Water source cooling mechanism of mold temperature controller

By introducing a high-efficiency magnetic pump and a clean water tank design into the mold temperature controller, the cooling water can be purified, solving the problem of scale accumulation in traditional mold temperature controllers, extending the service life of the heating element and improving heat exchange efficiency.

CN223904483UActive Publication Date: 2026-02-13GUANGDONG JUXIAOCHUANG TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520107441.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-17
Publication Date
2026-02-13
Estimated Expiration
2035-01-17

AI Technical Summary

Technical Problem

Traditional mold temperature controllers using regular tap water for cooling are prone to scale buildup, which leads to reduced lifespan of heating elements and poor contact.

Method used

It adopts a high-efficiency magnetic pump and a clean water tank design. The switching between cooling water and pure water is realized through the cooling water integrated module. The high-efficiency magnetic pump extracts and discharges residual cooling water, and then draws pure water from the clean water tank into the cooling system to prevent dirt from accumulating in the pipes.

Benefits of technology

It achieves the purification of cooling water, prevents scale buildup in the internal pipes of the mold temperature controller, extends the service life of the heating element, and maintains good heat exchange efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223904483U_ABST
    Figure CN223904483U_ABST
Patent Text Reader

Abstract

The water source cooling mechanism comprises a machine body, an efficient magnetic pump is transversely arranged at the bottom end in the machine body, a cooling water integration module is arranged on a pipeline on one side of the efficient magnetic pump, and the cooling water integration module is fixed to the side face of the bottom end in the machine body. A cooling water inlet pipe is arranged on a pipeline on one side of the cooling water integration module, the cooling water inlet pipe is transversely located on the side face of the exterior of the machine body, a second connecting pipe fitting is arranged on a pipeline of the cooling water integration module, and a first connecting pipe is arranged on a pipeline at the other end of the second connecting pipe fitting; the other end of the first connecting pipe is in pipeline connection with the cold-heat exchanger in the machine body, a water purifying tank is arranged on one side of the exterior of the machine body, a purified water inlet pipe is arranged on a pipeline on one side of the water purifying tank, and the other end of the purified water inlet pipe is in pipeline connection with the cooling water integration module.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of mould temperature controller, especially to the water source cooling mechanism of mould temperature controller. BACKGROUND

[0002] The traditional mould temperature controller is heated by resistance heater to heat the cooling water, and then provides cooling water with certain temperature to cool the mould. However, the internal cooling water of the traditional mould temperature controller usually has the following problems: most of the cooling water is conventional tap water, which is easy to produce scale after long time use, and then causes the problems of poor contact between the electric heating tube and the cooling medium and the decline of the service life of the electric heating tube. Therefore, the water source cooling mechanism of the mould temperature controller is proposed. SUMMARY

[0003] The utility model discloses to overcome the above situation's insufficient, aims at providing a kind of technical scheme that can solve above problem.

[0004] The water source cooling mechanism of mould temperature controller, including body, the high-efficiency magnetic pump is horizontally arranged in the bottom end inside the body, and the high-efficiency magnetic pump side pipeline is provided with cooling water integrated module, and the cooling water integrated module is fixed at the side of the bottom end inside the body, the cooling water integrated module side pipeline is provided with cooling water inlet pipe, and the cooling water inlet pipe is horizontally located at the side of the body outside, and the external cooling water can be filled into the body inside by the cooling water inlet pipe, and the cooling water is conventional tap water, the cooling water integrated module pipeline is provided with second connecting pipe, and the other end pipeline of second connecting pipe is provided with first connecting pipe, and the other end of first connecting pipe is connected with the pipeline of the heat exchanger inside the body, one side of the body outside is provided with water purification tank, the water purification tank side pipeline is provided with pure water inlet pipe, and the other end of pure water inlet pipe is connected with the pipeline between cooling water integrated module.

[0005] Preferably, the high-efficiency magnetic pump pipeline is provided with third connecting pipe, and the third connecting pipe is located at the side of the high-efficiency magnetic pump, and the other end of the third connecting pipe is connected with the pipeline of the heat exchanger inside the body.

[0006] Preferably, the high-efficiency magnetic pump pipeline is provided with second connecting pipe, and the second connecting pipe is horizontally located at the top end of the high-efficiency magnetic pump, and the other end of the second connecting pipe is connected with the pipeline of the heater inside the body.

[0007] Preferably, the other side of the high-efficiency magnetic pump is provided with solenoid valve, and the solenoid valve is fixed inside the body, and the solenoid valve is connected with the pipeline between the heat exchanger.

[0008] Preferably, a third connecting pipe is arranged between the electromagnetic valve and the heat exchanger, and the third connecting pipe is vertically arranged at the top end of the electromagnetic valve, one end of the third connecting pipe is connected with the electromagnetic valve, and the other end of the third connecting pipe is connected with the heat exchanger.

[0009] Preferably, a second connecting pipe is arranged on the other side of the cooling water integrated module, and a first connecting pipe is arranged on the top end of the second connecting pipe, and the first connecting pipe and the second connecting pipe are arranged in the machine body and connected with other devices in the machine body, respectively.

[0010] Compared with the prior art, the beneficial effects of the utility model are as follows: when the water source in the machine body needs pure cooling water, the cooling water inlet pipe is closed, at this time, the high-efficiency magnetic force pump is started, residual cooling water in the cooling water integrated module is extracted and discharged from the machine body, after the cooling water in the cooling water integrated module is completely discharged, the valve port between the pure water inlet pipe and the cooling water integrated module is opened, the pure cooling water in the pure water tank is extracted into the cooling water integrated module by the high-efficiency magnetic force pump, and then the pure cooling water is extracted from the cooling water integrated module into the machine body, so that the cooling water in the machine body can be switched between the conventional cooling water and the pure cooling water, and the pipe in the machine body can be prevented from being excessively polluted by water dirt.

[0011] The additional aspects and advantages of the utility model will be partially given in the following description, partially become obvious from the following description, or be understood by the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.

[0013] Fig. 1 It is a structure schematic view of the water source cooling mechanism of the mold temperature controller;

[0014] Fig. 2 It is another structure schematic view of the water source cooling mechanism of the mold temperature controller;

[0015] Fig. 3 It is another structure schematic view of the water source cooling mechanism of the mold temperature controller.

[0016] As shown in the figure: 1, the body, 2, the water tank, 3, high efficiency magnetic pump, 4, solenoid valve, 5, the first connecting pipe, 6, cooling water integrated module, 7, the second connecting pipe, 8, the first connecting pipe, 9, the second connecting pipe, 10, the third connecting pipe, 11, the third connecting pipe, 12, cooling water inlet pipe, 13, pure water inlet pipe. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0018] Please refer to Figs. 1-3 In the embodiments of the utility model, the water source cooling mechanism of the mold temperature machine comprises a body 1, a high efficiency magnetic pump 3 is horizontally arranged at the bottom of the body 1, a cooling water integrated module 6 is arranged on the pipeline of one side of the high efficiency magnetic pump 3, and the cooling water integrated module 6 is fixed to the side of the bottom of the body 1, a cooling water inlet pipe 12 is arranged on the pipeline of one side of the cooling water integrated module 5, the cooling water inlet pipe 12 is horizontally arranged at the side of the outside of the body 1, and the outside cooling water can be poured into the inside of the body 1 through the cooling water inlet pipe 12, the cooling water is conventional tap water, a second connecting pipe 7 is arranged on the pipeline of the cooling water integrated module 6, a first connecting pipe 8 is arranged on the pipeline of the other end of the second connecting pipe 7, and the other end of the first connecting pipe 8 is connected with the pipeline of the heat exchanger (not shown in the figure) in the inside of the body 1, then a part of the cooling water in the inside of the cooling water integrated module 5 is extracted into the heat exchanger to exchange heat through the high efficiency magnetic pump 3, a water tank 2 is arranged on one side of the outside of the body 1, a pure water inlet pipe 13 is arranged on the pipeline of one side of the water tank 2, and the other end of the pure water inlet pipe 13 is connected with the pipeline of the cooling water integrated module 5, then when the water source in the inside of the body 1 needs pure cooling water, the cooling water inlet pipe 12 is closed, at this time, the high efficiency magnetic pump 3 is started, the residual cooling water in the cooling water integrated module 5 is extracted and discharged from the body 1, after the cooling water in the inside of the cooling water integrated module 5 is completely discharged, the valve port (not shown in the figure) between the pure water inlet pipe 13 and the cooling water integrated module 5 is opened, the pure cooling water in the inside of the water tank 2 is extracted into the inside of the cooling water integrated module 5 through the high efficiency magnetic pump 3, and then the cooling water in the inside of the body 1 can be switched between the conventional cooling water and the pure cooling water, and the pipeline in the inside of the body 1 can also prevent excessive water dirt from remaining.

[0019] The high-efficiency magnetic force pump 3 pipeline is provided with a third connecting pipe 11, and the third connecting pipe 11 is located at the side of the high-efficiency magnetic force pump 3, and the other end of the third connecting pipe 11 is connected with the cold-heat exchanger inside the machine body 1 in pipeline, so that a part of the cooling water inside the cooling water integrated module 5 is extracted to the cold-heat exchanger inside through the high-efficiency magnetic force pump 3 to exchange cold and heat.

[0020] The high-efficiency magnetic force pump 3 pipeline is provided with a second connecting pipe 9, and the second connecting pipe 9 is transversely located at the top end of the high-efficiency magnetic force pump 3, and the other end of the second connecting pipe 9 is connected with the heater (not shown in the figure) inside the machine body 1 in pipeline, so that another part of the cooling water inside the cooling water integrated module 5 is extracted to the heater inside through the high-efficiency magnetic force pump 3 to heat.

[0021] The other side of the high-efficiency magnetic force pump 3 is provided with an electromagnetic valve 4, and the electromagnetic valve 4 is fixed inside the machine body 1, and the electromagnetic valve 4 is connected with the cold-heat exchanger in pipeline, so that the electromagnetic valve 4 discharges the water source converted by cold and heat inside the cold-heat exchanger from the machine body 1.

[0022] The electromagnetic valve 4 and the cold-heat exchanger are provided with a third connecting pipe 10, and the third connecting pipe 10 is vertically located at the top end of the electromagnetic valve 4, one end of the third connecting pipe 10 is connected with the electromagnetic valve 4 in pipeline, and the other end of the third connecting pipe 10 is connected with the cold-heat exchanger in pipeline.

[0023] The other side of the cooling water integrated module 6 is provided with a second connecting pipe 7, and the top end of the second connecting pipe 7 is provided with a first connecting pipe 8, and the first connecting pipe 8 and the second connecting pipe 7 are respectively located inside the machine body 1 and the first connecting pipe 8 is connected with other devices inside the machine body 1 in pipeline, so as to extract and transmit the water source inside the cooling water integrated module 6.

[0024] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application.

Claims

1. A water cooling mechanism of a mold temperature controller, comprising a body, characterized in that, The inside bottom end of the machine body is transversely provided with a high-efficiency magnetic force pump, one side pipeline of the high-efficiency magnetic force pump is provided with a cooling water integrated module, the cooling water integrated module is fixed at the side of the inside bottom end of the machine body, one side pipeline of the cooling water integrated module is provided with a cooling water inlet pipe, the cooling water inlet pipe is transversely located at the side of the outside of the machine body, the pipeline of the cooling water integrated module is provided with a second connecting pipe, the other end pipeline of the second connecting pipe is provided with a first connecting pipe, the other end of the first connecting pipe is connected with the heat exchanger in the machine body, one side of the outside of the machine body is provided with a pure water tank, one side pipeline of the pure water tank is provided with a pure water inlet pipe, the other end of the pure water inlet pipe is connected with the cooling water integrated module.

2. The water source cooling mechanism of a mold temperature controller according to claim 1, wherein The pipeline of the high-efficiency magnetic force pump is provided with a third connecting pipe, the third connecting pipe is located at the side of the high-efficiency magnetic force pump, and the other end of the third connecting pipe is connected with the heat exchanger in the machine body.

3. The water source cooling mechanism of the mold temperature controller according to claim 1, wherein The pipeline of the high-efficiency magnetic force pump is provided with a second connecting pipe, the second connecting pipe is transversely located at the top end of the high-efficiency magnetic force pump, and the other end of the second connecting pipe is connected with the heater in the machine body.

4. The water source cooling mechanism of the mold temperature controller according to claim 1, wherein The other side of the high-efficiency magnetic force pump is provided with a solenoid valve, the solenoid valve is fixed in the machine body, and the solenoid valve is connected with the heat exchanger through a pipeline.

5. The water source cooling mechanism of the mold temperature controller according to claim 4, wherein The solenoid valve and the heat exchanger are provided with a third connecting pipe, the third connecting pipe is vertically located at the top end of the solenoid valve, one end of the third connecting pipe is connected with the solenoid valve through a pipeline, and the other end of the third connecting pipe is connected with the heat exchanger through a pipeline.

6. The water source cooling mechanism of the mold temperature controller according to claim 1, wherein The other side pipeline of the cooling water integrated module is provided with a second connecting pipe, the top end pipeline of the second connecting pipe is provided with a first connecting pipe, and the first connecting pipe and the second connecting pipe are respectively located in the machine body.