A fresh air energy-saving heat pump rotary dehumidifier

By designing cleaning mechanisms and testing mechanisms in the fresh air energy-saving heat pump wheel dehumidifier, the problem of dehumidification effect reduction after long-term use is solved, effective cleaning and testing is achieved, and the dehumidification effect and equipment life are ensured.

CN119412756BActive Publication Date: 2025-05-02SHUNI ENVIRONMENTAL ENERGY TECH (JIANGSU) CO LTD
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Patent Information

Application Number
CN202411643363.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-05-02
Estimated Expiration
2044-11-18

AI Technical Summary

Technical Problem

After a long time of use, the existing fresh air energy-saving heat pump wheel dehumidifier has reduced the dehumidification effect due to impurities blocked and the wheel aging, and it is impossible to effectively reduce indoor humidity.

Method used

A cleaning mechanism including an upper cleaning unit and a lower cleaning unit is designed to clean the upper and bottom surfaces of the rotating motor and air pump to avoid impurities being blocked. At the same time, the sealing and aging of the rotor are detected by the detection mechanism, and damaged parts are replaced in time.

Benefits of technology

It effectively avoids the dehumidification effect caused by impurity blockage and wheel aging, ensures the good dehumidification effect of the dehumidifier, and extends the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fresh air energy-saving heat pump rotary dehumidifier, which relates to the technical field of rotary dehumidifiers and comprises a main body mechanism, wherein the main body mechanism comprises a chassis, a left side surface of the chassis is fixedly connected with an air inlet pipe, a heat pump component is fixedly installed on the inner wall of the chassis, a fan is fixedly installed on the inner bottom wall of the chassis, an air outlet end of the fan passes through the outside of the chassis, and a cleaning mechanism is arranged inside the chassis; the cleaning mechanism comprises an upper cleaning unit, which is located above the fan, and the upper cleaning unit is used to clean the upper surface of the rotary wheel; the cleaning mechanism also comprises a lower cleaning unit, which is located inside the chassis, and the upper cleaning unit is used in conjunction with the lower cleaning unit, and the lower cleaning unit is used to clean the bottom surface of the rotary wheel. This fresh air energy-saving heat pump rotary dehumidifier achieves the purpose of cleaning the upper surface of the rotary wheel body by providing the upper cleaning unit, thereby preventing impurities in the air from being blocked on the upper surface of the rotary wheel body.
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Description

Technical Field

[0001] The invention relates to the technical field of rotary dehumidifiers, and in particular to a fresh air energy-saving heat pump rotary dehumidifier. Background Art

[0002] The fresh air energy-saving heat pump rotary dehumidifier is a dehumidification equipment that combines fresh air technology, heat pump technology and rotary technology. During use, humid air is introduced into the dehumidifier through the fresh air system and passes through the rotary wheel. The surface of the rotary wheel is coated with hygroscopic material. When the humid air contacts the rotary wheel, the moisture is absorbed by the hygroscopic material on the rotary wheel, making the air dry.

[0003] During the use of rotary dehumidifiers, most of them do not have the function of self-maintenance. Therefore, after the rotary dehumidifier has been used for a long time, due to impurities in the air and the aging of the wheel itself, the micropores inside the wheel are blocked or the moisture absorption capacity of the wheel is reduced, resulting in a reduction in the dehumidification effect of the rotary dehumidifier, and then the indoor humidity cannot be effectively reduced.

[0004] Combining the above problems, we will find that it is difficult to avoid the above problems at the same time when using the existing fresh air energy-saving heat pump rotary dehumidifiers on the market, and even if they can be solved, they need to be solved through external tools, which makes it impossible to achieve the desired effect. Therefore, we propose a fresh air energy-saving heat pump rotary dehumidifier. Summary of the invention

[0005] The object of the present invention is to provide a fresh air energy-saving heat pump rotary dehumidifier to solve the problems raised in the above-mentioned background technology.

[0006] To achieve the above object, the present invention provides the following technical solution: a fresh air energy-saving heat pump rotary dehumidifier, comprising a main body mechanism, the main body mechanism comprising a chassis, the left side of the chassis is fixedly connected with an air inlet pipe, the inner wall of the chassis is fixedly installed with a heat pump assembly, the inner bottom wall of the chassis is fixedly installed with a fan, the air outlet end of the fan penetrates to the outside of the chassis, and the interior of the chassis is provided with a cleaning mechanism;

[0007] The cleaning mechanism comprises an upper cleaning unit, the upper cleaning unit is located above the fan, and the upper cleaning unit is used to clean the upper surface of the impeller;

[0008] The cleaning mechanism further comprises a lower cleaning unit, the lower cleaning unit is located inside the chassis, the upper cleaning unit is used in conjunction with the lower cleaning unit, and the lower cleaning unit is used to clean the bottom surface of the rotating wheel;

[0009] A detection mechanism is arranged inside the chassis, and the cleaning mechanism is used in conjunction with the detection mechanism, and the detection mechanism is used to detect the sealing property and aging degree of the rotating wheel.

[0010] Preferably, the upper cleaning unit includes a rotating motor, the bottom surface of the rotating motor is fixedly connected to the inner wall of the chassis, the output end of the rotating motor is fixedly installed with a first pulley, the interior of the chassis is rotatably connected with a rotating wheel body, the outer surface of the first pulley and the outer surface of the rotating wheel body are jointly sleeved with a first connecting belt, the left side of the chassis is fixedly installed with a first installation box and a first air pump, the air inlet end of the first air pump passes through the interior of the first installation box, the inner wall of the first installation box is fixedly installed with a first filter, the back side of the chassis is fixedly installed with a second installation box and a second air pump, the air outlet end of the second air pump passes through the interior of the second installation box, the inner wall of the second installation box is fixedly installed with a second filter, the right side of the first installation box is fixedly connected to the first connecting pipe, and the front side of the second installation box is fixedly connected to the There is a first conveying pipe, two electric push rods are fixedly installed on the inner top wall of the chassis, and a connecting frame is fixedly installed on the telescopic ends of the two electric push rods, and a brush plate is fixedly installed on the inner wall of the connecting frame, and four suction nozzles are fixedly installed on the inner wall of the connecting frame. The four air inlet ends of the first connecting pipe respectively penetrate into the inside of the four suction nozzles, and a rotating motor is fixedly installed on the front of the connecting frame. The output end of the rotating motor penetrates into the inner side of the connecting frame and is fixedly installed with a rotating piece, and the back side of the rotating piece is rotatably connected to a connecting rod, and a moving rod is movably hinged on the front side of the connecting rod, and the moving rod is slidably arranged in the inner cavity of the connecting frame, and two mounting blocks are fixedly installed on the outer surface of the moving rod, and nozzles are fixedly installed on the inner walls of the two mounting blocks, and the two air outlet ends of the first conveying pipe respectively penetrate into the inside of the two nozzles.

[0011] Preferably, a connecting bearing is fixedly mounted on the bottom surface of the rotating wheel body, and the bottom surface of the connecting bearing is fixedly connected to the inner wall of the chassis.

[0012] Preferably, a lock frame and a lock block are fixedly mounted on the front side of the first installation box and the left side of the second installation box, and the two lock blocks are respectively clamped in the inside of the two lock frames.

[0013] Preferably, the outer surface of the moving rod is slidably connected to the limiting seat, and the front surface of the limiting seat is fixedly connected to the inner wall of the connecting frame.

[0014] Preferably, the lower cleaning unit includes a regeneration pipe, the bottom surface of the regeneration pipe is fixedly connected to the inner bottom wall of the chassis, the upper surface of the regeneration pipe contacts the bottom surface of the wheel body, the inner wall of the chassis is fixedly connected with an air outlet pipe, the bottom surface of the air outlet pipe contacts the upper surface of the wheel body, the right side of the first installation box is fixedly connected with a second connecting pipe, the front of the second installation box is fixedly connected with a second conveying pipe, a stepper motor is fixedly installed on the front of the regeneration pipe, a sealing plate is movably hinged inside the regeneration pipe, the output end of the stepper motor passes through the regeneration pipe and is fixedly connected to the front of the sealing plate, a concave frame is fixedly installed on the upper surface of the sealing plate, and the first reciprocating screw rod is rotatably connected inside the concave frame, The outer surface of the first reciprocating screw is threadedly connected to a moving frame, and two wiping blocks are fixedly installed on the upper surface of the moving frame, a suction head is fixedly installed on the inner wall of the moving frame, an air inlet end of the second connecting pipe passes through the interior of the suction head, a connecting box is fixedly installed on the upper surface of the sealing plate, and an air outlet end of the second conveying pipe passes through the interior of the connecting box, and a rotating rod is rotatably connected to the interior of the connecting box, a steam impeller is fixedly installed on one end of the rotating rod close to the second conveying pipe, and an end of the rotating rod away from the second conveying pipe passes through the connecting box and is fixedly installed with a second pulley, a third pulley is fixedly installed on the outer surface of the first reciprocating screw, and the outer surface of the second pulley and the outer surface of the third pulley are jointly sleeved with a second connecting belt.

[0015] Preferably, a sliding rod is fixedly mounted on the inner wall of the concave frame, and the outer surface of the sliding rod is slidably connected to the inner wall of the movable frame.

[0016] Preferably, the detection mechanism includes a servo motor, a rotating gear is fixedly installed on the output end of the servo motor, a rotating rod is fixedly installed on the back of the rotating gear, a rotating part is fixedly installed on the end of the rotating rod away from the rotating gear, the outlet pipe is rotatably connected to a rotating shaft, a sealing disk is fixedly installed on the outer surface of the rotating shaft, a connecting part is fixedly installed on the outer surface of the rotating shaft, a second reciprocating screw is rotatably connected to the inside of the chassis, a connecting gear is fixedly installed on the outer surface of the second reciprocating screw, the outer surface of the connecting gear is meshed with the outer surface of the rotating gear, a moving block is threadedly connected to the outer surface of the second reciprocating screw, a thermal imager and a camera are respectively fixedly installed on the inner wall of the moving block, a nitrogen generator is fixedly installed on the right side of the chassis, a fixed pipe is fixedly connected to the left side of the nitrogen generator, the end of the fixed pipe away from the nitrogen generator passes through the interior of the regeneration pipe, and a display is fixedly installed on the front of the chassis.

[0017] Preferably, a limit rod is fixedly mounted on the inner wall of the chassis, and the outer surface of the limit rod is slidably connected to the inner wall of the moving block.

[0018] Preferably, the outer surface of the rotating rod is rotatably connected to a bearing seat, and the right side surface of the bearing seat is fixedly connected to the inner wall of the chassis.

[0019] Compared with the prior art, the present invention has the following beneficial effects:

[0020] The present invention is provided with an upper cleaning unit, so that the device uses the power provided by the rotating motor to drive the wheel body to rotate, so that during the rotation of the wheel body, the filtered gas is used to blow the wheel body, and the upper surface of the wheel body is wiped and cleaned with a brush plate, and then the power provided by the first air pump is used to absorb impurities into the interior of the first installation box, thereby achieving the purpose of cleaning the upper surface of the wheel body, thereby preventing impurities in the air from being blocked on the upper surface of the wheel body, and thus ensuring a good dehumidification effect of the device.

[0021] The present invention is provided with a lower cleaning unit, so that the device uses the wiping block and the suction provided by the first air pump to clean the bottom surface of the wheel body, thereby preventing impurities in the regeneration gas from clogging the wheel body, and preventing the regeneration gas from being unable to take away moisture in the wheel body, thereby reducing the moisture absorption performance of the wheel body, and further ensuring a good dehumidification effect of the device.

[0022] The present invention is provided with a detection mechanism, so that the device can detect whether the wheel body is leaking by introducing nitrogen and cooperating with a thermal imager, and at the same time use a camera to detect whether the wheel body changes color, thereby detecting the sealing and aging degree of the wheel body, thereby facilitating the user to timely understand the sealing and aging degree of the wheel body, facilitating timely replacement of the wheel body, thereby avoiding the decrease in the moisture absorption performance of the device due to leakage or high aging of the wheel body. The cleaning mechanism and the detection mechanism are used in coordination with each other, so that the device maintains a good dehumidification effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 It is a structural schematic diagram of a cross-sectional view of the chassis of the present invention;

[0025] Figure 3 It is a structural schematic diagram of the main body of the runner of the present invention;

[0026] Figure 4 It is a structural schematic diagram of a cross-sectional view of a first installation box of the present invention;

[0027] Figure 5 It is a structural schematic diagram of the second installation box of the present invention;

[0028] Figure 6It is a structural schematic diagram of the regeneration tube of the present invention;

[0029] Figure 7 It is a structural schematic diagram of a cross-sectional view of the connecting frame of the present invention;

[0030] Figure 8 It is a structural schematic diagram of a bottom view of the connecting frame of the present invention;

[0031] Fig. 9 It is a structural schematic diagram of a rear view of the moving rod of the present invention;

[0032] Fig.10 It is a structural schematic diagram of a cross-sectional view of a runner body of the present invention;

[0033] Fig.11 It is a structural schematic diagram of a cross-sectional view of a regeneration tube of the present invention;

[0034] Fig.12 It is a structural schematic diagram of a rear view of a sealing plate of the present invention;

[0035] Fig.13 It is a schematic structural diagram of the concave frame of the present invention;

[0036] Fig.14 It is a structural schematic diagram of the rotating part of the present invention;

[0037] Fig.15 It is a structural schematic diagram of a bottom view of an air outlet pipe of the present invention;

[0038] Fig.16 It is a structural schematic diagram of a cross-sectional view of an air outlet pipe of the present invention;

[0039] Fig.17 It is a structural schematic diagram of the moving block of the present invention;

[0040] Fig.18 It is a structural schematic diagram of the rear view of the chassis of the present invention.

[0041] In the figure: 1, main body; 11, chassis; 12, air inlet pipe; 13, heat pump assembly; 14, fan; 2, cleaning mechanism; 21, upper cleaning unit; 2101, rotating motor; 2102, first pulley; 2103, rotating wheel body; 2104, first connecting belt; 2105, first installation box; 2106, first air pump; 2107, first filter; 2108, second installation box; 2109, second air pump; 2110, second filter; 2111 1. First connecting pipe; 2112. First conveying pipe; 2113. Electric push rod; 2114. Connecting frame; 2115. Brush plate; 2116. Suction nozzle; 2117. Rotating motor; 2118. Rotating sheet; 2119. Connecting rod; 2120. Moving rod; 2121. Mounting block; 2122. Nozzle; 2123. Connecting bearing; 2124. Locking frame; 2125. Locking block; 2126. Limiting seat; 22. Lower cleaning unit; 2201. Regeneration pipe; 2202, air outlet pipe; 2203, second connecting pipe; 2204, second conveying pipe; 2205, stepping motor; 2206, sealing plate; 2207, concave frame; 2208, first reciprocating screw rod; 2209, moving frame; 2210, wiping block; 2211, suction head; 2212, connecting box; 2213, rotating rod; 2214, steam impeller; 2215, second pulley; 2216, third pulley; 2217, second connecting belt; 2218, sliding rod; 3, detection mechanism; 301, servo motor; 302, rotating gear; 303, rotating rod; 304, rotating member; 305, rotating shaft; 306, sealing disk; 307, connecting member; 308, second reciprocating screw rod; 309, connecting gear; 310, moving block; 311, thermal imager; 312, camera; 313, nitrogen generator; 314, fixed tube; 315, display; 316, limit rod; 317, bearing seat. DETAILED DESCRIPTION

[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0043] Example 1: Please refer to Figure 1-Figure 10 and Fig.18The present invention provides a technical solution: a fresh air energy-saving heat pump rotary dehumidifier, comprising a main body mechanism 1, the main body mechanism 1 comprises a chassis 11, the left side of the chassis 11 is fixedly connected with an air inlet pipe 12, the inner wall of the chassis 11 is fixedly installed with a heat pump assembly 13, the heat pump assembly 13 comprises a compressor, an evaporator, a condenser and a refrigerant circulation pipeline and other structures, thereby achieving the effect of cooling or heating the dehumidified gas, thereby playing a role in controlling the exhaust gas temperature, the inner bottom wall of the chassis 11 is fixedly installed with a fan 14, the air outlet end of the fan 14 penetrates the outside of the chassis 11, and the inside of the chassis 11 is provided with a cleaning mechanism 2;

[0044] The cleaning mechanism 2 includes an upper cleaning unit 21 . The upper cleaning unit 21 is located above the fan 14 . The upper cleaning unit 21 is used to clean the upper surface of the impeller.

[0045] As a further limitation of the cleaning mechanism 2 of the present invention, the upper cleaning unit 21 includes a rotating motor 2101, the bottom surface of the rotating motor 2101 is fixedly connected to the inner wall of the chassis 11, the output end of the rotating motor 2101 is fixedly installed with a first pulley 2102, the interior of the chassis 11 is rotatably connected with a rotating wheel body 2103, the outer surface of the first pulley 2102 and the outer surface of the rotating wheel body 2103 are jointly sleeved with a first connecting belt 2104, and the left side of the chassis 11 is fixedly installed with a first installation box 2105 and a first air pump 2106, and the power provided by the first air pump 2106 cooperates with the first installation box 2105, thereby achieving the purpose of discharging the internal gas of the chassis 11 from the chassis 11, and the air inlet end of the first air pump 2106 penetrates into the first Inside the installation box 2105, a first filter 2107 is fixedly installed on the inner wall of the first installation box 2105, and a second installation box 2108 and a second air pump 2109 are fixedly installed on the back of the chassis 11. The air outlet of the second air pump 2109 penetrates into the interior of the second installation box 2108. The power provided by the second air pump 2109 is used in conjunction with the second installation box 2108 to achieve the function of transporting gas to the interior of the chassis 11, thereby ensuring the balance of the air pressure inside the chassis 11. A second filter 2110 is fixedly installed on the inner wall of the second installation box 2108. Both the first filter 2107 and the second filter 2110 achieve the purpose of filtering impurities such as dust in the air. The right side of the first installation box 2105 is fixedly connected to a first connecting pipe 2 111, the front of the second installation box 2108 is fixedly connected with a first conveying pipe 2112, the inner top wall of the chassis 11 is fixedly installed with two electric push rods 2113, the telescopic ends of the two electric push rods 2113 are fixedly installed with a connecting frame 2114, the inner wall of the connecting frame 2114 is fixedly installed with a brush plate 2115, the bottom surface of the brush plate 2115 is provided with a soft brush, the inner wall of the connecting frame 2114 is fixedly installed with four suction nozzles 2116, the suction nozzles 2116 and the soft brushes of the brush plate 2115 are in contact with the upper surface of the rotating wheel body 2103, the four air inlet ends of the first connecting pipe 2111 respectively penetrate into the inside of the four suction nozzles 2116, the front of the connecting frame 2114 is fixedly installed with a rotating motor 2117, the rotating motor 2117 The output end of the first conveying pipe 2112 passes through the inner side of the connecting frame 2114 and is fixedly installed with a rotating piece 2118. The back side of the rotating piece 2118 is rotatably connected to a connecting rod 2119. The front side of the connecting rod 2119 is movably hinged with a moving rod 2120. The moving rod 2120 is slidably arranged in the inner cavity of the connecting frame 2114. Two mounting blocks 2121 are fixedly installed on the outer surface of the moving rod 2120. The inner walls of the two mounting blocks 2121 are fixedly installed with nozzles 2122. The two air outlet ends of the first conveying pipe 2112 respectively pass through the inside of the two nozzles 2122. By providing an upper cleaning unit 21, the device uses the power provided by the rotating motor 2101 to drive the rotating wheel body 2103 to rotate, so that during the rotation of the rotating wheel body 2103,The wheel body 2103 is blown with the filtered gas, and the upper surface of the wheel body 2103 is wiped and cleaned with the brush plate 2115. Then, the impurities are absorbed into the first installation box 2105 by the suction force provided by the first air pump 2106, thereby achieving the purpose of cleaning the upper surface of the wheel body 2103, thereby preventing impurities in the air from being blocked on the upper surface of the wheel body 2103, and thus ensuring a good dehumidification effect of the device.

[0046] See also Fig.10 A connecting bearing 2123 is fixedly installed on the bottom surface of the wheel body 2103. The bottom surface of the connecting bearing 2123 is fixedly connected to the inner wall of the chassis 11, the bottom surface of the inner ring of the connecting bearing 2123 is fixedly connected to the inner wall of the chassis 11, and the upper surface of the outer ring of the connecting bearing 2123 is fixedly connected to the bottom surface of the wheel body 2103. The installation of the connecting bearing 2123 stabilizes the wheel body 2103, thereby avoiding the shaking of the wheel body 2103 during rotation, thereby ensuring the stability of the rotation of the wheel body 2103.

[0047] See also Figure 1 and Figure 5 A locking frame 2124 and a locking block 2125 are fixedly installed on the front side of the first installation box 2105 and the left side of the second installation box 2108. The two locking blocks 2125 are respectively clamped in the inside of the two locking frames 2124. The installation of the locking frame 2124 and the locking block 2125 makes it convenient for the user to open the first installation box 2105 and the second installation box 2108, thereby facilitating the cleaning of impurities inside the first installation box 2105 and the second installation box 2108.

[0048] See also Figure 8 and Fig. 9 The outer surface of the moving rod 2120 is slidingly connected to the limiting seat 2126, and the front side of the limiting seat 2126 is fixedly connected to the inner wall of the connecting frame 2114. The installation of the limiting seat 2126 limits the moving trajectory of the moving rod 2120, thereby preventing the moving rod 2120 from deviating from the moving trajectory during movement, thereby ensuring the stability of the movement of the moving rod 2120.

[0049] The specific implementation of this embodiment is as follows: when in use, the user turns on the heat pump assembly 13, the fan 14 and the rotating motor 2101, and uses the power provided by the rotating motor 2101 to drive the first pulley 2102 to rotate, so that the first pulley 2102 cooperates with the first connecting belt 2104 to drive the rotating wheel body 2103 to rotate, and uses the power provided by the fan 14 to draw external air into the interior of the chassis 11, so that the gas passes through the rotating wheel body 2103, and then passes through the heat pump assembly 13 to adjust the temperature of the gas, and then passes through the fan 14 to adjust the temperature of the gas. The air 14 is discharged from the chassis 11, thereby achieving the purpose of dehumidifying the indoor air. When the user maintains the wheel body 2103, the user turns on the electric push rod 2113, and uses the power provided by the electric push rod 2113 to drive the connecting frame 2114 to move downward, so that the soft brush at the bottom of the brush plate 2115 and the bottom surface of the suction nozzle 2116 are in contact with the upper surface of the wheel body 2103. Then the user turns on the rotating motor 2101, the first air pump 2106, the second air pump 2109 and the rotating motor 2117, and uses the rotating motor 2117 to rotate the connecting frame 2114. The power provided by the first air pump 2101 drives the wheel body 2103 to rotate, and at the same time, the power provided by the first air pump 2106 allows the impurities on the wheel body 2103 to enter the first installation box 2105 after passing through the suction nozzle 2116 and the first connecting pipe 2111. At the same time, the power provided by the second air pump 2109 allows the external air to be filtered through the second filter screen 2110, and then pass through the first delivery pipe 2112 and the nozzle 2122 and then be sprayed on the upper surface of the wheel body 2103, thereby blowing away the impurities on the upper surface of the wheel body 2103. The suction nozzle 2116 is separated from the rotating wheel body 2103, thereby facilitating the collection of impurities by the rotating motor 2117. At the same time, the rotating plate 2118 is driven to rotate by the power provided by the rotating motor 2117, so that the rotating plate 2118 drives the connecting rod 2119 to swing back and forth, and then the connecting rod 2119 drives the moving rod 2120 to move back and forth. At the same time, the moving rod 2120 drives the mounting block 2121 and the nozzle 2122 to move back and forth, thereby changing the position of the nozzle 2122, thereby facilitating a comprehensive cleaning of the upper surface of the rotating wheel body 2103.

[0050] Example 2: Please refer to Figure 2 , Figure 6 and Figure 10-Figure 16 The present invention provides a technical solution: a fresh air energy-saving heat pump rotary dehumidifier. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. The cleaning mechanism 2 also includes a lower cleaning unit 22, which is located inside the chassis 11. The upper cleaning unit 21 is used in conjunction with the lower cleaning unit 22, and the lower cleaning unit 22 is used to clean the bottom surface of the rotary wheel.

[0051] As a further limitation of the cleaning mechanism 2 of the present invention, the lower cleaning unit 22 includes a regeneration pipe 2201, and the interior of the regeneration pipe 2201 is provided with a component for heating the air and a component for drawing the external gas into the regeneration pipe 2201, so that the moisture on the rotor body 2103 is evaporated and discharged by utilizing the high-temperature gas, so that the rotor body 2103 can be reused, and the bottom surface of the regeneration pipe 2201 is fixedly connected to the inner bottom wall of the chassis 11, and the upper surface of the regeneration pipe 2201 is in contact with the bottom surface of the rotor body 2103. The inner wall of the chassis 11 is fixedly connected with an air outlet pipe 2202, and the bottom surface of the air outlet pipe 2202 is in contact with one quarter of the upper surface of the rotor body 2103. The right side of the first installation box 2105 is fixed The second connecting pipe 2203 is connected, the front of the second installation box 2108 is fixedly connected with the second conveying pipe 2204, the front of the regeneration pipe 2201 is fixedly installed with a stepper motor 2205, the interior of the regeneration pipe 2201 is movably hinged with a sealing plate 2206, the upper surface of the sealing plate 2206 is in contact with the inner wall of the regeneration pipe 2201, so that the regeneration pipe 2201 can be sealed, the output end of the stepper motor 2205 passes through the regeneration pipe 2201 and is fixedly connected to the front of the sealing plate 2206, the upper surface of the sealing plate 2206 is fixedly installed with a concave frame 2207, the interior of the concave frame 2207 is rotatably connected with a first reciprocating screw rod 2208, and the outer surface of the first reciprocating screw rod 2208 is threadedly connected with a movable frame 220 9. Two wiping blocks 2210 are fixedly installed on the upper surface of the mobile frame 2209, a suction head 2211 is fixedly installed on the inner wall of the mobile frame 2209, an air inlet end of the second connecting pipe 2203 penetrates into the interior of the suction head 2211, a connecting box 2212 is fixedly installed on the upper surface of the sealing plate 2206, an air outlet end of the second conveying pipe 2204 penetrates into the interior of the connecting box 2212, a rotating rod 2213 is rotatably connected to the interior of the connecting box 2212, a steam impeller 2214 is fixedly installed on one end of the rotating rod 2213 close to the second conveying pipe 2204, a second pulley 2215 is fixedly installed on one end of the rotating rod 2213 away from the second conveying pipe 2204, and the outer surface of the first reciprocating screw 2208 A third pulley 2216 is fixedly installed on the surface, and a second connecting belt 2217 is sleeved on the outer surface of the second pulley 2215 and the outer surface of the third pulley 2216. The second air pump 2109 provides wind force, and gas can be added to the interior of the regeneration pipe 2201 to keep the air pressure inside the regeneration pipe 2201 stable. At the same time, the steam impeller 2214, the second pulley 2215, the third pulley 2216 and the second connecting belt 2217 can be used to drive the first reciprocating screw rod 2208 to rotate, thereby providing power. By providing a lower cleaning unit 22, the device uses the wiping block 2210 and the suction provided by the first air pump 2106 to clean the bottom surface of the rotor body 2103.This prevents impurities in the gas flowing through the regeneration tube 2201 from clogging the rotor body 2103, and prevents the regeneration gas from being unable to take away moisture in the rotor body 2103, which reduces the moisture absorption performance of the rotor body 2103, further ensuring a good dehumidification effect of the device.

[0052] See also Fig.14 A slide bar 2218 is fixedly installed on the inner wall of the concave frame 2207, and the outer surface of the slide bar 2218 is slidably connected to the inner wall of the mobile frame 2209. The installation of the slide bar 2218 limits the moving trajectory of the mobile frame 2209, thereby preventing the mobile frame 2209 from rotating during movement, thereby ensuring the stability of the movement of the mobile frame 2209.

[0053] The specific implementation of this embodiment is as follows: during the operation of the upper cleaning unit 21, the power provided by the stepper motor 2205 is used to drive the sealing plate 2206 to rotate, thereby sealing the regeneration pipe 2201, so that the upper surface of the wiping block 2210 is in contact with the bottom surface of the rotating wheel body 2103, and then the gas provided by the second air pump 2109 is used to allow the gas to enter the interior of the connecting box 2212 through the second delivery pipe 2204, thereby providing gas to the sealed regeneration pipe 2201, and at the same time, the steam impeller 2214 is driven to rotate by the airflow, so that the steam impeller 2214 drives the rotating rod 2213 and the second pulley 2215 to rotate, so that the second pulley 2215 cooperates with the second connecting belt 2217 The third pulley 2216 is driven to rotate, so that the third pulley 2216 drives the first reciprocating screw rod 2208 to rotate, and the first reciprocating screw rod 2208 drives the moving frame 2209 to move back and forth, thereby cleaning the bottom surface of the rotating wheel body 2103. At the same time, the power provided by the first air pump 2106 is used to collect impurities on the bottom surface of the rotating wheel body 2103 through the suction head 2211 and the second connecting pipe 2203 into the first installation box 2105, thereby achieving the purpose of cleaning the bottom surface of the rotating wheel body 2103, so that the lower cleaning unit 22 cooperates with the upper cleaning unit 21 to clean the rotating wheel body 2103, avoiding impurities from clogging the rotating wheel body 2103, and thus ensuring a good moisture absorption effect of the rotating wheel body 2103.

[0054] Example 3: Please refer to Figure 1-Figure 2 , Figure 4 , Fig.10 and Figure 14-18 The present invention provides a technical solution: a fresh air energy-saving heat pump rotary dehumidifier. The present invention makes corresponding improvements to the technical problems mentioned in the background technology. A detection mechanism 3 is arranged inside the chassis 11. The cleaning mechanism 2 is used in conjunction with the detection mechanism 3. The detection mechanism 3 is used to detect the sealing and aging degree of the rotary wheel.

[0055] As a further limitation of the detection mechanism 3 of the present invention, the detection mechanism 3 includes a servo motor 301, the right side of the servo motor 301 is fixedly connected to the inner wall of the chassis 11, the output end of the servo motor 301 is fixedly installed with a rotating gear 302, the back of the rotating gear 302 is fixedly installed with a rotating rod 303, the end of the rotating rod 303 away from the rotating gear 302 is fixedly installed with a rotating member 304, the inner rotation of the air outlet pipe 2202 is connected with a rotating shaft 305, the outer surface of the rotating shaft 305 is fixedly installed with a sealing disk 306, the sealing disk 306 can seal the air outlet pipe 2202, the outer surface of the rotating shaft 305 is fixedly installed with a connecting member 307, the connecting member 307 and the rotating member 304 constitute a Maltese cross movement mechanism, the connection The part 307 is located at the lower right side of the rotating part 304, so that the rotating part 304 slides in the groove position of the connecting part 307 through the lever, thereby driving the connecting part 307 to rotate, and the connecting part 307 is at a certain distance from the rotating rod 303, so that the connecting part 307 will not contact the rotating rod 303 during the rotation process, so that the sealing disk 306 rotates ninety degrees each time, and the second reciprocating screw rod 308 is connected to the internal rotation of the chassis 11, and the outer surface of the second reciprocating screw rod 308 is fixedly installed with a connecting gear 309, and the outer surface of the connecting gear 309 is meshed with the outer surface of the rotating gear 302, and the outer surface of the second reciprocating screw rod 308 is threadedly connected with a moving block 310, and the position of the moving block 310 is located at the outlet pipe 2 The moving block 310 is located at the upper left of the wheel body 2103 and has a certain distance from the air outlet pipe 2202, so that the moving block 310 does not touch the air outlet pipe 2202 during the movement. The inner wall of the moving block 310 is respectively fixedly installed with a thermal imager 311 and a camera 312. When there is a leak in the wheel body 2103, the flow of gas will cause the temperature at the leak position to change, so as to judge whether there is a leak in the wheel body 2103 according to the temperature change. The new wheel body 2103 is usually transparent or white. With the increase of usage time and the aging process, the silica gel may gradually change color. If the wheel body 2103 turns yellow, brown or even black, it is a sign of aging of the wheel body 2103, so the color change can be used to judge whether the wheel body 2103 is leaking. In order to check whether the rotor body 2103 is aging, a nitrogen generator 313 is fixedly installed on the right side of the chassis 11, and a fixed pipe 314 is fixedly connected to the left side of the nitrogen generator 313. The end of the fixed pipe 314 away from the nitrogen generator 313 passes through the interior of the regeneration pipe 2201. A display 315 is fixedly installed on the front of the chassis 11. The display 315 displays the pictures taken by the camera 312 and the thermal imager 311. By providing a detection mechanism 3, the device allows nitrogen to be introduced and cooperates with the thermal imager 311 to detect whether the rotor body 2103 is leaking. At the same time, the camera 312 is used to detect whether the rotor body 2103 changes color, thereby detecting the sealing and aging degree of the rotor body 2103.This makes it easier for the user to understand the sealing and aging degree of the wheel body 2103 in a timely manner, and facilitates timely replacement of the wheel body 2103, thereby avoiding the decrease in the moisture absorption performance of the device due to air leakage or high aging degree of the wheel body 2103.

[0056] See also Fig.14 A limit rod 316 is fixedly installed on the inner wall of the chassis 11, and the outer surface of the limit rod 316 is slidably connected to the inner wall of the moving block 310. The installation of the limit rod 316 serves to limit the moving trajectory of the moving block 310, thereby avoiding the rotation of the moving block 310 during movement, thereby ensuring the stability of the movement of the moving block 310.

[0057] See also Fig.14 The outer surface of the rotating rod 303 is rotatably connected to a bearing seat 317, and the right side surface of the bearing seat 317 is fixedly connected to the inner wall of the chassis 11. The installation of the bearing seat 317 stabilizes the rotating rod 303, thereby preventing the rotating rod 303 from shaking during rotation, thereby ensuring the stability of the rotation of the rotating rod 303.

[0058] Before the user cleans the wheel body 2103, the user first performs leakage and aging detection, and uses the power provided by the servo motor 301 to drive the rotating gear 302 to rotate, so that the rotating gear 302 drives the rotating rod 303 to rotate, and then the rotating rod 303 drives the rotating member 304 to rotate, so that the rotating member 304 intermittently drives the connecting member 307 to rotate, thereby intermittently sealing the outlet pipe 2202. During the sealing process of the outlet pipe 2202, the power provided by the stepper motor 2205 drives the sealing plate 2206 to seal the regeneration pipe 2201, and at the same time, the nitrogen generator 313 is used to transport nitrogen to the inside of the regeneration pipe 2201, so that nitrogen fills one quarter of the wheel body 2103, and at the same time, the thermal imager 311 is used to detect the temperature near the wheel body 2103. When leakage occurs, the temperature at the leakage position of the wheel body 2103 will change, so the wheel body 2103 can be judged based on the temperature change captured by the thermal imager 311. The wheel body 2103 is leaking, thereby achieving the purpose of leak detection of the wheel body 2103. During the rotation of the rotating gear 302, the rotating gear 302 drives the connecting gear 309 to rotate, so that the connecting gear 309 drives the second reciprocating screw 308 to rotate, and then the second reciprocating screw 308 drives the moving block 310 to move, so that different positions of the wheel body 2103 are detected. At the same time, the color of the wheel body 2103 is photographed by the camera 312, so that the user can judge whether the wheel body 2103 is aging according to the color of the wheel body 2103. When the detection of one quarter of the wheel body 2103 is completed, the user uses the power provided by the rotating motor 2101 to drive the wheel body 2103 to rotate, so as to detect the remaining wheel body 2103, which is convenient for the user to understand the usage degree of the wheel body 2103 and to replace the wheel body 2103 in time to ensure the good dehumidification effect of the device.

[0059] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0060] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A fresh air energy-saving heat pump rotary dehumidifier, comprising a main body (1), characterized in that: The main body mechanism (1) comprises a chassis (11), the left side surface of the chassis (11) is fixedly connected to an air inlet pipe (12), the inner wall of the chassis (11) is fixedly mounted with a heat pump assembly (13), the inner bottom wall of the chassis (11) is fixedly mounted with a fan (14), the air outlet end of the fan (14) extends through the outside of the chassis (11), and the interior of the chassis (11) is provided with a cleaning mechanism (2); The cleaning mechanism (2) comprises an upper cleaning unit (21), the upper cleaning unit (21) being located above the fan (14), and the upper cleaning unit (21) being used to clean the upper surface of the impeller; The cleaning mechanism (2) further comprises a lower cleaning unit (22), the lower cleaning unit (22) being located inside the chassis (11), the upper cleaning unit (21) being used in conjunction with the lower cleaning unit (22), the lower cleaning unit (22) being used to clean the bottom surface of the rotating wheel; A detection mechanism (3) is disposed inside the chassis (11), the cleaning mechanism (2) is used in conjunction with the detection mechanism (3), and the detection mechanism (3) is used to detect the sealing performance and aging degree of the rotating wheel; The upper cleaning unit (21) comprises a rotating motor (2101), the bottom surface of the rotating motor (2101) is fixedly connected to the inner wall of the chassis (11), a first pulley (2102) is fixedly mounted on the output end of the rotating motor (2101), a rotating wheel body (2103) is rotatably connected to the inside of the chassis (11), the outer surface of the first pulley (2102) and the outer surface of the rotating wheel body (2103) are jointly sleeved with a first connecting belt (2104), and a first installation box (2105) and a first air pump (2106) are fixedly mounted on the left side of the chassis (11), and the inlet of the first air pump (2106) is The air end penetrates into the interior of the first installation box (2105), the inner wall of the first installation box (2105) is fixedly installed with a first filter (2107), the back of the chassis (11) is fixedly installed with a second installation box (2108) and a second air pump (2109), the air outlet end of the second air pump (2109) penetrates into the interior of the second installation box (2108), the inner wall of the second installation box (2108) is fixedly installed with a second filter (2110), the right side of the first installation box (2105) is fixedly connected to a first connecting pipe (2111), and the front of the second installation box (2108) is fixedly connected to a first conveying pipe (2112), two electric push rods (2113) are fixedly installed on the inner top wall of the chassis (11), and the telescopic ends of the two electric push rods (2113) are fixedly installed with a connecting frame (2114), and the inner wall of the connecting frame (2114) is fixedly installed with a brush plate (2115), and the inner wall of the connecting frame (2114) is fixedly installed with four suction nozzles (2116), and the four air inlet ends of the first connecting pipe (2111) respectively penetrate into the inside of the four suction nozzles (2116), and the front side of the connecting frame (2114) is fixedly installed with a rotating motor (2117), and the output end of the rotating motor (2117) penetrates A rotating piece (2118) is fixedly mounted on the inner side of the connecting frame (2114), the back side of the rotating piece (2118) is rotatably connected to a connecting rod (2119), the front side of the connecting rod (2119) is movably hinged to a moving rod (2120), the moving rod (2120) is slidably arranged in the inner cavity of the connecting frame (2114), two mounting blocks (2121) are fixedly mounted on the outer surface of the moving rod (2120), the inner walls of the two mounting blocks (2121) are fixedly mounted with nozzles (2122), and the two air outlet ends of the first delivery pipe (2112) respectively penetrate into the interior of the two nozzles (2122); The lower cleaning unit (22) comprises a regeneration pipe (2201), the bottom surface of the regeneration pipe (2201) is fixedly connected to the inner bottom wall of the chassis (11), the upper surface of the regeneration pipe (2201) is in contact with the bottom surface of the rotor body (2103), the inner wall of the chassis (11) is fixedly connected to an air outlet pipe (2202), the bottom surface of the air outlet pipe (2202) is in contact with the upper surface of the rotor body (2103), the right side surface of the first installation box (2105) is fixedly connected to a second connecting pipe (2203), and the front surface of the second installation box (2108) is fixedly connected to the second installation box (2108). A second delivery pipe (2204) is fixedly connected to the regeneration pipe (2201); a stepper motor (2205) is fixedly installed on the front of the regeneration pipe (2201); a sealing plate (2206) is movably hinged inside the regeneration pipe (2201); an output end of the stepper motor (2205) passes through the regeneration pipe (2201) and is fixedly connected to the front of the sealing plate (2206); a concave frame (2207) is fixedly installed on the upper surface of the sealing plate (2206); a first reciprocating screw rod (2208) is rotatably connected inside the concave frame (2207); and the first reciprocating screw rod (2208) is rotatably connected to the first reciprocating screw rod (2208). The outer surface of the second connecting pipe (2203) is threadedly connected to a movable frame (2209), two wiping blocks (2210) are fixedly mounted on the upper surface of the movable frame (2209), a suction head (2211) is fixedly mounted on the inner wall of the movable frame (2209), an air inlet end of the second connecting pipe (2203) penetrates into the interior of the suction head (2211), a connecting box (2212) is fixedly mounted on the upper surface of the sealing plate (2206), an air outlet end of the second conveying pipe (2204) penetrates into the interior of the connecting box (2212), and the internal rotating connection of the connecting box (2212) is connected to the connecting box (2212). A rotating rod (2213) is connected, one end of the rotating rod (2213) close to the second conveying pipe (2204) is fixedly mounted with a steam impeller (2214), one end of the rotating rod (2213) away from the second conveying pipe (2204) passes through the connecting box (2212) and is fixedly mounted with a second pulley (2215), a third pulley (2216) is fixedly mounted on the outer surface of the first reciprocating screw rod (2208), and the outer surfaces of the second pulley (2215) and the third pulley (2216) are jointly sleeved with a second connecting belt (2217); The detection mechanism (3) comprises a servo motor (301), a rotating gear (302) is fixedly mounted on the output end of the servo motor (301), a rotating rod (303) is fixedly mounted on the back of the rotating gear (302), a rotating member (304) is fixedly mounted on one end of the rotating rod (303) away from the rotating gear (302), a rotating shaft (305) is rotatably connected inside the air outlet pipe (2202), a sealing disk (306) is fixedly mounted on the outer surface of the rotating shaft (305), a connecting member (307) is fixedly mounted on the outer surface of the rotating shaft (305), a second reciprocating screw rod (308) is rotatably connected inside the chassis (11), and the second reciprocating screw rod (308) is A connecting gear (309) is fixedly mounted on the outer surface, the outer surface of the connecting gear (309) meshes with the outer surface of the rotating gear (302); a moving block (310) is threadedly connected to the outer surface of the second reciprocating screw (308); a thermal imager (311) and a camera (312) are fixedly mounted on the inner wall of the moving block (310); a nitrogen generator (313) is fixedly mounted on the right side of the chassis (11); a fixed pipe (314) is fixedly connected to the left side of the nitrogen generator (313); an end of the fixed pipe (314) away from the nitrogen generator (313) passes through the interior of the regeneration pipe (2201); and a display (315) is fixedly mounted on the front of the chassis (11).

2. A fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: A connecting bearing (2123) is fixedly mounted on the bottom surface of the rotating wheel body (2103), and the bottom surface of the connecting bearing (2123) is fixedly connected to the inner wall of the chassis (11).

3. A fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: A locking frame (2124) and a locking block (2125) are fixedly mounted on the front side of the first installation box (2105) and the left side of the second installation box (2108), and the two locking blocks (2125) are respectively clamped inside the two locking frames (2124).

4. A fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: The outer surface of the moving rod (2120) is slidably connected to the limiting seat (2126), and the front surface of the limiting seat (2126) is fixedly connected to the inner wall of the connecting frame (2114).

5. The fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: A sliding rod (2218) is fixedly mounted on the inner wall of the concave frame (2207), and the outer surface of the sliding rod (2218) is slidably connected to the inner wall of the movable frame (2209).

6. A fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: A limiting rod (316) is fixedly mounted on the inner wall of the chassis (11), and an outer surface of the limiting rod (316) is slidably connected to the inner wall of the moving block (310).

7. A fresh air energy-saving heat pump rotary dehumidifier according to claim 1, characterized in that: The outer surface of the rotating rod (303) is rotatably connected to a bearing seat (317), and the right side surface of the bearing seat (317) is fixedly connected to the inner wall of the chassis (11).

Citation Information

Patent Citations

  • Rotary dehumidifier with reverse gas purging and cleaning device

    CN210463341U

  • Waste heat or waste heat recovery energy-saving type rotary dehumidifier

    CN217737382U