Intelligent electromagnetic valve electric control automobile dryer
By designing a combination of temporary storage box, emission pipe and rotation mechanism on the automobile dryer, the directional emission and emission angle adjustment of pollutants is achieved, the problem of pollutant sputtering in existing dryers is solved, and the accuracy of emissions and the aesthetics of the vehicle is improved.
Patent Information
- Application Number
- CN202421980706.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2034-08-14
AI Technical Summary
When existing automobile dryers discharge pollutants such as oil and pollution, the fixed position may cause pollutants to sputter onto surrounding components, affecting their aesthetics and may cause environmental pollution.
An intelligent solenoid valve electronically controlled automobile dryer is designed, using a combination of a temporary storage box, a discharge pipe and a rotating mechanism to accumulate pollutants through the temporary storage box, and when suitable for terrain, it is discharged in a direction through the solenoid valve and a rotating mechanism to adjust the emission angle to reduce the probability of sputtering.
The emission location of pollutants is effectively controlled, the probability of pollutants being sputtered onto surrounding components is reduced, the beauty of the vehicle is maintained, and environmental pollution is reduced.
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Figure CN222886361U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of automotive components, and particularly to an intelligent solenoid valve controlled automotive dryer. Background Art
[0002] Automotive dryers play a crucial role in the automotive braking system, mainly used to remove moisture, oil and other impurities from compressed air to ensure the normal operation of the braking system and extend its service life.
[0003] In related technologies, reference can be made to the Chinese invention patent with the authorized announcement number CN106466538A, which discloses an automotive air dryer, including a drying cylinder. A filter element is provided inside the drying cylinder, a slag discharge port is provided at the lower end of the filter element, and a desiccant is provided between the filter element and the drying cylinder; an air inlet pipe is provided at the lower part of the drying cylinder, and the air inlet pipe is communicated with the filter element. An air outlet pipe is provided at the top of the drying cylinder; the filter element is composed of a filter cloth and a filter net, and the filter net is installed inside the filter cloth; a backflush pipe is further provided at the lower part of the drying cylinder, an electric heating wire is provided inside the backflush pipe, the front end of the backflush pipe is communicated with the desiccant, and the rear end of the backflush pipe is communicated with the air inlet pipe through a pipeline; an oil absorption cotton is provided at the position corresponding to the air outlet of the air outlet pipe at the top of the desiccant.
[0004] However, in the actual working process of the above dryer, since the position of the dryer is fixed, the position of the dryer when discharging pollutants such as oil is also fixed. However, the terrain where the vehicle travels is complex and changeable. When facing different types of terrains, the dryer may splash pollutants such as oil onto surrounding components during the discharge process, which not only affects the appearance but also may cause environmental pollution. Utility Model Content
[0005] In order to control the sewage discharge work of the dryer, the present application provides an intelligent solenoid valve controlled automotive dryer.
[0006] An intelligent solenoid valve controlled automotive dryer provided by the present application adopts the following technical solutions:
[0007] An intelligent solenoid valve controlled automotive dryer includes a dryer body. A sewage discharge port is provided at the bottom of the dryer body, and a directional device for directionally discharging pollutants discharged from the sewage discharge port is provided on the dryer body. The directional device includes:
[0008] A temporary storage box, which is provided on the dryer body and communicated with the sewage discharge port. Exhaust holes vertically penetrating the top wall of the temporary storage box are provided at both ends of the top wall of the temporary storage box, and a sewage discharge hole is provided at the bottom of the temporary storage box;
[0009] A discharge pipe, which is rotatably provided at the bottom of the temporary storage box and communicated with the sewage discharge hole. A solenoid valve is provided on the discharge pipe;
[0010] A rotating mechanism, which is arranged on the temporary storage box and is used to drive the discharge pipe to rotate.
[0011] By adopting the above technical solution, a temporary storage box is installed on the dryer body. After the gas discharged from the dryer body through the sewage outlet enters the temporary storage box, it is discharged through the exhaust holes on the top wall of the temporary storage box. Oil stains and other pollutants discharged from the dryer through the sewage outlet are accumulated in the temporary storage box. When the vehicle is driving on a terrain suitable for discharging pollutants, the solenoid valve is opened to discharge the pollutants accumulated in the temporary storage box through the discharge pipe. At the same time, the discharge pipe can be rotated by the rotating mechanism, so as to adjust the discharge angle of the discharge pipe, reduce the probability that the pollutants discharged from the discharge pipe splash onto the surrounding components, and maintain the overall beauty of the vehicle.
[0012] Optionally, the four circumferential side walls of the temporary storage box in the horizontal direction are all arranged in an inclined state, the bottom area of the temporary storage box is smaller than the top area, and the bottom ends of the four side walls of the temporary storage box are all located at the side of the sewage outlet.
[0013] By adopting the above technical solution, the side walls of the temporary storage box are arranged in an inclined state, so that the pollutants splashed onto the side walls of the temporary storage box can be concentrated and accumulated on the bottom wall of the temporary storage box where the sewage outlet is opened under the action of gravity, reducing the probability that the pollutants adhere to the corner positions of the bottom wall of the temporary storage box and ensuring the sewage discharge effect of the sewage outlet.
[0014] Optionally, the rotating mechanism includes:
[0015] A rotating ring, which is rotatably arranged on the temporary storage box and is located at the sewage discharge hole of the temporary storage box;
[0016] A corrugated hose, which is arranged on the rotating ring, and the discharge pipe is arranged on the corrugated hose;
[0017] A first driving component, which is arranged on the temporary storage box and is used to drive the rotating ring to rotate;
[0018] A second driving component, which is arranged on the rotating ring and is used to drive the discharge pipe to bend and rotate the corrugated hose.
[0019] By adopting the above technical solution, the first driving component starts to drive the rotating ring to rotate, the rotating ring rotates to drive the corrugated hose to rotate, the corrugated hose rotates to drive the discharge pipe to rotate in the horizontal direction, and the second driving component moves to drive the discharge pipe to bend and rotate the corrugated hose, thus completing the adjustment work of the discharge angle of the discharge pipe.
[0020] Optionally, the first driving component includes:
[0021] The first driving gear ring, which is sleeved on the outer side wall of the rotating ring;
[0022] The first driving motor, which is arranged on the temporary storage box;
[0023] The first driving gear, which is arranged on the output shaft of the first driving motor and meshes with the first driving gear ring.
[0024] By adopting the above technical solution, when the first driving motor starts, it drives the first driving gear to rotate. The rotation of the first driving gear drives the first driving gear ring to rotate, and the rotation of the first driving gear ring drives the rotating ring to rotate. Thus, the rotation of the rotating ring is realized by controlling the first driving motor.
[0025] Optionally, the second driving assembly includes:
[0026] The second driving rod, one end of which is rotatably arranged on the rotating ring, and the other end of the second driving rod is connected to the discharge pipe;
[0027] The second driving motor, which is arranged on the rotating ring and the output shaft is connected to the rotating shaft of the second driving rod.
[0028] By adopting the above technical solution, when the second driving motor starts, it drives the second driving rod to rotate. The rotation of the second driving rod drives the bending corrugated hose of the discharge pipe to rotate. Thus, the rotation of the discharge pipe is realized by controlling the second driving motor, and the universal rotation of the discharge pipe is realized through the cooperation of the first driving motor and the second driving motor.
[0029] Optionally, a liquid level sensor is arranged in the temporary storage box, and a controller electrically connected to the central control system of the vehicle is arranged on the dryer body. The controller is electrically connected to the liquid level sensor, the solenoid valve, the first driving motor and the second driving motor.
[0030] By adopting the above technical solution, a liquid level sensor is installed in the temporary storage box. Thus, the driver can judge the stock of pollutants in the temporary storage box through the liquid level sensor. When there is more accumulation of pollutants in the temporary storage box, it is convenient for the driver to timely control the solenoid valve to open through the controller to discharge the pollutants, and the discharge angle can be adjusted by controlling the first driving motor and the second driving motor, which is convenient and fast.
[0031] Optionally, the temporary storage box is made of transparent acrylic board.
[0032] By adopting the above technical solution, the temporary storage box is set as a temporary storage box made of transparent acrylic board. Thus, the driver can also know the stock of pollutants in the temporary storage box by direct observation, which is convenient for the driver to timely discharge the pollutants in the temporary storage box.
[0033] In summary, the present application includes at least one of the following beneficial technical effects:
[0034] 1. By installing a temporary storage box on the dryer body, the gas discharged from the dryer body through the sewage outlet enters the temporary storage box and is discharged through the exhaust holes on the top wall of the temporary storage box. Pollutants such as oil stains discharged from the dryer body through the sewage outlet accumulate in the temporary storage box. When the vehicle is driving on a terrain suitable for discharging pollutants, the solenoid valve is opened to discharge the pollutants accumulated in the temporary storage box through the discharge pipe. At the same time, the discharge pipe can be rotated by the rotating mechanism to adjust the discharge angle of the discharge pipe, reducing the probability that the pollutants discharged from the discharge pipe splash onto surrounding components and maintaining the overall beauty of the vehicle;
[0035] 2. By obliquely arranging the side wall of the temporary storage box, the pollutants splashed onto the side wall of the temporary storage box can accumulate on the bottom wall of the temporary storage box with a sewage outlet along the inclined side wall under the action of gravity, reducing the probability that the pollutants adhere to the corner position of the bottom wall of the temporary storage box and ensuring the sewage discharge effect of the sewage outlet;
[0036] 3. By setting the temporary storage box to be made of transparent acrylic sheet, the driver can also know the pollutant stock in the temporary storage box by direct observation, which is convenient for the driver to discharge the pollutants in the temporary storage box in time. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] Figure 1 is a three-dimensional structural schematic diagram of the present application;
[0038] Figure 2 is a structural schematic diagram of the orientation device in the present application, in which the side wall of the temporary storage box is sectioned;
[0039] Figure 3 is Figure 2 an enlarged schematic diagram of part A in
[0040] Reference numerals: 1, dryer body; 11, exhaust hole; 12, liquid level sensor; 13, controller; 14, sewage outlet; 2, orientation device; 21, temporary storage box; 22, discharge pipe; 23, rotating mechanism; 24, rotating ring; 25, corrugated hose; 26, first drive assembly; 27, second drive assembly; 28, solenoid valve; 31, first drive gear ring; 32, first drive motor; 33, first drive gear; 41, second drive rod; 42, second drive motor; 43, rotating shaft. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0041] The following further describes the present application in detail with reference to the attached Figure 1 - attached Figure 3 drawings.
[0042] An embodiment of the present application discloses an intelligent solenoid valve controlled automotive dryer.
[0043] Referring to Figure 1 and Figure 2 , the intelligent solenoid valve controlled automotive dryer includes a dryer body 1. A sewage discharge port 14 is provided at the bottom of the dryer body 1, and a directional device 2 for directionally discharging pollutants discharged from the sewage discharge port 14 is provided on the dryer body 1.
[0044] Referring to Figure 1 and Figure 2 , the directional device 2 includes a temporary storage box 21, a discharge pipe 22, and a rotating mechanism 23. The temporary storage box 21 is fixedly installed on the lower surface of the dryer body 1 and is communicated with the sewage discharge port 14. The temporary storage box 21 is made of transparent acrylic sheet. A sewage discharge hole penetrating the bottom wall of the temporary storage box 21 is provided on the lower surface of the temporary storage box 21. Both ends of the temporary storage box 2 extend outside the dryer body 1. Exhaust holes 11 vertically penetrating the top wall of the temporary storage box 21 are uniformly arranged on the upper surfaces of both ends of the temporary storage box 21 extending outside the dryer body 1. The four circumferential side walls of the temporary storage box 21 in the horizontal direction are all arranged in an inclined state, the bottom area of the temporary storage box 21 is smaller than the top area, and the bottom ends of the four side walls of the temporary storage box 21 are all located at the side of the sewage discharge hole. The gas discharged from the dryer body 1 through the sewage discharge hole enters the temporary storage box 21 and is discharged through the exhaust holes 11 on the top wall of the temporary storage box 21, and pollutants such as oil stains discharged from the dryer body 1 through the sewage discharge hole are accumulated in the temporary storage box 21.
[0045] Referring to Figure 1 and Figure 2 , the discharge pipe 22 is rotatably installed at the bottom of the temporary storage box 21 through the rotating mechanism 23. The rotating mechanism 23 includes a rotating ring 24, a corrugated hose 25, a first driving component 26, and a second driving component 27. The rotating ring 24 is rotatably installed on the lower surface of the temporary storage box 21, and the rotating ring 24 is located at the sewage discharge hole. The corrugated hose 25 is fixedly installed on the lower surface of the rotating ring 24. The discharge pipe 22 is fixedly installed at the bottom end of the corrugated hose 25, and a solenoid valve 28 is installed on the discharge pipe 22.
[0046] Referring to Figure 2 and Figure 3, the first driving component 26 is arranged on the temporary storage box 21 and is used to drive the rotating ring 24 to rotate. The first driving component 26 includes a first driving gear ring 31, a first driving motor 32 and a first driving gear 33. The first driving gear ring 31 is fixedly sleeved on the outer side wall of the rotating ring 24. The first driving motor 32 is fixedly installed on the lower surface of the temporary storage box 21. The first driving gear 33 is fixedly installed on the output shaft of the first driving motor 32 and meshes with the first driving gear ring 31. When the first driving motor 32 is started to drive the first driving gear 33 to rotate, the first driving gear 33 rotates to drive the first driving gear ring 31 to rotate, and the first driving gear ring 31 rotates to drive the rotating ring 24 to rotate. Thus, the rotation of the rotating ring 24 is realized by controlling the first driving motor 32.
[0047] Referring to Figure 2 and Figure 3 , the second driving component 27 is arranged on the rotating ring 24 and is used to drive the curved corrugated hose 25 of the discharge pipe 22 to rotate. The second driving component 27 includes a second driving rod 41 and a second driving motor 42. One end of the second driving rod 41 is rotatably installed on the lower surface of the rotating ring 24 through a rotating shaft 43. The other end of the second driving rod 41 is fixedly connected to the outer side wall of the discharge pipe 22. The second driving motor 42 is fixedly installed on the lower surface of the rotating ring 24 and the output shaft is fixedly connected to the rotating shaft 43. When the second driving motor 42 is started to drive the second driving rod 41 to rotate, the second driving rod 41 rotates to drive the curved corrugated hose 25 of the discharge pipe 22 to rotate. Thus, the rotation of the discharge pipe 22 is realized by controlling the second driving motor 42, and the universal rotation of the discharge pipe 22 is realized through the cooperation of the first driving motor 32 and the second driving motor 42.
[0048] Referring to Figure 2 and Figure 3 , a liquid level sensor 12 is fixedly installed on the inner top wall of the temporary storage box 21. A controller 13 electrically connected to the central control system of the vehicle is arranged on the dryer body 1. The controller 13 is electrically connected to the liquid level sensor 12, the electromagnetic valve 28, the first driving motor 32 and the second driving motor 42. Through the liquid level sensor 12, the driver can judge the stock of pollutants in the temporary storage box 21. When there is a large accumulation of pollutants in the temporary storage box 21, it is convenient for the driver to control the electromagnetic valve 28 to open through the controller 13 to discharge the pollutants in time, and the discharge angle can be adjusted by controlling the first driving motor 32 and the second driving motor 42, which is convenient and fast.
[0049] The working principle of the embodiment of the present application is as follows:
[0050] The temporary storage box 21 is installed on the dryer body 1. The gas discharged from the dryer body 1 through the sewage outlet 14 enters the temporary storage box 21 and is discharged through the exhaust holes 11 on the top wall of the temporary storage box 21. The pollutants such as oil stains discharged from the dryer body 1 through the sewage outlet 14 accumulate in the temporary storage box 21. When the vehicle is driving on a terrain suitable for discharging pollutants, the solenoid valve 28 is opened to discharge the pollutants accumulated in the temporary storage box 21 through the discharge pipe 22. At the same time, the discharge angle of the discharge pipe 22 can be adjusted by controlling the first drive motor 32 and the second drive motor 42, thereby reducing the probability that the pollutants discharged from the discharge pipe 22 splash onto the surrounding components and maintaining the overall beauty of the vehicle.
[0051] The above are all the preferred embodiments of this application, and the protection scope of this application is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of this application should be covered within the protection scope of this application.
Claims
1. An intelligent solenoid valve electronically controlled automobile dryer, characterized in that: The dryer body (1) comprises a dryer body (1), the bottom of which is provided with a sewage outlet (14), and the dryer body (1) is provided with a directional device (2) for directional discharge of pollutants discharged from the sewage outlet (14), wherein the directional device (2) comprises: A temporary storage box (21), the temporary storage box (21) being arranged on the dryer body (1) and being connected to the sewage outlet (14), exhaust holes (11) vertically penetrating the top wall of the temporary storage box (21) being provided at both ends of the top wall of the temporary storage box (21), and a sewage outlet hole being provided at the bottom of the temporary storage box (21); A discharge pipe (22), the discharge pipe (22) is rotatably arranged at the bottom of the temporary storage box (21) and is connected to the sewage discharge hole, and a solenoid valve (28) is arranged on the discharge pipe (22); A rotating mechanism (23), wherein the rotating mechanism (23) is arranged on the temporary storage box (21) and is used to drive the discharge pipe (22) to rotate.
2. The intelligent solenoid valve electronically controlled automobile dryer according to claim 1, characterized in that: The four circumferential side walls of the temporary storage box (21) in the horizontal direction are all arranged in an inclined state, the bottom surface area of the temporary storage box (21) is smaller than the top surface area, and the bottom ends of the four side walls of the temporary storage box (21) are all located on the sides of the sewage outlet (14).
3. The intelligent solenoid valve electronically controlled automobile dryer according to claim 1, characterized in that: The rotating mechanism (23) comprises: A rotating ring (24), the rotating ring (24) being rotatably disposed on the temporary storage box (21), the rotating ring (24) being located at a sewage discharge hole of the temporary storage box (21); A corrugated hose (25), wherein the corrugated hose (25) is arranged on the rotating ring (24), and the discharge pipe (22) is arranged on the corrugated hose (25); A first driving component (26), the first driving component (26) being arranged on the temporary storage box (21) and being used for driving the rotating ring (24) to rotate; A second driving assembly (27) is arranged on the rotating ring (24) and is used to drive the discharge pipe (22) and the curved corrugated hose (25) to rotate.
4. The intelligent solenoid valve electronically controlled automobile dryer according to claim 3 is characterized in that: The first drive assembly (26) comprises: A first driving gear ring (31), wherein the first driving gear ring (31) is sleeved on the outer side wall of the rotating ring (24); A first drive motor (32), wherein the first drive motor (32) is arranged on the temporary storage box (21); A first driving gear (33), wherein the first driving gear (33) is arranged on an output shaft of a first driving motor (32) and meshes with a first driving gear ring (31).
5. The intelligent solenoid valve electronically controlled automobile dryer according to claim 4, characterized in that: The second driving assembly (27) comprises: A second driving rod (41), one end of the second driving rod (41) being rotatably disposed on the rotating ring (24), and the other end of the second driving rod (41) being connected to the discharge pipe (22); A second driving motor (42), wherein the second driving motor (42) is arranged on the rotating ring (24) and the output shaft is connected to the second driving rod (41).
6. The intelligent solenoid valve electronically controlled automobile dryer according to claim 5, characterized in that: A liquid level sensor (12) is arranged in the temporary storage box (21), and a controller (13) electrically connected to a central control system of a vehicle is arranged on the dryer body (1), and the controller (13) is electrically connected to the liquid level sensor (12), the solenoid valve (28), the first drive motor (32), and the second drive motor (42).
7. The intelligent solenoid valve electronically controlled automobile dryer according to claim 1, characterized in that: The temporary storage box (21) is a temporary storage box (21) made of a transparent acrylic sheet.
Citation Information
Patent Citations
Automobile air drier
CN106466538A