Novel high-efficiency air rotary dehumidifier
By automatically adjusting the drying range of the regeneration area and connecting the silicone rotor in the annular channel, the problem of poor drying effect of the dehumidifier and shading of the cross plate frame in the highly humid environment in the south is solved, and efficient dehumidification effect is achieved.
Patent Information
- Application Number
- CN202510342433.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-05-13
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In a highly humid environment in the south, the drying effect of the regeneration drying area of the air rotor dehumidifier is limited, and the cross plate frame will block part of the dehumidification area of the silicone rotor, affecting the dehumidification efficiency.
By using the principle that the amount of water generated by air of different humidity passes through the cold spot in the front surface, the drying range of the regeneration area can be automatically adjusted according to the air humidity, and the silicone rotor is connected through the annular channel to improve the utilization rate of the dehumidification area and avoid shading of the cross panel.
It improves the regeneration drying effect, extends the drying path of the silicone rotor, enhances the dehumidification efficiency, avoids potential damage caused by human observation and heater temperature increase, and ensures the integrity of the dehumidification area.
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Figure CN119983408A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of rotary dehumidifiers, in particular to a novel high-efficiency air rotary dehumidifier. Background Art
[0002] The core structure of the air wheel dehumidifier is a continuously rotating honeycomb wheel, which is made of a composite of a high-temperature resistant glass fiber carrier and an active silica gel with extremely strong moisture absorption. On both sides of the wheel, the surface is divided into a 270-degree dehumidification sector and a 90-degree regeneration sector by sealing plates. When the humid air enters the dehumidification sector, the water vapor is adsorbed by the silica gel and sent out through the blower after drying. As the absorbed water increases, the adsorption capacity tends to saturation and needs to be regenerated and restored. Driven by the motor, the saturated part is transferred to the regeneration sector to start the regeneration process. It has the characteristics of large dehumidification capacity, high efficiency, and continuous supply of low dew point dry air.
[0003] When using an air wheel dehumidifier in a highly humid environment in rainy weather in the south, due to the high moisture content in the air, when the air passes through the silica gel wheel, the moisture absorbed by the silica gel wheel will be much greater than the amount absorbed in a normal humidity environment, and even exceed the saturation amount of moisture absorption of the wheel. When the silica gel wheel passes through the 90-degree regeneration area, since the drying area only occupies a quarter of the wheel, the wheel will only briefly pass through the regeneration drying area, and the drying effect is limited, which will cause the wheel to still carry a large amount of moisture after passing through the drying area. Then, in the continued dehumidification work, the wheel that has not achieved the drying effect will not be able to effectively absorb The moisture in the air causes low dehumidification efficiency and unclear dehumidification effect. The existing technology can solve this problem by manually observing the state of the silica gel wheel and increasing the temperature of the regeneration heater when the air humidity is too high to improve the drying effect. This is more troublesome, and the desiccant in the wheel will undergo chemical changes or structural damage at excessively high temperatures, resulting in a decrease in its moisture absorption capacity or even scrapping. In addition, the existing technology will set cross-plate frames on both sides of the wheel to fix the central axis of the wheel. The cross-plate frames in this fixing method will block part of the dehumidification area of the wheel, which will further affect the dehumidification efficiency of the wheel.
[0004] Therefore, a new high-efficiency air wheel dehumidifier is proposed. Summary of the invention
[0005] The purpose of the present invention is to provide a new type of high-efficiency air rotary dehumidifier, which solves the problems that the drying effect of the regeneration drying area of the rotary dehumidifier is limited in the highly humid environment in the south, and the cross-plate frame will block part of the dehumidification area of the silica gel wheel, affecting the dehumidification efficiency of the silica gel wheel. By utilizing the principle that the amount of water generated by air with different humidity passing through the front surface cold place is different, the drying range of the regeneration area can be automatically adjusted according to the air humidity, and the silica gel wheel is connected to the annular channel for rotation, thereby improving the utilization rate of the dehumidification area of the silica gel wheel.
[0006] To achieve the above object, the present invention provides the following technical solutions:
[0007] A novel high-efficiency air wheel dehumidifier comprises a chassis, an air inlet arranged on the left side of the chassis, an air outlet arranged on the right side of the chassis, a processing fan arranged at the air outlet, a support plate frame fixedly connected to the chassis, a silicone wheel rotatably connected to the support plate frame, a front surface cooler arranged at the air inlet, and a rear surface cooler arranged at the air outlet, and also comprises support components arranged on both sides of the silicone wheel, a regeneration adjustment component arranged on the support component, and a control component arranged below the front surface cooler; the support components are fixedly connected to both sides of the support plate frame, and the silicone wheel is rotatably connected to the support components ; The control component utilizes the buoyancy of the water generated by the front surface cooler to control the opening and closing of the regeneration regulating component; the maximum opening angle of the regeneration regulating component is 180 degrees; when a lot of water accumulates on the front surface cooler, the water will flow to the control component, and the control component will control the opening range of the regeneration regulating component according to the amount of water. When the amount of water is large, it means that the humidity in the air is large, then the regeneration regulating component will be controlled to open, otherwise the regeneration regulating component will be controlled to close, and the maximum opening angle of the regeneration regulating component is 180 degrees. The support and fixation of the silicone wheel by the support component can prevent the literacy board frame from blocking the silicone wheel.
[0008] Preferably, the support assembly includes connecting rods fixedly connected to both sides of the support plate frame, passing rings fixedly connected to the connecting rods, a regeneration channel fixedly connected to the passing rings, a regeneration fan installed in the left regeneration channel, and a heater installed in the right regeneration channel; when the regeneration fan is working, it will draw in the outside air from the right regeneration channel, pass through the heater to become hot air, and then pass through the silica gel wheel and be discharged from the left regeneration channel, thereby completing the drying and regeneration of the silica gel wheel.
[0009] Preferably, annular grooves are provided on both sides of the silicone rotating wheel, and the silicone rotating wheel is rotatably connected to the passing rings through the annular grooves; when the motor drives the silicone rotating wheel to rotate, the silicone rotating wheel will rotate between the two groups of passing rings, and there is also a support plate frame in the middle for support, thereby improving the stability of the rotation of the silicone rotating wheel.
[0010] Preferably, a partition is fixedly connected to the left through ring, and the partition is sealedly connected to the left through ring, the chassis and the left regeneration channel; the fixed and sealed connection between the partition and the left through ring can improve the sealing of the edge of the silica gel wheel, prevent the leakage of non-dehumidified air, and further ensure the stability of the dehumidification effect.
[0011] Preferably, the regeneration adjustment component includes a tube sleeve passing through the center of the silicone rotor, a connecting plate 1 fixedly connected to the two ends of the tube sleeve, a sealing plate 1 fixedly connected to the outside of the connecting plate 1, a rotating rod rotatably connected to the center of the tube sleeve, a rotating groove opened at the two ends of the tube sleeve, a slider fixedly connected to the rotating rod and slidably connected to the rotating groove, a connecting plate 2 fixedly connected to the slider and rotatably connected to the tube sleeve, a sealing plate 2 fixedly connected to the outside of the connecting plate 2, and an arc-shaped strip fixedly connected above the sealing plate 2; the connecting plate 1, the tube sleeve, the sealing plate 1 and the passing ring are fixedly connected to each other; when the connecting plate 2 and the sealing plate 2 are in a folded state, the sealing plate 2 will cover the outside of the sealing plate 1, and the connecting plate 1 and the connecting plate 2 will be in a right angle state. At this time, the regeneration area is the 90-degree area on the silicone rotor, and the maximum limit of the opening of the connecting plate 2 and the sealing plate 2 along the rotating rod is 180 degrees.
[0012] Preferably, tube sleeves extend from both ends of the rotating rod, and the parts extending from the tube sleeves are fixedly connected to the second sealing plate; the manner in which the second sealing plate on both sides of the rotating rod is fixedly connected to the end of the rotating rod can improve the stability of the second sealing plate and prevent the second sealing plate from opening to both sides and generating a gap through the edge of the ring.
[0013] Preferably, the control component includes a collecting tank fixedly connected to the bottom of the front surface cooler, a liquid storage cylinder arranged on the left side of the through ring, a connecting pipe connected between the collecting tank and the liquid storage cylinder, a floating block arranged in the liquid storage cylinder, a counterweight block 1 connected to the top of the floating block, a traction rope connected to the counterweight block 1, a counterweight block 2 connected to the other end of the traction rope, and a pulley installed on the through ring; the weight of the counterweight block 1 is twice that of the counterweight block 2; the traction rope is arranged around the through ring half a circle and is slidably connected to the pulley, and the top of the arc strip is fixedly connected to the traction rope; when air with high humidity passes through the front surface cooler, more and more water will gather in the liquid storage cylinder, and the floating block will gradually float up in the liquid storage cylinder, and at the same time it will drive the connecting plate 2 and the sealing plate 2 to open, so that the area of the regeneration area will become larger, and then the path of the silica gel wheel through the regeneration drying area will become longer, and the drying effect will be significantly improved, and then the silica gel wheel can absorb more moisture in the air when entering the dehumidification area.
[0014] Preferably, a water outlet is provided at the bottom of the liquid storage cylinder, a drain port is provided at the top of the liquid storage cylinder, a drain pipe is connected to the drain port and the water outlet hole bracket, and the drain pipe extends to the outside of the chassis; when air with normal humidity passes through the front surface and condenses into water droplets and flows toward the liquid storage cylinder, the water will be directly discharged from the water outlet along the drain pipe to the outside of the chassis due to the small amount of injected water. When the air humidity is too high, more water will be generated through the front surface cooling. When the amount of water flowing into the liquid storage cylinder is greater than the drainage amount of the water outlet, the water level in the liquid storage cylinder will rise. When the amount of water flowing into the liquid storage cylinder is always greater than the drainage amount of the water outlet, causing the water level in the liquid storage cylinder to continue to rise, the water level will reach the drain port (which is also the upper limit of the water level) and be discharged from the drain port along the drain pipe to the outside of the chassis.
[0015] Preferably, a vertical groove is also provided on the float block, and the position of the vertical groove corresponds to the water outlet, and the width of the vertical groove is greater than the diameter of the water outlet. The vertical groove can ensure that when the float block moves in the liquid storage cylinder, the side wall will not fit against the water outlet and cause the water outlet to be blocked, and can prevent the float block from fitting against the water outlet when the amount of condensation water is small, resulting in a decrease in the drainage volume of the water outlet and the rise of the float block, resulting in a control error.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The present invention collects condensed water at the cold part of the front surface through a liquid storage cylinder. When the humidity in the air is high, more condensed water will be generated. When the condensed water is greater than the drainage volume of the water outlet, the first counterweight will rise, and then the second counterweight will pull the regeneration adjustment component to open, thereby expanding the regeneration drying area, extending the drying path of the silica gel wheel, and thus improving the drying effect. This can prevent the silica gel wheel from being damaged by increasing the temperature of the heater when the air humidity is too high. When the air humidity gradually decreases, the amount of water that enters the liquid storage cylinder due to condensation on the front surface will be less than the drainage volume of the drainage hole. Therefore, the water level in the liquid storage cylinder will gradually decrease, and the first counterweight will follow the gradual decrease of the floating block to drive the regeneration adjustment component to gradually close, so that the area of the silica gel wheel gradually expands and returns to a normal state, thereby realizing the automatic adjustment of the angle range of the regeneration area according to the air humidity, and reducing the labor of manual observation.
[0018] 2. The present invention provides annular grooves on both sides of the silicone wheel, and the annular grooves are rotatably connected to the passing rings. When the motor drives the silicone wheel to rotate, the silicone wheel will rotate between the two groups of passing rings, and there is also a support plate frame in the middle for support, which improves the stability of the rotation of the silicone wheel. Compared with the prior art, a cross is set on both sides of the silicone wheel to fix the central axis of the silicone wheel as a supporting and fixing method, which can avoid blocking the dehumidification area of the silicone wheel, increase the dehumidification area, and thus improve the dehumidification efficiency.
[0019] 3. The present invention seals and connects the partition with the left side through a ring, the chassis and the regeneration channel on the left side. This is different from the prior art in which the silicone wheel is rotatably set between two groups of plates. This rotational connection method will affect the sealing of the edge of the silicone wheel, and the un-dehumidified air is easy to leak from the edge. The present invention uses the partition and the left side through a ring for fixed sealing connection, which can improve the sealing of the edge of the silicone wheel, prevent the leakage of un-dehumidified air, and further ensure the stability of the dehumidification effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the overall appearance of the three-dimensional structure of the present invention;
[0021] Figure 2 It is a cross-sectional view of the chassis of the present invention;
[0022] Figure 3 It is a schematic diagram of the three-dimensional structure of the support assembly of the present invention;
[0023] Figure 4 It is a cross-sectional view through the ring of the present invention;
[0024] Figure 5 It is an external schematic diagram of the regeneration regulating component of the present invention;
[0025] Figure 6 This is a diagram showing the interior of the regeneration adjustment component of the present invention;
[0026] Figure 7 A side view showing the control assembly of the present invention;
[0027] Figure 8 This is a front view of the control assembly of the present invention;
[0028] Fig. 9 It is a cross-sectional view of the liquid storage cylinder of the present invention.
[0029] In the figure: 1, chassis; 10, air inlet; 11, air outlet; 12, treatment fan; 13, support plate frame; 14, silicone wheel; 141, ring groove; 15, front surface cooling; 16, rear surface cooling; 2, support assembly; 21, connecting rod; 22, through ring; 221, partition; 23, regeneration channel; 24, regeneration fan; 25, heater; 3, regeneration adjustment assembly; 31, pipe sleeve; 32, connecting plate 1; 3 3. Sealing plate one; 34. Rotating rod; 35. Rotating groove; 36. Sliding block; 37. Connecting plate two; 38. Sealing plate two; 39. Arc strip; 4. Control assembly; 41. Collecting groove; 42. Liquid storage cylinder; 421. Water outlet; 422. Drain outlet; 423. Drain pipe; 43. Connecting pipe; 44. Floating block; 441. Vertical groove; 45. Counterweight block one; 46. Traction rope; 47. Counterweight block two; 48. Pulley. DETAILED DESCRIPTION
[0030] 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.
[0031] See also Figures 1 to 9 The present invention provides a new type of high-efficiency air wheel dehumidifier, and the technical solution is as follows:
[0032] As an embodiment of the present invention, refer to Figures 1 to 3 A novel high-efficiency air rotary dehumidifier comprises a chassis 1, an air inlet 10 arranged on the left side of the chassis 1, an air outlet 11 arranged on the right side of the chassis 1, a processing fan 12 arranged at the air outlet 11, a support plate frame 13 fixedly connected to the chassis 1, a silica gel wheel 14 rotatably connected to the support plate frame 13, a front surface cooler 15 arranged at the air inlet 10, and a rear surface cooler 16 arranged at the air outlet 11, and also comprises a support assembly 2 arranged on both sides of the silica gel wheel 14, a regeneration adjustment assembly 3 arranged on the support assembly 2, and a control assembly 4 arranged below the front surface cooler 15; when in use, the processing fan 12 will work to suck the humid air from the air inlet 10 into the chassis 1, pass through the silica gel wheel 14 for dehumidification, and then discharge the humid air from the air outlet 11 is discharged. When the wet air passes through the front surface cooler 15, it will be reduced to the dew point and condensed into water liquid and flow down along the front surface cooler 15. The front surface cooler 15 plays the role of pre-dehumidifying the air. Then it passes through the silica gel wheel 14 for deep dehumidification. When the water liquid on the front surface cooler 15 accumulates more, the water liquid will flow to the control component 4. The control component 4 will control the opening range of the regeneration regulating component 3 according to the amount of water. When the amount of water is more, it means that the humidity in the air is higher, then the regeneration regulating component 3 will be controlled to open, otherwise, the regeneration regulating component 3 will be controlled to close, and the maximum opening angle of the regeneration regulating component 3 is 180 degrees. The support component 2 supports and fixes the silica gel wheel 14 to prevent the literacy board frame from blocking the silica gel wheel 14, thereby increasing the area of the dehumidification area and improving the dehumidification efficiency.
[0033] As an embodiment of the present invention, refer to Figure 3The support assembly 2 includes a connecting rod 21 fixedly connected to both sides of the support plate frame 13, a through ring 22 fixedly connected to the connecting rod 21, a regeneration channel 23 fixedly connected to the through ring 22, a regeneration fan 24 installed in the left regeneration channel 23, and a heater 25 installed in the right regeneration channel 23; when the regeneration fan 24 is working, it will suck the outside air from the right regeneration channel 23 through the heater 25 to become hot air, and then pass through the silica gel rotor 14 and be discharged from the left regeneration channel 23, thereby completing the drying and regeneration of the silica gel rotor 14.
[0034] As an embodiment of the present invention, refer to Figure 4 and Figure 2 , annular grooves 141 are provided on both sides of the silicone rotor 14, and the silicone rotor 14 is rotatably connected to the through ring 22 by means of the annular grooves 141; when the motor drives the silicone rotor 14 to rotate, the silicone rotor 14 will rotate between the two groups of through rings 22, and there is also a support plate frame 13 in the middle for support, which improves the stability of the rotation of the silicone rotor 14. Compared with the prior art, a cross is set on both sides of the silicone rotor 14 to fix the central axis of the silicone rotor 14 as a supporting and fixing method, which can avoid blocking the dehumidification area of the silicone rotor 14, increase the dehumidification area, and thus improve the dehumidification efficiency.
[0035] As an embodiment of the present invention, refer to Figure 3 A partition 221 is fixedly connected to the left through ring 22, and the partition 221 is sealedly connected to the left through ring 22, the chassis 1 and the left regeneration channel 23; the prior art rotatably sets the silica gel wheel 14 between the two groups of plates. This rotating connection method will affect the sealing of the edge of the silica gel wheel 14, and the undehumidified air is easy to leak from the edge. The present invention utilizes the partition 221 and the left through ring 22 to be fixedly sealed and connected, which can improve the sealing of the edge of the silica gel wheel 14, prevent the leakage of undehumidified air, and further ensure the stability of the dehumidification effect.
[0036] As an embodiment of the present invention, refer to Figures 4 to 6The regeneration regulating assembly 3 includes a sleeve 31 passing through the center of the silicone wheel 14, a connecting plate 32 fixedly connected to both ends of the sleeve 31, a sealing plate 33 fixedly connected to the outside of the connecting plate 32, a rotating rod 34 rotatably connected to the center of the sleeve 31, a rotating groove 35 provided at both ends of the sleeve 31, a slider 36 fixedly connected to the rotating rod 34 and slidably connected to the rotating groove 35, a connecting plate 37 fixedly connected to the slider 36 and rotatably connected to the sleeve 31, a sealing plate 38 fixedly connected to the outside of the connecting plate 37, and an arc strip 39 fixedly connected above the sealing plate 38; wherein a sealing strip is provided at the bottom of the arc strip 39 to keep the arc strip 39 and the through ring 22 sealed; the connecting plate 32, the sleeve 31, the sealing plate 33 3 and through the ring 22, the four are fixedly connected to each other, and the silicone runner 14 is rotatably connected to the tube sleeve 31, and the tube sleeve 31 can further provide support for the rotation of the silicone runner 14; when the connecting plate 2 37 and the sealing plate 2 38 are in a folded state, the sealing plate 2 38 will cover the outside of the sealing plate 1 33, and the connecting plate 1 32 and the connecting plate 2 37 will be in a right angle state. At this time, the regeneration area is the 90-degree area on the silicone runner 14, and the maximum opening limit of the connecting plate 2 37 and the sealing plate 2 38 along the rotating rod 34 is 180 degrees. When the maximum opening limit is reached, the connecting plate 2 37 will be horizontal with the connecting plate 1 32, and the regeneration and drying area on the silicone runner 14 will become 180 degrees, and the slider 36 will abut against the edge of the rotating groove 35 and cannot continue to slide.
[0037] As an embodiment of the present invention, refer to Figure 5 , the tube sleeves 31 extend out of both ends of the rotating rod 34, and the parts extending out of the tube sleeve 31 are fixedly connected to the sealing plate 2 38; the sealing plates 2 38 on both sides of the rotating rod 34 are fixedly connected to the ends of the rotating rod 34, which can improve the stability of the sealing plate 2 38, prevent the sealing plate 2 38 from opening to both sides and generating a gap with the edge of the through ring 22, and further improve the sealing between the sealing plate 2 38 and the through ring 22.
[0038] As an embodiment of the present invention, refer to Figures 7 to 9The control assembly 4 includes a collecting tank 41 fixedly connected to the bottom of the front surface cooling 15, a liquid storage cylinder 42 arranged on the left side of the through ring 22, a connecting pipe 43 connected between the collecting tank 41 and the liquid storage cylinder 42, a floating block 44 arranged in the liquid storage cylinder 42, a counterweight block 1 45 connected to the top of the floating block 44, a traction rope 46 connected to the counterweight block 1 45, a counterweight block 2 47 connected to the other end of the traction rope 46, and a pulley 48 installed on the through ring 22; the weight of the counterweight block 1 45 is twice that of the counterweight block 2 47; the traction rope 46 is arranged around the through ring 22 for half a circle and is slidably connected to the pulley 48, and the top of the arc strip 39 is fixedly connected to the traction rope 46; when the air with high humidity passes through the front surface cooling 15, the temperature will drop to the dew point at the front surface cooling 1 5, the water droplets will drip into the collecting tank 41 below the front surface cooler 15, and flow into the liquid storage cylinder 42 along the connecting pipe 43. As the water gathers more and more in the liquid storage cylinder 42, the floating block 44 will gradually float and rise in the liquid storage cylinder 42, and at the same time, it will drive the counterweight block 1 45 connected thereto to rise. When the counterweight block 1 45 rises, the counterweight block 2 47 will drop a corresponding distance under the action of gravity. At the same time, since the traction rope 46 is fixedly connected to the arc strip 39, it will drive the connecting plate 2 37 and the sealing plate 2 38 to open, so that the area of the regeneration area will become larger, and then the path of the silica gel wheel 14 through the regeneration and drying area will become longer, and the drying effect will be significantly improved, and then when entering the dehumidification area, the silica gel wheel 14 can absorb more moisture in the air.
[0039] As an embodiment of the present invention, refer to Figures 7 to 9, a water outlet 421 is also provided at the bottom of the liquid storage cylinder 42, and a drain port 422 is provided at the top of the liquid storage cylinder 42. The drain port 422 and the water outlet hole 421 bracket are connected with a drain pipe 423, and the drain pipe 423 extends to the outside of the chassis 1; when the water droplets condensed by the air with normal humidity pass through the front surface cooling 15 and flow to the liquid storage cylinder 42, due to the small amount of injected water, it will be directly discharged from the water outlet 421 along the drain pipe 423 to the outside of the chassis 1. When the air humidity is too high, more water will be generated through the front surface cooling 15. When the amount of water flowing to the liquid storage cylinder 42 is greater than the drainage amount of the water outlet 421, the water level in the liquid storage cylinder 42 will rise, thereby driving the counterweight block 45 to rise, and the regeneration adjustment component 3 will open, and the regeneration drying The area will become larger, and as the silica gel wheel 14 continues to run and dehumidify, when the humidity in the air gradually decreases, the amount of condensed water is less than the drainage volume of the water outlet 421, the water in the liquid storage cylinder 42 will gradually decrease, and then the counterweight block 45 will gradually decrease to drive the regeneration adjustment component 3 to close, thereby expanding the dehumidification area to ensure the dehumidification efficiency. When the amount of water flowing into the liquid storage cylinder 42 is always greater than the drainage volume of the water outlet 421, causing the water level in the liquid storage cylinder 42 to continue to rise, the water level will reach the drain port 422 (which is also the maximum limit of the water level) and be discharged from the drain port 422 along the drain pipe 423 to the outside of the chassis 1. At this time, the float 44 will rise to the highest position, and the regeneration adjustment component 3 will be opened to the maximum limit.
[0040] As an embodiment of the present invention, refer to Fig. 9 A vertical groove 441 is also provided on the float 44, and the position of the vertical groove 441 corresponds to the water outlet hole 421, and the width of the vertical groove 441 is greater than the diameter of the water outlet hole 421; the vertical groove 441 on the float 44 can ensure that when the float 44 moves in the liquid storage cylinder 42, the side wall will not fit against the water outlet hole 421, causing the water outlet hole 421 to be blocked, and can prevent the float 44 from fitting against the water outlet hole 421 when the amount of condensation water is small, causing the water outlet hole 421 to discharge less water and the float 44 to rise, resulting in a control error.
[0041] Working principle: Refer to Figure 1 and Figure 2 When in use, the processing fan 12 will suck the wet air from the air inlet 10 into the chassis 1, dehumidify it through the silica gel wheel 14, and then discharge it from the air outlet 11. When the wet air passes through the front surface cooler 15, it will be reduced to the dew point and condensed into water liquid and flow down along the front surface cooler 15. The front surface cooler 15 plays a role in pre-dehumidifying the air, and then it passes through the silica gel wheel 14 for deep dehumidification. Due to the heating and drying effect of the heater 25 on the silica gel wheel 14, the temperature of the silica gel wheel 14 will increase, so the temperature of the air dehumidified by the silica gel wheel 14 will also increase accordingly. Therefore, before being discharged from the chassis 1, it will be cooled by the rear surface cooler 16 to meet the discharge temperature standard;
[0042] Reference Figure 1 , Figure 2 and Figure 4 The silicone rotating wheel 14 is driven by a motor when working. When the silicone rotating wheel 14 rotates, it will be rotatably connected with the two groups of through rings 22 through the ring grooves 141 on both sides. Since the pipe sleeve 31 is fixedly connected with the through ring 22 through the connecting plate 1 32, the silicone rotating wheel 14 will also rotate with the pipe sleeve 31 as the central axis, and there is also a support plate frame 13 in the middle for support, which improves the stability of the rotation of the silicone rotating wheel 14. Compared with the prior art, by setting a cross on both sides of the silicone rotating wheel 14 to fix the central axis of the silicone rotating wheel 14 as a supporting and fixing method, the present invention can avoid blocking the dehumidification area of the silicone rotating wheel 14, increase the dehumidification area, and thus improve the dehumidification efficiency;
[0043] Reference Figure 3 , and because the partition 221 is fixedly sealed and connected to the left side through the ring 22, the sealing of the edge of the silica gel wheel 14 can be improved to prevent the leakage of the undehumidified air, further ensuring the stability of the dehumidification effect;
[0044] Reference Figures 2 to 9When air with normal humidity enters the front cooling surface 15, the amount of condensed water is small, and the amount of water entering the liquid storage cylinder 42 will be less than the amount of water discharged from the water outlet 421. Therefore, the water will be directly discharged from the water outlet 421 along the drain pipe 423 to the outside of the chassis 1. When air with excessive humidity enters the chassis 1 and passes through the front cooling surface 15, the temperature will drop to the dew point and condense water droplets at the front cooling surface 15. The water droplets will drip into the collecting tank 41 below the front cooling surface 15 and flow along the connecting pipe 423. 3 flows into the liquid storage cylinder 42, and at this time the amount of condensed water will be greater than the drainage amount of the water outlet 421. As more and more water gathers in the liquid storage cylinder 42, the floating block 44 will gradually float up in the liquid storage cylinder 42, and at the same time will drive the counterweight block 1 45 connected thereto to rise. When the counterweight block 1 45 rises, the counterweight block 2 47 will drop a corresponding distance under the action of gravity. At the same time, since the traction rope 46 is fixedly connected to the arc strip 39, it will drive the connecting plate 2 37 When the sealing plate 38 is opened, the area of the regeneration area will become larger, and the path of the silica gel wheel 14 through the regeneration drying area will become longer, and the drying effect will be significantly improved. When entering the dehumidification area, the dry silica gel wheel 14 can absorb more moisture in the air. When the humidity in the air gradually decreases and the amount of condensed water is less than the drainage volume of the water outlet 421, the water in the liquid storage cylinder 42 will gradually decrease, and the counterweight block 45 will gradually decrease to drive the regeneration adjustment component 3 to close, thereby expanding the dehumidification working area of the silica gel wheel 14 to ensure the dehumidification efficiency. When the amount of water flowing into the liquid storage cylinder 42 is always greater than the drainage volume of the water outlet 421, causing the water level in the liquid storage cylinder 42 to continue to rise, the water level will reach the drain port 422 (which is also the upper limit of the water level) and be discharged from the drain port 422 along the drain pipe 423 to the outside of the chassis 1. At this time, the floating block 44 will rise to the highest position, and the regeneration adjustment component 3 will be opened to the maximum limit.
[0045] Even though we have provided specific embodiments of the present invention, it should be clear to those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without violating the fundamental concept and purpose of the present invention. The scope of the present invention is not fixed, but is ultimately determined by the claims contained in the patent document and the equivalent technical solutions. In short, the scope of the present invention is defined by the attached claims and their equivalents.
Claims
1. A novel high-efficiency air wheel dehumidifier, comprising a chassis (1), an air inlet (10) arranged on the left side of the chassis (1), an air outlet (11) arranged on the right side of the chassis (1), a processing fan (12) arranged at the air outlet (11), a support plate frame (13) fixedly connected to the chassis (1), a silica gel wheel (14) rotatably connected to the support plate frame (13), a front surface cooler (15) arranged at the air inlet (10), and a rear surface cooler (16) arranged at the air outlet (11), characterized in that: It also includes a support assembly (2) arranged on both sides of the silica gel wheel (14), a regeneration adjustment assembly (3) arranged on the support assembly (2), and a control assembly (4) arranged below the front surface cooler (15); the support assembly (2) is fixedly connected to both sides of the support plate frame (13), and the silica gel wheel (14) is rotatably connected to the support assembly (2); the control assembly (4) uses the buoyancy of the water liquid generated by the front surface cooler (15) to control the opening and closing of the regeneration adjustment assembly (3); the maximum opening angle of the regeneration adjustment assembly (3) is 180 degrees.
2. A novel high-efficiency air wheel dehumidifier according to claim 1, characterized in that: The support assembly (2) comprises a connecting rod (21) fixedly connected to both sides of the support plate frame (13), a passing ring (22) fixedly connected to the connecting rod (21), a regeneration channel (23) fixedly connected to the passing ring (22), a regeneration fan (24) installed on the left regeneration channel (23), and a heater (25) installed on the right regeneration channel (23).
3. A novel high-efficiency air wheel dehumidifier according to claim 2, characterized in that: Annular grooves (141) are provided on both sides of the silica gel rotating wheel (14), and the silica gel rotating wheel (14) is rotatably connected to the through ring (22) via the annular grooves (141).
4. A novel high-efficiency air wheel dehumidifier according to claim 3, characterized in that: A partition plate (221) is fixedly connected to the left through ring (22), and the partition plate (221) is sealedly connected to the left through ring (22), the chassis (1) and the left regeneration channel (23).
5. A novel high-efficiency air wheel dehumidifier according to claim 4, characterized in that: The regeneration regulating component (3) comprises a tube sleeve (31) penetrating the center of the silica gel rotating wheel (14), a connecting plate (32) fixedly connected to both ends of the tube sleeve (31), a sealing plate (33) fixedly connected to the outside of the connecting plate (32), a rotating rod (34) rotatably connected to the center of the tube sleeve (31), a rotating groove (35) provided at both ends of the tube sleeve (31), a slider (36) fixedly connected to the rotating rod (34) and slidably connected to the rotating groove (35), a connecting plate (37) fixedly connected to the slider (36) and rotatably connected to the tube sleeve (31), a sealing plate (38) fixedly connected to the outside of the connecting plate (37), and an arc strip (39) fixedly connected above the sealing plate (38); the connecting plate (32), the tube sleeve (31), the sealing plate (33) and the passing ring (22) are fixedly connected to each other.
6. A novel high-efficiency air wheel dehumidifier according to claim 5, characterized in that: Both ends of the rotating rod (34) extend out of the pipe sleeve (31), and the portion extending out of the pipe sleeve (31) is fixedly connected to the second sealing plate (38).
7. A novel high-efficiency air wheel dehumidifier according to claim 6, characterized in that: The control assembly (4) comprises a collecting tank (41) fixedly connected to the lower part of the front surface cooler (15), a liquid storage cylinder (42) arranged on the left side of the through ring (22), a connecting pipe (43) connected between the collecting tank (41) and the liquid storage cylinder (42), a floating block (44) arranged in the liquid storage cylinder (42), a counterweight block (45) connected to the upper part of the floating block (44), a traction rope (46) connected to the counterweight block (45), a counterweight block (47) connected to the other end of the traction rope (46), and a pulley (48) installed on the through ring (22); the weight of the counterweight block (45) is twice that of the counterweight block (47); the traction rope (46) is arranged around the through ring (22) for half a circle and is slidably connected to the pulley (48), and the top of the arc strip (39) is fixedly connected to the traction rope (46).
8. A novel high-efficiency air wheel dehumidifier according to claim 7, characterized in that: The bottom of the liquid storage cylinder (42) is also provided with a water outlet (421), the top of the liquid storage cylinder (42) is provided with a drainage port (422), the drainage port (422) and the bracket of the water outlet (421) are connected with a drainage pipe (423), and the drainage pipe (423) extends to the outside of the chassis (1).
9. A novel high-efficiency air wheel dehumidifier according to claim 8, characterized in that: The floating block (44) is also provided with a vertical groove (441), and the position of the vertical groove (441) corresponds to the water outlet hole (421), and the width of the vertical groove (441) is greater than the diameter of the water outlet hole (421).