Extreme weather protection device for evaporation curtain cloth

By setting up a storage room and a pushing device inside the evaporation chamber, and using a push-pull trolley to automatically store the curtain unit, the problem of protecting the evaporation curtain under extreme weather conditions is solved, achieving efficient and automated collection and reducing labor intensity.

CN224125686UActive Publication Date: 2026-04-17FUZHOU ECONOMIC & TECHNOLOGICAL DEVELOPMENT ZONE ZISHENG TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUZHOU ECONOMIC & TECHNOLOGICAL DEVELOPMENT ZONE ZISHENG TECHNOLOGY CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing evaporation equipment requires manual removal of the evaporation curtain in extreme weather conditions, which is inefficient and labor-intensive.

Method used

A storage room and a pushing device are set up inside the evaporation chamber. The curtain unit is automatically collected by a push-pull trolley, and the curtain unit is pushed into the storage room by electric or manual opening and closing of the door, so as to achieve automatic collection.

Benefits of technology

It improves the protection efficiency of evaporation curtains under extreme weather conditions, reduces labor intensity, and increases the degree of automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to evaporation equipment, in particular to an extreme weather protection device for evaporation curtain cloth. Comprising an evaporation room and a curtain cloth mechanism arranged in the evaporation room, the curtain cloth mechanism comprises a curtain cloth rack fixedly arranged in the evaporation room and one or more sets of curtain cloth units installed on the curtain cloth rack at intervals in the left-right direction and used for installing an evaporation curtain, and a curtain cloth sliding rail extending in the left-right direction is arranged on the curtain cloth rack; the curtain cloth units are connected to the curtain cloth sliding rails in a sliding mode, storage chambers used for storing the curtain cloth units are arranged at the left end and the right end in the evaporation room respectively, the storage chambers are provided with opening and closing doors capable of being opened and closed, and the curtain cloth sliding rails extend into the storage chamber doors. The curtain cloth sliding rail is further provided with a pushing device used for pushing the curtain cloth units into the storage chamber along the curtain cloth sliding rail. According to the extreme weather protection device for the evaporation curtain cloth, the evaporation curtain can be automatically collected, and the evaporation curtain is prevented from being damaged by extreme weather.
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Description

Technical Field

[0001] This application relates to evaporation equipment, and more particularly to an extreme weather protection device for an evaporation curtain. Background Technology

[0002] The descriptions in this section provide background information related to this disclosure only and do not constitute prior art. Evaporation equipment concentrates salts by increasing the contact area between water and air. Evaporation equipment in related technologies typically uses evaporation curtains directly exposed to the natural environment. In severe weather conditions such as typhoons, heavy rain, or hail, the evaporation curtains need to be manually removed and stored. This is inefficient and labor-intensive. Summary of the Invention

[0003] In view of this, this application provides an extreme weather protection device for evaporation curtains, which can automatically collect the evaporation curtains to prevent extreme weather from damaging them.

[0004] To achieve the above objectives, this application employs the following technical solution:

[0005] An extreme weather protection device for evaporation curtains is characterized by comprising an evaporation chamber and a curtain mechanism disposed within the evaporation chamber. The curtain mechanism includes a curtain frame fixedly disposed within the evaporation chamber and a group of one or more curtain units spaced apart along the left-right direction on the curtain frame for installing the evaporation curtain. The curtain frame is provided with curtain rails extending along the left-right direction. The curtain units are slidably connected to the curtain rails. Storage chambers for storing the curtain units are respectively provided at the left and right ends of the evaporation chamber. Each storage chamber is equipped with an openable and closable door. The curtain rails extend into the storage chamber doors. A pushing device is also provided on the curtain rails for pushing the curtain units into the storage chambers. The doors can be electrically or manually operated.

[0006] The above-described extreme weather protection device for evaporation curtain fabric, as described in this application, involves setting up a storage chamber within the evaporation room. A pushing device can push the curtain unit, which is slidably connected to the curtain rail, into the storage chamber. Finally, the door is closed, thus collecting the evaporation curtain and preventing damage from extreme weather. Compared to manual collection, this protection method is more efficient and reduces labor intensity.

[0007] In some embodiments, the pushing device includes two push-pull trolleys disposed in the middle of the curtain slide rail. The curtain units are in multiple sets and divided into left and right parts. Each curtain unit in the left part is connected together by a first connecting rope and connected to one of the push-pull trolleys. Each curtain unit in the right part is also connected together by another set of first connecting ropes and connected to the other push-pull trolley. The wheels of the push-pull trolleys rotate clockwise to push the curtain unit on the corresponding side into the corresponding storage chamber. The wheels of the push-pull trolleys rotate counterclockwise to pull the curtain unit on the corresponding side out of the storage chamber.

[0008] When the curtain units need to be moved into the storage chamber, the push-pull trolley rotates forward, moving each curtain unit until they are all in the storage chamber. When the curtain units need to be unfolded, the push-pull trolley reverses. Since the curtain units are interconnected by a first connecting rope, the push-pull trolley can pull each curtain unit back to its original position. This push-pull trolley system enables automatic storage and unfolding of the curtain units, which is more efficient than manual storage.

[0009] In some embodiments, the curtain unit includes two parallel connecting rods spaced apart laterally and two or more parallel connecting ropes spaced apart front-to-back and connected between the two connecting rods. Each connecting rod has a slider at both ends, which is slidably connected to a curtain track. Multiple evaporator curtains are connected in series on the second connecting ropes. The sliders can only slide on the curtain track; their freedom in other directions is restricted, and they must not detach upwards.

[0010] In some embodiments, the push-pull trolley includes a main body, two or more shafts rotatably connected to the main body, wheels fixedly disposed at both ends of the shafts, and a drive mechanism for driving one of the shafts to rotate. This drive mechanism is driven by a motor and drives the shaft to rotate through a transmission mechanism, which can be a synchronous belt mechanism, a sprocket mechanism, etc.

[0011] In some implementations, the extreme weather protection device further includes a control module and one or more sensors connected to the control module for detecting external weather conditions. The control module is also connected to a push device, and controls the push device to operate based on data collected by the sensors. Employing intelligent control can further enhance the user experience.

[0012] As can be seen from the above technical solution, this application has at least the following advantages and positive effects:

[0013] This application discloses an extreme weather protection device for evaporation curtains. By setting up a storage chamber inside the evaporation chamber, a pushing device can push the curtain units, which are slidably connected to the curtain rails, into the storage chamber. Finally, the door is closed, thus collecting the evaporation curtains and preventing damage from extreme weather. Compared to manual collection, this protection method is more efficient and reduces labor intensity. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the curtain mechanism in the embodiments of this application. Figure 1 ;

[0015] Figure 2 This is a schematic diagram of the evaporation chamber in an embodiment of this application;

[0016] Figure 3 This is a schematic diagram of the curtain mechanism in the embodiments of this application. Figure 2 ;

[0017] Figure 4 This is a partial structural diagram of the curtain mechanism in the implementation of this application;

[0018] Figure 5 This is a schematic diagram of the structure of the curtain unit in this application.

[0019] Figure 6 This is a schematic diagram of the push-pull trolley used in the implementation of this application.

[0020] Labeling Explanation: 1. Evaporation Chamber; 15. Storage Chamber; 2. Curtain Mechanism; 21. Curtain Frame; 22. Curtain Unit; 221. Connecting Rod; 222. Second Connecting Rope; 223. Slider; 23. Curtain Rail; 24. First Connecting Rope; 5. Evaporation Curtain; 7. Push-Pull Trolley; 71. Main Body; 72. Rotating Shaft; 73. Wheel; 74. Drive Mechanism. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of this application clearer, the application will be described in further detail below with reference to the accompanying drawings. The terminology used in the embodiments section of this application is only for explaining specific embodiments and is not intended to limit the application.

[0022] See Figures 1 to 6An extreme weather protection device for evaporation curtain fabric includes an evaporation chamber 1 and a curtain mechanism 2 disposed within the evaporation chamber 1. The curtain mechanism 2 includes a curtain frame 21 fixedly disposed within the evaporation chamber 1 and a group of one or more curtain units 22 spaced apart along the left-right direction on the curtain frame 21 for installing evaporation curtains 5. A curtain slide rail 23 extending along the left-right direction is provided on the curtain frame 21, and the curtain units 22 are slidably connected to the curtain slide rail 23. Storage chambers 15 for storing the curtain units 22 are respectively provided at the left and right ends of the evaporation chamber 1. The storage chambers 15 are provided with openable and closable doors, and the curtain slide rail 23 extends into the storage chamber doors 15. A pushing device is also provided on the curtain slide rail 23 for pushing the curtain units 22 into the storage chambers 15 along the curtain slide rail 23. The doors can be electric or manual.

[0023] This extreme weather protection device, by setting up a storage chamber inside the evaporation chamber, uses a pushing device to push the curtain unit 22, which is slidably connected to the curtain rail 23, into the storage chamber 15. Finally, the door is closed, thus collecting the evaporation curtain and preventing damage from extreme weather. Compared to manual collection, this protection method is more efficient and reduces labor intensity.

[0024] The pushing device includes two push-pull trolleys 7 located in the middle of the curtain slide rail 23. The curtain units 22 are in multiple sets and divided into left and right parts. The curtain units 22 in the left part are connected together by a first connecting rope 24 and connected to one of the push-pull trolleys 7. The curtain units 22 in the right part are also connected together by another set of first connecting ropes 24 and connected to the other push-pull trolley 7. The wheels of the push-pull trolley 7 rotate clockwise to push the curtain unit 22 on the corresponding side into the corresponding storage chamber 15. The wheels of the push-pull trolley 7 rotate counterclockwise to pull the curtain unit 22 on the corresponding side out of the storage chamber 15.

[0025] When the curtain units need to be moved into the storage chamber, the push-pull trolley rotates forward, moving each curtain unit until they are all in the storage chamber. When the curtain units need to be unfolded, the push-pull trolley reverses. Since the curtain units are interconnected by a first connecting rope, the push-pull trolley can pull each curtain unit back to its original position. This push-pull trolley system enables automatic storage and unfolding of the curtain units, which is more efficient than manual storage.

[0026] The curtain unit 22 includes two parallel connecting rods 221 spaced horizontally and two or more parallel connecting ropes 222 spaced front-to-back and connected between the two connecting rods 221. Each end of the connecting rod 221 has a slider 223, which is slidably connected to the curtain track 23. Multiple evaporator curtains 5 are connected in series on the second connecting ropes 222. The slider 223 can only slide on the curtain track 23; its freedom in other directions is restricted, and it must not detach upwards.

[0027] The push-pull trolley 7 includes a main body 71, two or more rotating shafts 72 rotatably connected to the main body 71, wheels 73 fixedly mounted at both ends of the rotating shafts 72, and a drive mechanism 74 for driving one of the rotating shafts 72 to rotate. This drive mechanism is driven by a motor and drives the rotating shaft to rotate through a transmission mechanism, which can be a synchronous belt mechanism, a sprocket mechanism, etc.

[0028] This extreme weather protection device also includes a control module and one or more sensors connected to the control module for detecting external weather conditions. The control module is also connected to a push device, and controls the push device's operation based on the data collected by the sensors. The use of intelligent control further enhances the user experience.

[0029] The following is a brief description of the working process and usage method of the extreme weather protection device for an evaporative curtain fabric according to the above embodiments:

[0030] When extreme weather occurs, the push-pull trolley 7 is activated. The push-pull trolley 7 rotates forward and moves along the curtain slide rail 23, pushing the connecting rod 221 of the curtain unit 22 to slide. During the movement, two adjacent curtain units 22 are brought together one after the other. Finally, the push-pull trolley 7 pushes all the curtain units 22 on the corresponding side into the storage room (15) and closes the switch door to close the push-pull trolley 7 together in the storage room.

[0031] When the weather clears up, the door is opened and the push-pull trolley 7 reverses, gradually returning to its original position and pulling the connected curtain units 22 to unfold and reset.

[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of this application, and are not intended to limit them; although the embodiments of this application have been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. An extreme weather protection device for an evaporative curtain, characterized by: The device includes an evaporation chamber and a curtain mechanism installed within the evaporation chamber. The curtain mechanism includes a curtain frame fixedly installed within the evaporation chamber and a group of one or more curtain units spaced apart along the left-right direction on the curtain frame for installing evaporation curtains. The curtain frame is provided with curtain rails extending along the left-right direction. The curtain units are slidably connected to the curtain rails. Storage chambers for storing the curtain units are respectively provided at the left and right ends of the evaporation chamber. The storage chambers are provided with openable and closable doors. The curtain rails extend into the doors of the storage chambers. The curtain rails are also provided with pushing devices that push the curtain units into the storage chambers along the curtain rails.

2. An extreme weather protection device for an evaporative curtain according to claim 1, wherein: The pushing device includes two push-pull trolleys located in the middle of the curtain slide rail. The curtain units are in multiple sets and divided into left and right parts. The curtain units in the left part are connected together by a first connecting rope and connected to one of the push-pull trolleys. The curtain units in the right part are also connected together by another set of first connecting ropes and connected to the other push-pull trolley. The wheels of the push-pull trolleys rotate clockwise to push the curtain units on the corresponding side into the corresponding storage chamber. The wheels of the push-pull trolleys rotate counterclockwise to pull the curtain units on the corresponding side out of the storage chamber.

3. An extreme weather protection device for an evaporative curtain according to any one of claims 1-2, characterized in that: The curtain unit includes two parallel connecting rods spaced apart horizontally and two or more parallel connecting ropes spaced apart front and back and connected between the two connecting rods. Each end of the connecting rod is provided with a slider, which is slidably connected to the curtain slide rail. Multiple evaporator curtains are connected in series on the second connecting ropes.

4. An extreme weather protection device for an evaporative veil according to claim 2, wherein: The push-pull trolley includes a main body, two or more rotating shafts rotatably connected to the main body, wheels fixedly installed at both ends of the rotating shafts, and a drive mechanism for driving one of the rotating shafts to rotate.

5. An extreme weather protection device for an evaporative blanket according to claim 1, wherein: The extreme weather protection device also includes a control module and one or more sensors connected to the control module for detecting the external weather environment. The control module is also connected to a push device, and the control module controls the push device to work based on the data collected by the sensors.