Sewage treatment apparatus based on ultrasonic cleaning technology

CN120535059BActive Publication Date: 2026-08-21SHAANXI GREEN LETTER CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202510731765.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-03
Publication Date
2026-08-21
Estimated Expiration
2045-06-03

AI Technical Summary

Technical Problem

[0003]目前市场上超声波污水处理中,沉淀环节大多以化学为主要应用方式,但化学沉淀后,水源中掺杂的化学物质很难到达估计污水排放标注,排放到自然环境依旧会对环境以及人群带来一定程度上的污染,另一方面,目前市场上的污水处理器对于污水内部的不溶解物,多采用过滤筛选为主要处理手段,但此类手法难以去除加工原料中的不溶解物,长期以往容易黏附在机构内部,影响设备运行

Benefits of technology

1.该设备接通电源后,超声波体发出声压冲击整体外壁内部加工原料并发出气泡,当声压或者声强受到压力到达一定程度时候,气泡就会迅速膨胀,然后又突然闭合,在这段过程中,气泡闭合的瞬间产生冲击波,这种超声波空化所产生的巨大压力能破坏不溶性污物而使他们分化于溶液中,避免出现污水内部不溶于水的部分积累漂浮在水的上方,漂浮物质过多影响内部设备运行。

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Abstract

The present application relates to sewage treatment technical field, the present application specifically is sewage treatment equipment based on ultrasonic cleaning technology, including integral external mechanism, the integral external mechanism includes integral outer wall, the equipment is connected power supply, the ultrasonic wave body sends the sound pressure and hits the integral outer wall inside processing raw materials and sends the bubble, when the sound pressure or the sound intensity is received pressure to reach a certain degree, the bubble will expand rapidly, then suddenly close, in this process, the bubble closes the moment produces the shock wave, the great pressure produced by this ultrasonic cavitation can destroy insoluble dirt and make them differentiate in solution, avoid the appearance insoluble in water in sewage part accumulates and floats in the upper of water, too much floating material influences internal equipment operation, adopts magnetized biological charcoal to carry out adsorption treatment to dye pollutants in dye wastewater, then adopts magnet to carry out magnetization separation treatment to dye solution after adsorption treatment.
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Description

Technical Field

[0001] This invention relates to the field of wastewater treatment technology, and more specifically to wastewater treatment equipment based on ultrasonic cleaning technology. Background Technology

[0002] Urban domestic sewage discharge has become a major source of water pollution in Chinese cities, making sewage treatment a top priority for urban water conservation and environmental protection efforts both now and in the future. Sewage treatment methods can be categorized into three types based on their function: physical, biological, and chemical. Existing physical methods primarily utilize physical processes to separate non-dissolved substances from sewage without altering its chemical properties. Commonly used methods include gravity separation, centrifugal separation, reverse osmosis, and flotation. Physical methods are generally simpler and more economical, suitable for situations in villages and towns with large water bodies, strong self-purification capabilities, and lower requirements for sewage treatment levels.

[0003] Currently, most ultrasonic wastewater treatment processes on the market rely on chemical methods for sedimentation. However, after chemical sedimentation, the chemical substances mixed in the water source are unlikely to meet the estimated wastewater discharge standards. Discharge into the natural environment will still cause some pollution to the environment and people. On the other hand, most wastewater processors on the market use filtration and screening as the main treatment method for insoluble substances in wastewater. However, this method is difficult to remove insoluble substances from the raw materials. Over time, these substances tend to adhere to the inside of the device, affecting its operation. Summary of the Invention

[0004] To solve the above-mentioned technical problems, the present invention provides a wastewater treatment device based on ultrasonic cleaning technology, including an overall external mechanism. The overall external mechanism includes an overall outer wall, and an overall base plate is fixedly connected to the central axis of the bottom outer wall. An overall bottom hole is formed at the central axis of the top outer wall of the overall base plate. This overall external mechanism provides an installation position for subsequent mechanisms and plays a stabilizing role during operation, counteracting the vibrations and shaking generated during operation, ensuring normal operation of the equipment, and avoiding problems such as bumps. It also includes: The internal magnetization mechanism includes several magnetization supports fixedly connected to the inner wall of the overall outer wall. A magnetization outer plate is fixedly connected to the bottom outer wall of the magnetization support. Through this internal magnetization mechanism, the surface of impurities inside the raw material is magnetized by biochar, and then the impurities are quickly separated and recovered by the magnetized block.

[0005] The bottom separation mechanism includes a separation bearing rotatably connected to the inner wall of the overall bottom hole. A separation bottom groove is opened on the bottom outer wall of the separation bearing , and a separation bottom pipe is fixedly connected to the inner wall of the separation bearing . This equipment uses the influence of centrifugal force to separate the solid and liquid of the processing wastewater. The solids condensed under the influence of centrifugal force are blocked inside the separation bottom pipe, and the filtered water is thrown out of the separation bottom pipe.

[0006] The external cleaning mechanism includes a cleaning main column rotatably connected to the inner wall of the separation tank, a cleaning bracket fixedly connected to the outer wall of the cleaning main column, and a cleaning main box fixedly connected to the inner wall of the cleaning bracket. The main purpose of the cleaning main box is to collect the generated impurities and collect them into the cleaning main box.

[0007] Preferably, the overall external mechanism also includes an overall external support fixedly connected to the overall outer wall. A power motor is fixedly connected to the bottom of the outer wall of the overall external support. An overall turntable is rotatably connected to the bottom outer wall of the power motor. The power motor provides the operating power for the overall mechanism, drives the operation of the separation bottom pipe in the bottom separation mechanism, and achieves the effect of water flow screening.

[0008] Preferably, the overall external mechanism also includes an overall bottom outer wall fixedly connected to the bottom of the overall base plate. An overall bottom outer plate is fixedly connected to the bottom outer wall of the overall bottom outer wall. An overall support is fixedly connected to the inner wall of the overall bottom outer plate. An overall inner plate is fixedly connected to the end of the overall support away from the overall bottom outer plate. An overall inner groove is opened at the central axis of the top outer wall of the overall inner plate. An overall belt is rotatably connected to the outer wall of the overall turntable. The power motor drives the operation of the equipment through the overall belt, and enables the bottom separation mechanism and the external cleaning mechanism to make full use of the centrifugal force generated by the power motor to generate an outward force, so that the internal processing raw materials can fully contact the magnetized block.

[0009] Preferably, the internal magnetization mechanism further includes several magnetization holes formed on the outer wall of the internal magnetization mechanism, biochar rods fixedly connected to the central axis of the bottom outer wall of several magnetization supports, several magnetization filter supports fixedly connected to the outer wall of the magnetization supports, several ultrasonic supports fixedly connected to the outer wall of the overall outer wall, ultrasonic bodies fixedly connected to the central axis of the outer wall of several ultrasonic supports, ultrasonic fixing rings fixedly connected to the bottom of the outer wall of several ultrasonic supports, and ultrasonic connecting wires fixedly connected to the outer wall of the ultrasonic bodies. The ultrasonic bodies emit sound pressure to impact the processing raw materials inside the overall outer wall and emit bubbles. When the sound pressure or sound intensity reaches a certain level, the bubbles will expand rapidly and then suddenly close. During this process, the moment the bubbles close, a shock wave is generated. The huge pressure generated by this ultrasonic cavitation can destroy insoluble dirt and cause it to decompose into the solution, avoiding the accumulation of water-insoluble parts of the sewage floating on the surface of the water. Excessive floating matter will affect the operation of the internal equipment.

[0010] Preferably, the bottom separation mechanism further includes a separation bearing two fixedly connected to the outer wall of the separation bottom tube. The top of the outer wall of the separation bearing two is provided with several separation grooves, the outer wall of the separation bottom tube is provided with several large separation holes, the inner wall of the separation bottom tube is fixedly connected with several magnetized blocks, and the bottom outer wall of the separation bottom tube is fixedly connected with several separation bottom plates. The magnetized biochar is used to adsorb the dye pollutants in the dye wastewater, and then the dye solution after adsorption treatment is magnetized and separated using a magnet.

[0011] Preferably, the bottom separation mechanism further includes a separation hole opened at the top central axis of the separation base plate. A separation bracket is fixedly connected to the top outer wall of the separation hole. A separation main column is fixedly connected to the top outer wall central axis of the separation bracket. A separation fan blade is fixedly connected to the outer wall of the separation main column. A separation outer tube is fixedly connected to the bottom outer wall of the separation base plate. A separation outer ring is fixedly connected to the outer wall of the separation outer tube. A separation bearing three is rotatably connected to the inner wall of the separation outer ring. A separation inner tube is rotatably connected to the central axis of the inner wall of the separation bearing three. When the top water flows into the bottom separation mechanism, the power motor drives the bottom separation mechanism to generate a large centrifugal force. The separation fan blade throws the processed raw material to the inner wall of the separation bottom tube, thereby achieving water source screening.

[0012] Preferably, the external cleaning mechanism also includes a main cleaning tank located on the outer wall of the main cleaning tank. A rear cleaning plate is fixedly connected to the central axis of the inner wall of the main cleaning tank, and a middle cleaning plate is slidably connected to the central axis of the inner wall of the rear cleaning plate. The magnetized block can achieve solid-liquid separation of sewage, degrade organic matter such as COD and BOD, and decolorize dyed water. Ultrasonic waves can also be used as an auxiliary technology for traditional chemical sterilization. When using traditional chemical methods for large-scale sewage treatment, adding ultrasonic radiation can greatly reduce the amount of chemical agents used and reduce pollution to the natural environment and people.

[0013] Preferably, the external cleaning mechanism also includes a cleaning outer plate slidably connected to the inner wall of the cleaning middle plate. A cleaning scraper is fixedly connected to the outer wall of the cleaning outer plate, and a cleaning spring is fixedly connected to the rear wall of the cleaning outer plate. The end of the cleaning spring away from the cleaning scraper is fixedly connected to the inner wall of the cleaning main box. A cleaning rear groove is opened on the inner wall of the cleaning main box. The surface of the impurities inside the raw materials is magnetized by biochar, and the impurities are quickly separated and recovered by the magnetized block. After magnetization, it has a good adsorption and removal effect on dye (methylene blue) in the dyeing and printing wastewater. At the same time, the magnetic material has good stability. The water treatment adsorbent can be effectively separated by an external magnetic field, simplifying the treatment process and preventing secondary pollution.

[0014] The beneficial effects of this invention are as follows: 1. After the device is powered on, the ultrasonic body emits sound pressure to impact the raw materials inside the outer wall and generate bubbles. When the sound pressure or sound intensity reaches a certain level, the bubbles will expand rapidly and then suddenly close. During this process, the moment the bubbles close, a shock wave is generated. The huge pressure generated by this ultrasonic cavitation can destroy insoluble dirt and cause it to decompose into the solution, avoiding the accumulation of water-insoluble parts of the sewage that float on the surface of the water. Excessive floating matter will affect the operation of the internal equipment.

[0015] 2. The combined use of ultrasonic and magnetization technologies for wastewater treatment allows the magnetized blocks to achieve solid-liquid separation, degrade organic matter such as COD and BOD, decolorize dyed water, and serve as an auxiliary technology to traditional chemical sterilization. When using traditional chemical methods for large-scale wastewater treatment, adding ultrasonic radiation can significantly reduce the amount of chemical agents used, thereby reducing pollution to the natural environment and human population.

[0016] 3. Magnetized biochar is used to adsorb dye pollutants in dye wastewater, and then a magnet is used to separate the dye solution after adsorption. This invention uses biochar to magnetize the surface of impurities inside the raw material, and then achieves rapid separation and recovery of impurities through the magnetized block. After magnetization, it has a good adsorption and removal effect on dyes (methylene blue) in dyeing wastewater. At the same time, the magnetic material has good stability, and the water treatment adsorbent can be effectively separated by an external magnetic field, simplifying the treatment process and preventing secondary pollution.

[0017] 4. The equipment is equipped with a bottom separation mechanism and an external cleaning mechanism. The two mechanisms make full use of the centrifugal force generated by the power motor to generate an outward force, so that the internal processing raw materials can fully contact the magnetized block. When the centrifugal force increases, the cleaning spring is stretched outward to store mechanical kinetic energy, providing power for subsequent reset. The cleaning scraper is stretched outward to scrape the external filter membrane, realizing the self-cleaning of the equipment. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a cross-sectional view of the overall structure of the present invention; Figure 3 This is a cross-sectional schematic diagram of the overall external structure of the present invention; Figure 4 This is a schematic diagram of the internal magnetization mechanism of the present invention; Figure 5 This is a schematic diagram of the bottom separation mechanism of the present invention; Figure 6 This is a cross-sectional schematic diagram of the bottom separation mechanism of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of A in the middle; Figure 8 This is a schematic diagram of the external cleaning mechanism of the present invention; Figure 9 This is a schematic diagram of the main cleaning chamber structure of the present invention; Figure 10 This is a cross-sectional view of the main cleaning chamber of the present invention.

[0019] In the diagram: 1. Overall external structure; 101. Overall outer wall; 102. Overall base plate; 103. Overall bottom hole; 104. Overall outer support; 105. Power motor; 106. Overall turntable; 107. Overall bottom outer wall; 109. Overall support; 110. Overall inner plate; 111. Overall inner groove; 112. Overall leather strip; 2. Internal magnetization mechanism; 201. Magnetized support; 202. Magnetized outer plate; 203. Magnetized hole; 204. Biochar rod; 205. Magnetized filter support; 206. Ultrasonic support; 207. Ultrasonic body; 208. Ultrasonic fixing ring; 209. Ultrasonic connecting line; 3. Bottom separation mechanism; 301. Separation bearing one; 302 303. Separating Bottom Tank; 304. Separating Bearing II; 305. Separating Tank; 306. Separating Large Hole; 307. Magnetized Block; 308. Separating Bottom Plate; 309. Separating Hole; 310. Separating Support; 311. Separating Main Column; 312. Separating Fan Blade; 313. Separating Outer Tube; 314. Separating Outer Ring; 315. Separating Bearing III; 316. Separating Inner Tube; 4. External Cleaning Mechanism; 401. Cleaning Main Column; 402. Cleaning Support; 403. Cleaning Main Box; 404. Cleaning Main Tank; 405. Cleaning Rear Plate; 406. Cleaning Middle Plate; 407. Cleaning Outer Plate; 408. Cleaning Scraper; 409. Cleaning Spring; 410. Cleaning Rear Tank. Detailed Implementation

[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments. The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and design various embodiments with various modifications suitable for a particular purpose.

[0021] Example 1, please refer to Figure 1 - Figure 3This invention relates to a wastewater treatment device based on ultrasonic cleaning technology, comprising an overall external mechanism 1. The overall external mechanism 1 includes an overall outer wall 101, with an overall base plate 102 fixedly connected to the central axis of the bottom outer wall of the overall outer wall 101. An overall bottom hole 103 is formed at the central axis of the top outer wall of the overall base plate 102. This overall external mechanism 1 provides an installation position for subsequent mechanisms and provides a stabilizing effect during operation, counteracting the vibrations and shaking generated during operation, ensuring normal equipment operation, and avoiding problems such as bumps. It also includes: The internal magnetization mechanism 2 includes several magnetization supports 201 fixedly connected to the inner wall of the overall outer wall 101. A magnetization outer plate 202 is fixedly connected to the bottom outer wall of the magnetization support 201. The internal magnetization mechanism 2 uses biochar to magnetize the surface of impurities inside the raw materials, and then the magnetized block 307 is used to achieve rapid separation and recovery of impurities.

[0022] The bottom separation mechanism 3 includes a separation bearing 301 rotatably connected to the inner wall of the integral bottom hole 103. A separation bottom groove 302 is provided on the bottom outer wall of the separation bearing 301. A separation bottom pipe 303 is fixedly connected to the inner wall of the separation bearing 301. This equipment uses the influence of centrifugal force to separate the solid and liquid of the processing wastewater. The solids condensed under the influence of centrifugal force are blocked inside the separation bottom pipe 303, and the filtered water is thrown out of the separation bottom pipe 303.

[0023] The external cleaning mechanism 4 includes a cleaning main column 401 rotatably connected to the inner wall of the separation bottom tank 302. A cleaning bracket 402 is fixedly connected to the outer wall of the cleaning main column 401. A cleaning main box 403 is fixedly connected to the inner wall of the cleaning bracket 402. The main purpose of the cleaning main box 403 is to collect the generated impurities and collect them into the cleaning main box 403.

[0024] The overall external mechanism 1 also includes an overall external support 104 fixedly connected to the outer wall of the overall external wall 101. A power motor 105 is fixedly connected to the bottom of the outer wall of the overall external support 104. An overall turntable 106 is rotatably connected to the bottom outer wall of the power motor 105. The power motor 105 provides the power for the operation of the overall mechanism, driving the operation of the separation bottom pipe 303 in the bottom separation mechanism 3, thereby achieving the effect of water flow screening.

[0025] The overall external mechanism 1 also includes an overall bottom outer wall 107 fixedly connected to the bottom of the overall base plate 102. An overall bottom outer plate 108 is fixedly connected to the bottom outer wall of the overall bottom outer wall 107. An overall support 109 is fixedly connected to the inner wall of the overall bottom outer plate 108. An overall inner plate 110 is fixedly connected to the end of the overall support 109 away from the overall bottom outer plate. An overall inner groove 111 is opened at the central axis of the top outer wall of the overall inner plate 110. An overall leather strip 112 is rotatably connected to the outer wall of the overall turntable 106. The power motor 105 drives the operation of the equipment through the overall leather strip 112, and enables the bottom separation mechanism 3 and the external cleaning mechanism 4 to fully utilize the centrifugal force brought by the power motor 105 to generate an outward force, so that the internal processing raw materials can fully contact the magnetized block 307.

[0026] Example 2, please refer to Figure 4 - Figure 10 This invention relates to a wastewater treatment device based on ultrasonic cleaning technology. Building upon Example 1, the internal magnetizing mechanism 2 further includes several magnetizing holes 203 formed on the outer wall of the internal magnetizing mechanism 2. Biochar rods 204 are fixedly connected to the central axis of the bottom outer wall of several magnetizing supports 201. Several magnetizing filter supports 205 are fixedly connected to the outer wall of the magnetizing supports 201. Several ultrasonic supports 206 are fixedly connected to the outer wall of the overall outer wall 101. Ultrasonic bodies 207 are fixedly connected to the central axis of the outer wall of several ultrasonic supports 206. The bottom of the outer wall of several ultrasonic supports 206 is fixedly... An ultrasonic fixing ring 208 is connected, and an ultrasonic connecting line 209 is fixedly connected to the outer wall of the ultrasonic body 207. The ultrasonic body 207 emits sound pressure to impact the processing raw materials inside the overall outer wall 101 and emits bubbles. When the sound pressure or sound intensity reaches a certain level, the bubbles will expand rapidly and then suddenly close. During this process, a shock wave is generated at the moment the bubbles close. The huge pressure generated by this ultrasonic cavitation can destroy insoluble dirt and cause it to decompose into the solution, avoiding the accumulation of water-insoluble parts of the sewage that float on the surface of the water. Excessive floating matter will affect the operation of the internal equipment.

[0027] The bottom separation mechanism 3 also includes a separation bearing 304 fixedly connected to the outer wall of the separation bottom tube 303. The top of the outer wall of the separation bearing 304 has several separation grooves 305. The outer wall of the separation bottom tube 303 has several large separation holes 306. The inner wall of the separation bottom tube 303 is fixedly connected to several magnetized blocks 307. The bottom outer wall of the separation bottom tube 303 is fixedly connected to several separation bottom plates 308. The magnetized biochar is used to adsorb the dye pollutants in the dye wastewater, and then the dye solution after adsorption treatment is magnetized and separated by magnets.

[0028] The bottom separation mechanism 3 also includes a separation hole 309 opened at the top central axis of the separation base plate 308. A separation bracket 310 is fixedly connected to the top outer wall of the separation hole 309. A separation main column 311 is fixedly connected to the top outer wall central axis of the separation bracket 310. A separation fan blade 312 is fixedly connected to the outer wall of the separation main column 311. A separation outer tube 313 is fixedly connected to the bottom outer wall of the separation base plate 308. A separation outer ring 314 is fixedly connected to the outer wall of the separation outer tube 313. A separation bearing 315 is rotatably connected to the inner wall of the separation outer ring 314. A separation inner tube 316 is rotatably connected to the central axis of the inner wall of the separation bearing 315. When the top water flows into the bottom separation mechanism 3, the power motor 105 drives the bottom separation mechanism 3 to generate a large centrifugal force. The separation fan blade 312 throws the processed raw material to the inner wall of the separation bottom tube 303, thereby achieving water source screening.

[0029] The external cleaning mechanism 4 also includes a main cleaning tank 404 located on the outer wall of the main cleaning tank 403. A cleaning back plate 405 is fixedly connected to the central axis of the inner wall of the main cleaning tank 404, and a cleaning middle plate 406 is slidably connected to the central axis of the inner wall of the cleaning back plate 405. The magnetized block 307 can achieve solid-liquid separation of sewage, degrade organic matter such as COD and BOD, and decolorize dyed water. Ultrasonic waves can also be used as an auxiliary technology for traditional chemical sterilization. When using traditional chemical methods for large-scale sewage treatment, increasing ultrasonic radiation can greatly reduce the amount of chemical agents used and reduce pollution to the natural environment and people.

[0030] The external cleaning mechanism 4 also includes a cleaning outer plate 407 slidably connected to the inner wall of the cleaning middle plate 406. A cleaning scraper 408 is fixedly connected to the outer wall of the cleaning outer plate 407, and a cleaning spring 409 is fixedly connected to the rear wall of the cleaning outer plate 407. The end of the cleaning spring 409 away from the cleaning scraper 408 is fixedly connected to the inner wall of the cleaning main box 403. A cleaning rear groove 410 is opened on the inner wall of the cleaning main box 403. The surface of the impurities inside the raw materials is magnetized by biochar, and the impurities are quickly separated and recovered by the magnetized block 307. After magnetization, it has a good adsorption and removal effect on dye (methylene blue) in the dyeing and printing wastewater. At the same time, the magnetic material has good stability. The water treatment adsorbent can be effectively separated by an external magnetic field, simplifying the treatment process and preventing secondary pollution.

[0031] A specific application of this embodiment is as follows: When the device is powered on, the ultrasonic body 207 emits sound pressure to impact the raw materials inside the outer wall 101 and emits bubbles. When the sound pressure or sound intensity reaches a certain level, the bubbles will expand rapidly and then suddenly close. During this process, a shock wave is generated at the moment the bubbles close. The huge pressure generated by this ultrasonic cavitation can destroy insoluble dirt and cause it to decompose in the solution. At this time, the water source is fully in contact with the biochar rod 204 under the influence of ultrasound and the impurities inside the water source are magnetized. At this time, the sewage treatment is carried out by combining ultrasonic and magnetization treatment technology. The magnetized block 307 can achieve solid-liquid separation of sewage and decolorize dyeing water. The magnetized biochar is used to adsorb dye pollutants in dye wastewater. Then, the dye solution after adsorption treatment is magnetized and separated. This invention uses biochar to magnetize the surface of impurities inside raw materials. The magnetized block 307 then enables the rapid separation and recovery of these impurities. After magnetization, the device exhibits excellent adsorption and removal effects on dyes (methylene blue) in dyeing wastewater. During the upper process, the bottom separation mechanism 3 and the external cleaning mechanism 4 utilize the centrifugal force generated by the power motor 105 to produce an outward force, ensuring that the internal raw materials come into full contact with the magnetized block 307. When the centrifugal force intensifies, the cleaning spring 409 is stretched outward to store mechanical kinetic energy, providing power for subsequent reset. The cleaning scraper 408 is stretched outward to scrape the external filter membrane, achieving self-cleaning of the equipment.

[0032] Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. All other embodiments obtained by those skilled in the art and related fields based on the embodiments of the present invention without inventive effort should fall within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described and explained in the present invention, unless otherwise specified or limited, shall be implemented according to conventional means in the art.

Claims

1. A wastewater treatment device based on ultrasonic cleaning technology, comprising an integral external mechanism (1), wherein the integral external mechanism (1) includes an integral outer wall (101), an integral base plate (102) is fixedly connected to the central axis of the bottom outer wall of the integral outer wall (101), and an integral bottom hole (103) is provided at the central axis of the top outer wall of the integral base plate (102), characterized in that, Also includes: The internal magnetization mechanism (2) includes several magnetization brackets (201) fixedly connected to the inner wall of the overall outer wall (101), and a magnetization outer plate (202) is fixedly connected to the bottom outer wall of the magnetization bracket (201). Bottom separation mechanism (3), the bottom separation mechanism (3) includes a separation bearing (301) rotatably connected to the inner wall of the integral bottom hole (103), a separation bottom groove (302) is provided on the bottom outer wall of the separation bearing (301), and a separation bottom tube (303) is fixedly connected to the inner wall of the separation bearing (301). An external cleaning mechanism (4) includes a cleaning main column (401) rotatably connected to the inner wall of the separation bottom tank (302), a cleaning bracket (402) fixedly connected to the outer wall of the cleaning main column (401), and a cleaning main box (403) fixedly connected to the inner wall of the cleaning bracket (402). The bottom separation mechanism (3) further includes a separation bearing two (304) fixedly connected to the outer wall of the separation bottom tube (303). The top of the outer wall of the separation bearing two (304) is provided with a number of separation grooves (305). The outer wall of the separation bottom tube (303) is provided with a number of large separation holes (306). The inner wall of the separation bottom tube (303) is fixedly connected with a number of magnetized blocks (307). The bottom outer wall of the separation bottom tube (303) is fixedly connected with a number of separation bottom plates (308). The bottom separation mechanism (3) further includes a separation hole (309) opened at the top central axis of the separation base plate (308). A separation bracket (310) is fixedly connected to the top outer wall of the separation hole (309). A separation main column (311) is fixedly connected to the top outer wall central axis of the separation bracket (310). A separation fan blade (312) is fixedly connected to the outer wall of the separation main column (311). A separation outer tube (313) is fixedly connected to the bottom outer wall of the separation base plate (308). A separation outer ring (314) is fixedly connected to the outer wall of the separation outer tube (313). A separation bearing three (315) is rotatably connected to the inner wall of the separation outer ring (314). A separation inner tube (316) is rotatably connected to the central axis of the inner wall of the separation bearing three (315).

2. The wastewater treatment equipment based on ultrasonic cleaning technology according to claim 1, characterized in that: The overall external mechanism (1) also includes an overall external support (104) fixedly connected to the outer wall of the overall external wall (101). A power motor (105) is fixedly connected to the bottom of the outer wall of the overall external support (104), and an overall turntable (106) is rotatably connected to the bottom outer wall of the power motor (105).

3. The wastewater treatment equipment based on ultrasonic cleaning technology according to claim 2, characterized in that: The overall external mechanism (1) also includes an overall bottom outer wall (107) fixedly connected to the bottom of the overall base plate (102). An overall bottom outer plate (108) is fixedly connected to the bottom outer wall of the overall bottom outer wall (107). An overall bracket (109) is fixedly connected to the inner wall of the overall bottom outer plate (108). An overall inner plate (110) is fixedly connected to the end of the overall bracket (109) away from the overall bottom outer plate (108). An overall inner groove (111) is opened at the central axis of the top outer wall of the overall inner plate (110). An overall leather strip (112) is rotatably connected to the outer wall of the overall turntable (106).

4. The wastewater treatment equipment based on ultrasonic cleaning technology according to claim 3, characterized in that: The internal magnetizing mechanism (2) also includes several magnetizing holes (203) opened on the outer wall of the internal magnetizing mechanism (2), biochar rods (204) are fixedly connected to the central axis of the bottom outer wall of several magnetizing supports (201), several magnetizing filter supports (205) are fixedly connected to the outer wall of the magnetizing supports (201), several ultrasonic supports (206) are fixedly connected to the outer wall of the overall outer wall (101), ultrasonic bodies (207) are fixedly connected to the central axis of the outer wall of several ultrasonic supports (206), ultrasonic fixing rings (208) are fixedly connected to the bottom of the outer wall of several ultrasonic supports (206), and ultrasonic connecting lines (209) are fixedly connected to the outer wall of the ultrasonic body (207).

5. The wastewater treatment equipment based on ultrasonic cleaning technology according to claim 4, characterized in that: The external cleaning mechanism (4) also includes a main cleaning trough (404) opened on the outer wall of the main cleaning box (403), a cleaning back plate (405) is fixedly connected to the central axis of the inner wall of the main cleaning trough (404), and a cleaning middle plate (406) is slidably connected to the central axis of the inner wall of the cleaning back plate (405).

6. The wastewater treatment equipment based on ultrasonic cleaning technology according to claim 5, characterized in that: The external cleaning mechanism (4) also includes a cleaning outer plate (407) slidably connected to the inner wall of the cleaning middle plate (406). A cleaning scraper (408) is fixedly connected to the outer wall of the cleaning outer plate (407). A cleaning spring (409) is fixedly connected to the rear wall of the cleaning outer plate (407). The cleaning spring (409) is fixedly connected to the inner wall of the cleaning main box (403) at one end away from the cleaning scraper (408). A cleaning rear groove (410) is provided on the inner wall of the cleaning main box (403).

Citation Information

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