Textile air compressor
By introducing detection components and drive mechanisms into the air compressor, automatic cleaning and replacement of the filter plate are achieved, solving the problem of filter plate clogging and improving the production efficiency and cleaning efficiency of the air compressor.
Patent Information
- Application Number
- CN202310397273.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-10
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2043-04-10
AI Technical Summary
During the filtration process of existing air compressors, impurities, moisture, and grease easily adhere to the filter plate, causing blockage, reducing the air intake rate, and affecting the production efficiency of the air compressor.
An air compressor with a detection component is designed to detect the air flow rate. When the flow rate is lower than the specified value, the driving mechanism drives the filter plate to move to the cleaning box for cleaning. The cleaning mechanism cleans the filter plate and the other filter plate moves to the air inlet, realizing automatic replacement and cleaning of the filter plate.
It speeds up the rate at which air passes through the filter plate, reduces the filter plate clogging time, improves the production efficiency of the air compressor, and reduces the risk of contamination during the cleaning process.
Smart Images

Figure CN116498529B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of air compressors, and in particular to an air compressor for textile use. Background Art
[0002] Air compressors are needed in textile work. When the air compressor compresses the air, if the air is not filtered, impurities such as oil and moisture in the air will affect the quality of the compressed air, which will seriously affect the quality of the finished textile products in subsequent production.
[0003] Existing air compressors are equipped with filter plates to filter air. However, impurities mixed with moisture, grease, etc. in the air tend to adhere to the filter holes of the filter plates, thereby clogging the filter plates, thereby slowing down the rate at which air enters and reducing the production efficiency of the air compressor. Summary of the Invention
[0004] In order to improve the production efficiency of an air compressor, the present application provides an air compressor for textile use.
[0005] This application provides a textile air compressor, which adopts the following technical solution:
[0006] A textile air compressor comprises an air compressor body, a filter plate disposed on the air compressor body and used to block impurities, two filter plates are provided and connected together, the filter plates are slidably disposed on the air compressor body, and one of the filter plates blocks the air inlet of the air compressor body, and a cleaning device for cleaning the filter plate is provided on the air compressor body, the cleaning device comprising:
[0007] Two cleaning boxes, the two cleaning boxes are arranged on the air compressor body and located on both sides of the two filter plates, and one of the filter plates is located in the cleaning box;
[0008] A driving mechanism, which is provided on the air compressor body and is used to drive the two filter plates to move back and forth;
[0009] A cleaning mechanism, which is disposed on the cleaning box and is used to clean the filter plate;
[0010] The detection component is arranged on the air compressor body and is used to detect the speed at which air passes through the filter plate and enters the air compressor body. The detection component is electrically connected to the driving mechanism and the cleaning mechanism.
[0011] By adopting the above technical solution, after the impurities block the filter plate, the rate at which air passes through the filter plate will decrease, and the detection component detects the air flow rate. When the detection component detects that the air flow rate is lower than the specified value, the detection component starts the control drive mechanism to drive the two filter plates to move, so that the filter plate to be cleaned is moved into the cleaning box for cleaning, and the other cleaned filter plate is moved out of the cleaning box to block and filter the air inlet of the air compressor body. At the same time, when the filter plate moves, the cleaning mechanism starts to clean the impurities on the filter plate to facilitate the subsequent replacement of the filter plate, thereby speeding up the rate at which air passes through the filter plate. Moreover, the filter plate is cleaned at the same time when it is replaced, which reduces the time the filter plate is blocked, increases the rate at which air passes through the filter plate, and improves the production efficiency of the air compressor.
[0012] At the same time, the filter plate is located in the cleaning box during cleaning, thereby reducing the probability of impurities entering the air and causing pollution during cleaning, and reducing pollution to the environment.
[0013] Optionally, the driving mechanism includes:
[0014] A drive pipe, the drive pipe being arranged on the air compressor body;
[0015] a piston, the piston being slidably disposed on the drive tube and connected to the filter plate;
[0016] A drive assembly is provided on the air compressor body and is used to drive the piston to move. The drive assembly is communicated with the air compressor body and is used to provide gas.
[0017] By adopting the above technical solution, the drive assembly is started, and the gas at the air compressor body enters the drive pipe to push the piston and the filter plate to move. When it needs to move back, the gas changes direction to push the piston and the filter plate back, thereby driving the filter plate to move back and forth.
[0018] Optionally, the driving component includes:
[0019] A vent pipe, the vent pipe is used to communicate with the air compressor body and to provide gas;
[0020] a first air pipe and a second air pipe, the first air pipe and the second air pipe being arranged on the driving pipe and located on both sides of the piston and connected to the vent pipe through a three-way valve, the first air pipe and the second air pipe being respectively provided with a first valve body and a second valve body;
[0021] The first air outlet pipe and the second air outlet pipe are respectively arranged on the first air pipe and the second air pipe and are respectively provided with a first air outlet valve and a second air outlet valve.
[0022] By adopting the above technical solution, when ventilation is required, the first valve body and the second air outlet valve are opened, while the second valve body and the first air outlet valve are closed, and the gas enters the first air pipe through the ventilation pipe to push the piston and the filter plate to move, and the gas in the driving pipe is discharged through the second air pipe and the second air outlet pipe. When reverse movement is required, the second valve body and the first air outlet valve are opened, while the first valve body and the second air outlet valve are closed, and the gas enters the second air pipe through the ventilation pipe to push the piston and the filter plate to move back, and the gas in the driving pipe is discharged through the first air pipe and the first air outlet pipe, thereby pushing the filter plate to move back and forth.
[0023] Optionally, two cleaning mechanisms are provided and are respectively connected to the first air pipe and the second air pipe, and the cleaning mechanism includes:
[0024] A cleaning plate, which is arranged in the cleaning box and is provided with a brush for cleaning the filter plate;
[0025] A collecting assembly, the collecting assembly being arranged on the cleaning box and being used to collect impurities cleaned by the cleaning plate;
[0026] The cleaning pipe is arranged on the first air pipe and is connected to the cleaning box to blow impurities to the collection component for collection. The first valve body controls the first air pipe and the cleaning pipe to ventilate or cut off the air at the same time. The first air outlet pipe is connected to the cleaning pipe and is used to supply the gas output in the driving pipe to enter the cleaning pipe.
[0027] By adopting the above technical solution, the filter plate moves toward the cleaning box. After the filter plate contacts the cleaning plate, the cleaning plate cleans the filter plate. At the same time, the cleaning pipe starts to blow towards the filter plate for cleaning. After cleaning, the impurities are moved to the collection component for collection, thereby achieving the cleaning of impurities on the filter plate.
[0028] At the same time, the first valve body controls the ventilation of the first air pipe and the cleaning pipe at the same time, so that the cleaning pipe starts to clean the filter plate when the filter plate is pushed to move. When the piston is pressed against the inner wall of the ventilation pipe for positioning, the filter plates are all moved into the cleaning box. At the same time, the gas continues to be blown to the filter plates through the cleaning pipe for cleaning. After the cleaning is completed, the first valve body is closed; at the same time, the piston moves to push the gas in the driving pipe into the cleaning pipe, and then the gas is blown to the filter plates for cleaning, thereby improving the utilization rate of energy and achieving energy saving and environmental protection.
[0029] Optionally, the collection component includes:
[0030] A collection frame, the collection frame being snap-connected to the cleaning box;
[0031] The collecting bag is arranged on the collecting frame and is used to collect impurities. The cleaning pipe blows the impurities into the collecting bag while air is output through the collecting bag.
[0032] By adopting the above technical solution, gas is blown toward the filter plate, causing impurities on the filter plate to fall downward, allowing the impurities to enter the collection bag for collection, and air is moved out through the collection bag, thereby filtering the impurities and allowing more impurities to be moved into the collection bag for collection, thereby improving the impurity collection effect; when cleaning is required, the collection bag can be cleaned by pulling the collection frame off, and after cleaning is completed, the collection frame is snapped and installed on the cleaning box, thereby improving the impurity collection effect.
[0033] Optionally, the collecting frame is provided with a boss for facilitating pulling.
[0034] By adopting the above technical solution, the convenience of disassembling the collection bag is improved.
[0035] Optionally, a magnet block is provided in the cleaning box, and when the filter plate is moved into the cleaning box for cleaning, the magnet block is adsorbed on the filter plate for positioning.
[0036] By adopting the above technical solution, the magnet block is adsorbed on the filter plate for positioning, and at the same time supports and positions the position of the piston, reducing the pressure on the piston, thereby improving the stability of the filter plate and the life of the piston.
[0037] Optionally, the cleaning box is provided with a cleaning strip connected to the cleaning pipe, and the cleaning strip is provided with a cleaning hole. After the filter plate is moved into the cleaning box, the gas blown out of the cleaning hole can cover the entire filter plate.
[0038] By adopting the above technical solution, the contact range with the filter plate is increased, and the cleaning effect of the filter plate is improved.
[0039] Optionally, the collecting assembly is located at the bottom of the cleaning box, the cleaning pipe is located at the top of the cleaning box, and the cleaning pipe is provided with a retaining assembly that keeps the gas moving downward.
[0040] By adopting the above technical solution, the cleaning pipe blows air downward, and at the same time, the component is maintained to make the gas move downward, so that the impurities move downward with the air to the collection component for collection, so that more impurities are moved to the collection component for collection, thereby improving the collection effect of impurities and improving the production efficiency of the air compressor.
[0041] Optionally, the retaining assembly includes:
[0042] A retaining plate, which is provided on the air compressor body and located below the collecting assembly and is used to support the collecting assembly;
[0043] A retaining cover is snap-fitted to the bottom of the cleaning box and abuts against the cleaning box, the air compressor body and the retaining plate for positioning;
[0044] a ventilation pipe, the ventilation pipe being arranged on the retaining plate and communicating with the interior of the retaining cover;
[0045] A branch pipe is provided on the cleaning pipe and is connected to the ventilation pipe in an inclined downward direction.
[0046] By adopting the above technical solution, the air in the cleaning pipe enters the ventilation pipe obliquely downward through the branch pipe, and finally the gas is blown out downward through the ventilation pipe, so that the air passing through the collection bag is blown out downward through the ventilation pipe, so that the air in the retaining cover and the cleaning box moves downward, thereby generating a downward suction force on the impurities in the cleaning box, so that more impurities enter the collection component for collection, thereby improving the collection effect of impurities and improving the production efficiency of the air compressor.
[0047] In summary, this application includes at least one of the following beneficial technical effects:
[0048] The air flow rate is detected by the detection component. When the detection component detects that the air flow rate is lower than the specified value, the detection component starts the control drive mechanism to move the filter plate to be cleaned into the cleaning box for cleaning, and the other cleaned filter plate is moved out of the cleaning box to block and filter the air inlet of the air compressor body. At the same time, when the filter plate moves, the cleaning mechanism starts to clean the impurities on the filter plate to facilitate the subsequent replacement of the filter plate, thereby speeding up the rate at which air passes through the filter plate. Moreover, the filter plate is cleaned at the same time when it is replaced, which reduces the time the filter plate is blocked, increases the rate at which air passes through the filter plate, and improves the production efficiency of the air compressor. BRIEF DESCRIPTION OF THE DRAWINGS
[0049] Figure 1 It is a schematic diagram of the three-dimensional structure of this application;
[0050] Figure 2 It is a schematic diagram of the structure of the cleaning device and the holding component in this application;
[0051] Figure 3 This is a partial structural diagram of the present application, in which the side wall of the drive tube is partially cut away.
[0052] : 1, air compressor body; 12, filter plate; 13, magnet block; 14, cleaning strip; 2, cleaning device; 21, cleaning box; 211, clamping groove; 22, access hole; 3, driving mechanism; 31, driving pipe; 32, piston; 321, driving rod; 33, driving assembly; 34, air pipe; 35, first air pipe; 351, first valve body; 36, second air pipe; 361, second valve body; 37, first air outlet pipe; 371, first air outlet valve; 38, second air outlet pipe; 381, second air outlet valve; 39, three-way valve; 4, cleaning mechanism; 41, cleaning plate; 42, cleaning pipe; 5, collection assembly; 51, collection frame; 52, collection bag; 6, retaining assembly; 61, retaining plate; 62, retaining cover; 63, ventilation pipe; 64, branch pipe. DETAILED DESCRIPTION
[0053] The following will be described in detail with reference to the accompanying drawings. Figure 1-3 The application is further described in detail.
[0054] The application discloses a textile air compressor.
[0055] Referring to Figure 1 , the textile air compressor comprises an air compressor body 1, an air inlet opening arranged on the side wall of the air compressor body 1 and used for air to enter, and a filter plate 12 arranged on the air compressor body 1 and located at the air inlet opening and used for blocking impurities, wherein two filter plates 12 are horizontally and spaced apart and connected together, and the two filter plates 12 are horizontally slidably installed on the outer side wall of the air compressor body 1, the two filter plates 12 are exchanged in position, and one of the filter plates 12 blocks the air inlet opening completely; and the air compressor body 1 is provided with a cleaning device 2 used for cleaning the filter plate 12.
[0056] Referring to Figure 1 and Figure 2 , the cleaning device 2 comprises two cleaning boxes 21 and a driving mechanism 3, the cleaning boxes 21 are fixedly installed on the side wall of the air compressor body 1 and located on both sides in the horizontal direction of the filter plate 12; the side wall of the cleaning box 21 close to the filter plate 12 is provided with an access hole 22, one of the filter plates 12 passes through the access hole 22 and enters the cleaning box 21 completely, and after the filter plate 12 is moved, the filter plate 12 located in the cleaning box 21 is moved out of the cleaning box 21 to block the air inlet opening, and the other filter plate 12 is moved into the other cleaning box 21, so that the two filter plates 12 are exchanged in position; the filter plate 12 is made of a metal material, and the material can be iron; a vertical magnet block 13 is fixedly installed on the inner side wall of the cleaning box 21, when the filter plate 12 is moved into the cleaning box 21 completely, the filter plate 12 abuts against the magnet block 13, and the magnet block 13 adsorbs the filter plate 12 to position the filter plate 12.
[0057] Referring to Figure 1 and Figure 2The driving mechanism 3 is arranged on the cleaning box 21 and is used to drive the two filter plates 12 to move back and forth to achieve the exchange of positions. The driving mechanism 3 includes a driving pipe 31, which is fixedly installed on the outer wall of the air compressor body 1. The driving pipe 31 is in a horizontal state and its axis is parallel to the moving direction of the filter plate 12. At the same time, the driving pipe 31 is located above the filter plate 12.
[0058] Reference Figure 2 and Figure 3 The driving mechanism 3 also includes a piston 32 and a driving assembly 33. The piston 32 is slidably mounted on the inner wall of the driving tube 31 along the axial direction of the driving tube 31, and the piston 32 divides the driving tube 31 into two independent air intake chambers; a driving rod 321 is fixedly mounted on the piston 32 and slidably penetrates one end of the driving tube 31, and the driving rod 321 is connected to the two filter plates 12.
[0059] Reference Figure 1 and Figure 3 The drive assembly 33 is arranged on the outer wall of the air compressor body 1, and the drive assembly 33 is used to drive the piston 32 to move back and forth. The drive assembly 33 is connected to the air compressor body 1, so that the air compressor body 1 provides gas to the drive assembly 33; the drive assembly 33 includes a vent pipe 34, a first air pipe 35 and a second air pipe 36, a first air outlet pipe 37 and a second air outlet pipe 38. The vent pipe 34 is fixedly installed on the outer wall of the air compressor body 1, and the vent pipe 34 is connected to the gas storage structure in the air compressor body 1, so as to realize gas transportation.
[0060] Reference Figure 1 and Figure 3 The first air pipe 35 and the second air pipe 36 are fixedly connected to the ventilation pipe 34 through the three-way valve 39. One end of the first air pipe 35 and the second air pipe 36 are fixedly mounted on the driving pipe 31 and are located on both sides of the piston 32, so that the first air pipe 35 and the second air pipe 36 are respectively connected to the two air intake chambers. At the same time, a first valve body 351 for controlling opening and closing is fixedly mounted on the first air pipe 35, and a second valve body 361 for controlling opening and closing is fixedly mounted on the second air pipe 36. The first valve body 351 and the second valve body 361 are used to control opening and closing; the first air outlet pipe 37 is fixedly mounted on the first air pipe 35 and is fixedly mounted with a first air outlet valve 371 for controlling opening and closing, and the second air outlet pipe 38 is fixedly mounted on the second air pipe 36 and is fixedly mounted with a second air outlet valve 381 for controlling opening and closing.
[0061] Reference Figure 2 and Figure 3, the first valve body 351 and the second outlet valve 381 are opened, while the second valve body 361 and the first outlet valve 371 are closed, and the gas enters the driving pipe 31 through the vent pipe 34 and the first air pipe 35, and the gas pushes the piston 32 to move, and the movement of the piston 32 pushes the two filter plates 12 to move. When the piston 32 presses against the inner side wall of one end of the driving pipe 31 and is positioned, the filter plates 12 at the air inlet are all moved to the cleaning box 21 for cleaning, and at the same time, the air in the driving pipe 31 passes through the second valve body 361 and the first air outlet valve 371. The second air pipe 36 and the second air outlet pipe 38 are used for output; when the filter plate 12 needs to be replaced for cleaning, the second valve body 361 and the first air outlet valve 371 are opened, and the first valve body 351 and the second air outlet valve 381 are closed, and the gas enters the drive pipe 31 through the vent pipe 34 and the second air pipe 36. The gas pushes the piston 32 and the two filter plates 12 to move back, and the air in the drive pipe 31 is discharged through the first air pipe 35 and the first air outlet pipe 37, thereby realizing the reciprocating movement of the two filter plates 12.
[0062] Reference Figure 1 and Figure 2 The cleaning device 2 also includes a cleaning mechanism 4 and a detection component. The cleaning mechanism 4 is arranged on the cleaning box 21 and is used to clean the filter plate 12. The detection component is a gas flow detector. The gas flow detector is fixedly mounted on the inner wall of the air compressor body 1 and is located at the air inlet. At the same time, a control board electrically connected to the driving mechanism 3 and the cleaning mechanism 4 for control is fixedly mounted on the air compressor body 1. The gas flow detector is electrically connected to the control board to realize the electrical connection between the gas flow detector and the driving mechanism 3 and the cleaning mechanism 4; the gas flow detector is used to detect the flow rate of air after passing through the filter plate 12. When the filter plate 12 is blocked and the air flow rate passing through the filter plate 12 is lower than the specified value, the gas flow detector controls the driving mechanism 3 and the cleaning mechanism 4 to start cleaning the filter plate 12.
[0063] Reference Figure 1 and Figure 2 The cleaning mechanism 4 includes two parts respectively connected to the first air pipe 35 and the second air pipe 36. The cleaning mechanism 4 connected to the first air pipe 35 is explained below as an example. The cleaning mechanism 4 includes a cleaning plate 41, a collecting assembly 5 and a cleaning pipe 42. The cleaning plate 41 is fixedly mounted on the inner wall of the cleaning box 21, and the cleaning plate 41 is located on the side of the filter plate 12 away from the air compressor body 1. At the same time, the side wall of the cleaning plate 41 close to the filter plate 12 is evenly provided with a plurality of brushes for cleaning the filter plate 12.
[0064] Reference Figure 2 and Figure 3The collecting bag 52 is fixedly mounted on the inner wall of the collecting frame 51, and the collecting bag 52 extends vertically downward to the bottom of the collecting frame 51 and the cleaning box 21, and the collecting bag 52 is made of breathable material, and the collecting bag 52 is used to collect impurities falling on the filter plate 12, and the collecting bag 52 can allow air to pass through.
[0065] Reference Figure 2 and Figure 3 , a cleaning strip 14 is fixedly installed on the top wall of the cleaning box 21, and the length direction of the cleaning strip 14 is parallel to the sliding direction of the filter plate 12. A cleaning hole is opened on the lower surface of the cleaning strip 14 along the length direction of the cleaning strip 14. At the same time, after the filter plate 12 moves into the cleaning box 21, the filter plate 12 is located under the cleaning strip 14, and the gas blown out of the cleaning hole can cover the entire filter plate 12; the cleaning pipe 42 is fixedly installed on the second air pipe 36 and the connection is located between the second valve body 361 and the second air outlet pipe 38, and the other cleaning pipe 42 is fixedly connected to the first air pipe 35; the cleaning pipe 42 vertically passes through the upper surface of the cleaning box 21 and is fixedly connected to the upper surface of the cleaning strip 14. After the second valve body 361 is opened, the air in the second air pipe 36 is blown to the filter plate 12 through the cleaning pipe 42 and the cleaning hole, so that the impurities adhering to the filter plate 12 fall downward into the collection bag 52 for collection, and the gas is output after passing through the collection bag 52.
[0066] Reference Figure 1 and Figure 3 , a retaining assembly 6 is provided on the cleaning pipe 42 so that the gas maintains a downward movement trend. The retaining assembly 6 includes a retaining plate 61, a retaining cover 62, a ventilation pipe 63 and a branch pipe 64. The retaining plate 61 is fixedly mounted on the outer wall of the air compressor body 1, and the retaining plate 61 is located below the collection bag 52. At the same time, the collection bag 52 is placed on the retaining plate 61 after collecting impurities, and the retaining plate 61 supports the collection bag 52; the retaining cover 62 is horizontally slidably mounted on the lower surface of the cleaning box 21, and the retaining cover 62 is in contact with the lower surface of the cleaning box 21 and the upper surface of the retaining plate 61. At the same time, the side walls of the retaining cover 62 close to the air compressor body 1, the cleaning box 21 and the retaining plate 61 are all in an open state. When the retaining cover 62 is in contact with the side wall of the air compressor for positioning, the side wall of the air compressor body 1, the cleaning box 21 and the retaining plate 61 cooperate to completely block the three openings of the retaining cover 62.
[0067] Reference Figure 1 and Figure 3 The ventilation pipe 63 is fixedly installed on the lower surface of the retaining plate 61, and the ventilation pipe 63 is set vertically downward. At the same time, the ventilation pipe 63 is connected with the retaining cover 62 and the cleaning box 21; one end of the branch pipe 64 is fixedly installed on the cleaning pipe 42, and the other end of the branch pipe 64 is inclined downward and fixedly connected to the side wall of the ventilation pipe 63.
[0068] Reference Figure 1 and Figure 3 , the air blows the impurities downward and drops them into the collection bag 52, and at the same time, the air is blown downward obliquely through the branch pipe 64, causing the air to move downward through the ventilation pipe 63, thereby causing the air in the cleaning box 21 and the retaining cover 62 to move downward, thereby generating a downward suction force on the impurities dropped on the filter plate 12, so that more impurities are moved to the collection bag 52 for collection; when the collection bag 52 needs to be cleaned, the retaining cover 62 is pulled away from the side of the air compressor body 1, so that the retaining cover 62 moves to the outside of the collection frame 51, and then the collection frame 51 can be pulled and the collection bag 52 can be removed for cleaning. After cleaning is completed, the collection frame 51 is snap-fitted and installed on the snap-fit groove 211, and then the retaining cover 62 is continued to be pushed back so that the retaining cover 62 contacts the air compressor body 1 for positioning, thereby achieving the cleaning of the collection bag 52.
[0069] The working principle of the embodiment of this application is as follows:
[0070] The air is filtered through the filter plate 12 and enters the air compressor body 1, and the gas flow detector detects the air flow rate. When the flow rate is lower than the specified value due to the blockage of the filter plate 12, the gas flow detector controls the first valve body 351 and the second outlet valve 381 to open, and the second valve body 361 and the first outlet valve 371 to close. The gas enters the drive pipe 31 through the first air pipe 35 and pushes the piston 32 to move. The movement of the piston 32 pushes the filter plate 12 located at the air inlet to move into the cleaning box 21. The filter plate 12 located in the cleaning box 21 moves to the air inlet, and the cleaning plate 41 presses the filter plate 1 2 is cleaned, and at the same time, the point gas passing through the first air pipe 35 and the gas output from the driving pipe 31 are blown toward the filter plate 12 through the cleaning hole, so that impurities fall downward into the collection bag 52 for collection. When the filter plate 12 needs to be cleaned next time, the gas flow detector controls the second valve body 361 and the first air outlet valve 371 to open, and the first valve body 351 and the second air outlet valve 381 to close, and the gas continues to push the filter plate 12 to move and clean the filter plate 12, thereby reducing the time the filter plate 12 is blocked, increasing the rate at which air passes through the filter plate 12, and improving the production efficiency of the air compressor.
[0071] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. A textile air compressor, comprising an air compressor body (1), a filter plate (12) disposed on the air compressor body (1) and used to block impurities, characterized in that: Two filter plates (12) are provided and connected together. The filter plates (12) are slidably provided on the air compressor body (1) and one of the filter plates blocks the air inlet of the air compressor body (1). A cleaning device (2) for cleaning the filter plates (12) is provided on the air compressor body (1). The cleaning device (2) comprises: Two cleaning boxes (21), the two cleaning boxes (21) are arranged on the air compressor body (1) and located on both sides of the two filter plates (12), and one of the filter plates (12) is located inside the cleaning box (21); A driving mechanism (3), the driving mechanism (3) being arranged on the air compressor body (1) and being used to drive the two filter plates (12) to move back and forth; a cleaning mechanism (4), the cleaning mechanism (4) being arranged on the cleaning box (21) and being used to clean the filter plate (12); a detection assembly, the detection assembly being arranged on the air compressor body (1) and being used to detect the rate at which air enters the air compressor body (1) through the filter plate (12), the detection assembly being electrically connected to the driving mechanism (3) and the cleaning mechanism (4); The driving mechanism (3) comprises: A drive pipe (31), wherein the drive pipe (31) is arranged on the air compressor body (1); A piston (32), wherein the piston (32) is slidably disposed on the drive tube (31) and connected to the filter plate (12); A drive assembly (33) is provided on the air compressor body (1) and is used to drive the piston (32) to move. The drive assembly (33) is connected to the air compressor body (1) and is used to provide gas. The drive assembly (33) includes: A vent pipe (34), the vent pipe (34) is used to communicate with the air compressor body (1) and to provide gas; a first air pipe (35) and a second air pipe (36), wherein the first air pipe (35) and the second air pipe (36) are arranged on the driving pipe (31) and are located on both sides of the piston (32) and are connected to the ventilation pipe (34) through a three-way valve (39); a first valve body (351) and a second valve body (361) are respectively provided on the first air pipe (35) and the second air pipe (36); a first air outlet pipe (37) and a second air outlet pipe (38), wherein the first air outlet pipe (37) and the second air outlet pipe (38) are respectively arranged on the first air pipe (35) and the second air pipe (36) and are respectively provided with a first air outlet valve (371) and a second air outlet valve (381); The cleaning mechanism (4) is provided with two and is respectively connected to the first air pipe (35) and the second air pipe (36). The cleaning mechanism (4) comprises: a cleaning plate (41), the cleaning plate (41) being disposed in the cleaning box (21) and provided with a brush for cleaning the filter plate (12); A collecting assembly (5), the collecting assembly (5) being arranged on the cleaning box (21) and being used to collect impurities cleaned by the cleaning plate (41); a cleaning pipe (42), the cleaning pipe (42) being arranged on the first air pipe (35) and being in communication with the cleaning box (21) and blowing impurities to the collecting assembly (5) for collection; the first valve body (351) controlling the first air pipe (35) and the cleaning pipe (42) to simultaneously ventilate or cut off air; the first air outlet pipe (37) being in communication with the cleaning pipe (42) and used for allowing the gas output from the driving pipe (31) to enter the cleaning pipe (42); The collecting assembly (5) is located at the bottom of the cleaning box (21), the cleaning pipe (42) is located at the top of the cleaning box (21), and the cleaning pipe (42) is provided with a retaining assembly (6) for keeping the gas moving downward; The retaining assembly (6) comprises: A retaining plate (61), the retaining plate (61) being arranged on the air compressor body (1) and located below the collecting assembly (5) and used to support the collecting assembly (5); A retaining cover (62) is snap-fitted onto the bottom of the cleaning box (21) and abuts against the cleaning box (21), the air compressor body (1) and the retaining plate (61) for positioning; a ventilation pipe (63), the ventilation pipe (63) being arranged on the retaining plate (61) and communicating with the interior of the retaining cover (62); A branch pipe (64) is provided on the cleaning pipe (42) and is connected to the ventilation pipe (63) in an inclined downward direction.
2. The textile air compressor according to claim 1, characterized in that: The collecting component (5) comprises: A collecting frame (51), the collecting frame (51) being snap-connected and arranged on the cleaning box (21); The collecting bag (52) is arranged on the collecting frame (51) and is used to collect impurities. The cleaning pipe (42) blows the impurities into the collecting bag (52) and the air is output through the collecting bag (52).
3. The textile air compressor according to claim 2, characterized in that: The collecting frame (51) is provided with a boss for facilitating pulling.
4. The textile air compressor according to claim 1, characterized in that: A magnet block (13) is provided in the cleaning box (21). When the filter plate (12) is moved into the cleaning box (21) for cleaning, the magnet block (13) is adsorbed on the filter plate (12) for positioning.
5. The textile air compressor according to claim 1, characterized in that: The cleaning box (21) is provided with a cleaning strip (14) connected to the cleaning pipe (42), and the cleaning strip (14) is provided with a cleaning hole. After the filter plate (12) is moved into the cleaning box (21), the gas blown out of the cleaning hole can cover the entire filter plate (12).
Citation Information
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