling the insulation board is provided on the rear side of the water pump, so that the water pump passes through the cooling component designed at the rear, which prevents the temperature from rising during long-term trial operation and affecting the operation of the equipment, thereby enhancing the stability of the equipment, and at the same time reducing the temperature by cooling the returning cooling water, which greatly saves resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 It is a three-dimensional structural diagram of the utility model;

[0012] Figure 2 This is a three-dimensional cross-sectional view of the utility model.

[0013] Figure markings: 1. outer shell; 2. side panel; 3. hot water outlet; 4. cold water return; 5. air outlet; 6. side heat dissipation vents; 7. water tank; 8. heating tank; 9. injection tank; 10. hot water pipe; 11. return pipe; 12. confluence pipe; 13. cold water transmission pipe; 14. cold water connecting pipe; 15. confluence groove; 16. cold water diversion pipe; 17. connecting groove; 18. thermal insulation board; 19. fan; 20. water pump. DETAILED DESCRIPTION

[0014] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0015] See also Figure 1-2 The utility model provides a technical solution: a high-temperature water circulation mold temperature controller, comprising a shell 1, a side panel 2 inside the shell 1 to prevent dust from entering, a hot water outlet 3 for hot water to flow out is installed on the side of the shell 1, a cold water return port 4 for cold water return is installed below the hot water outlet 3, an air outlet 5 for heat dissipation is installed on the side of the shell 1, a water tank 7 for storing circulating water is installed on one side of the upper end of the shell 1, one side of the water tank 7 is connected to a heating tank 8 for heating water through an injection tank 9, a hot water pipe 10 connected to the hot water outlet 3 is provided on the surface of the heating tank 8, a return pipe 11 for cold water return is provided at the lower end of the hot water pipe 10, one end of the return pipe 11 is connected to a water pump 20, and a cooling component for cooling the heat insulation board 18 is provided on the rear side of the water pump 20.

[0016] In this embodiment, a water tank 7 for storing circulating water is installed on one side of the upper end of the inner shell 1, and a heating tank 8 for heating water is connected to one side of the water tank 7 through an injection tank 9. A hot water pipe 10 connected to the hot water outlet 3 is provided on the surface of the heating tank 8, and a return pipe 11 for cold water return is provided at the lower end of the hot water pipe 10. A water pump 20 is connected to one end of the return pipe 11, and a cooling component for cooling the insulation board 18 is provided on the rear side of the water pump 20, so that the water pump 20 can prevent the temperature from rising due to long-term trial operation and affecting the operation of the equipment through the cooling component designed at the rear, thereby enhancing the stability of the equipment. At the same time, the temperature is reduced by cooling the returning cooling water, which greatly saves resources.

[0017] Specifically, the cooling component includes a fan 19, which is installed in a groove opened on the outer wall at the lower end of one side of the shell 1. The fan 19 is installed behind the motor. The cold water return port 4 passes through the outer wall of the shell 1 and is connected to the connecting groove 17 installed at the lower end of one side of the inner shell 1. The periphery of the water pump 20 is isolated by an insulation board 18. A plurality of cold water diverter pipes 16 are installed at the lower end of the connecting groove 17. The outlet end of the cold water diverter pipe 16 is installed with a confluence groove 15. Cold water transmission pipes 13 are provided on both sides of the confluence groove 15. One end of the cold water transmission pipe 13 is connected to a cold water connecting pipe 14. One end of the cold water connecting pipe 14 is connected to a confluence pipe 12. The confluence pipe 12 is connected to the output port of the water pump 20. The confluence pipe 12 passes through the insulation board 18 and is connected to the return pipe 11.

[0018] In this embodiment, the cooling component includes a fan 19, which is installed in a groove opened on the outer wall of the lower end of one side of the shell 1. The fan 19 is installed behind the motor, and the cold water return port 4 passes through the outer wall of the shell 1 and is connected to the connecting groove 17 installed at the lower end of one side of the inner shell 1. The periphery of the water pump 20 is isolated by an insulation board 18. A plurality of cold water diverter pipes 16 are installed at the lower end of the connecting groove 17, and a confluence groove 15 is installed at the water outlet end of the cold water diverter pipe 16. Cold water transmission pipes 13 are provided on both sides of the confluence groove 15, and one end of the cold water transmission pipe 13 is connected to the cold water connection Tube 14, one end of the cold water connecting pipe 14 is connected to the confluence pipe 12, the confluence pipe 12 is connected to the output port of the water pump 20, and the confluence pipe 12 passes through the insulation board 18 and is connected to the return pipe 11, which effectively prevents the water pump 20 components from overheating and improves the reliability of the equipment. At the same time, the setting of the cold water diversion pipe 16 and the confluence groove 15 enables the cold water to pass evenly through the rear of the water pump 20 and return to the output end of the water pump 20 through the cold water transmission pipe 13 and the confluence pipe 12, forming a water circulation system, which not only improves the cooling efficiency of the equipment, but also reduces energy consumption.

[0019] Specifically, a side heat dissipation hole 6 for internal heat dissipation is opened at the lower end of the side surface of the side panel 2.

[0020] In this embodiment, a side heat dissipation hole 6 for internal heat dissipation is opened at the lower end of the side surface of the side panel 2, thereby ensuring stable operation of the device in a high temperature environment and providing protection for the safe operation of the device.

[0021] Specifically, a dustproof plate is installed at the front end of the fan 19.

[0022] In this embodiment, a dustproof plate is installed at the front end of the fan 19, which effectively prevents dust from entering the interior of the device, ensuring the normal operation and heat dissipation effect of the fan 19, which not only extends the service life of the equipment, but also improves the maintenance convenience of the equipment.

[0023] Specifically, the water pump 20 is installed inside the housing 1 by bolts.

[0024] In this embodiment, the water pump 20 is installed inside the housing 1 by bolts, which makes the installation and disassembly of the water pump 20 convenient and quick, which not only improves the maintainability of the equipment but also reduces the user's maintenance cost. At the same time, the bolt connection method also ensures the stability and safety of the water pump 20.

[0025] The working principle and usage process of the present invention are as follows: First, start the equipment, the water pump 20 starts working, and the cold water is sucked into the confluence pipe 12 through the cold water connecting pipe 14, and enters the heating tank 8 through the return pipe 11 for heating. The heated hot water flows out to the required working area through the hot water pipe 10. At the same time, the fan 19 is started, and the heat is discharged through the side heat dissipation holes 6 and the air outlet 5 to ensure that the internal temperature of the equipment is stable. After the hot water is used, it is recovered to the connecting groove 17 through the cold water return port 4, and then returns to the water pump 20 through the cold water diversion pipe 16, the confluence groove 15 and the cold water transmission pipe 13 to form a cycle. During the whole process, the dustproof plate and the heat insulation plate 18 protect the fan 19 and the water pump 20 respectively to ensure efficient and safe operation of the equipment.

[0026] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. A high-temperature water circulation mold temperature controller, characterized by: The invention comprises a shell (1), wherein a side panel (2) is installed on the side of the shell (1) to prevent dust from entering the inside thereof, a hot water outlet (3) is installed on the side of the shell (1) for hot water to flow out, a cold water return port (4) is installed below the hot water outlet (3) for cold water to return, an air outlet (5) is installed on the side of the shell (1) for heat dissipation, a water tank (7) for storing circulating water is installed on one side of the upper end of the shell (1), one side of the water tank (7) is connected to a heating tank (8) for heating water through an injection tank (9), a hot water pipe (10) connected to the hot water outlet (3) is provided on the surface of the heating tank (8), a return pipe (11) for cold water to return is provided at the lower end of the hot water pipe (10), one end of the return pipe (11) is connected to a water pump (20), and a cooling component for cooling the heat insulation board (18) is provided on the rear side of the water pump (20).

2. A high-temperature water circulation mold temperature controller according to claim 1, characterized in that: The cooling component includes a fan (19), which is installed in a groove formed on the outer wall of the lower end of one side of the housing (1). The fan (19) is installed behind the motor. The cold water return port (4) passes through the outer wall of the housing (1) and is connected to a connecting groove (17) installed at the lower end of one side of the interior of the housing (1). The periphery of the water pump (20) is isolated by a heat insulation board (18). A plurality of cold water shunt pipes (16) are installed at the lower end of the connecting groove (17). The outlet end of the cold water branch pipe (16) is provided with a confluence groove (15), and cold water transmission pipes (13) are provided on both sides of the confluence groove (15). One end of the cold water transmission pipe (13) is connected to a cold water connecting pipe (14), and one end of the cold water connecting pipe (14) is connected to a confluence pipe (12). The confluence pipe (12) is connected to the output port of the water pump (20), and the confluence pipe (12) passes through the heat insulation board (18) and is connected to the return pipe (11).

3. The high-temperature water circulation mold temperature controller according to claim 1, characterized in that: The side panel (2) is provided with a side heat dissipation hole (6) at the lower end thereof for dissipating internal heat.

4. A high-temperature water circulation mold temperature controller according to claim 2, characterized in that: A dustproof plate is installed at the front end of the fan (19).

5. The high-temperature water circulation mold temperature controller according to claim 1, characterized in that: The water pump (20) is mounted inside the housing (1) via bolts.