Steam condensation and evaporation device

By designing a steam condensation evaporation device including a spiral heat exchange tube and an automatic liquid-adding trigger liquid addition mechanism, the problem of frequent manual monitoring and heat recovery in the prior art evaporation device is solved, efficient evaporation and automated operations are achieved, and resource waste and labor intensity are reduced.

CN222978624UActive Publication Date: 2025-06-13GARDNER SYST SHANGHAI
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Patent Information

Application Number
CN202420864509.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2025-06-13
Estimated Expiration
2034-04-24

AI Technical Summary

Technical Problem

During the existing distilled water production process, the condensation and evaporation device requires workers to frequently monitor the liquid evaporation, which increases the labor intensity of workers and fails to recycle and reuse, resulting in waste of resources.

Method used

A steam condensation and evaporation device is designed, including a liquid evaporation box, a condensate storage box, a condensate box and a liquid storage box. Heat exchange is used to use a spiral heat exchange tube, and automatic operation is achieved through a trigger liquid addition mechanism that automatically adds liquid.

Benefits of technology

It improves evaporation efficiency, reduces workers' labor intensity, realizes the recycling and reuse of heat, and reduces resource waste.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222978624U_ABST
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Abstract

The utility model discloses a steam condensation evaporation device, which comprises a liquid evaporation box, a condensate storage box, a condensation box and a liquid storage box, the liquid evaporation box is internally provided with a heating mechanism, the lower end of the liquid evaporation box is provided with a lifting plate, the side surface of the lifting plate is provided with a trigger liquid adding mechanism, and the side surface of the lifting plate is provided with a plurality of auxiliary mechanisms. When liquid in the liquid storage tank is reduced due to evaporation and the weight of the liquid storage tank is reduced, the sliding block and the guide block are pushed to reset and rise through the first spring and the third spring, so that the lifting plate drives the liquid evaporation tank to rise, and when the guide block is in contact with the upper matching block, the matching block drives the moving block to move and press the trigger switch; the trigger switch on the upper side controls the second pump body and the valve to be opened, liquid adding work is conducted, automatic liquid adding is achieved, time and labor are saved, and labor intensity is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of distillation, and particularly relates to a steam condensation and evaporation device. Background Art

[0002] When a liquid changes from a liquid phase to a gas phase, it absorbs a large amount of heat, and when it changes from a gas phase to a liquid phase, it releases a large amount of heat. In the traditional production process of distilled water, the liquid water is heated above its boiling point to make it into steam, and then the steam is cooled to obtain pure distilled water. In the prior art, the condensation and evaporation device requires workers to often pay attention to the evaporation situation of the liquid to avoid the situation that the device continues to heat after the liquid is evaporated dry, resulting in damage to the condensation and evaporation device. Workers often pay attention to the liquid level and then add liquid, which increases the workload and working intensity of the workers. At the same time, the heat released when the steam of the condensation and evaporation device is cooled into distilled water is not recycled and reused, resulting in the waste of heat and causing resource waste. Therefore, those skilled in the art provide a steam condensation and evaporation device to solve the problems raised in the above background art. Content of the Utility Model

[0003] To solve the above technical problems, the utility model provides a steam condensation and evaporation device, which includes a liquid evaporation tank, a condensate storage tank, a condensation tank and a liquid storage tank. A heating mechanism is installed inside the liquid evaporation tank, a lifting plate is installed at the lower end of the liquid evaporation tank, a trigger liquid adding mechanism is installed on the side of the lifting plate, and a plurality of auxiliary mechanisms are installed on the side of the lifting plate;

[0004] The trigger liquid adding mechanism includes a vertical plate and a fixing rod. A lifting groove is opened at the right end of the vertical plate, the fixing rod is installed inside the lifting groove, a slider is sleeved on the outer surface of the fixing rod, a first spring is sleeved on the outer surface of the fixing rod, and the first spring is located below the slider. Cavities are symmetrically arranged inside the vertical plate, a trigger switch is installed on the left inner wall of the cavity, a moving block is slidably connected inside the cavity, a matching block is installed at one end of the moving block close to the lifting groove, and the matching block passes through the cavity. A plurality of second springs are symmetrically installed at the left end of the moving block, and the second springs are fixedly connected to the cavity;

[0005] The auxiliary mechanism includes a groove rod and a guide rod. The guide rod is installed inside the groove rod, a guide block is sleeved on the outer surface of the guide rod, a third spring is sleeved on the outer surface of the guide rod, and the third spring is located below the guide block. The slider and the guide block are both fixedly connected to the lifting plate;

[0006] Two telescopic hoses are installed at the upper end of the liquid evaporation tank. A condensate storage tank is arranged on the right side of the liquid evaporation tank. A condensation tank is installed at the upper end of the condensate storage tank. A spiral heat exchange tube is arranged inside the condensation tank. One end of the spiral heat exchange tube is communicated with one telescopic hose, and the other end of the spiral heat exchange tube is communicated with the condensate storage tank. A liquid storage tank is arranged on the front side of the condensate storage tank;

[0007] A pump body one is arranged between the condensate storage tank and the liquid storage tank. One end of the pump body one is connected to the liquid storage tank, and the other end of the pump body one is connected to the condensation tank. A connecting pipe is installed between the liquid storage tank and the condensation tank. A pump body two is installed at one end of the liquid storage tank. The pump body two is connected to another telescopic hose, and a valve is installed on the outer surface of the telescopic hose.

[0008] Preferably, the left end face of the slider is an arc surface.

[0009] Preferably, the right end face of the mating block is an arc surface.

[0010] Preferably, a bottom plate is installed at the lower ends of the vertical plate and the groove rod.

[0011] Preferably, both the valve and the pump body two are electrically connected to the trigger switch.

[0012] The technical effects and advantages of the present utility model:

[0013] 1. In the present utility model, the liquid inside the liquid evaporation tank is heated and evaporated by the heating mechanism. The steam enters the spiral heat exchange tube and exchanges heat with the liquid inside the spiral heat exchange tube and the condensation tank, so that the steam is condensed into liquid and discharged into the condensate storage tank. At the same time, the liquid inside the condensation tank exchanges heat and then the temperature rises and flows back to the liquid storage tank, so that the temperature of the liquid inside the liquid storage tank rises, and the liquid is preheated, thereby improving the evaporation efficiency.

[0014] 2. When the liquid in the liquid storage tank becomes less due to evaporation, the weight of the liquid storage tank decreases. The slider and the guide block are pushed by the first spring and the third spring to reset and rise, so that the lifting plate drives the liquid evaporation tank to rise. When the guide block contacts the upper mating block, the mating block drives the moving block to move and press the trigger switch. The upper trigger switch controls the pump body two and the valve to open for liquid addition work, realizing automatic liquid addition, saving time and effort, and reducing labor intensity. Description of the Drawings

[0015] Figure 1 is the structural schematic diagram of the present application;

[0016] Figure 2 is the structural schematic diagram of the trigger liquid addition mechanism of the present application;

[0017] Figure 3 is the structural schematic diagram of the auxiliary mechanism of the present application;

[0018] Figure 4 is the structural schematic diagram of the condensation tank of the present application;

[0019] In the figure: 1. Liquid evaporation tank; 2. Lifting plate; 3. Trigger liquid adding mechanism; 4. Vertical plate; 5. Lifting groove; 6. Fixed rod; 7. Slide block; 8. First spring; 9. Cavity; 10. Trigger switch; 11. Moving block; 12. Matching block; 13. Second spring; 14. Auxiliary mechanism; 15. Grooved rod; 16. Guide rod; 17. Guide block; 18. Third spring; 19. Telescopic hose; 20. Valve; 21. Condensate storage tank; 22. Condensation tank; 23. Spiral heat exchange tube; 24. Liquid storage tank; 25. First pump body; 26. Connecting pipe; 27. Second pump body. Detailed implementation manners

[0020] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific implementation manners. The embodiments of the present utility model are given for the purpose of illustration and description, and are not exhaustive or limit the present utility model to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present utility model, and enable those of ordinary skill in the art to understand the present utility model and thus design various embodiments with various modifications suitable for specific purposes.

[0021] Please refer to Figures 1 to 4 , in this embodiment, a steam condensation and evaporation device is provided, including a liquid evaporation tank 1, a condensate storage tank 21, a condensation tank 22 and a liquid storage tank 24. A heating mechanism is installed inside the liquid evaporation tank 1. A lifting plate 2 is installed at the lower end of the liquid evaporation tank 1. A trigger liquid adding mechanism 3 is installed on the side of the lifting plate 2. A plurality of auxiliary mechanisms 14 are installed on the side of the lifting plate 2. The trigger liquid adding mechanism 3 includes a vertical plate 4 and a fixed rod 6. A lifting groove 5 is opened at the right end of the vertical plate 4. The fixed rod 6 is installed inside the lifting groove 5. A slide block 7 is sleeved on the outer surface of the fixed rod 6, and the left end face of the slide block 7 is an arc surface. A first spring 8 is sleeved on the outer surface of the fixed rod 6, and the first spring 8 is located below the slide block 7. Cavities 9 are symmetrically arranged inside the vertical plate 4. A trigger switch 10 is installed on the left inner wall of the cavity 9. A moving block 11 is slidably connected inside the cavity 9. A matching block 12 is installed at one end of the moving block 11 close to the lifting groove 5, and the matching block 12 passes through the cavity 9. The right end face of the matching block 12 is an arc surface. A plurality of second springs 13 are symmetrically installed at the left end of the moving block 11, and the second springs 13 are fixedly connected to the cavity 9. The auxiliary mechanism 14 includes a grooved rod 15 and a guide rod 16. The guide rod 16 is installed inside the grooved rod 15. A guide block 17 is sleeved on the outer surface of the guide rod 16. A third spring 18 is sleeved on the outer surface of the guide rod 16, and the third spring 18 is located below the guide block 17. A bottom plate is installed at the lower ends of the vertical plate 4 and the grooved rod 15. Both the slide block 7 and the guide block 17 are fixedly connected to the lifting plate 2;

[0022] Two telescopic hoses 19 are installed at the upper end of the liquid evaporation tank 1. A condensate storage tank 21 is arranged on the right side of the liquid evaporation tank 1. A condensation tank 22 is installed at the upper end of the condensate storage tank 21. A spiral heat exchange tube 23 is arranged inside the condensation tank 22. One end of the spiral heat exchange tube 23 is connected to one telescopic hose 19, and the other end of the spiral heat exchange tube 23 is connected to the condensate storage tank 21. A liquid storage tank 24 is arranged on the front side of the condensate storage tank 21. A first pump 25 is arranged between the condensate storage tank 21 and the liquid storage tank 24. One end of the first pump 25 is connected to the liquid storage tank 24, and the other end of the first pump 25 is connected to the condensation tank 22. A connecting pipe 26 is installed between the liquid storage tank 24 and the condensation tank 22. A second pump 27 is installed at one end of the liquid storage tank 24. The second pump 27 is connected to the other telescopic hose 19, and a valve 20 is installed on the outer surface of the telescopic hose 19. Both the valve 20 and the second pump 27 are electrically connected to the trigger switch 10.

[0023] The working principle of the present utility model is as follows: The liquid in the liquid storage tank 24 is transported into the liquid evaporation tank 1 through the second pump 27. The increase in the liquid in the liquid evaporation tank 1 causes its weight to increase, and the liquid evaporation tank 1 drives the lifting plate 2 to descend. The lifting plate 2 drives the slider 7 and the guiding block 17 to descend, respectively compressing the first spring 8 and the third spring 18. When the slider 17 descends to squeeze the lower mating block 12, the mating block 12 drives the moving block 11 to move and compress the second spring 13. The moving block 11 presses the trigger switch 10, and the lower trigger switch 10 controls the second pump 27 and the valve 20 to close, stopping the liquid addition work.

[0024] The liquid in the liquid storage tank 24 is transported into the condensation tank 22 through the first pump 25. Then, the liquid flows back into the liquid storage tank 24 through the connecting pipe 26, filling the condensation tank 22 with liquid. At the same time, the liquid circulates.

[0025] The liquid inside the liquid evaporation tank 1 is heated and evaporated by the heating mechanism. The steam enters the spiral heat exchange tube 23 and exchanges heat with the liquid inside the spiral heat exchange tube 23 and the condensation tank 22, causing the steam to condense into liquid and drain into the condensate storage tank 21. At the same time, the liquid inside the condensation tank 22 has its temperature increased after heat exchange and flows back into the liquid storage tank 24, increasing the temperature of the liquid inside the liquid storage tank 24 and preheating the liquid, thereby improving the evaporation efficiency.

[0026] When the liquid in the liquid storage tank 24 becomes less due to evaporation, the weight of the liquid storage tank 24 decreases. The slider 7 and the guide block 17 are pushed by the first spring 8 and the third spring 18 to reset and rise, causing the lifting plate 2 to drive the liquid evaporation tank 1 to rise. When the guide block 7 contacts the upper mating block 12, the mating block 12 drives the moving block 11 to move and compress the second spring 13. The moving block 11 presses the trigger switch 10, and the upper trigger switch 10 controls the pump body two 27 and the valve 20 to open for liquid addition work, realizing automatic liquid addition, saving time and effort, and reducing labor intensity.

[0027] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the protection scope of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention, unless otherwise specified and limited, are implemented according to the conventional means in the art.

Claims

1. A steam condensation and evaporation device, characterized in that: It comprises a liquid evaporation box (1), a condensate storage box (21), a condensation box (22) and a liquid storage box (24); a heating mechanism is installed inside the liquid evaporation box (1); a lifting plate (2) is installed at the lower end of the liquid evaporation box (1); a trigger liquid adding mechanism (3) is installed on the side of the lifting plate (2); and a plurality of auxiliary mechanisms (14) are installed on the side of the lifting plate (2); The trigger liquid adding mechanism (3) comprises a vertical plate (4) and a fixed rod (6). A lifting groove (5) is provided at the right end of the vertical plate (4). The fixed rod (6) is installed inside the lifting groove (5). A sliding block (7) is sleeved on the outer surface of the fixed rod (6). A spring 1 (8) is sleeved on the outer surface of the fixed rod (6), and the spring 1 (8) is located below the sliding block (7). A cavity (9) is symmetrically arranged inside the vertical plate (4). A trigger switch (10) is installed on the left wall of the cavity (9). A moving block (11) is slidably connected inside the cavity (9). A matching block (12) is installed at one end of the moving block (11) close to the lifting groove (5), and the matching block (12) passes through the cavity (9). A plurality of springs 2 (13) are symmetrically installed at the left end of the moving block (11), and the springs 2 (13) are fixedly connected to the cavity (9). The auxiliary mechanism (14) comprises a groove rod (15) and a guide rod (16), the guide rod (16) is installed inside the groove rod (15), a guide block (17) is sleeved on the outer surface of the guide rod (16), a spring three (18) is sleeved on the outer surface of the guide rod (16), and the spring three (18) is located below the guide block (17), and the slider (7) and the guide block (17) are both fixedly connected to the lifting plate (2); Two telescopic hoses (19) are installed at the upper end of the liquid evaporation box (1); a condensate storage box (21) is arranged on the right side of the liquid evaporation box (1); a condensate storage box (22) is installed at the upper end of the condensate storage box (21); a spiral heat exchange tube (23) is arranged inside the condensate storage box (22); one end of the spiral heat exchange tube (23) is connected to a telescopic hose (19); the other end of the spiral heat exchange tube (23) is connected to the condensate storage box (21); and a liquid storage box (24) is arranged at the front side of the condensate storage box (21); A pump body (25) is arranged between the condensate storage tank (21) and the liquid storage tank (24), one end of the pump body (25) is connected to the liquid storage tank (24), and the other end of the pump body (25) is connected to the condensate tank (22). A connecting pipe (26) is installed between the liquid storage tank (24) and the condensate tank (22). A pump body (27) is installed at one end of the liquid storage tank (24), and the pump body (27) is connected to another telescopic hose (19), and a valve (20) is installed on the outer surface of the telescopic hose (19).

2. A steam condensation and evaporation device according to claim 1, characterized in that: The left end surface of the slider (7) is a curved surface.

3. A steam condensation and evaporation device according to claim 1, characterized in that: The right end surface of the matching block (12) is a curved surface.

4. A steam condensation and evaporation device according to claim 1, characterized in that: The bottom plate is mounted on the lower ends of the vertical plate (4) and the groove rod (15).

5. The steam condensation and evaporation device according to claim 1, characterized in that: The valve (20) and the second pump body (27) are both electrically connected to the trigger switch (10).