Dehumidifying rotating wheel test platform

By designing a dehumidification wheel test platform containing multiple detection processing areas and regeneration areas, the problem that existing equipment cannot test the performance of different positions during the rotation of the dehumidification wheel is solved, and the speed, air volume and regeneration temperature of the dehumidification wheel are optimized, and the dehumidification effect is improved.

CN223209257UActive Publication Date: 2025-08-12FOSHAN LVYU LANTIAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422457804.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-08-12
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

The existing dehumidification rotor test equipment cannot conduct detailed testing of the performance of different positions during rotation, resulting in the inability to optimize parameters such as the speed, air volume and regeneration temperature of the dehumidification rotor to achieve the best dehumidification effect.

Method used

A dehumidification rotor test platform is designed, including a rotatable dehumidification rotor and a partition detection component. The partition detection component is equipped with multiple detection processing areas and regeneration areas. Through the cyclic detection of the detection processing area and regeneration area, the performance of the dehumidification rotor is optimized.

Benefits of technology

The performance detection of the dehumidification wheel at different positions is achieved, the rotation speed, air volume and regeneration temperature can be adjusted, and the treatment effect of the dehumidification wheel is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of dehumidification rotating wheels, and particularly discloses a dehumidification rotating wheel test platform which comprises a rotatable dehumidification rotating wheel, one side, close to an output end, of the dehumidification rotating wheel is communicated with a partition detection assembly, the partition detection assembly comprises a shell, and a plurality of detection processing areas and a regeneration area are arranged in the shell; according to the dehumidifying rotating wheel test platform, the plurality of detection processing areas and the regeneration area are arranged in the partition detection assembly, so that the dehumidifying rotating wheel can circularly pass through the plurality of detection processing areas and the regeneration area in the rotating process; therefore, the dehumidification performance and regeneration performance of the dehumidification rotating wheel at different positions are detected through the multiple detection processing areas and the multiple regeneration areas, so that the rotating speed, the air volume or the regeneration temperature of a product can be adjusted conveniently, and the dehumidification rotating wheel can achieve the optimal processing effect.
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Description

Technical Field

[0001] The utility model relates to the technical field of dehumidification wheels, in particular to a dehumidification wheel testing platform. Background Art

[0002] Most of the rotary dehumidifiers on the market are composed of a low-speed rotating dehumidification wheel, a regeneration heater, a processing fan and a regeneration fan. The working principle is that the dehumidification wheel adsorbs the wet air, removes the adsorbed water through the regeneration area, forming a working cycle, and then repeats the above steps to achieve the purpose of dehumidification.

[0003] It can be seen that the adsorption performance and regeneration performance of the dehumidification wheel have an important impact on the performance of the rotary dehumidifier. However, in existing testing equipment, the treated air is usually input through the dehumidification wheel, and the final air temperature and humidity are tested, but there is no further testing at different positions during the rotation of the dehumidification wheel, which makes it impossible to test the performance of different positions during the rotation of the dehumidification wheel itself.

[0004] The performance of the dehumidifier wheel is affected by factors such as the air volume of the fan, the speed of the dehumidifier wheel, and the regeneration temperature. Utility Model Content

[0005] In order to overcome the defects of the prior art, the utility model provides a dehumidification wheel testing platform to solve the problems in the prior art.

[0006] The technical solution adopted by the utility model to solve its technical problems is: a dehumidification wheel testing platform, including a rotatable dehumidification wheel, a partition detection component is connected to the side of the dehumidification wheel close to the output end, and the partition detection component includes an outer shell, and a plurality of detection and processing areas and a regeneration area are arranged in the outer shell.

[0007] In the above-mentioned dehumidification wheel test platform, there are at least six detection and processing areas, and all of the detection and processing areas are triangular cavities. A plurality of drying air ducts corresponding to the detection and processing areas are provided on the side of the shell away from the dehumidification wheel. A drying air box is provided in communication with the plurality of drying air ducts, and a first temperature and humidity detection probe is installed in the drying air box.

[0008] In the above-mentioned dehumidification wheel testing platform, a second temperature and humidity detection probe is provided in each of the plurality of detection and processing areas.

[0009] In the above-mentioned dehumidification wheel testing platform, the dehumidification wheel is installed in the wheel bracket through a rotating shaft, a driving motor located in the wheel bracket is provided on one side of the dehumidification wheel, a pressure wheel is provided on one side of the driving motor, a driving gear is installed on the driving shaft of the driving motor, a transmission belt is wound around the driving gear and the outer wall of the dehumidification wheel, and the pressure wheel abuts against the transmission belt.

[0010] In the above-mentioned dehumidification wheel test platform, a processing air box is installed on the side of the wheel bracket away from the outer shell, and a processing air inlet and a regeneration air outlet are respectively opened on the side of the wheel bracket close to the processing air box. The processing air inlets correspond to multiple detection and processing areas, and the regeneration air outlet is connected to a hot air component.

[0011] In the above-mentioned dehumidification wheel testing platform, a first blower is installed on the processing air box.

[0012] In the above-mentioned dehumidification wheel test platform, the hot air component includes a heating box and a detection box. The heating box is connected and arranged on one side of the regeneration zone. A cold air inlet is opened on the heating box. A heating pipe is installed in the heating box. A detection box corresponding to the regeneration zone is installed on the regeneration air outlet. A third temperature and humidity detection probe is installed in the detection box. The detection box is connected and arranged with a second blower.

[0013] The beneficial effect of the present invention is that by setting up multiple detection and processing areas and a regeneration area in the partition detection component, the dehumidification wheel will circulate through multiple detection and processing areas and a regeneration area during the rotation process, so that the dehumidification performance and regeneration performance of the dehumidification wheel at different positions are detected by using multiple detection and processing areas and regeneration areas, so as to adjust the product's rotation speed, air volume or regeneration temperature so that the dehumidification wheel can achieve the best processing effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 This is one of the three-dimensional structural schematic diagrams of the dehumidification wheel testing platform of the present utility model.

[0015] Figure 2 This is the second schematic diagram of the three-dimensional structure of the dehumidification wheel testing platform of the present utility model.

[0016] Figure 3 It is a schematic diagram of the three-dimensional structure of the rotating wheel bracket, heating box and detection box.

[0017] Figure 4 This is one of the three-dimensional structural diagrams of the partition detection component.

[0018] Figure 5 This is the second schematic diagram of the three-dimensional structure of the partition detection component.

[0019] In the figure: base 1, processing air box 2, first blower 3, rotor bracket 4, dehumidification rotor 5, drive motor 6, partition detection component 7, drying air box 8, first temperature and humidity detection probe 9, heating box 10, cold air inlet 11, second blower 12, processing air inlet 13, regeneration area 14, detection box 15, casing 16, detection and processing area 17, second temperature and humidity detection probe 18, drying air duct 19, heating tube 20. DETAILED DESCRIPTION

[0020] The following further describes specific embodiments of the present invention in conjunction with the accompanying drawings. It should be noted that the descriptions of these embodiments are intended to aid understanding of the present invention and do not constitute limitations on the present invention. Furthermore, the technical features involved in the various embodiments of the present invention described below may be combined with one another as long as they do not conflict with one another.

[0021] Combine Figures 1 to 5 A dehumidification wheel testing platform shown includes a rotatable dehumidification wheel 5. A partition detection assembly 7 is provided on one side of the dehumidification wheel 5 near the output end. The partition detection assembly 7 includes a circular housing 16, and multiple detection and processing areas 17 and a regeneration area 14 are provided in the housing 16. In this embodiment, by providing multiple detection and processing areas 17 and a regeneration area 14 in the partition detection assembly 7, the dehumidification wheel 5 circulates through the multiple detection and processing areas 17 and the regeneration area 14 during the rotation process, thereby utilizing the multiple detection and processing areas 17 and the regeneration area 14 to detect the dehumidification performance and regeneration performance of the dehumidification wheel 5 at different positions, so as to adjust the product's rotation speed, air volume or regeneration temperature so that the dehumidification wheel 5 can achieve the best treatment effect.

[0022] In this embodiment, six detection and processing zones 17 are provided, each of which is a triangular cavity. A plurality of drying ducts 19 are provided on the side of the housing 16 away from the dehumidification wheel 5, correspondingly connected to the detection and processing zones 17. These drying ducts 19 are connected to a drying air box 8, within which a first temperature and humidity detection probe 9 is installed. The air treated by each treatment zone 17 is collected by the drying air box 8, and the overall treatment effect is detected by the first temperature and humidity detection probe 9, thereby detecting the final temperature and humidity of the air.

[0023] It is worth noting that the detection method of the multiple detection and processing areas 17 of this embodiment is to set a second temperature and humidity detection probe 18 in each detection and processing area 17. Therefore, the temperature and humidity at each position can be detected by the multiple second temperature and humidity detection probes 18, so as to clearly understand the treatment effect at different positions of the dehumidification wheel 5 during the rotation process.

[0024] In this embodiment, the dehumidification wheel 5 is rotatably mounted within the wheel bracket 4 via a rotating shaft. A drive motor 6, located within the wheel bracket 4, is mounted on one side of the dehumidification wheel 5. A pressure roller is mounted on one side of the drive motor 6. A drive gear is mounted on the drive shaft of the drive motor 6. A transmission belt is wound around the drive gear and the outer wall of the dehumidification wheel 5, and the pressure roller abuts against the transmission belt. The drive motor 6 drives the transmission belt, which in turn drives the dehumidification wheel 5 to rotate, causing the dehumidification wheel 5 to circulate between multiple detection and processing zones 17 and a regeneration zone 14.

[0025] The side of the wheel bracket 4 of this embodiment away from the housing 16 is equipped with a processing air box 2, and the processing air box 2 is equipped with a first blower 3. The side of the wheel bracket 4 close to the processing air box 2 is respectively provided with a processing air inlet 13 and a regeneration air outlet. The processing air inlet 13 corresponds to a plurality of detection and processing areas 17, and the regeneration air outlet is connected to a hot air component. The processing air is input through the processing air inlet 13 to flow through the dehumidification wheel 5 for dehumidification, and the regeneration air outlet allows the regeneration air to flow through the hot air component for heating and input into the dehumidification wheel 5 for desorption, so that the dehumidification wheel 5 can be switched to the processing air inlet 13 again for dehumidification by rotation. The temperature and humidity detected by each detection and processing area 17 can clearly understand the regeneration adsorption performance of the dehumidification wheel 5, so as to adjust the rotation speed or the temperature of the hot air component to make the dehumidification wheel 5 further achieve the best performance.

[0026] It is worth noting that this embodiment also includes a base 1, on which the processing air box 2, the wheel bracket 4, the partition detection component 7 and the drying air box 8 are all mounted. This allows the entire dehumidification wheel test platform to be mobile for testing, making the equipment more practical and convenient.

[0027] The hot air assembly of this embodiment includes a heating box 10 and a detection box 15. The heating box 10 is connected to one side of the regeneration zone 14. A cold air inlet 11 is provided on the heating box 10. A heating pipe 20 is installed in the heating box 10. A detection box 15 corresponding to the regeneration zone 14 is installed at the regeneration air outlet. A third temperature and humidity detection probe is installed in the detection box 15. The detection box 15 is connected to a second blower 12. The second blower 12 exhausts air from the interior of the detection box 15, causing the cold air inlet 11 to draw in cold air and heat it through the heating pipe 20 to form hot air. The hot air flows through the regeneration zone 14 and the dehumidification wheel 5, causing the portion of the dehumidification wheel 5 corresponding to the regeneration zone 14 to undergo heating and desorption. The detection box 15 can detect the temperature and humidity of the hot air after desorption through the third temperature and humidity detection probe, so as to combine the temperature and humidity detected by each detection and processing zone 17 to understand the desorption effect.

[0028] The embodiments of the present invention are described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments. It is apparent to those skilled in the art that various changes, modifications, substitutions, and variations to these embodiments may be made without departing from the principles and spirit of the present invention, and these changes and modifications still fall within the scope of protection of the present invention.

Claims

1. A dehumidification wheel testing platform, characterized in that: The invention comprises a rotatable dehumidification wheel (5), wherein a partition detection component (7) is connected to a side of the dehumidification wheel (5) close to the output end, and the partition detection component (7) comprises a housing (16), wherein a plurality of detection and processing areas (17) and a regeneration area (14) are arranged in the housing (16).

2. A dehumidification wheel testing platform according to claim 1, characterized in that: At least six of the plurality of detection and processing areas (17) are provided, and the plurality of detection and processing areas (17) are all triangular cavities. A plurality of drying air ducts (19) corresponding to and connected to the detection and processing areas (17) are provided on a side of the housing (16) away from the dehumidification wheel (5). The plurality of drying air ducts (19) are connected to a drying air box (8), and a first temperature and humidity detection probe (9) is installed in the drying air box (8).

3. A dehumidification wheel testing platform according to claim 1, characterized in that: A second temperature and humidity detection probe (18) is provided in each of the plurality of detection and processing areas (17).

4. A dehumidification wheel testing platform according to claim 1, characterized in that: The dehumidification wheel (5) is rotatably mounted in the wheel bracket (4) via a rotating shaft. A driving motor (6) located in the wheel bracket (4) is provided on one side of the dehumidification wheel (5). A pressure wheel is provided on one side of the driving motor (6). A driving gear is mounted on the driving shaft of the driving motor (6). A transmission belt is wound around the driving gear and the outer wall of the dehumidification wheel (5), and the pressure wheel abuts against the transmission belt.

5. A dehumidification wheel testing platform according to claim 4, characterized in that: A processing air box (2) is installed on the side of the rotary wheel bracket (4) away from the housing (16), and a processing air inlet (13) and a regeneration air outlet are respectively provided on the side of the rotary wheel bracket (4) close to the processing air box (2). The processing air inlets (13) correspond to multiple detection and processing areas (17), and the regeneration air outlets are connected to a hot air component.

6. A dehumidification wheel testing platform according to claim 5, characterized in that: A first blower (3) is installed on the processing air box (2).

7. The dehumidification wheel testing platform according to claim 5, characterized in that: The hot air assembly comprises a heating box (10) and a detection box (15); the heating box (10) is connected and arranged on one side of the regeneration zone (14); a cold air inlet (11) is provided on the heating box (10); a heating pipe (20) is installed in the heating box (10); a detection box (15) corresponding to the regeneration zone (14) is installed on the regeneration air outlet; a third temperature and humidity detection probe is installed in the detection box (15); and a second blower (12) is connected and arranged on the detection box (15).