Ultrasonic cleaning equipment for gas tank seat

The super sonic wave cleaning device enhances gas block seat cleaning by allowing movement and drying within the cleaning solution, improving efficiency and safety by reducing manual handling.

CN120306328APending Publication Date: 2025-07-15CIXI DONGNAN REINFORCED MATERIAL
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Patent Information

Application Number
CN202510717631.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-07-15

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Abstract

The invention discloses ultrasonic cleaning equipment for a gas tank seat, relates to the technical field of gas tank seat cleaning, and has the advantages that the gas tank seat is driven to move in a cleaning tank, so that the cleaning effect is improved. According to the key points of the technical scheme, the device comprises a box body, a net barrel used for containing an air box base, a drying groove and an ultrasonic cleaning groove, the drying groove and the ultrasonic cleaning groove are distributed in the box body in the length direction of the box body, the net barrel is horizontally located in the ultrasonic cleaning groove, and the top end of the box body is horizontally and slidably connected with a cover plate through a sliding mechanism; the transferring mechanism is arranged on the box body and used for transferring the net barrels in the ultrasonic cleaning tank into the drying tank and then transferring the net barrels to the cover plate, a rotating mechanism is arranged on the transferring mechanism and used for driving the net barrels on the transferring mechanism to rotate, and the rotating mechanism is arranged on the box body; and the rotating mechanism is used for driving the net barrel located in the drying tank and the ultrasonic cleaning tank to move along the axis of the net barrel.
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Description

Technical Field

[0001] The present invention relates to the technical field of air box seat cleaning, and particularly to an ultrasonic cleaning device for an air box seat. Background Art

[0002] The air box seat is an important part of the thermal expansion valve in the air-conditioning refrigeration system. It is usually installed at the inlet of the evaporator and is closely connected to the expansion valve. The air box seat is generally a metal part with specific channels and chambers, which plays a role in connecting and distributing the refrigerant.

[0003] After the air box seat is manufactured, it needs to be cleaned. In the prior art, the air box seat is placed in a cleaning tank filled with a cleaning liquid for cleaning. During the cleaning process, the air box seat cannot move in the cleaning tank, and the cleaning effect is not good. Therefore, the applicant has developed a new technical solution in the actual production process to solve the above technical problems. Summary of the Invention

[0004] Aiming at the above technical deficiencies, the purpose of the present invention is to provide an ultrasonic cleaning device for an air box seat, which has the advantage of driving the air box seat to move in the cleaning tank, thereby improving the cleaning effect.

[0005] To solve the above technical problems, the present invention adopts the following technical solutions: The present invention provides an ultrasonic cleaning device for an air box seat, which includes a box body, a mesh barrel for placing the air box seat, and a drying tank and an ultrasonic cleaning tank distributed in the box body along the length direction of the box body. The drying tank and the ultrasonic cleaning tank are opposite to each other left and right, and the mesh barrel is horizontally located in the ultrasonic cleaning tank; A sliding mechanism, the top of the box body is horizontally slidably connected with a cover plate through the sliding mechanism, and the cover plate is used to close the notch of the drying tank; A transfer mechanism, the transfer mechanism is arranged on the box body, and the transfer mechanism is used to transfer the mesh barrel in the ultrasonic cleaning tank to the drying tank first and then to the cover plate. A rotating mechanism is arranged on the transfer mechanism, and the rotating mechanism is used to drive the mesh barrel on the transfer mechanism to rotate; A drying mechanism, the drying mechanism is arranged on the box body, and the drying mechanism is used to dry the air box seat in the mesh barrel in the drying tank; A material taking mechanism, the material taking mechanism is arranged on the cover plate. When the mesh barrel is transferred to the cover plate, the material taking mechanism is used to take out the air box seat in the mesh barrel; A rotating mechanism, the rotating mechanism is arranged on the box body, and the rotating mechanism is used to drive the mesh barrel located in the drying tank and the ultrasonic cleaning tank to rotate along the axis of the mesh barrel.

[0006] By adopting the above technical solution, during use, the air box seat is placed in the mesh barrel, and then the mesh barrel is placed in the ultrasonic cleaning tank. The rotation mechanism drives the mesh barrel in the ultrasonic cleaning tank to rotate. At this time, the air box seat in the mesh barrel can be moved, thereby improving the cleaning effect; After the cleaning is completed, the sliding mechanism drives the cover plate to move horizontally, thereby opening the slot opening of the drying tank. The transfer mechanism transfers the mesh barrel to the drying tank. The drying mechanism dries the mesh barrel. After the drying is completed, the transfer mechanism transfers the mesh barrel out of the drying tank. Then the sliding mechanism drives the cover plate to move horizontally until the cover plate closes the slot opening of the drying tank. Then the transfer mechanism transfers the mesh barrel onto the cover plate. After that, the air box seat in the mesh barrel on the cover plate can be taken out by the material taking mechanism, without personnel touching the dried mesh barrel, reducing the occurrence of scalding the staff, and being simple and convenient to use.

[0007] Preferably, the mesh barrel includes two discs, and the two discs face each other left and right. A hexagonal mesh cylinder is horizontally arranged between the two discs. Circular grooves are coaxially arranged on one side of each of the two discs facing away from each other, and transfer columns are coaxially arranged at the bottom of the two circular grooves. One end of the transfer column away from the bottom of the circular groove extends out of the circular groove. The transfer mechanism is used to drive the mesh barrel formed by the mesh cylinder and the two discs to move through the transfer column. A feeding port communicating with the mesh cylinder is arranged at the top of the mesh cylinder. A closing mechanism for closing the feeding port is arranged between the two discs.

[0008] Preferably, the rotation mechanism includes two support shafts rotatably connected between the left and right sides in the box body. One end of each of the two support shafts horizontally passes through the drying tank and the ultrasonic cleaning tank. Two first support wheels are arranged on each of the two support shafts located in the ultrasonic cleaning tank. The four first support wheels are pairwise opposite and are respectively located below the two discs and in contact with the lower surfaces of the discs. A rotation motor for driving one of the support shafts to rotate is arranged on the box body. Two second support wheels are arranged on each of the two support shafts located in the drying tank. The four second support wheels are pairwise opposite. When the mesh barrel is transferred into the drying tank, the four pairwise opposite second support wheels are respectively located below the two discs and in contact with the lower surfaces of the discs.

[0009] Preferably, the closing mechanism comprises rotating grooves which are both opened on the two discs, the rotating grooves are connected to the circular grooves, and a rotating disc is rotatably connected in the rotating grooves, a rotating column is horizontally arranged between the two rotating discs, the rotating column is horizontally located in the net cylinder and close to the feeding port, a connecting plate is rotatably connected to the rotating column, and the end of the connecting plate away from the rotating column is fixedly connected to the end of the inner wall of the net cylinder close to the feeding port, a swing plate is rotatably connected to the rotating column, and the end of the swing plate away from the rotating column is provided with a closing plate located in the feeding port, and the closing plate is used to close the feeding port, a side of the closing plate away from the rotating column is a slope 1, and the slope 1 faces the outside of the net cylinder, a side of the feeding port away from the rotating column is a slope 2 in contact with the slope 1, and the slope 2 faces the inside of the net cylinder, the two opposite discs on the left and right are respectively a left disc and a right disc, and the disc on the right is provided with a A limiting member for limiting the rotation of the turntable, the limiting member comprises a rectangular rod and a transmission column, the rectangular rod being horizontally arranged on the side of the turntable away from the turntable, a rectangular groove being opened at one end of the transmission column, the transmission column being horizontally slidably connected to the rectangular rod through the rectangular groove, and a compression spring being arranged between the transmission column and the turntable, a plurality of protrusions being arranged at the end of the transmission column away from the turntable, and each protrusion being evenly distributed along the circumference of the transmission column, a plurality of connecting columns being horizontally arranged on the disk on the right side, and each connecting column being arranged at the bottom of the circular groove, each connecting column being connected at one end away from the disk by a connecting ring, and one end of the transmission column away from the turntable being coaxially located in the connecting ring, and a limiting groove for horizontal insertion of each protrusion being arranged on the inner wall of the connecting ring, and the material taking mechanism being used to push the transmission column close to the turntable and drive the transmission column to rotate.

[0010] Preferably, the material-taking mechanism includes a placing table and a collecting box placed on the placing table, a fixing frame is provided on the right side of the box body, and a slide plate is horizontally slidably connected to the top of the fixing frame, a pushing electric cylinder is horizontally provided at the bottom end of the slide plate, and a baffle is provided at one end of the piston rod of the pushing electric cylinder, and the baffle is fixedly connected to the right side of the fixing frame, a driving motor is provided at the top of the slide plate, and an extrusion column is horizontally provided at one end of the rotating shaft of the driving motor, a rectangular transmission groove is provided on the side of the transmission column away from the turntable, a transmission block matching the transmission groove is provided on the end of the extrusion column away from the driving motor, and a positioning column is provided on the side of the disc on the right side away from the net cylinder , and the positioning column is located in the circular groove and corresponds to the transmission column up and down, the fixed frame is provided with a distance sensor, when the net bucket is located on the cover plate, the distance sensor is used to detect the distance between the fixed frame and the bottom of the circular groove on the right disc, when the net bucket rotates and the positioning column corresponds to the distance sensor, the distance sensor controls the rotating mechanism to stop working, the placing table is located on the front side of the box body and close to the drying tank, the cover plate is provided with a material guide, when the net bucket is located on the cover plate and the material taking port on the net cylinder is opened, the rotating mechanism drives the net bucket to rotate and pours the air box seat out of the material taking port, and the material guide is used to guide the poured air box seat into the collection box.

[0011] Preferably, the material guiding member includes an inclined guide plate and a first groove provided at the top end of the cover plate. A second groove is provided at the bottom of the first groove. The guide plate is located in the second groove, and vertical columns are provided vertically upward at the four corners of the upper surface of the guide plate. Fixed plates are provided at the four corners of the top end of the cover plate, and fifth electric cylinders are provided on the four fixed plates. One ends of the piston rods of the four fifth electric cylinders are respectively fixedly connected to the top ends of the four columns. An outlet chute is provided above the front side of the cover plate. The upper surface of the guide plate is flush with the bottom wall of the outlet chute, and the lowermost end of the upper surface of the guide plate is close to the outlet chute. An embedding groove is provided on the placement table. A placement plate is vertically slidably connected in the embedding groove. The collection box is placed on the top end of the placement plate. A gravity sensor for detecting the weight of the collection box is provided between the placement plate and the bottom of the embedding groove. A material guiding hopper is provided at one end of the cover plate close to the outlet chute and slopes downward. The end of the material guiding hopper away from the cover plate extends above the collection box. The gravity sensor is used to control the operation of the four fifth electric cylinders. Fixed seats are provided at the four corners of the bottom of the first groove. A placement wheel is rotatably connected to one side of each of the four fixed seats. The placement wheel has the same structure as the second support wheel.

[0012] Preferably, the transfer mechanism includes two vertical rods provided at the top end of the box body. A sliding frame is vertically slidably connected between the two vertical rods. The sliding frame is located above the rear side of the drying tank and the ultrasonic cleaning tank. A suspension is provided at the rear side of the sliding frame. A first electric cylinder is vertically provided at the rear side of the box body, and one end of the piston rod of the first electric cylinder is fixedly connected to the bottom end of the suspension. A sliding plate is horizontally slidably connected along the length direction of the sliding frame at the front side of the sliding frame. A second electric cylinder is horizontally and fixedly connected inside the sliding frame, and a push plate is vertically provided at one end of the piston rod of the second electric cylinder. A third electric cylinder is horizontally provided at the side of the sliding plate close to the sliding frame and is located below the second electric cylinder. One end of the piston rod of the third electric cylinder is fixedly connected to the push plate. An installation plate is horizontally provided below the front side of the sliding plate. Two sliding platforms are horizontally slidably connected to the bottom end of the installation plate, and the two sliding platforms are opposite to each other left and right. A pushing member for pushing the two sliding platforms to approach or separate from each other is provided on the installation plate. Pick-and-place plates are vertically provided at the bottom ends of the two sliding platforms. First circular holes for horizontally inserting the transfer columns are provided on the sides of the two pick-and-place plates facing away from each other. Second circular holes are provided on the two pick-and-place plates. The second circular holes are located above the first circular holes, and the first circular holes are communicated through a communication groove. The diameter of the second circular hole is larger than that of the first circular hole. A transition groove corresponding to the transmission column is provided on the pick-and-place plate close to the right disk.

[0013] Preferably, the pushing member includes a vertical plate provided at the top ends of two sliding platforms. The top end of the mounting plate is provided with two long strip-shaped grooves. The top ends of the two vertical plates respectively pass through the two long strip-shaped grooves. The top end of the mounting plate is provided with two fourth electric cylinders for respectively pushing the two vertical plates to approach or separate from each other.

[0014] Preferably, a number of first convex teeth are provided on both of the two discs, and each first convex tooth is located on the arc surface of the disc on the side close to the mesh cylinder. The first convex teeth are evenly distributed along the circumferential direction of the disc. The rotating mechanism includes a bottom plate provided at the bottom end of the mounting plate. The left and right sides of the bottom plate are rotatably connected with swing arms. A driving shaft is rotatably connected between the two swing arms. The driving shaft is located at the end of the swing arm far from the bottom plate. Two driving discs are coaxially and fixedly connected to the driving shaft. A number of second convex teeth that cooperate with the first convex teeth are provided on both of the two driving discs, and each second convex tooth is evenly distributed along the circumferential direction of the driving disc. The two swing arms are located between the two driving discs. A first sprocket is coaxially and fixedly connected to the driving shaft. A placing rack is provided on one of the swing arms. A first motor is provided on the placing rack. One end of the rotating shaft of the first motor is provided with a second sprocket. The second sprocket and the first sprocket are connected by a chain. A rotating ring is coaxially and rotatably connected to the driving shaft. An installation groove is provided at the top end of the mounting plate. The top end of the mounting plate is provided with an inverted L-shaped top plate. A swing seat is hinged to the top plate. A sixth electric cylinder is provided on the swing seat. One end of the sixth electric cylinder passes through the installation groove. One end of the piston rod of the sixth electric cylinder is fixedly connected to the outer wall of the rotating ring. The two swing arms are located between the two picking and placing plates.

[0015] Preferably, the sliding mechanism includes two slide rails provided at the top end of the box body, and the two slide rails are respectively located on the upper sides of both sides of the drying tank. The cover plate is horizontally slidably connected to the two slide rails. The rear sides of the two slide rails are connected by a cross plate. A side plate is provided at the top end of the cross plate. One side of the cover plate is horizontally provided with a seventh electric cylinder located above the slide rail. One end of the piston rod of the seventh electric cylinder is fixedly connected to the side plate. The drying mechanism includes two air inlet pipes provided on one side of the inner wall of the drying tank. The top end of the air inlet pipe is provided with a long strip-shaped air outlet along the length direction of the air inlet pipe. A hot air blower is provided on one side of the outer wall of the box body. A connecting pipe is communicated with the air outlet of the hot air blower. One end of each of the two air inlet pipes passes through the box body and extends to the outside of the box body and is communicated with the connecting pipe.

[0016] The beneficial effects of the present invention are as follows: When in use, place the air box seat in the mesh barrel, and then place the mesh barrel in the ultrasonic cleaning tank. Drive the mesh barrel in the ultrasonic cleaning tank to rotate through the rotating mechanism. At this time, the air box seat in the mesh barrel can be moved, thereby improving the cleaning effect. After the cleaning is completed, the cover plate is driven to move horizontally by the sliding mechanism, thereby opening the slot of the drying tank. The net barrel is transferred to the drying tank by the transfer mechanism, and the net barrel is dried by the drying mechanism. After the drying is completed, the net barrel is transferred out of the drying tank by the transfer mechanism, and then the cover plate is driven to move horizontally by the sliding mechanism until the cover plate closes the slot of the drying tank. Then the transfer mechanism transfers the net barrel to the cover plate, and then the air box seat in the net barrel on the cover plate is taken out by the material taking mechanism. There is no need for personnel to touch the dried net barrel, reducing the occurrence of scalding staff, and it is simple and convenient to use. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0018] Figure 1 is the structural schematic diagram of this embodiment; Figure 2 is the schematic diagram when the cover plate opens the drying tank; Figure 3 is the structural schematic diagram of this embodiment for embodying the net barrel; Figure 4 is the structural schematic diagram of this embodiment for embodying the transfer column; Figure 5 is the structural schematic diagram of this embodiment for embodying the net cylinder; Figure 6 is the structural schematic diagram of this embodiment for embodying the second inclined surface; Figure 7 is the structural schematic diagram of this embodiment for embodying the support shaft; Figure 8 is the schematic diagram when the net barrel is on the four first support wheels in the ultrasonic cleaning tank; Figure 9 is Figure 2 the enlarged structural schematic diagram of part A in Figure 10 is Figure 1 the enlarged structural schematic diagram of part B in Figure 11 is the structural schematic diagram of this embodiment for embodying the guide plate; Figure 12 is the structural schematic diagram of this embodiment for embodying the second groove; Figure 13 is the structural schematic diagram of this embodiment for embodying the embedding groove; Figure 14This is a schematic structural diagram of the pick-and-place plate for this embodiment.

[0019] Explanation of reference numerals: In the figure: 1, box body; 2, mesh barrel; 3, drying tank; 4, ultrasonic cleaning tank; 5, cover plate; 6, disc; 7, mesh cylinder; 8, circular groove; 9, transfer column; 10, material taking port; 12, support shaft; 13, first support wheel; 14, rotating motor; 15, second support wheel; 16, rotating groove; 17, turntable; 18, rotating column; 19, connecting plate; 20, swing plate; 21, closing plate; 22, first inclined surface; 23, second inclined surface; 24, rectangular rod; 25, transmission column; 26, rectangular groove; 27, compression spring; 28, convex block; 29, connecting column; 30, connecting ring; 31, limiting groove; 32, placing table; 33, collection box; 34, fixing frame; 35, sliding plate; 36, pushing electric cylinder; 37, baffle; 38, driving motor; 39, extrusion column; 40, transmission groove; 41, transmission block; 42, positioning column; 43, distance sensor; 44, guide plate; 45, first groove; 46, second groove; 47, column; 48, fixing plate; 49, fifth electric cylinder; 50, discharge chute; 51, embedding groove; 52, placing plate; 53, gravity sensor; 54, feeding hopper; 55, fixing seat; 56, placing wheel; 57, vertical rod; 58, sliding frame; 59, suspension; 60, first electric cylinder; 61, sliding plate; 62, second electric cylinder; 63, pushing plate; 64, third electric cylinder; 65, mounting plate; 66, sliding table; 67, pick-and-place plate; 68, first round hole; 69, second round hole; 70, communication groove; 71, transition groove; 72, vertical plate; 73, long strip-shaped groove; 74, fourth electric cylinder; 75, first convex tooth; 76, bottom plate; 77, swing arm; 78, driving shaft; 79, driving disc; 80, second convex tooth; 81, first sprocket; 82, placing rack; 83, first motor; 84, second sprocket; 85, chain; 86, rotating ring; 87, mounting groove; 88, top plate; 89, swing seat; 90, sixth electric cylinder; 91, slide rail; 92, cross plate; 93, side plate; 94, seventh electric cylinder; 95, air inlet pipe; 96, air outlet; 97, hot air blower; 98, connecting pipe. Detailed implementation manners

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] An ultrasonic cleaning device for an air tank seat, as Figure 1 and Figure 2, including a box body 1, a net barrel 2 for placing an air tank seat, and a drying tank 3 and an ultrasonic cleaning tank 4 distributed in the box body 1 along the length direction of the box body 1. The drying tank 3 and the ultrasonic cleaning tank 4 are opposite to each other left and right, and the net barrel 2 is horizontally located in the ultrasonic cleaning tank 4; A sliding mechanism. The top end of the box body 1 is horizontally slidably connected with a cover plate 5 through the sliding mechanism, and the cover plate 5 is used to close the notch of the drying tank 3; A transfer mechanism. The transfer mechanism is arranged on the box body 1, and the transfer mechanism is used to transfer the net barrel 2 in the ultrasonic cleaning tank 4 to the drying tank 3 first and then to the cover plate 5. A rotating mechanism is arranged on the transfer mechanism, and the rotating mechanism is used to drive the net barrel 2 on the transfer mechanism to rotate; A drying mechanism. The drying mechanism is arranged on the box body 1, and the drying mechanism is used to dry the air tank seat in the net barrel 2 in the drying tank 3; A material taking mechanism. The material taking mechanism is arranged on the cover plate 5. When the net barrel 2 is transferred to the cover plate 5, the material taking mechanism is used to take out the air tank seat in the net barrel 2; A rotating mechanism. The rotating mechanism is arranged on the box body 1, and the rotating mechanism is used to drive the net barrel 2 located in the drying tank 3 and the ultrasonic cleaning tank 4 to rotate along the axis of the net barrel 2.

[0022] Such as Figure 1 and Figure 2 , in use, place the air tank seat in the net barrel 2, and then place the net barrel 2 in the ultrasonic cleaning tank 4. Drive the net barrel 2 in the ultrasonic cleaning tank 4 to rotate through the rotating mechanism. At this time, the air tank seat in the net barrel 2 can be moved, so as to improve the cleaning effect; After the cleaning is completed, drive the cover plate 5 to move horizontally through the sliding mechanism, so as to open the notch of the drying tank 3. Transfer the net barrel 2 to the drying tank 3 through the transfer mechanism, and dry the net barrel 2 through the drying mechanism. During the drying process, drive the net barrel 2 in the drying tank 3 to rotate through the rotating mechanism, so as to improve the drying effect of the air tank seat in the net barrel 2. After the drying is completed, transfer the net barrel 2 out of the drying tank 3 through the transfer mechanism, and then drive the cover plate 5 to move horizontally through the sliding mechanism until the cover plate 5 closes the notch of the drying tank 3. Then transfer the net barrel 2 to the cover plate 5 through the transfer mechanism, and then take out the air tank seat in the net barrel 2 on the cover plate 5 through the material taking mechanism, without the need for personnel to touch the dried net barrel 7, reducing the occurrence of scalding staff; When the transfer mechanism moves the net barrel 2 out of the ultrasonic cleaning tank 4, drive the net barrel 2 to rotate on the transfer mechanism through the rotating mechanism, which can facilitate the residual cleaning agent or water on the air tank seat to drip back into the ultrasonic cleaning tank 4 from the net barrel 2, and it is simple and convenient to use.

[0023] The number of ultrasonic cleaning tanks 4 can be three, and the three ultrasonic cleaning tanks 4 are distributed along the length direction of the box body 1. The first ultrasonic cleaning tank 4 from left to right is filled with a cleaning agent for cleaning the air box seat, and the second and third ultrasonic cleaning tanks 4 are both filled with water for rinsing the air box seat. The mesh barrel 2 enters the first ultrasonic cleaning tank 4, the second ultrasonic cleaning tank 4, the third ultrasonic cleaning tank 4, and the drying tank 3 in sequence from left to right through the transfer mechanism, and finally is located on the cover plate 5. Through the cleaning and rinsing of the air box seat in the mesh barrel 2 by the three ultrasonic cleaning tanks 4, not only the problem of unclean cleaning is solved, but also the cleaning efficiency is improved, and it is simple and convenient to use.

[0024] Such as Figure 1 and Figure 3 and Figure 6 , the mesh barrel 2 includes two discs 6, and the two discs 6 are opposite to each other left and right. A hexagonal mesh cylinder 7 is horizontally arranged between the two discs 6. Circular grooves 8 are coaxially arranged on one side of each of the two discs 6 facing away from each other, and transfer columns 9 are coaxially arranged at the bottom of the two circular grooves 8. One end of the transfer column 9 far from the bottom of the circular groove 8 extends outside the circular groove 8. The transfer mechanism is used to drive the mesh barrel 2 formed by the mesh cylinder 7 and the two discs 6 to move through the transfer column 9. A material taking port 10 communicated with the mesh cylinder 7 is arranged at the top end of the mesh cylinder 7, and a closing mechanism for closing the material taking port 10 is arranged between the two discs 6.

[0025] Such as Figure 1 and Figure 3 and Figure 6 , by opening the closing mechanism, then placing the mesh barrel 2 on the transfer mechanism through the transfer column 9 on the mesh barrel 2, then putting the air box seat to be cleaned into the mesh barrel 2 from the material taking port 10, then closing the material taking port 10 through the closing mechanism, and then the transfer mechanism puts the mesh barrel 2 into the ultrasonic cleaning tank 4 for cleaning. When the mesh barrel 2 is transferred to the cover plate 5 through the transfer mechanism, the closing mechanism is opened through the material taking mechanism, and then the mesh barrel 2 is driven to rotate through the rotating mechanism, and the air box seat in the mesh barrel 2 can be poured out from the material taking port 10, which is simple and convenient to use.

[0026] Such as Figure 7 and Figure 8, the rotating mechanism includes two support shafts 12 rotatably connected between the left and right sides inside the box body 1, and one end of each of the two support shafts 12 horizontally passes through the drying tank 3 and the ultrasonic cleaning tank 4. Two first support wheels 13 are provided on each of the two support shafts 12 located in the ultrasonic cleaning tank 4. The four first support wheels 13 are pairwise opposite and are respectively located below the two discs 6 and contact the lower surface of the discs 6. A rotating motor 14 for driving one of the support shafts 12 to rotate is provided on the box body 1. Two second support wheels 15 are provided on each of the two support shafts 12 located in the drying tank 3. The four second support wheels 15 are pairwise opposite. When the mesh barrel 2 is transferred into the drying tank 3, the four pairwise opposite second support wheels 15 are respectively located below the two discs 6 and contact the lower surface of the discs 6.

[0027] As Figure 7 and Figure 8 , when the mesh barrel 2 is located in the ultrasonic cleaning tank 4, the two discs 6 are placed on the four pairwise opposite first support wheels 13. At this time, the mesh barrel 2 can be supported by the four first support wheels 13 on the support shafts 12. When the mesh barrel 2 is located in the drying tank 3, the two discs 6 are placed on the four pairwise opposite second support wheels 15. At this time, the mesh barrel 2 can be supported by the four second support wheels 15 on the support shafts 12. When it is necessary to drive the mesh barrel 2 located in the drying tank 3 or the ultrasonic cleaning tank 4 to rotate, only need to turn on the rotating motor 14. The rotating shaft of the rotating motor 14 drives one of the support shafts 12 to rotate. The rotating support shaft 12 drives the first support wheels 13 and the second support wheels 15 to rotate. At this time, the mesh barrel 2 located on the first support wheels 13 can be driven to rotate by the first support wheels 13, and the mesh barrel 2 located on the first support wheels 13 can be driven to rotate by the second support wheels 15, thereby improving the cleaning effect of the ultrasonic cleaning tank 4 on the air box seat and the drying effect of the drying tank 3 on the air box seat, and it is simple and convenient to use.

[0028] As Figure 3 and Figure 4 and Figure 5 and Figure 6 and Figure 9, the closing mechanism includes rotating grooves 16 both opened on two discs 6. The rotating grooves 16 communicate with the circular groove 8, and a rotating disc 17 is rotatably connected in the rotating groove 16. A rotating column 18 is horizontally arranged between the two rotating discs 17. The rotating column 18 is horizontally located inside the mesh cylinder 7 and close to the material taking port 10. A connecting plate 19 is rotatably connected to the rotating column 18, and one end of the connecting plate 19 away from the rotating column 18 is fixedly connected to one end of the inner wall of the mesh cylinder 7 close to the material taking port 10. A swing plate 20 is rotatably connected to the rotating column 18, and a closing plate 21 located in the material taking port 10 is provided at one end of the swing plate 20 away from the rotating column 18. The closing plate 21 is used to close the material taking port 10. One side of the closing plate 21 away from the rotating column 18 is an inclined surface one 22 and the inclined surface one 22 faces outside the mesh cylinder 7. One side of the material taking port 10 away from the rotating column 18 is an inclined surface two 23 in contact with the inclined surface one 22, and the inclined surface two 23 faces inside the mesh cylinder 7. The two relatively left and right discs 6 are respectively a left disc 6 and a right disc 6. A limiting member for restricting the rotation of the rotating disc 17 is provided on the right disc 6. The limiting member includes a rectangular rod 24 and a transmission column 25. The rectangular rod 24 is horizontally arranged on the side of the rotating disc 17 facing away from the rotating column 18. A rectangular groove 26 is opened at one end of the transmission column 25. The transmission column 25 is horizontally slidably connected to the rectangular rod 24 through the rectangular groove 26, and a compression spring 27 is provided between the transmission column 25 and the rotating disc 17. A plurality of convex blocks 28 are provided at the end of the transmission column 25 away from the rotating disc 17, and the convex blocks 28 are evenly distributed along the circumferential direction of the transmission column 25. A plurality of connecting columns 29 are horizontally arranged on the right disc 6, and each connecting column 29 is arranged at the bottom of the circular groove 8. One end of each connecting column 29 away from the disc 6 is connected through a connecting ring 30, and the connecting ring 30 is located in the circular groove 8. The end of the transmission column 25 away from the rotating disc 17 is coaxially located inside the connecting ring 30, and a limiting groove 31 for horizontally inserting each convex block 28 is provided on the inner wall of the connecting ring 30. The material taking mechanism is used to push the transmission column 25 close to the rotating disc 17 and drive the transmission column 25 to rotate.

[0029] As Figure 3 and Figure 4 and Figure 5 and Figure 6 and Figure 9 , through the cooperation of the inclined surface one 22 and the inclined surface two 23, the closing plate 21 can only rotate towards the inside of the mesh cylinder 7 through the rotating column 18, and cannot rotate out of the mesh cylinder 7 through the material taking port 10. Through the cooperation of the limiting groove 31 on the connecting ring 30 and the convex block 28 on the transmission column 25, the transmission column 25 can be restricted from rotating. At this time, the transmission column 25 will restrict the rotating disc 17 through the cooperation of the rectangular groove 26 and the rectangular rod 24, and the rotating disc 17 will restrict the rotating column 18 from rotating. At this time, the situation that the air box seat falls out from the material taking port 10 due to the opening of the closing plate 21 when the mesh cylinder 7 rotates in the ultrasonic cleaning tank 4 or the drying tank 3 through the rotating mechanism can be reduced; When the mesh barrel 2 is located on the cover plate 5 and it is necessary to take out the air box seat in the mesh barrel 2, only the material taking mechanism is needed to push the transmission column 25 close to the turntable 17 until the bump 28 on the transmission column 25 is separated from the limiting groove 31. At this time, the compression spring 27 is compressed. Then, the transmission column 25 is driven to rotate by the material taking mechanism. At this time, the transmission column 25 will drive the turntable 17 to rotate through the rectangular groove 26 and the rectangular rod 24. The turntable 17 drives the rotating column 18 to rotate, and the rotating column 18 drives the closing plate 21 to rotate into the mesh barrel 7 along the circumferential direction of the rotating column 18 to open the material taking port 10. After the material taking port 10 is opened, the bump 28 corresponds to the limiting groove 31 on the connecting ring 30. Then, the material taking mechanism is separated from the transmission column 25, and the compression spring 27 pushes the transmission column 25 away from the turntable 17, so that the bump 28 on the transmission column 25 is inserted into the limiting groove 31. At this time, the opened closing plate 21 can be restricted and cannot rotate. Then, the mesh barrel 2 is driven to rotate by the rotating mechanism, and the air box seat in the mesh barrel 2 is poured out from the material taking port 10, which is simple and convenient to use.

[0030] Such as Figure 1 and Figure 2 and Figure 3 and Figure 4 and Figure 9 and Figure 10 and Figure 11 and Figure 12 and Figure 13 , the material taking mechanism includes a placement table 32 and a collection box 33 placed on the placement table 32. A fixed frame 34 is provided on the right side of the box body 1, and a sliding plate 35 is horizontally and slidably connected to the top end of the fixed frame 34. A pushing electric cylinder 36 is horizontally provided at the bottom end of the sliding plate 35, and a baffle 37 is provided at one end of the piston rod of the pushing electric cylinder 36, and the baffle 37 is fixedly connected to the right side of the fixed frame 34. A driving motor 38 is provided at the top end of the sliding plate 35, and an extrusion column 39 is horizontally provided at one end of the rotating shaft of the driving motor 38. A rectangular transmission groove 40 is provided on the side of the transmission column 25 facing away from the turntable 17. A transmission block 41 that cooperates with the transmission groove 40 is provided at one end of the extrusion column 39 facing away from the driving motor 38. A positioning column 42 is provided on the side of the right disk 6 facing away from the mesh barrel 7, and the positioning column 42 is located in the circular groove 8 and corresponds to the transmission column 25 up and down. A distance sensor 43 is provided on the fixed frame 34. When the mesh barrel 2 is located on the cover plate 5, the distance sensor 43 is used to detect the distance between the fixed frame 34 and the bottom of the circular groove 8 on the right disk 6. When the mesh barrel 2 rotates and the positioning column 42 corresponds to the distance sensor 43, the distance sensor 43 controls the rotating mechanism to stop working. The placement table 32 is located in front of the box body 1 and close to the drying tank 3. A guiding member is provided on the cover plate 5. When the mesh barrel 2 is located on the cover plate 5 and the material taking port 10 on the mesh barrel 7 is opened, and the rotating mechanism drives the mesh barrel 2 to rotate self - to pour out the air box seat from the material taking port 10, the guiding member is used to guide the poured air box seat into the collection box 33; The material guiding member includes an inclined guide plate 44 and a first groove 45 provided at the top end of the cover plate 5. A second groove 46 is provided at the bottom of the first groove 45. The guide plate 44 is located in the second groove 46. Vertical columns 47 are provided vertically upward at the four corners of the upper surface of the guide plate 44. Fixed plates 48 are provided at the four corners of the top end of the cover plate 5. Fifth electric cylinders 49 are provided on the four fixed plates 48. One ends of the piston rods of the four fifth electric cylinders 49 are respectively fixedly connected to the top ends of the four columns 47. An outlet chute 50 is provided above the front side of the cover plate 5. The upper surface of the guide plate 44 is flush with the bottom wall of the outlet chute 50. The lowermost end of the upper surface of the guide plate 44 is close to the outlet chute 50. An embedding groove 51 is provided on the placing table 32. A placing plate 52 is vertically slidably connected in the embedding groove 51. The collection box 33 is placed on the top end of the placing plate 52. A gravity sensor 53 for detecting the weight of the collection box 33 is provided between the placing plate 52 and the bottom of the embedding groove 51. A material guiding hopper 54 is provided at one end of the cover plate 5 close to the outlet chute 50 and is inclined downward. The end of the material guiding hopper 54 away from the cover plate 5 extends above the collection box 33. The gravity sensor 53 is used to control the operation of the four fifth electric cylinders 49. Fixed seats 55 are provided at the four corners of the bottom of the first groove 45. The fixed seats 55 and the fixed plates 48 are arranged in a staggered manner. Placing wheels 56 are rotatably connected to one side of the four fixed seats 55. The placing wheels 56 have the same structure as the second support wheels 15.

[0031] As Figure 1 and Figure 2 and Figure 3 and Figure 4 and Figure 9 and Figure 10 and Figure 11 and Figure 12 and Figure 13 When the transfer mechanism transfers the mesh barrel 2 onto the cover plate 5, the mesh barrel 2 is located on the four placing wheels 56. At this time, the height position of the mesh barrel 2 can be restricted by the four placing wheels 56. Then, the rotating mechanism drives the mesh barrel 2 to rotate. The distance sensor 43 detects the distance between the fixed frame 34 and the right disc 6 as D. When the mesh barrel 2 rotates until the positioning column 42 corresponds to the distance sensor 43 on the fixed frame 34, the value detected by the distance sensor 43 is F, and F is less than D. At this time, the distance sensor 43 will control the rotating mechanism to stop working. At this time, the transmission column 25 corresponds to the transmission block 41, and the transmission block 41 corresponds to the transmission groove 40. Then, turn on the pushing electric cylinder 36. The piston rod of the pushing electric cylinder 36 pushes the sliding plate 35 closer to the mesh barrel 2. At this time, the driving motor 38, the extrusion column 39, and the transmission block 41 will follow the sliding plate 35 closer to the mesh barrel 2. As the sliding plate 35 approaches the mesh barrel 2, the transmission block 41 horizontally inserts into the transmission slot 40 and pushes the transmission column 25 closer to the turntable 17 through the extrusion column 39 until the convex block 28 on the transmission column 25 separates from the limiting slot 31. At this time, the compression spring 27 is compressed. Then, turn on the driving motor 38, and the extrusion column 39 and the transmission block 41 rotate along with the rotating shaft of the driving motor 38. At this time, through the cooperation of the transmission block 41 and the transmission slot 40, the transmission column 25 can be driven to rotate. At this time, the transmission column 25 will drive the turntable 17 to rotate through the rectangular slot 26 and the rectangular rod 24. The turntable 17 drives the rotating column 18 to rotate, and the rotating column 18 drives the closing plate 21 to rotate circumferentially along the rotating column 18 to open the material taking port 10 in the mesh cylinder 7 (as Figure 6 ) After the material taking port 10 is opened, the convex block 28 corresponds to the limiting slot 31 on the connecting ring 30. Then, the piston rod of the pushing electric cylinder 36 pushes the sliding plate 35 away from the mesh barrel 2 until the extrusion column 39 separates from the transmission column 25. During this process, the compression spring 27 will push the transmission column 25 away from the turntable 17, causing the convex block 28 on the transmission column 25 to insert into the limiting slot 31. At this time, the opened closing plate 21 can be restricted and cannot rotate. Then, drive the mesh barrel 2 to rotate through the rotating mechanism, and pour the air box seat in the mesh barrel 2 out of the material taking port 10 onto the guide plate 44. At this time, the air box seat on the guide plate 44 will slide down to the collection box 33 through the guide plate 44, the discharge chute 50, and the guide hopper 54. The whole process does not require personnel to touch the dried mesh cylinder 7 and the air box seat, reducing the occurrence of scalding the staff; During the process of pouring the air box seat in the mesh barrel 2 out of the material taking port 10, the weight of the collection box 33 is detected by the gravity sensor 53. When the collection box 33 is full of air box seats, the gravity sensor 53 controls the fifth electric cylinder 49 to work. At this time, the piston rod of the fifth electric cylinder 49 pushes the guide plate 44 downward. At this time, the subsequent air box seats falling from the material taking port 10 will be temporarily stored on the guide plate 44 to facilitate the replacement of the collection box 33 and the reuse of the mesh barrel 2 after cooling.

[0032] As Figure 1 and Figure 2 and Figure 7 and Figure 14, the transfer mechanism includes two vertical rods 57 arranged at the top of the box body 1. A sliding frame 58 is vertically slidably connected between the two vertical rods 57. The sliding frame 58 is located at the upper rear side of the drying tank 3 and the ultrasonic cleaning tank 4. A suspension 59 is provided at the rear side of the sliding frame 58. A first electric cylinder 60 is vertically arranged at the rear side of the box body 1, and one end of the piston rod of the first electric cylinder 60 is fixedly connected to the bottom end of the suspension 59. A sliding plate 61 is horizontally slidably connected along the length direction of the sliding frame 58 at the front side of the sliding frame 58. A second electric cylinder 62 is horizontally and fixedly connected inside the sliding frame 58, and a push plate 63 is vertically arranged at one end of the piston rod of the second electric cylinder 62. A third electric cylinder 64 is horizontally arranged on the side of the sliding plate 61 close to the sliding frame 58, and the third electric cylinder 64 is located below the second electric cylinder 62. One end of the piston rod of the third electric cylinder 64 is fixedly connected to the push plate 63. An installation plate 65 is horizontally arranged below the front side of the sliding plate 61. Two sliding platforms 66 are horizontally slidably connected to the bottom end of the installation plate 65, and the two sliding platforms 66 are opposite to each other left and right. A pushing member for pushing the two sliding platforms 66 to approach or separate from each other is provided on the installation plate 65. Lifting plates 67 are vertically arranged at the bottom ends of the two sliding platforms 66. First round holes 68 for the horizontal insertion of the transfer columns 9 are opened on the sides of the two lifting plates 67 facing away from each other. Second round holes 69 are opened on both of the two lifting plates 67. The second round holes 69 are located above the first round holes 68, and the first round holes 68 are communicated with each other through a communication groove 70. The diameter of the second round hole 69 is larger than that of the first round hole 68. A transition groove 71 corresponding to the transmission column 25 is opened on the lifting plate 67 close to the right disc 6. The pushing member includes vertical plates 72 arranged at the top ends of the two sliding platforms 66. Two long strip-shaped grooves 73 are opened at the top end of the installation plate 65. The top ends of the two vertical plates 72 pass through the two long strip-shaped grooves 73 respectively. Two fourth electric cylinders 74 for respectively pushing the two vertical plates 72 to approach or separate from each other are arranged at the top end of the installation plate 65.

[0033] As Figure 1 and Figure 2 and Figure 7 and Figure 14When it is necessary to transfer the mesh barrel 2 in the ultrasonic cleaning tank 4 to the drying tank 3, just open the first electric cylinder 60. The piston rod of the first electric cylinder 60 drives the sliding frame 58 to move vertically downward through the suspension 59. At this time, the sliding plate 61, the second electric cylinder 62, the push plate 63, the third electric cylinder 64, the mounting plate 65, the sliding table 66, and the pick-and-place plate 67 will move downward following the sliding frame 58. At this time, the mesh barrel 2 will enter between the two pick-and-place plates 67 until the second round hole 69 on the pick-and-place plate 67 corresponds to the transfer column 9 on the disc 6. Then, open the two fourth electric cylinders 74. The piston rods of the two fourth electric cylinders 74 respectively push the two vertical plates 72 to approach each other. The vertical plates 72 drive the two pick-and-place plates 67 to approach each other through the sliding table 66 until the transfer column 9 enters the second round hole 69. Then, the piston rod of the first electric cylinder 60 pushes the suspension 59 to drive the sliding frame 58 to move vertically upward. At this time, the transfer column 9 will enter the first round hole 68 through the communication groove 70. When the transfer column 9 contacts the hole wall of the first round hole 68, the pick-and-place plate 67 will drive the mesh barrel 2 to move vertically upward through the cooperation of the first round hole 68 and the transfer column 9 until the mesh barrel 2 is taken out of the ultrasonic cleaning tank 4; After taking the mesh barrel 2 out of the ultrasonic cleaning tank 4, open the third electric cylinder 64. At this time, because the piston rod of the third electric cylinder 64 is fixedly connected to the push plate 63, the push plate 63 is arranged on the piston rod of the second electric cylinder 62, and the second electric cylinder 62 is arranged on the sliding frame 58. So when the third electric cylinder 64 is opened, the third electric cylinder 64 will drive the sliding plate 61 to move horizontally on the sliding frame 58 in the direction close to the push plate 63 and the drying tank 3. When the piston rod of the third electric cylinder 64 is fully retracted, by opening the second electric cylinder 62, the piston rod of the second electric cylinder 62 will push the push plate 63 to drive the sliding plate 61 to continue sliding on the sliding frame 58 in the direction close to the drying tank 3. At this time, the distance between the sliding plate 61 and the push plate 63 will not change until the mesh barrel 2 moves above the drying tank 3. Then, the piston rod of the first electric cylinder 60 pushes the suspension 59 to drive the sliding frame 58 to move vertically downward, and place the mesh barrel 2 on the four second support wheels 15 in the drying tank 3 on the pick-and-place plate 67. Then the sliding frame 58 continues to move downward, so that the transfer column 9 on the mesh barrel 2 enters the second round hole 69 from the first round hole 68 through the communication groove 70. Then, open the two fourth electric cylinders 74. The piston rods of the two fourth electric cylinders 74 respectively push the two vertical plates 72 to move away from each other until the transfer column 9 moves out of the second round hole 69. Then the sliding frame 58 moves upward through the first electric cylinder 60, so that the pick-and-place plate 67 moves out of the drying tank 3. Then, drive the cover plate 5 to move through the sliding mechanism until the cover plate 5 closes the notch of the drying tank 3. Then, dry the air box seat in the mesh barrel 2 in the drying tank 3 through the drying mechanism. Through the above process, the mesh barrel 2 in the ultrasonic cleaning tank 4 can be transferred to the drying tank 3; Through the transition groove 71, the pick-and-place plate 67 will not be affected, and the extrusion column 39 can push the transmission column 25 closer to the turntable 17, which is simple and convenient to use.

[0034] As Figure 14 , a number of first convex teeth 75 are provided on both discs 6, and each first convex tooth 75 is located on the arc surface of the disc 6 on the side close to the mesh cylinder 7. Each first convex tooth 75 is evenly distributed along the circumferential direction of the disc 6. The rotating mechanism includes a bottom plate 76 provided at the bottom end of the mounting plate 65. Swing arms 77 are rotatably connected to the left and right sides of the bottom plate 76. A drive shaft 78 is rotatably connected between the two swing arms 77. The drive shaft 78 is located at the end of the swing arm 77 away from the bottom plate 76. Two drive discs 79 are coaxially and fixedly connected to the drive shaft 78. A number of second convex teeth 80 that cooperate with the first convex teeth 75 are provided on both drive discs 79. Each second convex tooth 80 is evenly distributed along the circumferential direction of the drive disc 79. The two swing arms 77 are located between the two drive discs 79. A first sprocket 81 is coaxially and fixedly connected to the drive shaft 78. A placement rack 82 is provided on one of the swing arms 77. A first motor 83 is provided on the placement rack 82. One end of the rotating shaft of the first motor 83 is provided with a second sprocket 84. The second sprocket 84 is connected to the first sprocket 81 through a chain 85. A rotating ring 86 is coaxially rotatably connected to the drive shaft 78. An installation groove 87 is opened at the top end of the mounting plate 65. A top plate 88 in an inverted L shape is provided at the top end of the mounting plate 65. A swing seat 89 is hinged to the top plate 88. A sixth electric cylinder 90 is provided on the swing seat 89. One end of the sixth electric cylinder 90 passes through the installation groove 87. One end of the piston rod of the sixth electric cylinder 90 is fixedly connected to the outer wall of the rotating ring 86. The two swing arms 77 are located between the two pick-and-place plates 67.

[0035] As Figure 14, when the two pick - and - place plates 67 move upward, through the cooperation of the first round holes 68 and the transfer columns 9, the mesh barrel 2 is vertically lifted out of the ultrasonic cleaning tank 4. At this time, the piston rod of the sixth electric cylinder 90 pushes the rotating ring 86 to drive the drive shaft 78 to move downward. Since the sixth electric cylinder 90 is arranged on the swing seat 89, the swing seat 89 is hinged on the top plate 88, the drive shaft 78 is arranged between the two swing arms 77, and the two swing arms 77 are rotatably connected to the bottom plate 76. Therefore, when the piston rod of the sixth electric cylinder 90 pushes the rotating ring 86 to drive the drive shaft 78 to move downward, the drive shaft 78 will drive the swing arms 77 and the drive disk 79 to rotate downward along the rotation point of the swing arms 77 and the bottom plate 76 until the second convex teeth 80 on the drive disk 79 are engaged with the first convex teeth 75 on the disk 6. Then, the rotating shaft of the first motor 83 drives the second sprocket 84 to rotate. At this time, the second sprocket 84 will drive the drive shaft 78 to rotate through the cooperation of the chain 85 and the first sprocket 81. At this time, the drive shaft 78 will drive the two drive disks 79 to rotate, and the drive disk 79 will drive the mesh barrel 2 formed by the mesh cylinder 7 and the two disks 6 to rotate through the cooperation of the second convex teeth 80 and the first convex teeth 75. At this time, it is convenient for the cleaning agent or water droplets remaining on the air box seat in the mesh barrel 2 to fall back into the ultrasonic cleaning tank 4, which is simple and convenient to use.

[0036] Such as Figure 2 and Figure 7 and Figure 8 and Figure 11 , the sliding mechanism includes two slide rails 91 arranged at the top end of the box body 1, and the two slide rails 91 are respectively located on both sides above the drying tank 3. The cover plate 5 is horizontally slidably connected to the two slide rails 91, and the rear sides of the two slide rails 91 are connected by a cross - plate 92. The top end of the cross - plate 92 is provided with a side plate 93. One side of the cover plate 5 is horizontally provided with a seventh electric cylinder 94 located above the slide rail 91, and one end of the piston rod of the seventh electric cylinder 94 is fixedly connected to the side plate 93. The drying mechanism includes two air inlet pipes 95 arranged on one side of the inner wall of the drying tank 3, and long - strip air outlet openings 96 are opened along the length direction of the top end of the air inlet pipe 95. One side of the outer wall of the box body 1 is provided with a hot air blower 97, and a connecting pipe 98 is communicated at the air outlet of the hot air blower 97. One end of the two air inlet pipes 95 passes through the box body 1 and extends outside the box body 1 and is communicated with the connecting pipe 98. The purpose of this setting is that by turning on the seventh electric cylinder 94, the piston rod of the seventh electric cylinder 94 will push the cover plate 5 to move horizontally, so that the cover plate 5 opens or closes the notch of the drying tank 3. By turning on the hot air blower 97, the hot air blower 97 blows the hot air into the two air inlet pipes 95 from the connecting pipe 98 and blows upward from the air outlet openings 96 of the air inlet pipes 95. At this time, the air box seat in the mesh barrel 2 in the drying tank 3 can be dried, which is simple and convenient to use.

[0037] The usage process of this device is as follows: First step, place the net barrel 2 to be cleaned between two pick - and - place plates 67, align the transfer post 9 on the net barrel 2 with the first round hole 68 on the pick - and - place plate 67, and then turn on two fourth electric cylinders 74 to make the two pick - and - place plates 67 approach each other until the transfer post 9 enters the first round hole 68.

[0038] Second step, place the air - box seat to be cleaned into the net barrel 2 from the material - taking port 10, then push the transmission post 25 close to the turntable 17 until the bump 28 on the transmission post 25 separates from the limiting groove 31. At this time, the compression spring 27 is compressed, and then turn the closing plate 21 until the closing plate 21 closes the material - taking port 10.

[0039] Third step, the piston rod of the first electric cylinder 60 drives the sliding frame 58 to move vertically downward through the suspension 59. At this time, the sliding plate 61, the second electric cylinder 62, the push plate 63, the third electric cylinder 64, the mounting plate 65, the sliding table 66, the pick - and - place plate 67, and the net barrel 2 between the two pick - and - place plates 67 will move downward with the sliding frame 58 until the net barrel 2 is placed on the four first support wheels 13 in the ultrasonic cleaning tank 4, and the transfer post 9 is located in the second round hole 69. Then turn on two fourth electric cylinders 74 to make the two pick - and - place plates 67 move away from each other until the transfer post 9 separates from the second round hole 69. Then the sliding frame 58 moves upward to make the pick - and - place plate 67 move out of the ultrasonic cleaning tank 4, and then clean the air - box seat through the ultrasonic cleaning tank 4.

[0040] Fourth step, turn on the rotation motor 14. The rotating shaft of the rotation motor 14 drives one of the support shafts 12 to rotate. The rotating support shaft 12 drives the first support wheel 13 and the second support wheel 15 to rotate. At this time, the net barrel 2 located on the first support wheel 13 can be driven to rotate by itself through the first support wheel 13, and at this time, the cleaning effect of the ultrasonic cleaning tank 4 on the air - box seat can be improved.

[0041] Fifth step, after the cleaning is completed, turn on the seventh electric cylinder 94. The piston rod of the seventh electric cylinder 94 will push the cover plate 5 to move horizontally to open the notch of the drying tank 3.

[0042] Sixth step, turn on the first electric cylinder 60 to make the sliding frame 58 move vertically downward until the net barrel 2 enters between the two pick - and - place plates 67, and the second round hole 69 on the pick - and - place plate 67 corresponds to the transfer post 9 on the disc 6. Then, through the fourth electric cylinder 74, make the two pick - and - place plates 67 approach each other until the transfer post 9 enters the second round hole 69. After that, the sliding frame 58 moves vertically upward. At this time, the transfer post 9 will enter the first round hole 68 through the communication groove 70. When the transfer post 9 contacts the hole wall of the first round hole 68, the pick - and - place plate 67 will drive the net barrel 2 to move vertically upward through the cooperation of the first round hole 68 and the transfer post 9 until the net barrel 2 is taken out of the ultrasonic cleaning tank 4.

[0043] Step 7: The piston rod of the sixth electric cylinder 90 pushes the rotating ring 86 to drive the drive shaft 78 to move downward, so that the drive shaft 78 drives the swing arm 77 and the drive disk 79 to rotate downward along the rotation point of the swing arm 77 and the bottom plate 76 until the second convex teeth 80 on the drive disk 79 engage with the first convex teeth 75 on the disk 6. Then, the rotating shaft of the first motor 83 drives the second sprocket 84 to rotate. At this time, the second sprocket 84 drives the drive shaft 78 to rotate through the cooperation with the first sprocket 81 via the chain 85. At this time, the drive shaft 78 drives the two drive disks 79 to rotate. The drive disk 79 drives the net barrel 7 and the net barrel 2 formed by the two disks 6 to rotate by itself through the cooperation of the second convex teeth 80 and the first convex teeth 75. At this time, it is convenient for the cleaning agent or water remaining on the air box seat to drip back into the ultrasonic cleaning tank 4 from the net barrel 2. After the cleaning agent or water drips back into the ultrasonic cleaning tank 4 from the net barrel 2, the piston rod of the sixth electric cylinder 90 pushes the rotating ring 86 to drive the drive shaft 78 to move upward, so that the swing arm 77 moves back to its original position.

[0044] Step 8: Through the cooperation of the third electric cylinder 64, the second electric cylinder 62 and the push plate 63, the mounting plate 65, the picking and placing plate 67, and the net barrel 2 are moved above the drying tank 3. Then, the piston rod of the first electric cylinder 60 drives the sliding frame 58 to move vertically downward through the suspension 59 until the net barrel 2 is placed on the four second support wheels 15 in the drying tank 3, and the transfer column 9 is located in the second circular hole 69. Then, the two fourth electric cylinders 74 are opened, so that the two picking and placing plates 67 move away from each other until the transfer column 9 is separated from the second circular hole 69. Then, the sliding frame 58 moves upward, so that the picking and placing plate 67 moves out of the drying tank 3.

[0045] Step 9: The seventh electric cylinder 94 makes the cover plate 5 move horizontally to the position closing the notch of the drying tank 3. Then, the hot air blower 97 is turned on. The hot air blower 97 blows hot air from the connecting pipe 98 into the two air inlet pipes 95, and blows upward from the air outlet 96 of the air inlet pipe 95 to the net barrel 2. At this time, the air box seat in the net barrel 2 in the drying tank 3 can be dried. During the drying process, the net barrel 2 rotates by itself through the four second support wheels 15 to improve the drying effect.

[0046] Step 10: After drying is completed, repeat Step 5, then move the mounting plate 65 and the two pick-and-place plates 67 above the drying tank 3. Open the first electric cylinder 60 to make the sliding frame 58 move vertically downward until the mesh barrel 2 enters between the two pick-and-place plates 67, and the second round holes 69 on the pick-and-place plates 67 correspond to the transfer posts 9 on the disc 6. Then, through the fourth electric cylinder 74, make the two pick-and-place plates 67 approach each other until the transfer posts 9 enter the second round holes 69. After that, the sliding frame 58 moves vertically upward. At this time, the transfer posts 9 will enter the first round holes 68 through the communication slots 70. When the transfer posts 9 contact the hole walls of the first round holes 68, the pick-and-place plates 67 will drive the mesh barrel 2 to move vertically upward through the cooperation of the first round holes 68 and the transfer posts 9 until the mesh barrel 2 is taken out of the drying tank 3. Then, through the seventh electric cylinder 94, make the cover plate 5 move horizontally to the position of closing the notch of the drying tank 3. At this time, the four placement wheels 56 will be located below the mesh barrel 2.

[0047] Step 11: Through the first electric cylinder 60, make the sliding frame 58 move vertically downward until the two discs 6 in the mesh barrel 2 contact the four placement wheels 56. Then repeat the process of making the mesh barrel 2 rotate by itself in Step 7 until the positioning post 42 corresponds to the distance sensor 43 on the fixed frame 34. The distance sensor 43 controls the first motor 83 to stop working. At this time, the transmission post 25 will correspond to the transmission block 41, and the transmission block 41 will correspond to the transmission slot 40. Then, through the pushing electric cylinder 36, make the slide plate 35 approach the mesh barrel 2. The transmission block 41 is horizontally inserted into the transmission slot 40, and the extrusion post 39 pushes the transmission post 25 close to the turntable 17 until the convex block 28 on the transmission post 25 separates from the limiting slot 31, and the compression spring 27 is compressed. Then, open the drive motor 38. The extrusion post 39 and the transmission block 41 rotate along with the rotating shaft of the drive motor 38. At this time, through the cooperation of the transmission block 41 and the transmission slot 40, the transmission post 25 can be driven to rotate. The transmission post 25 will drive the turntable 17 to rotate through the rectangular slot 26 and the rectangular rod 24. The turntable 17 drives the rotating post 18 to rotate, and the rotating post 18 drives the closing plate 21 to rotate into the mesh cylinder 7 along the axis of the rotating post 18 to open the material taking port 10. After the material taking port 10 is opened, the convex block 28 corresponds to the limiting slot 31 on the connecting ring 30. Then, through the pushing electric cylinder 36, make the slide plate 35 move away from the mesh barrel 2 until the extrusion post 39 separates from the transmission post 25. During this process, the compression spring 27 will push the transmission post 25 away from the turntable 17, so that the convex block 28 on the transmission post 25 is inserted into the limiting slot 31. At this time, the opened closing plate 21 can be restricted and cannot rotate.

[0048] In the twelfth step, the first motor 83 operates to cause the mesh barrel 2 to rotate. When the material taking port 10 rotates downward, the air tank seat in the mesh barrel 2 will pour out from the material taking port 10 onto the guide plate 44. At this time, the air tank seat on the guide plate 44 will slide down through the guide plate 44, the discharge chute 50, and the feed hopper 54 into the collection box 33 for collection. Throughout the process, there is no need for personnel to touch the dried mesh barrel 7 and the air tank seat, reducing the occurrence of scalding the staff.

[0049] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention is also intended to include these changes and modifications.

Claims

1. An ultrasonic cleaning device for an air box seat, characterized in that, It includes a box body (1), a net barrel (2) for placing an air tank seat, a drying tank (3) and an ultrasonic cleaning tank (4) distributed in the box body (1) along the length direction of the box body (1). The drying tank (3) and the ultrasonic cleaning tank (4) are opposite to each other left and right. The net barrel (2) is horizontally located in the ultrasonic cleaning tank (4). A sliding mechanism. The top end of the box body (1) is horizontally slidably connected with a cover plate (5) through the sliding mechanism. The cover plate (5) is used to close the notch of the drying tank (3). A transfer mechanism. The transfer mechanism is arranged on the box body (1), and the transfer mechanism is used to transfer the net barrel (2) in the ultrasonic cleaning tank (4) to the drying tank (3) first and then to the cover plate (5). A rotating mechanism is arranged on the transfer mechanism, and the rotating mechanism is used to drive the net barrel (2) on the transfer mechanism to rotate self - axially. A drying mechanism. The drying mechanism is arranged on the box body (1), and the drying mechanism is used to dry the air tank seat in the net barrel (2) in the drying tank (3). A material taking mechanism. The material taking mechanism is arranged on the cover plate (5). When the net barrel (2) is transferred to the cover plate (5), the material taking mechanism is used to take out the air tank seat in the net barrel (2). A rotating mechanism. The rotating mechanism is arranged on the box body (1), and the rotating mechanism is used to drive the net barrel (2) located in the drying tank (3) and the ultrasonic cleaning tank (4) to rotate along the axis of the net barrel (2).

2. The ultrasonic cleaning device for an air box seat according to claim 1, characterized in that, The net barrel (2) includes two discs (6), and the two discs (6) are opposite to each other left and right. A hexagonal net cylinder (7) is horizontally arranged between the two discs (6). Circular grooves (8) are coaxially arranged on one side of the two discs (6) facing away from each other, and transfer columns (9) are coaxially arranged at the bottom of the two circular grooves (8). One end of the transfer column (9) far from the bottom of the circular groove (8) extends outside the circular groove (8). The transfer mechanism is used to drive the net barrel (2) formed by the net cylinder (7) and the two discs (6) to move through the transfer column (9). A material taking port (10) communicated with the net cylinder (7) is arranged at the top end of the net cylinder (7). A closing mechanism for closing the material taking port (10) is arranged between the two discs (6).

3. The ultrasonic cleaning device for an air box seat according to claim 2, characterized in that, The rotating mechanism includes two support shafts (12) rotatably connected between the left and right sides inside the box body (1), and one end of each of the two support shafts (12) horizontally passes through the drying tank (3) and the ultrasonic cleaning tank (4). Two first support wheels (13) are provided on each of the two support shafts (12) located in the ultrasonic cleaning tank (4). The four first support wheels (13) are pairwise opposite and are respectively located below the two discs (6) and are in contact with the lower surface of the discs (6). A rotating motor (14) for driving one of the support shafts (12) to rotate is provided on the box body (1). Two second support wheels (15) are provided on each of the two support shafts (12) located in the drying tank (3). The four second support wheels (15) are pairwise opposite. When the mesh barrel (2) is transferred into the drying tank (3), the four pairwise opposite second support wheels (15) are respectively located below the two discs (6) and are in contact with the lower surface of the discs (6).

4. The ultrasonic cleaning device for an air box seat according to claim 3, wherein, The sealing mechanism comprises a rotating groove (16) which is provided on two discs (6), the rotating groove (16) being connected to the circular groove (8), and a rotating disc (17) being rotatably connected in the rotating groove (16), a rotating column (18) being arranged horizontally between the two rotating discs (17), the rotating column (18) being arranged horizontally in the net cylinder (7) and close to the material taking port (10), a connecting plate (19) being rotatably connected to the rotating column (18), and an end of the connecting plate (19) away from the rotating column (18) being fixedly connected to an end of the inner wall of the net cylinder (7) close to the material taking port (10), and a swing plate (20) being rotatably connected to the rotating column (18). ), and a closing plate (21) located in the material taking port (10) is provided at one end of the swing plate (20) away from the rotating column (18), and the closing plate (21) is used to close the material taking port (10), the side of the closing plate (21) away from the rotating column (18) is a sloped surface (22), and the sloped surface (22) faces the outside of the net cylinder (7), the side of the material taking port (10) away from the rotating column (18) is a sloped surface (23) in contact with the sloped surface (22), and the sloped surface (23) faces the inside of the net cylinder (7), and the two opposite discs (6) on the left and right are respectively a left disc (6) and a right disc (6), and the right disc (6) ) is provided with a limiting member for limiting the rotation of the turntable (17), the limiting member comprising a rectangular rod (24) and a transmission column (25), the rectangular rod (24) being horizontally arranged on a side of the turntable (17) away from the turntable (17), one end of the transmission column (25) being provided with a rectangular groove (26), the transmission column (25) being horizontally slidably connected to the rectangular rod (24) via the rectangular groove (26), a compression spring (27) being provided between the transmission column (25) and the turntable (17), a plurality of protrusions (28) being provided on one end of the transmission column (25) away from the turntable (17), and each protrusion (28) being slidably connected to the rectangular rod (24) along the rectangular groove (26), The moving columns (25) are evenly distributed in the circumferential direction. A plurality of connecting columns (29) are horizontally arranged on the right disk (6), and each connecting column (29) is arranged at the bottom of the circular groove (8). One end of each connecting column (29) away from the disk (6) is connected via a connecting ring (30). One end of the transmission column (25) away from the rotating disk (17) is coaxially located in the connecting ring (30), and a limiting groove (31) for horizontal insertion of each protrusion (28) is arranged on the inner wall of the connecting ring (30). The material taking mechanism is used to push the transmission column (25) close to the rotating disk (17) and drive the transmission column (25) to rotate.

5. The ultrasonic cleaning device for an air box seat according to claim 4, characterized in that, The material taking mechanism comprises a placing table (32) and a collecting box (33) placed on the placing table (32); a fixing frame (34) is provided on the right side of the box body (1); and a slide plate (35) is horizontally slidably connected to the top of the fixing frame (34); a pushing electric cylinder (36) is horizontally provided at the bottom end of the slide plate (35); and a baffle (37) is provided at one end of the piston rod of the pushing electric cylinder (36); and the baffle (37) is fixedly connected to the right side of the fixing frame (34); a driving motor (38) is provided at the top end of the slide plate (35); and an extrusion column (39) is horizontally provided at one end of the rotating shaft of the driving motor (38); a rectangular transmission groove (40) is provided on the side of the transmission column (25) facing away from the rotating disk (17); and a transmission block (41) matching the transmission groove (40) is provided on the end of the extrusion column (39) facing away from the driving motor (38); and a positioning plate (41) is provided on the side of the right side of the disc (6) facing away from the net cylinder (7). The net barrel (2) is provided with a distance sensor (43). When the net barrel (2) is located on the cover plate (5), the distance sensor (43) is used to detect the distance between the fixed frame (34) and the bottom of the circular groove (8) on the right disk (6). When the net barrel (2) rotates and the positioning column (42) corresponds to the distance sensor (43), the distance sensor (43) controls the rotating mechanism to stop working. The placement table (32) is located at the front side of the box body (1) and close to the drying tank (3). The cover plate (5) is provided with a material guide. When the net barrel (2) is located on the cover plate (5) and the material taking port (10) on the net cylinder (7) is opened, the rotating mechanism drives the net barrel (2) to rotate and pour the air box seat out from the material taking port (10). The material guide is used to guide the poured air box seat into the collection box (33).

6. The ultrasonic cleaning device for an air box seat according to claim 5, wherein, The material guiding member includes an inclined guide plate (44) and a first groove (45) provided at the top end of the cover plate (5). A second groove (46) is provided at the bottom of the first groove (45). The guide plate (44) is located in the second groove (46), and vertical columns (47) are provided vertically upward at the four corners of the upper surface of the guide plate (44). Fixed plates (48) are provided at the four corners of the top end of the cover plate (5), and fifth electric cylinders (49) are provided on the four fixed plates (48). One ends of the piston rods of the four fifth electric cylinders (49) are respectively fixedly connected to the top ends of the four columns (47). An outlet chute (50) is provided above the front side of the cover plate (5). The upper surface of the guide plate (44) is flush with the bottom wall of the outlet chute (50), and the lowermost end of the upper surface of the guide plate (44) is close to the outlet chute (50). An embedding groove (51) is provided on the placing table (32). A placing plate (52) is vertically slidably connected in the embedding groove (51). The collection box (33) is placed on the top end of the placing plate (52). A gravity sensor (53) for detecting the weight of the collection box (33) is provided between the placing plate (52) and the bottom of the embedding groove (51). A material guiding hopper (54) is inclined downward at one end of the cover plate (5) close to the outlet chute (50), and the end of the material guiding hopper (54) away from the cover plate (5) extends above the collection box (33). The gravity sensor (53) is used to control the operation of the four fifth electric cylinders (49). Fixed seats (55) are provided at the four corners of the bottom of the first groove (45). Placing wheels (56) are rotatably connected to one side of the four fixed seats (55). The placing wheels (56) have the same structure as the second support wheels (15).

7. The ultrasonic cleaning device for an air box seat according to claim 5, characterized in that, The transfer mechanism includes two vertical rods (57) arranged at the top of the box body (1), and a sliding frame (58) is vertically slidably connected between the two vertical rods (57). The sliding frame (58) is located at the upper rear side of the drying tank (3) and the ultrasonic cleaning tank (4). A suspension (59) is provided at the rear side of the sliding frame (58). A first electric cylinder (60) is vertically arranged at the rear side of the box body (1), and one end of the piston rod of the first electric cylinder (60) is fixedly connected to the bottom end of the suspension (59). A sliding plate (61) is horizontally slidably connected along the length direction of the sliding frame (58) at the front side of the sliding frame (58). A second electric cylinder (62) is horizontally and fixedly connected inside the sliding frame (58), and a push plate (63) is vertically arranged at one end of the piston rod of the second electric cylinder (62). A third electric cylinder (64) is horizontally arranged on the side of the sliding plate (61) close to the sliding frame (58), and the third electric cylinder (64) is located below the second electric cylinder (62). One end of the piston rod of the third electric cylinder (64) is fixedly connected to the push plate (63). An installation plate (65) is horizontally arranged below the front side of the sliding plate (61). Two sliding platforms (66) are horizontally slidably connected to the bottom end of the installation plate (65), and the two sliding platforms (66) are opposite to each other left and right. A pushing member for pushing the two sliding platforms (66) to approach or move away from each other is provided on the installation plate (65). Vertical picking and placing plates (67) are arranged at the bottom ends of the two sliding platforms (66). First round holes (68) for horizontally inserting the transfer columns (9) are respectively formed on the sides of the two picking and placing plates (67) facing away from each other. Second round holes (69) are formed on both picking and placing plates (67). The second round holes (69) are located above the first round holes (68), and the first round holes (68) are communicated with each other through a communication groove (70). The diameter of the second round holes (69) is larger than that of the first round holes (68). A transition groove (71) corresponding to the transmission column (25) is formed on the picking and placing plate (67) close to the right disc (6).

8. An ultrasonic cleaning device for an air box seat according to claim 7, characterized in that, The pushing member includes vertical plates (72) arranged at the top ends of the two sliding platforms (66). Two long strip-shaped grooves (73) are formed at the top end of the installation plate (65). The top ends of the two vertical plates (72) respectively pass through the two long strip-shaped grooves (73). Two fourth electric cylinders (74) for respectively pushing the two vertical plates (72) to approach or move away from each other are arranged at the top end of the installation plate (65).

9. The ultrasonic cleaning device for an air box seat according to claim 7, wherein, A plurality of first convex teeth (75) are provided on each of the two discs (6), and each first convex tooth (75) is located on the arc surface of the disc (6) on the side close to the mesh cylinder (7). Each of the first convex teeth (75) is evenly distributed along the circumferential direction of the disc (6). The rotating mechanism includes a bottom plate (76) provided at the bottom end of the mounting plate (65), and swing arms (77) are rotatably connected to the left and right sides of the bottom plate (76). A drive shaft (78) is rotatably connected between the two swing arms (77). The drive shaft (78) is located at the end of the swing arm (77) far from the bottom plate (76). Two drive discs (79) are coaxially and fixedly connected to the drive shaft (78), and a plurality of second convex teeth (80) that cooperate with the first convex teeth (75) are provided on each of the two drive discs (79). Each of the second convex teeth (80) is evenly distributed along the circumferential direction of the drive disc (79). The two swing arms (77) are located between the two drive discs (79). A first sprocket (81) is coaxially and fixedly connected to the drive shaft (78). A placement rack (82) is provided on one of the swing arms (77). A first motor (83) is provided on the placement rack (82), and a second sprocket (84) is provided at one end of the rotating shaft of the first motor (83). The second sprocket (84) is connected to the first sprocket (81) through a chain (85). A rotating ring (86) is coaxially and rotatably connected to the drive shaft (78). An installation groove (87) is formed at the top end of the mounting plate (65). An inverted L-shaped top plate (88) is provided at the top end of the mounting plate (65), and a swing seat (89) is hinged to the top plate (88). A sixth electric cylinder (90) is provided on the swing seat (89), and one end of the sixth electric cylinder (90) passes through the installation groove (87). The piston rod end of the sixth electric cylinder (90) is fixedly connected to the outer wall of the rotating ring (86). The two swing arms (77) are located between the two picking and placing plates (67). The distance sensor (43) controls the first motor (83) to stop working.

10. An ultrasonic cleaning device for an air box seat according to claim 1, characterized in that, The sliding mechanism includes two slide rails (91) provided at the top end of the box body (1), and the two slide rails (91) are respectively located on the upper sides of both sides of the drying tank (3). The cover plate (5) is horizontally slidably connected to the two slide rails (91), and the rear sides of the two slide rails (91) are connected by a cross plate (92). A side plate (93) is provided at the top end of the cross plate (92). One side of the cover plate (5) is horizontally provided with a seventh electric cylinder (94) located above the slide rail (91), and the piston rod end of the seventh electric cylinder (94) is fixedly connected to the side plate (93). The drying mechanism includes two air inlet pipes (95) provided on one side of the inner wall of the drying tank (3), and a long strip-shaped air outlet (96) is formed at the top end of the air inlet pipe (95) along the length direction of the air inlet pipe (95). A hot air blower (97) is provided on one side of the outer wall of the box body (1), and a connecting pipe (98) is communicated with the air outlet (96) of the hot air blower (97). One ends of the two air inlet pipes (95) pass through the box body (1) and extend to the outside of the box body (1) and are communicated with the connecting pipe (98).