Reverse osmosis equipment convenient to clean
Through the combined design of clamping components, heating components and rotating components, combined with high-pressure cleaning pumps and hot air, the problem of cleaning dead corners of reverse osmosis equipment is solved, achieving all-round cleaning and efficient water production.
Patent Information
- Application Number
- CN202510409098.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-07-11
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
There are cleaning dead corners in the existing reverse osmosis equipment during the cleaning process, resulting in poor cleaning results and reducing equipment efficiency and water production quality.
The combination design of clamping assembly, heating assembly and rotating assembly is adopted. Through the combination of high-pressure cleaning pump and hot air, the reverse osmosis body is fully cleaned and heated and softened deposits, improving cleaning efficiency and quality.
It effectively eliminates the cleaning dead corners, improves the cleaning effect and water production quality of reverse osmosis equipment, and improves the overall cleaning efficiency of the equipment.
Smart Images

Figure CN120285771A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of reverse osmosis equipment, and specifically to a reverse osmosis equipment that is easy to clean. Background Art
[0002] In recent years, many new technologies have been rapidly developed in the application of high-concentration sewage treatment, such as landfill leachate treatment. Currently, a class with good application trends is the application of membrane technology, including microfiltration membranes, ultrafiltration membranes, nanofiltration membranes, and reverse osmosis membranes, etc. The advantage of using membrane technology is that the effluent water quality is better and can meet higher discharge requirements. Reverse osmosis is a membrane separation technology that uses the function of a selectively permeable (semi-permeable) membrane with pressure as the driving force. When the pressure applied to the system is greater than the osmotic pressure of the influent solution, water molecules continuously pass through the membrane, flow into the central pipe through the product water flow channel, and then impurities in the water, such as ions, organic substances, bacteria, viruses, etc., are retained on the influent side of the membrane and then flow out at the concentrated water outlet end, so as to achieve the purpose of separation and purification. The reverse osmosis equipment passes the raw water through fine filters, granular activated carbon filters, compressed activated carbon filters, etc., and then pressurizes it through a pump. Using a reverse osmosis membrane with a pore size of 1 / 10000 μm, the higher-concentration water is changed into low-concentration water, and at the same time, a large number of impurities such as industrial pollutants, heavy metals, bacteria, and viruses mixed in the water are all isolated, so as to meet the physical and chemical indicators and hygiene standards for drinking, and produce clear and pure water, which is the best choice for the human body to timely supplement high-quality water.
[0003] After retrieval, a reverse osmosis equipment cleaning device proposed in the patent publication number CN222343630U, for example, includes: a cleaning box and a placement basket. The bottom of the cleaning box is respectively equipped with an ultrasonic cleaning device and a drain pipe. Two groups of partition plates are fixedly installed at the bottom of the cleaning box. A telescopic plate is fixedly installed between the two groups of partition plates. A round rod is fixedly installed at the inner bottom of the cleaning box.
[0004] In the above patent literature, the reverse osmosis equipment after cleaning is mainly lifted upward to below the nozzle by a lifting assembly. Then, the first motor is started. The output end of the first motor drives the reciprocating lead screw to rotate. The reciprocating lead screw drives the rectangular plate to move back and forth along the guide rod through a sliding sleeve. The nozzle installed at the bottom of the rectangular plate sprays the water conveyed by the corrugated pipe onto the outer wall of the reverse osmosis equipment, washing away all the dirt attached to the outer wall of the reverse osmosis equipment. However, in its actual use process, its cleaning method is relatively single, resulting in cleaning dead corners inside the reverse osmosis equipment, which cannot be cleaned by high-pressure water flow, reducing the cleaning effect, and thus reducing the efficiency and water production quality of the reverse osmosis equipment. Therefore, there is an urgent need for a reverse osmosis equipment that is easy to clean. Summary of the Invention
[0005] (I) Technical Problems to be Solved The object of the present invention is to provide a reverse osmosis device that is easy to clean, so as to solve the problems of poor cleaning quality and low cleaning efficiency of the existing reverse osmosis device mentioned in the above background technology.
[0006] (II) Technical solution To achieve the above object, the present invention provides the following technical solution: A reverse osmosis device that is easy to clean, including a device base, on the front and rear sides of the upper end surface of the device base, there are sliding bases slidably installed, on the upper end surface of the sliding base, there is a device mounting seat fixedly installed through an electric push rod, on the side wall of the device mounting seat located on the left, there is a positioning disk rotatably installed, between the device mounting seats on the left and right sides, there is a reverse osmosis body, and further includes: An adjusting component, the adjusting component is arranged in the inner cavity of the device base, and the adjusting component is used to change the position of the sliding base; A heating component, the heating component is arranged in the middle of the upper end surface of the device base, and the heating component is used to raise the temperature of the reverse osmosis body; A clamping component, the clamping component is arranged on the side wall of the positioning disk, and the clamping component is used to limit the reverse osmosis body; A rotating component, the rotating component is arranged in the inner cavity of the device base on the left, and the rotating component is used to rotate the positioning disk.
[0007] Preferably, the clamping component includes a triangular seat, a driving rack, a transmission gear, a sliding rack, a fixture seat, a mounting plate and a turning handle. In the middle of the right end surface of the positioning disk, there is a triangular seat fixedly installed. In the middle of the inner cavity of the triangular seat, there is a transmission gear rotatably installed. In the middle of the side wall of the triangular seat, there is a driving rack slidably installed. On the right end surface of the triangular seat, there is a sliding rack slidably installed. On the side wall of the sliding rack, there is a fixture seat fixedly installed. On the right end surface of the triangular seat, there is a mounting plate fixedly installed. In the inner cavity of the mounting plate, there is a turning handle rotatably installed.
[0008] Preferably, on the side wall of the positioning disk, there is an inclined groove opened. The driving rack slides in the inner cavity of the inclined groove. On the inner side wall of the driving rack, there are teeth installed. The driving rack is meshed and connected with the transmission gear. The driving rack is meshed and connected with the sliding rack. On the right side wall of the triangular seat, there is a sliding groove opened. The sliding rack slides in the inner cavity of the sliding groove. The turning handle is threadedly connected with the driving rack at the rear side.
[0009] Preferably, the rotating component includes a transmission column, a transmission worm gear, a transmission worm and a rotating motor. On the side wall of the device mounting seat located on the left, there is a transmission column rotatably installed. On the side wall of the transmission column, there is a transmission worm gear fixedly installed. In the inner cavity of the device mounting seat located on the left, there is a transmission worm rotatably installed. The rotating motor is fixedly installed on the rear side wall of the device mounting seat on the left through a frame.
[0010] Preferably, the driving worm gear is meshed and connected with the driving worm, the driving column is rotatably connected with the positioning disc, and the output shaft end of the rotating motor is fixedly connected with the driving worm.
[0011] Preferably, a high-pressure cleaning pump is fixedly installed in the inner cavity of the equipment mounting seat on the right side. A water inlet pipe is arranged on the upper side wall of the high-pressure cleaning pump, and a water outlet pipe penetrating through the equipment mounting seat is fixedly installed on the left side wall of the high-pressure cleaning pump.
[0012] Preferably, the adjusting assembly includes a bidirectional lead screw, a limit seat and an adjusting motor. The adjusting motor is fixedly installed on the right side wall of the equipment base through a frame. The bidirectional lead screw is rotatably installed in the inner cavity of the equipment base, and the limit seats are threadedly installed on the left and right sides of the side wall of the bidirectional lead screw.
[0013] Preferably, the thread directions of the left and right ends of the bidirectional lead screw are opposite. The limit seats are fixedly installed on the lower end surface of the sliding base. The limit seats slide in the inner cavity of the equipment base, and the output shaft end of the adjusting motor penetrates through the equipment base and is fixedly connected with the bidirectional lead screw.
[0014] Preferably, the heating assembly includes a support leg, a pressure accumulation box, a piston plate, a piston column, a return spring, a cam block, an air outlet pipe and an electric heater. The support leg is slidably installed in the middle of the upper end surface of the equipment base. The end of the support leg is fixedly installed with the pressure accumulation box. The piston plate is slidably installed in the inner cavity of the pressure accumulation box. The piston column is fixedly installed on the lower end surface of the piston plate. The return spring is wound and installed on the side wall of the piston column. The cam block is slidably installed in the middle of the side wall of the bidirectional lead screw. The air outlet pipe is fixedly installed on the upper end surface of the pressure accumulation box. The end of the air outlet pipe is fixedly installed with the electric heater.
[0015] Preferably, one end of the return spring is fixedly installed on the side wall of the piston plate, and the other end of the return spring is fixedly installed on the bottom surface of the inner cavity of the pressure accumulation box. The piston column is slidably connected with the pressure accumulation box. The piston column abuts against the side wall of the cam block. One-way air valves with outlets facing the inner cavity of the pressure accumulation box are arranged in the inner cavities of the air inlet holes on the upper left and right sides of the side wall of the pressure accumulation box. One-way air valves with outlets facing the inner cavity of the pressure accumulation box are arranged in the inner cavity of the air outlet pipe.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. In this invention, when cleaning the reverse osmosis body, the worker first places the reverse osmosis body between the fixture seats, and then the worker rotates the turning handle. Since the turning handle is threadedly connected to the driving rack at the rear, when the turning handle rotates, the driving rack will continuously move away from the mounting plate. Through the meshing connection between the driving rack and the transmission gear, at this time, the group of driving racks can slide in the inclined slots. And because the driving rack is meshed with the sliding rack, under the limiting effect of the sliding slot on the sliding rack, at this time, the group of sliding racks will continuously move closer to the middle of the triangular seat, that is, at this time, the fixture seats will complete the clamping and fixing of the reverse osmosis body, facilitating the subsequent cleaning work of the reverse osmosis body.
[0017] 2. In this invention, before clamping the reverse osmosis body, through the setting of the heating component, when the bidirectional lead screw rotates, the cam block slidably mounted on its side wall also rotates accordingly. Since the piston column abuts against the side wall of the cam block, at this time, the cam block will be able to squeeze the piston column to make the piston plate move up and down in the inner cavity of the pressure accumulation box. When the piston plate continuously moves downward, the volume of the lower cavity of the pressure accumulation box continuously decreases, and the internal air pressure gradually increases. When the air pressure is greater than the threshold value of the one-way air valve at the air outlet pipe, the high-pressure air in the lower cavity of the pressure accumulation box can be discharged from the air outlet pipe, flows out after passing through the internal of the electric heater, and downward can make a large amount of hot air blow on the reverse osmosis body. Heating can help soften the deposits adhered to the inner wall of the reverse osmosis body, making it easier to be dissolved and removed by the cleaning agent, thereby effectively improving the quality of the whole equipment for cleaning the reverse osmosis body. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is the front view overall structure schematic diagram of a reverse osmosis device for easy cleaning according to the present invention; Figure 2 is the top view overall structure schematic diagram of a reverse osmosis device for easy cleaning according to the present invention; Figure 3 is the display structure schematic diagram at the positioning disk of a reverse osmosis device for easy cleaning according to the present invention; Figure 4 is the sectional view structure schematic diagram at the positioning disk of a reverse osmosis device for easy cleaning according to the present invention; Figure 5 is the connection structure schematic diagram at the rotating component of a reverse osmosis device for easy cleaning according to the present invention; Figure 6 is the connection structure schematic diagram at the high-pressure cleaning pump of a reverse osmosis device for easy cleaning according to the present invention; Figure 7 is the connection structure schematic diagram at the adjusting component of a reverse osmosis device for easy cleaning according to the present invention; Figure 8 is the sectional view structure schematic diagram at the pressure accumulation box of a reverse osmosis device for easy cleaning according to the present invention.
[0019] In the figure: 1, equipment base; 2, sliding base; 3, equipment mounting base; 31, high-pressure cleaning pump; 32, water inlet pipe; 33, water outlet pipe; 4, positioning disc; 41, inclined groove; 5, reverse osmosis body; 6, adjusting assembly; 61, bidirectional lead screw; 62, limit seat; 63, adjusting motor; 7, heating assembly; 71, support leg; 72, pressure accumulator box; 721, air inlet hole; 73, piston plate; 74, piston column; 75, return spring; 76, cam block; 77, air outlet pipe; 78, electric heater; 8, clamping assembly; 81, triangular seat; 811, sliding groove; 82, driving rack; 83, transmission gear; 84, sliding rack; 85, fixture seat; 86, mounting plate; 87, turning handle; 9, rotating assembly; 91, transmission column; 92, transmission worm gear; 93, transmission worm; 94, rotating motor. Specific implementation mode
[0020] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to 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 the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0021] Please refer to Figures 1 - 8 , the present invention provides a technical solution for a reverse osmosis device that is easy to clean: A reverse osmosis device that is easy to clean includes an equipment base 1. The front and rear sides of the upper end surface of the equipment base 1 are slidably installed with a sliding base 2. The upper end surface of the sliding base 2 is fixedly installed with an equipment mounting base 3 through an electric push rod. A positioning disc 4 is rotatably installed on the side wall of the equipment mounting base 3 on the left side. A reverse osmosis body 5 is arranged between the equipment mounting bases 3 on the left and right sides. It also includes: An adjusting assembly 6, the adjusting assembly 6 is arranged in the inner cavity of the equipment base 1, and the adjusting assembly 6 is used to change the position of the sliding base 2; A heating assembly 7, the heating assembly 7 is arranged in the middle of the upper end surface of the equipment base 1, and the heating assembly 7 is used to raise the temperature of the reverse osmosis body 5; A clamping assembly 8, the clamping assembly 8 is arranged on the side wall of the positioning disc 4, and the clamping assembly 8 is used to limit the reverse osmosis body 5; A rotating assembly 9, the rotating assembly 9 is arranged in the inner cavity of the equipment base 1 on the left side, and the rotating assembly 9 is used to rotate the positioning disc 4.
[0022] Further, the clamping assembly 8 includes a triangular seat 81, a driving rack 82, a transmission gear 83, a sliding rack 84, a fixture seat 85, a mounting plate 86 and a turning handle 87. A triangular seat 81 is fixedly installed in the middle of the right end face of the positioning disk 4. A transmission gear 83 is rotatably installed in the middle of the inner cavity of the triangular seat 81. A driving rack 82 is slidably installed in the middle of the side wall of the triangular seat 81. A sliding rack 84 is slidably installed on the right end face of the triangular seat 81. A fixture seat 85 is fixedly installed on the side wall of the sliding rack 84. A mounting plate 86 is fixedly installed on the right end face of the triangular seat 81. A turning handle 87 is rotatably installed in the inner cavity of the mounting plate 86; An inclined groove 41 is formed in the side wall of the positioning disk 4. The driving rack 82 slides in the inner cavity of the inclined groove 41. Teeth are installed on the inner side wall of the driving rack 82. The driving rack 82 is meshed with the transmission gear 83. The driving rack 82 is meshed with the sliding rack 84. A sliding groove 811 is formed in the right side wall of the triangular seat 81. The sliding rack 84 slides in the inner cavity of the sliding groove 811. The turning handle 87 is threadedly connected to the rear driving rack 82.
[0023] It should be noted that the worker first places the reverse osmosis body 5 between the three fixture seats 85, and then the worker rotates the turning handle 87. Since the turning handle 87 is threadedly connected to the rear driving rack 82, when the turning handle 87 rotates, the driving rack 82 will continuously move away from the mounting plate 86. Through the meshing connection between the driving rack 82 and the transmission gear 83, at this time, all three driving racks 82 can slide in the inclined groove 41. And because the driving rack 82 is meshed with the sliding rack 84, under the limiting effect of the sliding groove 811 on the sliding rack 84, at this time, the three sliding racks 84 will continuously move closer to the middle of the triangular seat 81, that is, at this time, the fixture seat 85 will complete the clamping and fixing of the reverse osmosis body 5.
[0024] Further, the adjusting assembly 6 includes a bidirectional lead screw 61, a limiting seat 62 and an adjusting motor 63. An adjusting motor 63 is fixedly installed on the right side wall of the equipment base 1 through a frame. A bidirectional lead screw 61 is rotatably installed in the inner cavity of the equipment base 1. Limiting seats 62 are threadedly installed on the left and right sides of the side wall of the bidirectional lead screw 61; The thread directions of the left and right ends of the bidirectional lead screw 61 are opposite. The limiting seats 62 are fixedly installed on the lower end face of the sliding base 2. The limiting seats 62 slide in the inner cavity of the equipment base 1. The output shaft end of the adjusting motor 63 penetrates through the equipment base 1 and is fixedly connected to the bidirectional lead screw 61; A high-pressure cleaning pump 31 is fixedly installed in the inner cavity of the equipment mounting seat 3 on the right side. A water inlet pipe 32 is arranged on the upper side wall of the high-pressure cleaning pump 31. A water outlet pipe 33 penetrating through the equipment mounting seat 3 is fixedly installed on the left side wall of the high-pressure cleaning pump 31.
[0025] It should be noted that the worker rotates the bidirectional lead screw 61 by starting the adjustment motor 63. Since the thread directions at the left and right ends of the bidirectional lead screw 61 are opposite, under the constraint of the equipment base 1 on the limit seat 62, the limit seats 62 on both sides will approach simultaneously at this time, making the head of the reverse osmosis body 5 conductively fixed to the water outlet pipe 33 of the high-pressure cleaning pump 31. At this time, the worker can start the high-pressure cleaning pump 31, introduce clean water from the water inlet pipe 32, and spray high-pressure water from the water outlet pipe 33 to wash away impurities such as scale in the reverse osmosis body 5.
[0026] Furthermore, the rotating assembly 9 includes a transmission column 91, a transmission worm gear 92, a transmission worm 93, and a rotating motor 94. The transmission column 91 is rotatably installed on the side wall of the equipment mounting base 3 on the left side. The transmission worm gear 92 is fixedly installed on the side wall of the transmission column 91. The transmission worm 93 is rotatably installed in the inner cavity of the equipment mounting base 3 on the left side. The rotating motor 94 is fixedly installed on the rear side wall of the equipment mounting base 3 on the left side through a frame. The transmission worm gear 92 is meshed with the transmission worm 93. The transmission column 91 is rotatably connected to the positioning disk 4. The output shaft end of the rotating motor 94 is fixedly connected to the transmission worm 93.
[0027] It should be noted that when cleaning the reverse osmosis body 5, the worker can also rotate the transmission worm 93 by starting the rotating motor 94. Since the transmission worm 93 is meshed with the transmission worm gear 92, the transmission worm gear 92 will drive the transmission column 91 to rotate the positioning disk 4 at this time, that is, the reverse osmosis body 5 will also rotate. The water vapor continuously entering from the water outlet pipe 33 can then perform a full-round cleaning on the reverse osmosis body 5, improving the cleaning effect on the reverse osmosis body 5. It should be noted that when cleaning the reverse osmosis body 5, a cover plate can be used to cover the electric heater 78 to prevent water seepage and ensure its service life.
[0028] Furthermore, the heating assembly 7 includes a support leg 71, a pressure accumulation box 72, a piston plate 73, a piston column 74, a return spring 75, a cam block 76, an air outlet pipe 77, and an electric heater 78. The support leg 71 is slidably installed in the middle of the upper end surface of the equipment base 1. The end of the support leg 71 is fixedly installed with the pressure accumulation box 72. The piston plate 73 is slidably installed in the inner cavity of the pressure accumulation box 72. The piston column 74 is fixedly installed on the lower end surface of the piston plate 73. The return spring 75 is wound and installed on the side wall of the piston column 74. The cam block 76 is slidably installed in the middle of the side wall of the bidirectional lead screw 61. The air outlet pipe 77 is fixedly installed on the upper end surface of the pressure accumulation box 72. The electric heater 78 is fixedly installed at the end of the air outlet pipe 77. One end of the return spring 75 is fixedly installed on the side wall of the piston plate 73, and the other end of the return spring 75 is fixedly installed on the bottom surface of the inner cavity of the pressure accumulator box 72. The piston column 74 is slidably connected to the pressure accumulator box 72. The piston column 74 is in tight contact with the side wall of the cam block 76. Air inlet holes 721 are formed in the upper left and right sides of the side wall of the pressure accumulator box 72. A one-way air valve with an outlet facing the inner cavity of the pressure accumulator box 72 is arranged in the inner cavity of the air inlet hole 721. A one-way air valve with an outlet facing the inner cavity of the pressure accumulator box 72 is arranged in the inner cavity of the air outlet pipe 77.
[0029] It should be noted that before clamping the reverse osmosis body 5, due to the setting of the heating assembly 7, when the bidirectional lead screw 61 rotates, the cam block 76 slidably installed on its side wall also rotates accordingly. Since the piston column 74 is in tight contact with the side wall of the cam block 76, at this time, the cam block 76 will be able to squeeze the piston column 74 to move the piston plate 73 up and down in the inner cavity of the pressure accumulator box 72. When the piston plate 73 continuously moves downward, the volume of the lower cavity of the pressure accumulator box 72 continuously decreases, and the internal air pressure gradually increases. When the air pressure is greater than the threshold value of the one-way air valve at the air outlet pipe 77, the high-pressure air in the lower cavity of the pressure accumulator box 72 can be discharged from the air outlet pipe 77, flows out after passing through the electric heater 78, and a large amount of hot air can blow on the reverse osmosis body 5 downward. Heating can help soften the deposits adhered to the inner wall of the reverse osmosis body 5, making it easier to be dissolved and removed by the cleaning agent, thereby effectively improving the cleaning quality of the entire device for the reverse osmosis body 5.
[0030] Working principle: When cleaning the reverse osmosis body 5 (it should be noted that this device is used in an inverted manner), the worker first places the reverse osmosis body 5 between the three fixture seats 85, and then the worker rotates the turning handle 87. Since the turning handle 87 is threadedly connected to the rear drive rack 82, when the turning handle 87 rotates, the drive rack 82 will continuously move away from the mounting plate 86. Through the meshing connection between the drive rack 82 and the transmission gear 83, at this time, all three drive racks 82 can slide in the inclined slots 41. And since the drive rack 82 is meshed with the sliding rack 84, under the limiting action of the sliding slot 811 on the sliding rack 84, at this time, the three sliding racks 84 will continuously move closer to the middle of the triangular seat 81, that is, at this time, the fixture seats 85 will complete the clamping and fixing of the reverse osmosis body 5. After that, the worker starts the adjustment motor 63 to rotate the bidirectional lead screw 61. Since the thread directions at the left and right ends of the bidirectional lead screw 61 are opposite, under the constraint of the equipment base 1 on the limit seat 62, the limit seats 62 on both sides will approach simultaneously at this time, making the head of the reverse osmosis body 5 communicate and fix with the water outlet pipe 33 of the high-pressure cleaning pump 31. At this time, the worker can start the high-pressure cleaning pump 31, introduce clean water from the water inlet pipe 32, and spray high-pressure water from the water outlet pipe 33 to wash the scale and other impurities in the reverse osmosis body 5. When cleaning the reverse osmosis body 5, the worker can also start the rotation motor 94 to rotate the transmission worm 93. Since the transmission worm 93 is meshed with the transmission worm gear 92, the transmission worm gear 92 will drive the transmission column 91 to rotate the positioning disc 4 at this time, that is, the reverse osmosis body 5 will also rotate. The water vapor continuously entering from the water outlet pipe 33 can wash the reverse osmosis body 5 in all directions, improving the cleaning effect on the reverse osmosis body 5. It should be noted that when cleaning the reverse osmosis body 5, a cover plate can be used to cover the electric heater 78 to prevent water seepage and ensure its service life; Before clamping the reverse osmosis body 5, through the setting of the heating component 7, when the bidirectional lead screw 61 rotates, the cam block 76 slidably installed on its side wall also rotates accordingly. Since the piston column 74 abuts against the side wall of the cam block 76, the cam block 76 will be able to squeeze the piston column 74 to move the piston plate 73 up and down in the inner cavity of the pressure accumulation box 72. When the piston plate 73 continuously moves downward, the volume of the lower cavity of the pressure accumulation box 72 continuously decreases, and the internal air pressure gradually increases. When the air pressure is greater than the threshold of the one-way air valve at the air outlet pipe 77, the high-pressure air in the lower cavity of the pressure accumulation box 72 can be discharged from the air outlet pipe 77, flow out after passing through the electric heater 78, and a large amount of hot air can blow downward on the reverse osmosis body 5. Heating can help soften the deposits adhering to the inner wall of the reverse osmosis body 5, making it easier to be dissolved and removed by the cleaning agent, and thus effectively improving the cleaning quality of the whole equipment for the reverse osmosis body 5; when the piston plate 73 continuously moves upward, the volume of the lower cavity of the pressure accumulation box 72 continuously increases, and the internal air pressure gradually decreases. At this time, the outside air can enter the inner cavity of the pressure accumulation box 72 through the air inlet hole 721 to replenish the air volume and make preparations for the next blowing; After clamping the reverse osmosis body 5, through the setting of the heating component 7, a large amount of hot air can blow downward on the reverse osmosis body 5, which can quickly evaporate the water on the reverse osmosis body 5, facilitating the worker to perform the next work treatment on the reverse osmosis body 5, thus greatly improving the cleaning efficiency of the whole equipment for the reverse osmosis body 5.
[0031] Finally, it should be noted that the above content is only used to illustrate the technical solution of the present invention, rather than limiting the protection scope of the present invention. Any simple modification or equivalent replacement made by those of ordinary skill in the art to the technical solution of the present invention shall not depart from the essence and scope of the technical solution of the present invention.
Claims
1. A reverse osmosis device that is easy to clean, including a device base (1), and sliding bases (2) are slidably installed on the front and rear sides of the upper end surface of the device base (1), characterized in that, The upper end surface of the sliding base (2) is fixedly installed with an equipment mounting seat (3) through an electric push rod. A positioning disc (4) is rotatably installed on the side wall of the equipment mounting seat (3) on the left side. A reverse osmosis body (5) is arranged between the equipment mounting seats (3) on the left and right sides. Further included are: An adjusting component (6), which is arranged in the inner cavity of the equipment base (1) and is used to change the position of the sliding base (2); A heating component (7), which is arranged in the middle of the upper end surface of the equipment base (1) and is used to raise the temperature of the reverse osmosis body (5); A clamping component (8), which is arranged on the side wall of the positioning disc (4) and is used to limit the reverse osmosis body (5); A rotating component (9), which is arranged in the inner cavity of the equipment base (1) on the left side and is used to rotate the positioning disc (4).
2. The reverse osmosis device according to claim 1, characterized in that: The clamping component (8) includes a triangular seat (81), a driving rack (82), a transmission gear (83), a sliding rack (84), a fixture seat (85), a mounting plate (86) and a turning handle (87). A triangular seat (81) is fixedly installed in the middle of the right end surface of the positioning disc (4). A transmission gear (83) is rotatably installed in the middle of the inner cavity of the triangular seat (81). A driving rack (82) is slidably installed in the middle of the side wall of the triangular seat (81). A sliding rack (84) is slidably installed on the right end surface of the triangular seat (81). A fixture seat (85) is fixedly installed on the side wall of the sliding rack (84). A mounting plate (86) is fixedly installed on the right end surface of the triangular seat (81). A turning handle (87) is rotatably installed in the inner cavity of the mounting plate (86).
3. The reverse osmosis device according to claim 2, characterized in that: An inclined groove (41) is formed on the side wall of the positioning disc (4). The driving rack (82) slides in the inner cavity of the inclined groove (41). Teeth are installed on the inner side wall of the driving rack (82). The driving rack (82) is meshed with the transmission gear (83). The driving rack (82) is meshed with the sliding rack (84). A sliding groove (811) is formed on the right side wall of the triangular seat (81). The sliding rack (84) slides in the inner cavity of the sliding groove (811). The turning handle (87) is in threaded connection with the driving rack (82) at the rear side.
4. The reverse osmosis device that is easy to clean according to claim 1, wherein: The rotating component (9) includes a transmission column (91), a transmission worm gear (92), a transmission worm (93) and a rotating motor (94). A transmission column (91) is rotatably installed on the side wall of the equipment mounting seat (3) on the left side. A transmission worm gear (92) is fixedly installed on the side wall of the transmission column (91). A transmission worm (93) is rotatably installed in the inner cavity of the equipment mounting seat (3) on the left side. The rotating motor (94) is fixedly installed on the rear side wall of the equipment mounting seat (3) on the left side through a frame.
5. The reverse osmosis device according to claim 4, characterized in that: The driving worm gear (92) is meshed and connected with the driving worm (93). The driving column (91) is rotationally connected with the positioning disc (4). The output shaft end of the rotating motor (94) is fixedly connected with the driving worm (93).
6. The reverse osmosis device according to claim 1, wherein: A high-pressure cleaning pump (31) is fixedly installed in the inner cavity of the equipment mounting seat (3) on the right side. A water inlet pipe (32) is arranged on the upper side wall of the high-pressure cleaning pump (31). A water outlet pipe (33) penetrating through the equipment mounting seat (3) is fixedly installed on the left side wall of the high-pressure cleaning pump (31).
7. An easy-to-clean reverse osmosis device according to claim 1, characterized in that: The adjusting assembly (6) includes a bidirectional lead screw (61), a limit seat (62) and an adjusting motor (63). The adjusting motor (63) is fixedly installed on the right side wall of the equipment base (1) through a frame. The bidirectional lead screw (61) is rotationally installed in the inner cavity of the equipment base (1). The limit seats (62) are threadedly installed on the left and right sides of the side wall of the bidirectional lead screw (61).
8. An easy-to-clean reverse osmosis device according to claim 7, characterized in that: The thread directions of the left and right ends of the bidirectional lead screw (61) are opposite. The limit seats (62) are fixedly installed on the lower end surface of the sliding base (2). The limit seats (62) slide in the inner cavity of the equipment base (1). The output shaft end of the adjusting motor (63) penetrates through the equipment base (1) and is fixedly connected with the bidirectional lead screw (61).
9. The reverse osmosis device according to claim 7, characterized in that: The heating assembly (7) includes a support leg (71), a pressure accumulation box (72), a piston plate (73), a piston column (74), a return spring (75), a cam block (76), an air outlet pipe (77) and an electric heater (78). The support leg (71) is slidably installed in the middle of the upper end surface of the equipment base (1). The end of the support leg (71) is fixedly installed with the pressure accumulation box (72). The piston plate (73) is slidably installed in the inner cavity of the pressure accumulation box (72). The piston column (74) is fixedly installed on the lower end surface of the piston plate (73). The return spring (75) is wound and installed on the side wall of the piston column (74). The cam block (76) is slidably installed in the middle of the side wall of the bidirectional lead screw (61). The air outlet pipe (77) is fixedly installed on the upper end surface of the pressure accumulation box (72). The end of the air outlet pipe (77) is fixedly installed with the electric heater (78).
10. An easy-to-clean reverse osmosis device according to claim 9, characterized in that: One end of the return spring (75) is fixedly installed on the side wall of the piston plate (73). The other end of the return spring (75) is fixedly installed on the bottom surface of the inner cavity of the pressure accumulation box (72). The piston column (74) is slidably connected with the pressure accumulation box (72). The piston column (74) abuts against the side wall of the cam block (76). One-way air valves with outlets facing the inner cavity of the pressure accumulation box (72) are arranged in the inner cavities of the air inlet holes (721) opened on the upper left and right sides of the side wall of the pressure accumulation box (72). One-way air valves with outlets facing the inner cavity of the pressure accumulation box (72) are arranged in the inner cavity of the air outlet pipe (77).
Citation Information
Patent Citations
Reverse osmosis equipment cleaning device
CN222343630U