Double-temperature circulation all-in-one machine

By designing a dual-temperature circulation integrated machine containing multiple key components, the problem of difficulty in heating and cooling in traditional temperature control equipment is solved, and the multiple temperature control needs are met and the convenience and efficiency of the equipment is improved.

CN222837235UActive Publication Date: 2025-05-06ANHUI KEMI INSTR CO LTD
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Patent Information

Application Number
CN202421854548.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-06
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

Traditional temperature control equipment is difficult to heat and cool the liquid at the same time, and cannot meet the multiple temperature control needs of people.

Method used

A dual-temperature circulation integrated machine is designed, including a compressor, condenser, solenoid valve, low-temperature tank, high- and low-temperature tank, circulation pump and electric heating elements, to realize the heating or refrigeration function of independent modules, and at the same time provide low-temperature circulation modules.

Benefits of technology

It realizes an independent module that can not only heat or refrigerate, but also provides low-temperature cycles, meets various temperature control needs, and improves the convenience and efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a double-temperature circulation all-in-one machine in the technical field of temperature control equipment, which comprises a compressor, the outer end of the compressor is fixedly connected with a condenser through a pipeline, the side end of the condenser is fixedly connected with a first electromagnetic valve and a second electromagnetic valve through pipelines, and the outer end of the first electromagnetic valve is fixedly connected with a low-temperature tank through a pipeline. A second circulating pump is fixedly connected to the low-temperature tank, the outer end of the second electromagnetic valve is fixedly connected with a high-low-temperature tank through a pipeline, and an electric heating element is fixedly connected into the high-low-temperature tank. The all-in-one machine internally comprises a low-temperature tank, a high-low-temperature tank, a first circulating pump, a second circulating pump, an electric heating element, a compressor and other components, liquid in the low-temperature tank and the high-low-temperature tank can be heated or cooled, and the achieved function is an independent module capable of achieving the heating or refrigerating function (equal to high-low-temperature circulation). And meanwhile, a low-temperature circulating module can be provided, and a worker can conveniently collect products.
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Description

Technical Field

[0001] The utility model relates to a dual-temperature circulation integrated machine, and in particular to a dual-temperature circulation integrated machine applied to the field of temperature control equipment. Background Art

[0002] The temperature control equipment can heat or cool the liquid. The operation steps of the temperature control equipment are simple, and the effect of heating or cooling the liquid is ideal, which brings great convenience to personnel in controlling the liquid temperature.

[0003] Traditional temperature control equipment generally includes high-temperature cycle (heating only), high-low temperature cycle (can heat or cool, and only provides one temperature at a time), and low-temperature cycle (cooling only). It is difficult to meet the needs of personnel to heat and cool the liquid at the same time. Utility Model Content

[0004] In view of the above-mentioned prior art, the technical problem to be solved by the present invention is that traditional temperature control equipment is difficult to meet the needs of personnel for heating and cooling liquids at the same time.

[0005] In order to solve the above problems, the utility model provides a dual-temperature circulation integrated machine, including a compressor, the outer end of the compressor is fixedly connected to a condenser through a pipeline, the side end of the condenser is fixedly connected to solenoid valve 1 and solenoid valve 2 through a pipeline, the outer end of solenoid valve 1 is fixedly connected to a low-temperature tank through a pipeline, a circulating pump 2 is fixedly connected to the low-temperature tank, the outer end of solenoid valve 2 is fixedly connected to a high and low-temperature tank through a pipeline, the interior of the high and low-temperature tank is fixedly connected to an electric heating element, the side end of the high and low-temperature tank is fixedly connected to circulating pump 1, and the outer end of circulating pump 1 is fixedly connected to an expansion tank through a pipeline.

[0006] In the above-mentioned dual-temperature circulation integrated machine, the function realized is that an independent module can perform heating or cooling functions (equivalent to high and low temperature circulation), and at the same time can provide a low-temperature circulation module.

[0007] As a further improvement of the present application, the low-temperature tank and the high-low-temperature tank are fixedly connected by a same pipeline, and one end of the pipeline is fixedly connected to the compressor.

[0008] As another improvement of the present application, an isolation cover is provided on the outer end of the condenser, a pair of electric push rods are fixedly connected to the upper end of the isolation cover, a rain shield seat is fixedly connected to the telescopic end of the electric push rod, and a plurality of movable plates are rotatably connected to the outer end of the isolation cover through a hinge, and heat dissipation holes are opened on the movable plates.

[0009] As another improvement supplement of the present application, a rectangular groove is provided at the upper end of the movable plate, a rectangular plate is slidably inserted inside the rectangular groove, a pair of rectangular blocks are fixedly connected to the side ends of the rectangular plate, a pair of sliding grooves are provided at the side ends of the rectangular plate for sliding connection with the rectangular blocks, and a limiting groove is provided on the inner top wall of the isolation cover for movably connecting with the rectangular plate.

[0010] As another improved supplement of the present application, a pair of inner side walls of the rectangular groove are coated with a magnetic coating 1, and a pair of side ends of the rectangular plate are coated with a magnetic coating 2.

[0011] As another improved supplement of the present application, the rain shield seat is not in contact with the isolation cover, and the slide groove is connected with the rectangular groove.

[0012] In summary, the function realized by the all-in-one machine is that an independent module can perform heating or cooling functions (equivalent to high and low temperature cycles), and at the same time can provide a low-temperature circulation module, and at the same time, it can make the condenser less likely to scald people. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the overall structure of the first and second implementation modes of the present application;

[0014] Figure 2 This is a schematic diagram of the structure of the rain shield seat according to the first embodiment of the present application;

[0015] Figure 3 This is a schematic diagram of the electric push rod structure of the second embodiment of the present application;

[0016] Figure 4 This is a schematic diagram of the isolation cover structure of the second embodiment of the present application;

[0017] Figure 5 This is a schematic diagram of the moving plate structure of the second embodiment of the present application;

[0018] Figure 6 This is a schematic diagram of the rectangular plate moving up according to the second embodiment of the present application.

[0019] Description of the numbers in the figure:

[0020] 1. Compressor; 2. Condenser; 3. Solenoid valve 1; 4. Solenoid valve 2; 5. Low temperature tank; 6. Circulation pump 2; 7. High and low temperature tank; 8. Electric heating element; 9. Expansion tank; 10. Circulation pump 1; 11. Isolation cover; 12. Electric push rod; 13. Rain shield; 14. Moving plate; 15. Heat dissipation hole; 16. Rectangular groove; 17. Rectangular plate; 18. Rectangular block; 19. Slide; 20. Magnetic coating 1; 21. Magnetic coating 2. DETAILED DESCRIPTION

[0021] Two implementation modes of the present application are described in detail below with reference to the accompanying drawings.

[0022] The first implementation method:

[0023] Figure 1 A dual-temperature circulation integrated machine is shown, comprising a compressor 1, the outer end of the compressor 1 is fixedly connected to a condenser 2 through a pipeline, the side end of the condenser 2 is fixedly connected to an electromagnetic valve 3 and an electromagnetic valve 4 through a pipeline, the outer end of the electromagnetic valve 3 is fixedly connected to a low-temperature tank 5 through a pipeline, a circulating pump 2 6 is fixedly connected to the low-temperature tank 5, the outer end of the electromagnetic valve 24 is fixedly connected to a high-low temperature tank 7 through a pipeline, an electric heating element 8 is fixedly connected to the interior of the high-low temperature tank 7, a circulating pump 10 is fixedly connected to the side end of the high-low temperature tank 7, the outer end of the circulating pump 10 is fixedly connected to an expansion tank 9 through a pipeline, the low-temperature tank 5 and the high-low temperature tank 7 are fixedly connected with the same pipeline, and one end of the pipeline is fixedly connected to the compressor 1.

[0024] The integrated machine includes a low temperature tank 5, a high and low temperature tank 7, a circulating pump 10, a circulating pump 2 6, an electric heating element 8, a compressor 1 and other components, which can heat or cool the liquid in the low temperature tank 5 and the high and low temperature tank 7 to make the liquid reach the required temperature, and transport the liquid to the port of the device that needs to be heated or cooled through the circulating pump 10 and the circulating pump 2 6 to achieve heating or cooling of the specific device;

[0025] The function realized by this all-in-one machine is that an independent module can perform heating or cooling functions (equivalent to high and low temperature cycles), and at the same time it can provide a low-temperature circulation module. Because when the reaction equipment is generally heated (the reactants of this type of equipment are mostly liquids), there is usually sampling during the reaction process, precipitation of volatile substances, and collection of liquid vaporization products. At this time, it is necessary to cool down the discharge end, otherwise the discharge is gaseous and difficult to collect. This type of product can meet the needs of such personnel. For personnel, they can buy one less device, which is convenient for on-site management, and can meet multiple needs on one device, which is also more convenient to use.

[0026] The second implementation method:

[0027] Based on the first embodiment, this embodiment adds structures such as an isolation cover 11, a rain shield seat 13 and a moving plate 14, and the rest of the parts are consistent with the first embodiment.

[0028] Figure 2-6The outer end of the condenser 2 is shown to be provided with an isolation cover 11, and a pair of electric push rods 12 are fixedly connected to the upper end of the isolation cover 11. Those skilled in the art can make the best choice of the model of the electric push rod 12, such as ETS-50. A rain shield seat 13 is fixedly connected to the telescopic end of the electric push rod 12. The outer end of the isolation cover 11 is rotatably connected to a plurality of movable plates 14 through a hinge. The movable plates 14 are provided with heat dissipation holes 15. The upper end of the movable plate 14 is provided with a rectangular groove 16. A rectangular plate 17 is slidably inserted in the rectangular groove 16. A pair of rectangular blocks 18 are fixedly connected to the side ends of the rectangular plates 17. A pair of slide grooves 19 slidably inserted with the rectangular blocks 18 are provided at the side ends of the rectangular plates 17. The isolation cover 1 A limiting groove movably plugged with the rectangular plate 17 is opened on the inner top wall of 1, a pair of inner side walls of the rectangular groove 16 are coated with a magnetic coating 1 20, and a pair of side ends of the rectangular plate 17 are coated with a magnetic coating 21. The rectangular block 18 is moved upward to insert the upper end of the rectangular plate 17 into the limiting groove to limit the movable plate 14 and prevent it from rotating in the isolation cover 11. When the upper end of the rectangular plate 17 enters the limiting groove, the magnetic coating 1 20 will be adsorbed together with the magnetic coating 21. The magnetic coating 1 20 and the magnetic coating 21 can improve the stability of the rectangular plate 17 in the limiting groove, the rain shield seat 13 does not contact the isolation cover 11, and the slide groove 19 is connected with the rectangular groove 16.

[0029] Since the condenser 2 is a component of the refrigeration system and a type of heat exchanger, it can convert gas or vapor into liquid, so its surface temperature is relatively high. When in use, the isolation cover 11 is covered on the condenser 2, and the isolation cover 11 is used to isolate personnel from the condenser 2, so that the condenser 2 is not easy to scald personnel, and the movable plate 14 is rotated ninety degrees to the side away from the isolation cover 11 to expose the condenser 2 from the isolation cover 11, so as to facilitate personnel to inspect and operate the condenser 2. In the process of ventilating and dissipating the heat of the condenser 2 using the heat dissipation holes 15, and when encountering rainy weather, the electric push rod 12 is started, so that its telescopic end pushes the rain shield seat 13 downward, and the rain shield seat 13 can reduce the risk of rainwater passing through the heat dissipation holes 15 and contacting the condenser 2.

[0030] In view of current practical needs, the protection scope of the above-mentioned implementation mode adopted by this application is not limited to this. Various changes made within the knowledge scope of technical personnel in this field without departing from the concept of this application still fall within the protection scope of this utility model.

Claims

1. A dual temperature cycle integrated machine, comprising a compressor (1), characterized in that: The outer end of the compressor (1) is fixedly connected to a condenser (2) via a pipeline, the side end of the condenser (2) is fixedly connected to a solenoid valve 1 (3) and a solenoid valve 2 (4) via a pipeline, the outer end of the solenoid valve 1 (3) is fixedly connected to a low-temperature tank (5) via a pipeline, the low-temperature tank (5) is fixedly connected to a circulating pump 2 (6), the outer end of the solenoid valve 2 (4) is fixedly connected to a high-low temperature tank (7) via a pipeline, the interior of the high-low temperature tank (7) is fixedly connected to an electric heating element (8), the side end of the high-low temperature tank (7) is fixedly connected to a circulating pump 1 (10), and the outer end of the circulating pump 1 (10) is fixedly connected to an expansion tank (9) via a pipeline.

2. The dual temperature circulation integrated machine according to claim 1, characterized in that: The low-temperature tank (5) and the high-low-temperature tank (7) are fixedly connected via a same pipeline, and one end of the pipeline is fixedly connected to the compressor (1).

3. The dual temperature circulation integrated machine according to claim 2, characterized in that: The outer end of the condenser (2) is sleeved with an isolation cover (11), the upper end of the isolation cover (11) is fixedly connected to a pair of electric push rods (12), the telescopic ends of the electric push rods (12) are fixedly connected to rain shield seats (13), the outer end of the isolation cover (11) is rotatably connected to a plurality of movable plates (14) via hinges, and the movable plates (14) are provided with heat dissipation holes (15).

4. The dual temperature circulation integrated machine according to claim 3, characterized in that: A rectangular groove (16) is provided at the upper end of the movable plate (14), a rectangular plate (17) is slidably inserted inside the rectangular groove (16), a pair of rectangular blocks (18) are fixedly connected to the side ends of the rectangular plate (17), a pair of sliding grooves (19) slidably inserted with the rectangular blocks (18) are provided at the side ends of the rectangular plate (17), and a limiting groove movably inserted with the rectangular plate (17) is provided on the inner top wall of the isolation cover (11).

5. The dual temperature circulation integrated machine according to claim 4, characterized in that: A pair of inner side walls of the rectangular groove (16) are coated with a first magnetic coating (20), and a pair of side ends of the rectangular plate (17) are coated with a second magnetic coating (21).

6. The dual temperature circulation integrated machine according to claim 5, characterized in that: The rain shield seat (13) is not in contact with the isolation cover (11), and the slide groove (19) is connected with the rectangular groove (16).