Mold base capable of improving cooling effect

By introducing a cooling mechanism into the mold base and utilizing the pressure and temperature changes of the refrigerant, the problem of long mold base cooling time is solved, an efficient cooling effect is achieved, and the processing efficiency of injection molded products is improved.

CN223456428UActive Publication Date: 2025-10-21惠州市焱胜金属制品有限公司
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Patent Information

Application Number
CN202422750729.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-10-21
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

When the existing mold base is used, the cooling time after the raw material liquid is heated and melted is long, resulting in low processing efficiency of the injection molded product.

Method used

The cooling mechanism, including a compressor, condenser, throttle valve, evaporator and cooling pipe, is used to achieve efficient cooling through the pressure and temperature changes of the refrigerant, and use low-temperature and low-pressure steam to take away the heat inside the mold base.

Benefits of technology

The cooling time of the mold base is significantly shortened, and the processing efficiency of the injection molded products is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of die blanks, and particularly relates to a die blank capable of improving cooling efficacy, which comprises a die blank base, a lower die holder, a lower die core and an upper die holder, the lower die holder is mounted on the upper surface of the die blank base, the lower die core is mounted on the upper surface of the lower die holder in an embedded manner, and the upper die holder is mounted on the upper surface of the lower die holder. A cooling mechanism is arranged between the mold base and the lower mold base and comprises a compressor, a first connecting pipe, a condenser, a second connecting pipe, a throttling valve, an evaporator, a third connecting pipe, a cooling pipe and an air outlet. According to the air conditioner, low-temperature and low-pressure refrigerant gas is changed into high-temperature and high-pressure refrigerant gas through the compressor, then the high-temperature and high-pressure refrigerant gas can be changed into high-temperature and high-pressure liquid refrigerant after entering the condenser, the liquid refrigerant is changed into low-temperature and low-pressure refrigerant when passing through the throttling valve, and the low-temperature and low-pressure refrigerant is evaporated into low-temperature and low-pressure steam in the evaporator; and low-temperature and low-pressure steam enters the cooling pipe and then is discharged through the air outlet, so that heat in the mold base can be taken away.
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Description

Technical Field

[0001] The utility model belongs to the technical field of mold bases, and in particular relates to a mold base capable of improving cooling efficiency. Background Art

[0002] A mold base, also known as a mold frame, is a semi-finished product of the mold, serving as the skeleton of the entire mold. It primarily consists of various steel plates assembled with various components. Its basic components include a forming mechanism, a positioning mechanism, and an ejection mechanism. Mold bases can be manufactured in standard or non-standard sizes. Standard mold bases have established standards for length, width, height, and the dimensions of their individual components, and these dimensions cannot be altered at will. The mold base secures the forming core, ensures proper alignment, and fully completes the mold parting process. Furthermore, the mold base is the initial component in mold manufacturing, manufactured from raw materials through casting, forging, extrusion, or machining. Existing mold bases are a mature technology.

[0003] For example, the public number is:

[0004] When using the existing mold base, the melted raw material liquid is injected between the mold cores, and the product can be taken out after the raw material liquid cools down, so that the production of the injection molded product can be completed. Since the raw material liquid is melted by heating, the waiting time for the injection molded product to cool down is long, resulting in low efficiency in the injection molded product processing. Utility Model Content

[0005] The purpose of the present invention is to provide a mold base that can improve the cooling effect, aiming to solve the problem in the prior art that since the raw material liquid is melted by heating, it takes a long time to wait for the injection molded product to cool down, resulting in low efficiency in the injection molded product processing.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a mold base that can improve the cooling effect, including a mold base base, a lower mold base, a lower mold core and an upper mold base, the upper surface of the mold base base is installed with the lower mold base, the upper surface of the lower mold base is embedded with the lower mold core, the upper surface of the lower mold base is installed with the upper mold base, and a cooling mechanism is arranged between the mold base and the lower mold base.

[0007] In order to realize long-distance transportation of electrolyte replenishing liquid, a mold base that can improve cooling efficiency is preferably used in the present invention. The cooling mechanism includes a compressor, a first connecting pipe, a condenser, a second connecting pipe, a throttle valve, an evaporator, a third connecting pipe, a cooling pipe and an air outlet. The compressor is installed on the upper surface of the mold base.

[0008] In order to prepare high temperature and high pressure refrigerant gas, as the utility model discloses a can promote the cooling effect's mould body preferably, the output of compressor is connected with first connecting pipe, the end of first connecting pipe is connected in the input of condenser, the condenser is installed on the upper surface of mould body base.

[0009] In order to prepare high temperature and high pressure liquid refrigerant, as the utility model discloses a can promote the cooling effect's mould body preferably, the output of condenser is connected with second connecting pipe, the middle part of second connecting pipe is installed with throttling valve.

[0010] In order to prepare low temperature and low pressure refrigerant, as the utility model discloses a can promote the cooling effect's mould body preferably, the end of second connecting pipe is connected in the input of evaporator, the evaporator is installed on the upper surface of condenser.

[0011] In order to facilitate cooling, as the utility model discloses a can promote the cooling effect's mould body preferably, the output of condenser is connected with third connecting pipe, the end of third connecting pipe is connected with cooling pipe, and the surface of cooling pipe is provided with air outlet.

[0012] As the utility model discloses a can promote the cooling effect's mould body preferably, the third connecting pipe, cooling pipe and air outlet constitute a communication structure.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] The utility model discloses a can promote the cooling effect's mould body, when using the mould body, the compressor can inhale low temperature and low pressure refrigerant gas and change it into high temperature and high pressure refrigerant gas by increasing its temperature and pressure, then the refrigerant gas can enter the condenser through first connecting pipe and become high temperature and high pressure liquid refrigerant by releasing heat to cooling water or air, the liquid refrigerant further reduces its pressure and temperature and becomes low temperature and low pressure refrigerant when passing through throttling valve, the low temperature and low pressure refrigerant absorbs the heat in frozen water after entering the evaporator, thereby evaporating into low temperature and low pressure steam, the low temperature and low pressure steam enters the inside of cooling pipe and is discharged through air outlet, the discharged low temperature and low pressure steam can enter the gap of mould body and take away the heat in the inside of mould body, thereby improving the cooling effect of mould body. BRIEF DESCRIPTION OF DRAWINGS

[0015] The drawings are used to provide further understanding of the utility model and constitute part of the specification, and are used together with the embodiments of the utility model to explain the utility model, and do not constitute the limitation on the utility model.

[0016] Figure 1 It is the main body structure schematic view of the utility model;

[0017] Figure 2 It is the first partial structure schematic view of the utility model;

[0018] Figure 3 It is the second partial structure schematic view of the utility model;

[0019] Figure 4 It is the cooling mechanism schematic view of the utility model;

[0020] Figure 5 It is the cooling pipe structure schematic view of the utility model.

[0021] In the drawing: 1, die blank base; 2, lower die seat; 3, lower die core; 4, upper die seat; 5, compressor; 6, first connecting pipe; 7, condenser; 8, second connecting pipe; 9, throttle valve; 10, evaporator; 11, third connecting pipe; 12, third connecting pipe; 13, air outlet. Specific implementation

[0022] The technical scheme 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, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the scope of protection of the utility model.

[0023] Please refer to Figures 1-5 The utility model provides the following technical scheme: a die blank capable of improving cooling efficiency, comprising a die blank base 1, a lower die seat 2, a lower die core 3 and an upper die seat 4, the upper surface of the die blank base 1 is provided with the lower die seat 2, the upper surface of the lower die seat 2 is provided with the lower die core 3, the upper surface of the lower die seat 2 is provided with the upper die seat 4, and the die blank base 1 and the lower die seat 2 are provided with a cooling mechanism.

[0024] Preferably, the cooling mechanism comprises a compressor 5, a first connecting pipe 6, a condenser 7, a second connecting pipe 8, a throttle valve 9, an evaporator 10, a third connecting pipe 11, a cooling pipe 12 and an air outlet 13, and the compressor 5 is installed on the upper surface of the die blank base 1.

[0025] In specific use, the compressor 5 can suck in low-temperature and low-pressure refrigerant gas, and then change it into high-temperature and high-pressure refrigerant gas by increasing its temperature and pressure.

[0026] Preferably, the output end of the compressor 5 is connected with the first connecting pipe 6, the end of the first connecting pipe 6 is connected with the input end of the condenser 7, and the condenser 7 is installed on the upper surface of the die blank base 1.

[0027] In specific use, the refrigerant gas can release heat to cooling water or air inside the condenser 7 and become high-temperature and high-pressure liquid refrigerant.

[0028] Preferably, the output end of the condenser 7 is connected with a second connecting pipe 8, and a throttling valve 9 is arranged in the middle of the second connecting pipe 8.

[0029] In use, the pressure and temperature of the liquid refrigerant are further reduced when passing through the throttling valve 9, and the liquid refrigerant becomes low-temperature and low-pressure refrigerant.

[0030] Preferably, the end of the second connecting pipe 8 is connected with the input end of an evaporator 10, and the evaporator 10 is arranged on the upper surface of the condenser 7.

[0031] In use, the pressure and temperature of the liquid refrigerant are further reduced when passing through the throttling valve 9, and the liquid refrigerant becomes low-temperature and low-pressure refrigerant.

[0032] Preferably, the output end of the condenser 7 is connected with a third connecting pipe 11, and the end of the third connecting pipe 11 is connected with a cooling pipe 12, and the surface of the cooling pipe 12 is provided with an air outlet 13.

[0033] In use, the low-temperature and low-pressure steam can enter the inside of the cooling pipe 12 through the third connecting pipe 11, and then the low-temperature and low-pressure steam can be discharged through the air outlet 13.

[0034] Preferably, the third connecting pipe 11, the cooling pipe 12 and the air outlet 13 form a communication structure.

[0035] In use, the low-temperature and low-pressure steam can be discharged through the air outlet 13, and the discharged low-temperature and low-pressure steam can enter the gap of the mold core, and the low-temperature and low-pressure steam can take away the heat inside the mold core during flowing.

[0036] Working principle: when using the mold core capable of improving cooling effect, first, the liquefied raw material liquid is injected into the lower mold core 3, and then the compressor 5 can be operated, the compressor 5 can suck the low-temperature and low-pressure refrigerant gas, and then the low-temperature and low-pressure refrigerant gas becomes high-temperature and high-pressure refrigerant gas by increasing its temperature and pressure, and then the refrigerant gas can enter the condenser 7 through the first connecting pipe 6, and the refrigerant gas can release heat to the cooling water or air in the condenser 7, and becomes high-temperature and high-pressure liquid, and the pressure and temperature of the liquid refrigerant are further reduced when passing through the throttling valve 9, and the liquid refrigerant becomes low-temperature and low-pressure refrigerant, and then the low-temperature and low-pressure refrigerant can enter the evaporator 10 through the second connecting pipe 8, and the low-temperature and low-pressure refrigerant absorbs the heat in the chilled water in the evaporator 10, and thus evaporates into low-temperature and low-pressure steam, which can reduce the temperature of the chilled water, and achieve refrigeration effect, and the low-temperature and low-pressure steam can enter the inside of the cooling pipe 12 through the third connecting pipe 11, and then the low-temperature and low-pressure steam can be discharged through the air outlet 13, and the discharged low-temperature and low-pressure steam can enter the gap of the mold core, and the low-temperature and low-pressure steam can take away the heat inside the mold core during flowing.

[0037] It should be pointed out finally that: the above is only the preferred embodiments of the present application and is not intended to limit the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for some of the technical features. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A mold base capable of improving cooling efficiency, comprising a mold base base (1), a lower mold base (2), a lower mold core (3) and an upper mold base (4), characterized in that: The upper surface of the blank base (1) is provided with a lower die base (2), the upper surface of the lower die base (2) is provided with a lower die core (3), the upper surface of the lower die base (2) is provided with an upper die base (4), and a cooling mechanism is arranged between the blank base (1) and the lower die base (2).

2. The blank of claim 1, wherein: The cooling mechanism comprises a compressor (5), a first connecting pipe (6), a condenser (7), a second connecting pipe (8), a throttle valve (9), an evaporator (10), a third connecting pipe (11), a cooling pipe (12) and an air outlet (13), and the compressor (5) is arranged on the upper surface of the blank base (1).

3. The blank of claim 2, wherein: The output end of the compressor (5) is connected with the first connecting pipe (6), the end of the first connecting pipe (6) is connected with the input end of the condenser (7), and the condenser (7) is arranged on the upper surface of the blank base (1).

4. The blank of claim 3, wherein: The output end of the condenser (7) is connected with the second connecting pipe (8), and the throttle valve (9) is arranged on the middle of the second connecting pipe (8).

5. The blank of claim 4, wherein: The end of the second connecting pipe (8) is connected with the input end of the evaporator (10), and the evaporator (10) is arranged on the upper surface of the condenser (7).

6. The blank of claim 5, wherein: The output end of the condenser (7) is connected with the third connecting pipe (11), the end of the third connecting pipe (11) is connected with the cooling pipe (12), and the surface of the cooling pipe (12) is provided with the air outlet (13).

7. The blank of claim 6, wherein: The third connecting pipe (11), the cooling pipe (12) and the air outlet (13) are connected in communication.