Automatic cleaning and drying integrated device
By designing an automated integrated cleaning and drying device, employing a dual-bearing and side-mounted dual-nozzle structure, and using flammable and explosive solvent-based cleaning agents, the high cost, poor safety, and difficult maintenance of traditional cleaning methods are solved, achieving low-cost, safe, and efficient cleaning and drying results.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-04-14
AI Technical Summary
Traditional water-based liquid spray cleaning and ultrasonic cleaning methods in electronics manufacturing have problems such as high cost, the risk of using flammable and explosive solvent-based cleaning solutions, as well as equipment noise and maintenance difficulties.
An automated integrated cleaning and drying device was designed, which adopts a dual-bearing and side-mounted dual-nozzle structure. It uses low-cost, flammable and explosive solvent-based cleaning agents, such as industrial alcohol, and achieves cleaning and drying through a combination of rotating shaft and spray bar spraying, avoiding electric drive.
This has enabled the stable operation of the device, reduced equipment costs, improved safety and market competitiveness, simplified installation and maintenance, and reduced the failure rate.
Smart Images

Figure CN224114677U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of integrated cleaning and drying technology, and in particular to an automatic integrated cleaning and drying device. Background Technology
[0002] In the electronics manufacturing industry, solder paste is often printed on PCBs for surface mount technology (SMT) to facilitate component placement and soldering. This process requires the use of stencils, which are essential for the SMT industry. In the SMT industry, to eliminate corrosion, prevent electrostatic damage, improve product lifespan, and better meet customers' ever-increasing demands for high quality and high reliability, it is necessary to effectively clean away harmful residues such as flux residue, solder paste, solder balls, impurities, dust, and oil stains from the stencil surface.
[0003] Traditional cleaning methods include water-based liquid spray cleaning and ultrasonic cleaning. Water-based liquid spray cleaning has the advantages of being environmentally friendly, having strong cleaning power, high safety, and a high degree of automation. However, it has the disadvantage of being expensive in terms of both the cleaning solution and the equipment. Ultrasonic cleaning poses a fire and explosion hazard due to the evaporation of the solution. It can also damage the adhesive used to fix the mesh, and the noise from ultrasonic equipment can be harmful to operators, who may have some resistance to the noise generated by the equipment.
[0004] There is an urgent need for an automated integrated cleaning and drying device to overcome the shortcomings of traditional cleaning methods. We need a device that can use low-cost solvent-based cleaning solutions such as industrial alcohol for cleaning and drying, while also overcoming the disadvantages of such cleaning solutions being volatile, flammable, and explosive. Utility Model Content
[0005] The purpose of this invention is to provide an automatic integrated cleaning and drying device to solve the problems mentioned in the background art, where both water-based liquid spray cleaning and ultrasonic cleaning have certain defects.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an automatic integrated cleaning and drying device, comprising a rotating shaft body, a rotating sleeve body disposed on the outer side of the rotating shaft body, a capping body disposed at one end of the rotating sleeve body, connecting pipe bodies disposed on both the upper and lower sides of the outer surface of the rotating sleeve body, a spray bar body 1 and a spray bar body 2 disposed inside the connecting pipe body, a nozzle body disposed on the outer surface of both the spray bar body 1 and the spray bar body 2, an outer four-corner plug 1 disposed at the end of the spray bar body 1 away from the connecting pipe body, an outer four-corner plug 2 disposed at the end of the spray bar body 2 away from the connecting pipe body, and bearing mounting holes 1 and 2 disposed on the left and right sides of the outer wall of the rotating sleeve body, respectively, a bearing body 1 engaged with the interior of the bearing mounting hole 1, and a bearing body 2 engaged with the interior of the bearing mounting hole 2.
[0007] Preferably, the rotating shaft body includes a rotating shaft tail section, with a rotating shaft inlet inside the rotating shaft tail section. A rotating shaft base is provided at one end of the rotating shaft tail section, and the rotating shaft base includes a base bottom end and a base top end. The base bottom end is located near the rotating shaft tail section, and a rotating shaft fixing hole is provided inside the base bottom end. A rotating shaft body is fixed at the base top end away from the rotating shaft base. A rotating shaft outlet three is provided on the outer surface of the rotating shaft body. A rotating shaft outlet one and a rotating shaft outlet two are respectively provided on both sides of the rotating shaft outlet three. A rotating shaft top end is provided at the end of the rotating shaft body near the cover body. A sealing plate fixing threaded hole is provided at the end of the rotating shaft top end near the cover body. A rotating shaft outlet four is provided at the end of the rotating shaft top end near the cover body. Rotating shaft outlet one and rotating shaft outlet two are connected through rotating shaft outlet four. The rotating shaft body is located inside the bearing two body, the bearing two mounting hole, and the rotating sleeve body. The bearing one mounting hole and the bearing one body are adjacent to the rotating shaft top end, and the bearing two mounting hole and the bearing two body are adjacent to the base top end.
[0008] Preferably, the upper and lower sides of the outer surface of the rotating sleeve body are respectively provided with a first spray bar connecting step and a second spray bar connecting step, and the left and right sides of the outer wall of the rotating sleeve body are respectively provided with a first spray bar mounting hole and a second spray bar mounting hole. The first spray bar mounting hole is connected to the inside of the first spray bar connecting step, and the second spray bar connecting step is connected to the inside of the second spray bar mounting hole. The left and right sides of the outer wall of the rotating sleeve body are respectively provided with a first rotating sleeve step and a second rotating sleeve step.
[0009] Preferably, the inside of the cap body is provided with a cap nozzle through hole and a cap fixing through hole, which is located outside the cap nozzle through hole and corresponds to the cap plate fixing thread hole.
[0010] Preferably, a connecting screw is fixed at one end of the connecting pipe body, and a connecting pipe screw through hole is provided inside the connecting screw. A connecting pipe mounting step one and a connecting pipe mounting step two are respectively provided on both sides of the connecting pipe body. A spray bar threaded hole is provided inside the connecting pipe body, and the spray bar threaded hole is connected to the connecting pipe screw through hole. One set of connecting screws is threadedly connected to the spray bar mounting hole one, and the other set of connecting screws is threadedly connected to the spray bar mounting hole two.
[0011] Preferably, the bottom of the spray bar body is provided with a spray bar screw body, the inside of the spray bar screw body is provided with a spray bar screw through hole, the outer wall of the spray bar screw through hole is provided with a spray bar front threaded hole, the spray bar front threaded hole is connected to the inner side of the spray bar body, the outer wall of the spray bar screw through hole is provided with a spray bar side threaded hole, the spray bar side threaded hole is connected to the inner side of the spray bar body, the outer surface of the spray bar screw body is threadedly connected to one of the sets of spray bar threaded holes, the end of the spray bar body away from one of the sets of connecting pipe bodies is provided with a spray bar top threaded hole, the two sides of the outer surface of the spray bar body are respectively provided with a spray bar mounting step one and a spray bar mounting step two, the spray bar mounting step one and the spray bar mounting step two are located at the end near the spray bar top threaded hole, and the spray bar top threaded hole is threadedly connected to the outer surface of the outer four corner plug one.
[0012] Preferably, the bottom of the spray bar second body is provided with a spray bar second screw body, the inside of the spray bar second screw body is provided with a spray bar second screw through hole, the outer wall of the spray bar second screw through hole is provided with a spray bar second front threaded hole, the spray bar second front threaded hole is connected to the inner side of the spray bar second body, the outer wall of the spray bar second screw through hole is provided with a spray bar second side threaded hole, the spray bar second side threaded hole is connected to the inner side of the spray bar second body, the outer surface of the spray bar second screw body is threadedly connected to another set of spray bar threaded holes, the end of the spray bar second body away from the other set of connecting pipe bodies is provided with a spray bar second top threaded hole, the two sides of the outer surface of the spray bar second body are respectively provided with a spray bar second mounting step one and a spray bar second mounting step two, the spray bar second mounting step one and the spray bar second mounting step two are located at the end near the spray bar second top threaded hole, the spray bar second top threaded hole is threadedly connected to the outer surface of the outer four corner plug two.
[0013] Preferably, the front threaded hole, side threaded hole, front threaded hole, and side threaded hole of spray bar one are all threadedly connected to the outer surface of the nozzle body. The nozzle body on the front threaded hole of spray bar one is parallel to the first and second steps of the rotating sleeve. The nozzle body on the front threaded hole of spray bar two is aligned with the nozzle body on the front threaded hole of spray bar one. The nozzle bodies on the front threaded holes of spray bar two and spray bar one are front nozzles. The nozzle body on the side threaded hole of spray bar one is an upper side nozzle. The nozzle body on the side threaded hole of spray bar two is a lower side nozzle. The nozzle body is threadedly connected to the outlet of the rotating shaft. The nozzle body penetrates the interior of the nozzle through hole of the cap. The nozzle body on the cap body is a central nozzle.
[0014] Preferably, the cap body and the top of the rotating shaft, as well as the through hole and the rotating shaft fixing hole on the cleaning device, are all threadedly fixed by fasteners, including screws, spring washers, and flat washers.
[0015] Compared with the prior art, the technical solution provided by this utility model has the following advantages:
[0016] 1. By using a dual-bearing and side-mounted dual-nozzle thrust structure, the device operates stably, overcoming the shortcomings of the old spray device that would jam or stop rotating due to fluid pressure or changes in manufacturing process.
[0017] 2. This automatic integrated cleaning and drying device does not use electricity and can be applied to all-pneumatic equipment. It can use low-cost, flammable, and explosive solvent-based cleaning agents, such as industrial alcohol, thereby improving the equipment's market competitiveness.
[0018] 3. The structure and manufacturing process are simple, the installation is convenient, the failure rate is low, and it is easy to carry out overall maintenance in the later stage. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a three-dimensional structural diagram of the automatic integrated cleaning and drying device of this utility model;
[0021] Figure 2 This is a schematic diagram of the automatic integrated cleaning and drying device of this utility model rotated 360°.
[0022] Figure 3 This is a schematic diagram of the orthographic section of the rotating shaft body of this utility model;
[0023] Figure 4 This is a three-dimensional structural diagram of the rotating shaft body of this utility model;
[0024] Figure 5 This is a three-dimensional structural diagram of the rotating sleeve body of this utility model;
[0025] Figure 6 This is a three-dimensional structural diagram of the cap body of this utility model;
[0026] Figure 7 This is a three-dimensional structural diagram of the connecting pipe body of this utility model;
[0027] Figure 8 This is a three-dimensional structural diagram of the spray bar body of this utility model;
[0028] Figure 9 This is a three-dimensional structural diagram of the two main bodies of the spray bar of this utility model.
[0029] The reference numerals in the figures are explained as follows: 1. Rotary shaft body; 101. Rotary shaft tail; 102. Rotary shaft inlet; 103. Rotary shaft base; 104. Bottom end of base; 105. Rotary shaft fixing hole; 106. Top end of base; 107. Rotary shaft body; 108. Rotary shaft outlet one; 109. Rotary shaft outlet two; 1010. Rotary shaft outlet three; 1011. Top end of rotating shaft; 1012. Rotary shaft outlet four; 1013. Sealing plate fixing threaded hole; 2. Rotary sleeve body; 201. Bearing one mounting hole; 202. Bearing two mounting hole; 203. Spray bar one connecting step; 204. Spray bar one mounting hole; 205. Spray bar two connecting step; 206. Spray bar two mounting hole; 207. Rotary sleeve step one; 208. Rotary sleeve step two; 3. Sealing cover body; 301. Sealing cover nozzle through hole; 302. Sealing cover fixing through hole; 4. Connecting pipe body; 4 01. Connecting screw; 402. Connecting pipe screw through hole; 403. Connecting pipe mounting step one; 404. Connecting pipe mounting step two; 405. Spray bar threaded hole; 5. Spray bar body; 501. Spray bar screw body; 502. Spray bar screw through hole; 503. Spray bar front threaded hole; 504. Spray bar mounting step one; 505. Spray bar mounting step two; 506. Spray bar side threaded hole; 507. Spray bar 6. Top threaded hole; 7. Nozzle body; 8. External four corner plugs; 9. Spray bar body; 10. Spray bar screw body; 11. Spray bar screw through hole; 22. Front threaded hole of spray bar; 33. Mounting step of spray bar; 44. Mounting step of spray bar; 55. Mounting step of spray bar; 66. Side threaded hole of spray bar; 77. Top threaded hole of spray bar; 888. External four corner plugs; 9. Bearing body; 10. Bearing body. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] To further understand the content of this utility model, a detailed description of this utility model will be provided in conjunction with the accompanying drawings.
[0032] Combination Figures 1-9This utility model discloses an automatic integrated cleaning and drying device, comprising a rotating shaft body 1, a rotating sleeve body 2 on the outer side of the rotating shaft body 1, a capping body 3 at one end of the rotating sleeve body 2, connecting pipe bodies 4 on both the upper and lower sides of the outer surface of the rotating sleeve body 2, a first spray bar body 5 and a second spray bar body 8 respectively inside the connecting pipe body 4, a nozzle body 6 on the outer surface of both the first spray bar body 5 and the second spray bar body 8, an outer four-corner plug 7 at the end of the first spray bar body 5 away from the connecting pipe body 4, and an outer four-corner plug 9 at the end of the second spray bar body 8 away from the connecting pipe body 4, and bearing mounting holes 201 and 202 respectively on the left and right sides of the outer wall of the rotating sleeve body 2, a bearing body 10 engaged with the inside of the bearing mounting hole 201, and a bearing body 11 engaged with the inside of the bearing mounting hole 202.
[0033] The present invention will be further described below with reference to the embodiments.
[0034] Example 1:
[0035] Combination Figure 1 and Figure 9The rotating shaft body 1 includes a rotating shaft tail 101, with a rotating shaft inlet 102 inside the rotating shaft tail 101. A rotating shaft base 103 is provided at one end of the rotating shaft tail 101. The rotating shaft base 103 includes a base bottom 104 and a base top 106. The base bottom 104 is located near the end of the rotating shaft tail 101 and has a rotating shaft fixing hole 105 inside. A rotating shaft body 107 is fixed at the end of the base top 106 away from the rotating shaft base 103. A rotating shaft outlet three 1010 is provided on the outer surface of the rotating shaft body 107. A rotating shaft outlet one 108 and a rotating shaft outlet two 109 are respectively provided on both sides of the rotating shaft outlet three 1010. The rotating shaft body 107 is located near the end of the cover body 3. A rotating shaft top end 1011 is provided. A sealing plate fixing threaded hole 1013 is provided at the end of the rotating shaft top end 1011 near the sealing cover body 3. A rotating shaft outlet four 1012 is provided at the end of the rotating shaft top end 1011 near the sealing cover body 3. Rotating shaft outlet one 108 and rotating shaft outlet two 109 are connected through rotating shaft outlet four 1012. The rotating shaft body 107 is located inside the bearing two body 11, the bearing two mounting hole 202, and the rotating sleeve body 2. The bearing one mounting hole 201 and the bearing one body 10 are adjacent to the rotating shaft top end 1011. The bearing two mounting hole 202 and the bearing two body 11 are adjacent to the base top end 106. A spray bar one connecting step 203 and a spray bar two connecting step 205 are respectively provided on the upper and lower sides of the outer surface of the rotating sleeve body 2. The upper and lower sides of the outer wall of the rotating sleeve body 2 are respectively provided with a first spray bar mounting hole 204 and a second spray bar mounting hole 206. The first spray bar mounting hole 204 is connected to the interior of the first spray bar connecting step 203, and the second spray bar connecting step 205 is connected to the interior of the second spray bar mounting hole 206. The left and right sides of the outer wall of the rotating sleeve body 2 are respectively provided with a first rotating sleeve step 207 and a second rotating sleeve step 208. The inside of the capping body 3 is provided with a capping nozzle through hole 301 and a capping fixing through hole 302. The capping fixing through hole 302 is located outside the capping nozzle through hole 301 and corresponds to the capping plate fixing threaded hole 1013. One end of the connecting pipe body 4 is fixed with a connecting screw 401. The inner side of the connecting screw 401 is... The unit is provided with a connecting pipe screw through hole 402. Connecting pipe mounting steps 1 403 and 2 404 are respectively provided on both sides of the connecting pipe body 4. The interior of the connecting pipe body 4 is provided with a spray bar threaded hole 405, which communicates with the connecting pipe screw through hole 402. One set of connecting screws 401 is threadedly connected to the first spray bar mounting hole 204, and the other set of connecting screws 401 is threadedly connected to the second spray bar mounting hole 206. The bottom of the spray bar body 5 is provided with a spray bar screw body 501. The interior of the spray bar screw body 501 is provided with a spray bar screw through hole 502. The outer wall of the spray bar screw through hole 502 is provided with a spray bar front threaded hole 503, which communicates with the inner side of the spray bar body 5.A side threaded hole 506 is provided on the outer wall of the screw through hole 502 of the spray bar, which is connected to the inner side of the spray bar body 5. The outer surface of the screw body 501 of the spray bar is threadedly connected to one set of spray bar threaded holes 405. A top threaded hole 507 is provided at the end of the spray bar body 5 away from one set of connecting pipe bodies 4. A first mounting step 504 and a second mounting step 505 are respectively provided on both sides of the outer surface of the spray bar body 5. The first mounting step 504 and the second mounting step 505 are located at the end near the top threaded hole 507 of the spray bar. The top threaded hole 507 of the spray bar is connected to... The outer surface of the four corner plugs 7 is threaded. The bottom of the spray bar body 8 is provided with a spray bar screw body 801. Inside the spray bar screw body 801 is a spray bar screw through hole 802. The outer wall of the spray bar screw through hole 802 has a front threaded hole 803, which communicates with the inner side of the spray bar body 8. The outer wall of the spray bar screw through hole 802 also has a side threaded hole 806, which communicates with the inner side of the spray bar body 8. The outer surface of the spray bar screw body 801 is threaded to another set of spray bar threaded holes 405. The spray bar body 8 is located away from the other set of connecting pipes. One end of the main body 4 has a threaded hole 807 at the top of the second spray bar. On both sides of the outer surface of the second spray bar body 8, there are mounting steps 804 and 805 for the second spray bar, respectively. The mounting steps 804 and 805 are located near the end of the second spray bar with the threaded hole 807 at the top. The threaded hole 807 is threaded to the outer surface of the outer four-corner plug 9. The threaded holes 503 on the front of the first spray bar, 506 on the side of the first spray bar, 803 on the front of the second spray bar, and 806 on the side of the second spray bar are all threaded to the outer surface of the nozzle body 6. The nozzle body 6 on the front threaded hole 503 of the first spray bar faces the same direction as... The rotating sleeve steps 1 (207) and 2 (208) are parallel. The nozzle body 6 on the front threaded hole 803 of the spray bar 2 faces the same direction as the nozzle body 6 on the front threaded hole 503 of the spray bar 1. The nozzle bodies 6 on the front threaded hole 803 of the spray bar 2 and the nozzle bodies 6 on the front threaded hole 503 of the spray bar 1 are front nozzles. The nozzle body 6 on the side threaded hole 506 of the spray bar 1 is an upper side nozzle. The nozzle body 6 on the side threaded hole 806 of the spray bar 2 is a lower side nozzle. The nozzle body 6 is threaded to the rotating shaft outlet 4 (1012). The nozzle body 6 penetrates the interior of the nozzle through hole 301 on the cap. The nozzle body 6 on the cap body 3 is a center nozzle.
[0036] In this embodiment, when the device is used for cleaning, after the fluid enters the rotating shaft inlet 102 from point A, a small portion of the fluid passes through the central nozzle installed at the rotating shaft outlet 4 1012 on the rotating shaft body 1 and is sprayed onto both sides of the steel mesh being cleaned; the remaining fluid passes through the rotating shaft outlet 1 108, rotating shaft outlet 2 109, and rotating shaft outlet 3 1010, and then sequentially enters the spray rod mounting holes 1 and 206 of the rotating sleeve body 2, the connecting pipe screw through holes 402 and the spray rod threaded holes 405 of the upper and lower connecting pipe bodies 4, the spray rod screw through hole 502 of the spray rod body 5, and the spray rod screw through hole 802 of the spray rod body 8; most of the remaining fluid passes through the nozzle body 6 installed at the front threaded holes 503 and 803 of the spray rod 1 and spray rod 2, and is sprayed onto both sides of the steel mesh being cleaned; a small portion of the remaining fluid passes through the upper side nozzle installed at the side threaded hole 506 of the spray rod 1 and... The lower nozzles installed in the threaded holes 806 on both sides of the spray bar spray out, while the upper nozzles generate a leftward thrust and the lower nozzles generate a rightward thrust. This device creates a circular motion with point A as the center, where the main body 5 of spray bar one rotates from point B to point C, and the main body 8 of spray bar two rotates from point D to point E. Because the nozzles in the threaded holes 503 on the front of spray bar one and the threaded holes 803 on the front of spray bar two are evenly distributed from the center A, the front nozzles completely cover the cleaning area of the steel mesh during the circular motion. After the cleaning step is completed, a drying step is performed. It should be noted that the fluid used for cleaning is a pressurized cleaning liquid, and the fluid used for drying is pressurized compressed air. This device does not use electricity, has low manufacturing and operating costs, high safety, and long service life, making it highly competitive in the steel mesh cleaning equipment market and worthy of vigorous promotion.
[0037] Example 2:
[0038] Combination Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 6 The cap body 3 and the top of the rotating shaft 1011, as well as the through hole and the rotating shaft fixing hole 105 on the cleaning equipment, are all threadedly fixed by fasteners, including screws, spring washers and flat washers.
[0039] In this embodiment, when assembling the device, firstly, multiple nozzle bodies 6 and spray rod front threaded holes 503, one nozzle body 6 and spray rod side threaded holes 506, and outer four corner plugs 7 and spray rod top threaded holes 507 are threaded together. Then, a wrench is used to clamp the end faces of the connecting pipe mounting step 403 and the connecting pipe mounting step 404 of a connecting pipe body 4, and another wrench is used to clamp the end faces of the spray rod mounting step 504 and the spray rod mounting step 505 of the spray rod body 5. The spray rod threaded hole 405 of the connecting pipe body 4 and the spray rod screw body 501 of the spray rod body 5 are then threaded together. Together; then thread multiple nozzle bodies 6 and the front threaded hole 803 of the second spray rod, one nozzle body 6 and the side threaded hole 806 of the second spray rod, the outer four corner plugs 9 and the top threaded hole 807 of the second spray rod together; then use a wrench to clamp the end face of the first connecting pipe mounting step 403 and the second connecting pipe mounting step 404 of another connecting pipe body 4, and use another wrench to clamp the end face of the second spray rod mounting step 804 and the second spray rod mounting step 805 of the second spray rod body 8, and thread the threaded hole 405 of the second spray rod of the other connecting pipe body 4 and the second spray rod screw body 801 of the second spray rod body 8 together; then use a wrench to clamp Hold the end faces of the connecting pipe mounting step 403 and the connecting pipe mounting step 404 of the connecting pipe body 4, and then use another wrench to clamp the rotating sleeve step 207 and the rotating sleeve step 208 of the rotating sleeve body 2, and thread the connecting screw 401 of the connecting pipe body 4 and the spray rod mounting hole 204 of the rotating sleeve body 2 together; then slightly adjust the rotation angle of the connecting screw 401 and the spray rod mounting hole 204, the spray rod threaded hole 405 and the spray rod screw body 501, so that the nozzle body 6 on the front threaded hole 503 of the spray rod is parallel to the rotating sleeve step 207 and the rotating sleeve step 208, and then use a wrench Clamp the end faces of the connecting pipe mounting step 403 and the connecting pipe mounting step 404 of the other connecting pipe body 4 with your hand, and then use another wrench to clamp the rotating sleeve step 207 and the rotating sleeve step 208 of the rotating sleeve body 2 to thread the connecting screw 401 of the other connecting pipe body 4 and the spray bar mounting hole 206 of the rotating sleeve body 2 together; then slightly adjust the rotation angle of the connecting screw 401 and the spray bar mounting hole 206, the spray bar threaded hole 405 and the spray bar screw body 801 so that the nozzle body 6 on the front threaded hole 803 of the spray bar 2 faces the same direction as the nozzle body 6 on the front threaded hole 503 of the spray bar 1.The nozzle body 6 on the front threaded hole 803 of spray bar two and the nozzle body 6 on the front threaded hole 503 of spray bar one are front nozzles; the nozzle body 6 on the side threaded hole 506 of spray bar one is an upper side nozzle; the nozzle body 6 on the side threaded hole 806 of spray bar two is a lower side nozzle. Then, the bearing body 10 is placed into the bearing mounting hole 201, and the bearing body 11 is placed into the bearing mounting hole 202. Then, the middle through hole of the rotating sleeve body 2 is installed outside the rotating shaft body 107 of the rotating shaft body 1 with the front nozzle facing outward. The bearing mounting hole 201 and the bearing body 10 are adjacent to the top of the rotating shaft 1011, and the bearing mounting hole 202 and the bearing body 11 are adjacent to the top of the base 106. Then, the cover body 3 is installed on the outside of the top of the rotating shaft 1011, and screws, spring washers, and flat washers are used as fasteners, passing through the cover body 3 and the top of the rotating shaft 1011 in sequence. Three evenly arranged sealing cover fixing through holes 302 and sealing plate fixing threaded holes 1013 are used to thread the sealing cover body 3 and the top end 1011 of the rotating shaft together; then the nozzle body 6 passes through the sealing cover nozzle through hole 301 of the sealing cover body 3 and is threaded to the rotating shaft outlet 1012, with the nozzle body 6 being the central nozzle; finally, the rotating shaft tail 101 of the rotating shaft body 1 in the installed device passes through a through hole on the cleaning equipment, and screws, spring washers, and flat washers are used as fasteners to pass through the through holes and rotating shaft fixing holes 105 of the cleaning equipment arranged evenly around the circumference in sequence, and the device is threaded to the cleaning equipment. In the above way, two sets are vertically arranged and installed on the front and back sides of the steel mesh on the cleaning equipment. The device has a simple structure and manufacturing process, is easy to install, has a low failure rate, facilitates overall maintenance in the later stage, and reduces overall maintenance costs.
[0040] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0041] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An automatic integrated cleaning and drying device, characterized in that: The device includes a rotating shaft body, a rotating sleeve body on the outer side of the rotating shaft body, a capping body at one end of the rotating sleeve body, connecting pipe bodies on both sides of the outer surface of the rotating sleeve body, a first spray bar body and a second spray bar body inside the connecting pipe body, nozzle bodies on the outer surfaces of both the first and second spray bar bodies, an outer four-corner plug 1 at the end of the first spray bar body away from the connecting pipe body, and an outer four-corner plug 2 at the end of the second spray bar body away from the connecting pipe body, bearing 1 mounting holes and bearing 2 mounting holes on both sides of the outer wall of the rotating sleeve body, bearing 1 body engaging with the interior of the bearing 1 mounting hole, and bearing 2 body engaging with the interior of the bearing 2 mounting hole.
2. The automatic integrated cleaning and drying device according to claim 1, characterized in that: The rotating shaft body includes a rotating shaft tail section, with a rotating shaft inlet inside the rotating shaft tail section. A rotating shaft base is located at one end of the rotating shaft tail section, and the rotating shaft base includes a base bottom and a base top. The base bottom is located near the rotating shaft tail section, and a rotating shaft fixing hole is located inside the base bottom. A rotating shaft body is fixed to the base top, away from the rotating shaft base. A rotating shaft outlet three is located on the outer surface of the rotating shaft body. Rotating shaft outlet one and rotating shaft outlet two are located on opposite sides of the rotating shaft outlet three. A rotating shaft top is located at the end of the rotating shaft body near the cover body. A sealing plate fixing threaded hole is located at the end of the rotating shaft top near the cover body. A rotating shaft outlet four is located at the end of the rotating shaft top near the cover body. Rotating shaft outlet one and rotating shaft outlet two are connected through rotating shaft outlet four. The rotating shaft body is located inside the bearing two body, bearing two mounting hole, and rotating sleeve body. The bearing one mounting hole and bearing one body are adjacent to the rotating shaft top, and the bearing two mounting hole and bearing two body are adjacent to the base top.
3. The automatic integrated cleaning and drying device according to claim 2, characterized in that: The outer surface of the rotating sleeve body is provided with a first spray rod connecting step and a second spray rod connecting step on both sides. The upper and lower sides of the outer wall of the rotating sleeve body are provided with a first spray rod mounting hole and a second spray rod mounting hole, respectively. The first spray rod mounting hole is connected to the interior of the first spray rod connecting step, and the second spray rod connecting step is connected to the interior of the second spray rod mounting hole. The outer wall of the rotating sleeve body is provided with a first rotating sleeve step and a second rotating sleeve step on both sides.
4. The automatic integrated cleaning and drying device according to claim 3, characterized in that: The sealing body has a sealing nozzle through hole inside and a sealing fixing through hole inside. The sealing nozzle through hole is located outside the sealing nozzle through hole and corresponds to the sealing plate fixing thread hole.
5. The automatic integrated cleaning and drying device according to claim 4, characterized in that: One end of the connecting pipe body is fixed with a connecting screw. The connecting screw has a connecting pipe screw through hole inside. Connecting pipe mounting step one and connecting pipe mounting step two are respectively provided on both sides of the connecting pipe body. The connecting pipe body has a spray rod threaded hole inside. The spray rod threaded hole is connected to the connecting pipe screw through hole. One set of connecting screws is threadedly connected to the spray rod mounting hole one, and the other set of connecting screws is threadedly connected to the spray rod mounting hole two.
6. The automatic integrated cleaning and drying device according to claim 5, characterized in that: The bottom of the spray bar body is provided with a spray bar screw body. The interior of the spray bar screw body is provided with a spray bar screw through hole. The outer wall of the spray bar screw through hole is provided with a spray bar front threaded hole. The spray bar front threaded hole is connected to the inner side of the spray bar body. The outer wall of the spray bar screw through hole is provided with a spray bar side threaded hole. The spray bar side threaded hole is connected to the inner side of the spray bar body. The outer surface of the spray bar screw body is threadedly connected to one of the sets of spray bar threaded holes. The end of the spray bar body away from one of the sets of connecting pipe bodies is provided with a spray bar top threaded hole. The two sides of the outer surface of the spray bar body are respectively provided with a spray bar mounting step one and a spray bar mounting step two. The spray bar mounting step one and the spray bar mounting step two are located at the end near the spray bar top threaded hole. The spray bar top threaded hole is threadedly connected to the outer surface of the outer four corner plug one.
7. The automatic integrated cleaning and drying device according to claim 6, characterized in that: The bottom of the second spray bar body is provided with a second spray bar screw body. The inside of the second spray bar screw body is provided with a second spray bar screw through hole. The outer wall of the second spray bar screw through hole is provided with a second spray bar front threaded hole. The second spray bar front threaded hole is connected to the inner side of the second spray bar body. The outer wall of the second spray bar screw through hole is provided with a second spray bar side threaded hole. The second spray bar side threaded hole is connected to the inner side of the second spray bar body. The outer surface of the second spray bar screw body is threadedly connected to another set of spray bar threaded holes. The end of the second spray bar body away from the other set of connecting pipe bodies is provided with a second spray bar top threaded hole. The two sides of the outer surface of the second spray bar body are respectively provided with a second spray bar mounting step one and a second spray bar mounting step two. The second spray bar mounting step one and the second spray bar mounting step two are located at the end near the second spray bar top threaded hole. The second spray bar top threaded hole is threadedly connected to the outer surface of the outer four corner plug two.
8. The automatic integrated cleaning and drying device according to claim 7, characterized in that: The front threaded hole, side threaded hole, front threaded hole, and side threaded hole of the first spray bar are all threadedly connected to the outer surface of the nozzle body. The nozzle body on the front threaded hole of the first spray bar is parallel to the first and second steps of the rotating sleeve. The nozzle body on the front threaded hole of the second spray bar is aligned with the nozzle body on the front threaded hole of the first spray bar. The nozzle bodies on the front threaded holes of the second and first spray bars are front nozzles. The nozzle body on the side threaded hole of the first spray bar is an upper side nozzle. The nozzle body on the side threaded hole of the second spray bar is a lower side nozzle. The nozzle body is threadedly connected to the outlet of the rotating shaft. The nozzle body penetrates the interior of the nozzle through-hole of the cap. The nozzle body on the cap body is a central nozzle.
9. The automatic integrated cleaning and drying device according to claim 8, characterized in that: The cap body and the top of the rotating shaft, as well as the through hole and the rotating shaft fixing hole on the cleaning device, are all threaded together by fasteners, including screws, spring washers, and flat washers.