An ultrasonic cleaning machine with high cleaning efficiency
By designing lifting and throwing components and buffer enhancement components, combined with automatic cleaning components, the ultrasonic cleaner achieves highly efficient and automated cleaning, solving the problems of low efficiency and low automation in traditional ultrasonic cleaners, and improving cleaning effect and efficiency.
Patent Information
- Application Number
- CN202511241391.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-09-02
AI Technical Summary
Traditional ultrasonic cleaning machines suffer from low cleaning efficiency, uneven cleaning results, low automation, and frequent manual operation when cleaning parts.
The system employs lifting and throwing components to achieve automatic loading, unloading, and throwing cleaning of parts. Combined with buffer enhancement components, it uses gas compression to form bubbles to enhance the cleaning effect. Automatic decontamination components enable the automatic removal of oil stains and floating debris.
It improves cleaning efficiency and uniformity, reduces manual operation, lowers the frequency of cleaning fluid replacement, and significantly enhances the automation and cleaning effect of parts cleaning.
Smart Images

Figure CN120734041B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of ultrasonic cleaning machine, and particularly relates to an ultrasonic cleaning machine with high cleaning efficiency. BACKGROUND
[0002] The ultrasonic cleaning machine is a device for cleaning objects by using the cavitation effect of ultrasonic waves. In industrial production, the ultrasonic cleaning machine is widely used in the cleaning of various parts.
[0003] However, the traditional ultrasonic cleaning machine has the following problems when cleaning parts:
[0004] 1. The traditional ultrasonic cleaning machine is in a static state for a long time after the parts are put in, and the stubborn impurities on the parts and the impurities pressed at the bottom cannot be quickly and effectively removed, resulting in low cleaning efficiency and uneven cleaning effect.
[0005] 2. The existing ultrasonic cleaning machine has low automation, and manual feeding and discharging are required. The cleaning liquid needs to be frequently replaced manually during discharging. In order to clean the parts comprehensively, the parts need to be manually turned over in the middle, which is troublesome and slow, and also reduces the overall cleaning efficiency.
[0006] These problems limit the application of the ultrasonic cleaning machine in the field of high-precision cleaning demand, and therefore the present application provides an ultrasonic cleaning machine with high cleaning efficiency. SUMMARY
[0007] The present application aims to solve the problems in the background art and provides an ultrasonic cleaning machine with high cleaning efficiency.
[0008] In order to achieve the above-mentioned purpose, the present application specifically adopts the following technical scheme:
[0009] An ultrasonic cleaning machine with high cleaning efficiency comprises:
[0010] A machine body is internally structured with a support frame, the support frame is internally structured with a water storage tank, the water storage tank is provided with a holding frame, and the machine body is hingedly provided with a flip cover for closing the water storage tank;
[0011] A lifting and throwing component is vertically slidably installed in the water storage tank, the holding frame is detachably connected in the throwing frame, the machine body is internally structured with mounting boxes located at both ends of the support frame, and the mounting boxes are provided with a cylinder moving component for pushing the throwing frame to move up and down;
[0012] The buffer booster comprises a gas storage box arranged at the bottom of the water storage tank, a plurality of air filling tubes slidingly penetrating the throwing frame are arranged on the gas storage box, a sleeve pipe sleeved on the air filling tube is arranged in the throwing frame, a butt joint pipe sleeved on the sleeve pipe is arranged at the bottom of the object holding frame, a spring supporting pipe is slidingly sleeved on the upper end of the butt joint pipe, a through hole is arranged at the top of the spring supporting pipe and is in openable and closable communication with the butt joint pipe, a load bearing net plate slidingly arranged in the object holding frame is arranged at the top of the spring supporting pipe.
[0013] The automatic decontamination device comprises a decontamination frame arranged in the machine body and in communication with the water storage tank, and an oil-water separation tank in communication with the decontamination frame is fixedly connected to the outer side of the machine body.
[0014] Further, a middle frame is arranged at one side of the top of the machine body, vertical edge frames are arranged at both ends of the middle frame and are arranged at the edges of the machine body, the throwing frame is slidingly arranged in the two vertical edge frames, a shaft rod is rotatably arranged at the top of the middle frame, a driving motor for driving the shaft rod to rotate is fixedly arranged at the top of the middle frame, a pull rope is wound around the shaft rod through a pulley, and the other end of the pull rope is connected to the movable end of the flip cover.
[0015] Further, the throwing frame comprises a U-shaped frame slidingly arranged in the water storage tank, pull frames slidingly arranged in the vertical edge frames are arranged at both ends of the top of the U-shaped frame, and the pull frames are connected to the air cylinder moving device.
[0016] Further, the air cylinder moving device comprises an air cylinder barrel fixedly connected to the mounting box, a piston rod is slidingly inserted into the air cylinder barrel, the piston rod is connected to the pull frame at the top, an air inlet pipe and an air outlet pipe below the piston of the piston rod and a pressurizing pipe above the piston of the piston rod are arranged on the side of the air cylinder barrel, the air inlet pipe is in communication with the outside through a one-way valve, and the air outlet pipe is in communication with the gas storage tank through a one-way valve.
[0017] Further, the butt joint pipe comprises a vertical pipe detachably connected to the bottom of the object holding frame, two support ring plates are arranged at the middle of the vertical pipe, the spring supporting pipe comprises a guide pipe slidingly sleeved on the outer side of the vertical pipe, a piston pipe is arranged in the guide pipe, an air outlet hole penetrating the guide pipe is arranged at the top of the piston pipe, a spacing ring plate is arranged at the middle of the piston pipe, a support spring is arranged between the spacing ring plate and the support ring plate, and a single passage device is arranged between the two support ring plates and between the spacing ring plate and the air outlet hole.
[0018] Further, the single passage device comprises a reset spring fixedly connected to the support ring plate and the top of the piston pipe, and an occlusion ball connected to the end of the reset spring and abutting against the other support ring plate and the spacing ring plate.
[0019] Further, the bottom of the object holding frame is provided with a threaded pipe, the vertical pipe is slidably arranged in the threaded pipe, the outer side of the vertical pipe is provided with a positioning ring abutting against the top end of the threaded pipe, and a fixing nut connected with the threaded pipe is movably sleeved on the positioning ring.
[0020] Further, the bottom of the bearing net plate is provided with a plurality of cover pipes for sleeving guide pipes, the upper side of the bearing net plate is provided with air injection holes in communication with the cover pipes, an arc-shaped protrusion is fixedly connected to the bearing net plate and sleeved on the air injection holes, the middle part of the arc-shaped protrusion is provided with air vent holes in communication with the air injection holes, and the top of the arc-shaped protrusion is provided with a cross-shaped recess in communication with the air vent holes.
[0021] Further, the oil-water separation tank comprises a sewage tank fixedly connected to the outer side of the machine body, the top of the sewage tank is provided with two sockets, a filter cover is inserted into one of the sockets, the sewage frame is in communication with the filter cover through a hose, and an installation cover is inserted into the other socket, and the installation cover is provided with a belt oil separator.
[0022] Further, the belt oil separator comprises an L-shaped half frame detachably inserted into the installation cover, a oil separation half frame is inserted and connected to the opening side of the L-shaped half frame, an installation frame is connected to the top of the L-shaped half frame, an installation plate is connected to the bottom of the L-shaped half frame, a rotating shaft is rotatably arranged on the installation frame and the installation plate, an oil absorption belt is sleeved between the two rotating shafts, the oil absorption belt is inserted between the L-shaped half frame and the oil separation half frame, and a rotating motor for driving the rotating shaft to rotate is fixedly connected to the installation frame.
[0023] The beneficial effects of the present application are as follows:
[0024] 1、The up-down movement of the lifting and throwing part can not only realize the automatic feeding and discharging of parts, but also throw the parts during the cleaning process, so that the parts are mixed and contacted with the cleaning liquid, thereby significantly improving the cleaning efficiency and uniformity.
[0025] 2、The gas in the gas storage tank can be extruded during the lifting and throwing process by arranging the buffer and efficiency increasing part, so that the gas in the gas storage tank is filled into the water to form additional bubbles, the core principle of the ultrasonic cleaning machine is utilized to realize the "cavitation effect" and drive the large bubbles to break, thereby increasing the impact on the dirt on the parts, and improving the cleaning efficiency.
[0026] 3、The automatic feeding and discharging are realized by arranging the lifting and throwing part, the automatic cleaning of oil stains and floating impurities is realized by arranging the automatic dirt removing part, the replacement frequency of the cleaning liquid is reduced, and the overall cleaning efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0027] Figure 1 is a perspective view of the present application;
[0028] Figure 2 is another perspective view of the present application;
[0029] Figure 3 is a perspective view of the present application Figure 1 with a half cutaway;
[0030] Figure 4 is a perspective view of the present application with a half cutaway;
[0031] Figure 5 is a perspective view of the present application
[0032] Figure 6 is a perspective view of the present application Figure 5 with a half cutaway;
[0033] Figure 7 is a perspective view of the present application Figure 6 with a half cutaway;
[0034] Figure 8 is a perspective view of the present application with a half cutaway;
[0035] Figure 9 is a perspective view of the present application with a half cutaway;
[0036] Figure 10 is a perspective view of the present application Figure 9 with a half cutaway;
[0037] Figure 11 is a perspective view of the present application with a half cutaway;
[0038] Figure 12 is a perspective view of the present application with a half cutaway;
[0039] Figure 13 is a perspective view of the present application with a half cutaway;
[0040] Reference numerals: 1. Body; 101. Support frame; 102. Water tank; 103. Mounting box; 104. Middle frame; 105. Vertical frame; 2. Loading frame; 201. Threaded pipe; 3. Flip cover; 4. Lifting and throwing component; 401. Throwing frame; 4011. U-shaped frame; 4012. Pulling frame; 402. Cylinder moving component; 4021. Cylinder barrel; 4022. Piston rod; 402 3. Inlet pipe; 4024. Outlet pipe; 4025. Pressurization pipe; 5. Buffer enhancement component; 501. Air storage tank; 502. Inflation pipe; 503. Sleeve; 504. Connecting pipe; 5041. Vertical pipe; 5042. Support ring plate; 5043. Positioning ring; 5044. Fixing nut; 505. Spring support tube; 5051. Guide tube; 5052. Piston tube; 5053. Outlet pipe 5054, Spacing ring plate; 5055, Support spring; 506, Through hole; 6, Bearing mesh plate; 601, Cover tube; 602, Air jet hole; 603, Arc-shaped protrusion; 604, Vent hole; 605, Cross groove; 7, Automatic dirt removal component; 701, Sewage discharge frame; 7011, Hose; 702, Oil-water separator; 7021, Wastewater tank; 7022, Inlet; 7023, Filter 7024. Mounting cover; 8. Shaft; 801. Drive motor; 802. Rotary wheel; 803. Pull rope; 9. Single-pass component; 901. Return spring; 902. Sealing ball; 10. Belt oil distributor; 1001. L-shaped half-frame; 1002. Oil distributor half-frame; 1003. Mounting bracket; 1004. Mounting plate; 1005. Rotating shaft; 1006. Oil suction belt; 1007. Rotating motor. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0042] like Figures 1-8 As shown, an embodiment of the present invention provides a high-efficiency ultrasonic cleaning machine, comprising:
[0043] The machine body 1 has an internal support frame 101. The machine body 1 is the main body of the cleaning machine, which is a combination of components such as the outer shell, ultrasonic equipment, and electronic control components. The support frame 101 has a water tank 102. The support frame 101 is located inside the machine body 1, and the ultrasonic equipment is arranged around the support frame 101 to wrap the water tank 102. The water tank 102 has a support frame 2. The machine body 1 has a hinged cover 3 for closing the water tank 102. The support frame 2 is used to store components. The main purpose of the support frame 2 is to facilitate the overall retrieval of components from the water tank 102, which can realize the operation of cleaning multiple components at the same time. The cover 3 is used to close the water tank 102 to prevent the cleaning liquid in the water tank 102 from overflowing and to increase safety.
[0044] The lifting and shaking member 4 is provided with a shaking frame 401 vertically slidingly installed in the water storage tank 102, and the object supporting frame 2 is detachably connected in the shaking frame 401. The machine body 1 is provided with installation boxes 103 at both ends of the supporting frame 101. The installation boxes 103 are provided with cylinder moving members 402 for pushing the shaking frame 401 to move up and down. The cylinder moving members 402 are mainly used to drive the shaking frame 401 to move up and down. On the one hand, the object supporting frame 2 in the machine body 1 can be automatically lifted and lowered to facilitate the feeding and discharging operation. On the other hand, the shaking frame 401 can be slightly lifted and lowered in the water storage tank 102, so as to shake the parts in the object supporting frame 2, so that the parts are in flow contact with the cleaning liquid. The double cleaning of cavitation effect and flow impact can improve the removal effect of stains on the parts.
[0045] The buffer efficiency piece 5 includes a gas storage box 501 configured at the bottom of the water storage tank 102, a plurality of air charging pipes 502 slidingly penetrating the throwing frame 401 are configured on the gas storage box 501, a sleeve pipe 503 sleeved on the air charging pipe 502 is configured in the throwing frame 401, a butt joint pipe 504 sleeved with the sleeve pipe 503 is mounted at the bottom of the object supporting frame 2, a spring supporting pipe 505 is slidingly sleeved at the upper end of the butt joint pipe 504, a through hole 506 is configured at the top of the spring supporting pipe 505 and is openable and closable in communication with the butt joint pipe 504, and a load bearing net plate 6 slidingly arranged in the object supporting frame 2 is mounted at the top of the spring supporting pipe 505. It should be noted that the air charging pipe 502 is a one-way pipe, an umbrella-shaped one-way valve piece is connected at the port of the air charging pipe 502, and only air can be discharged but not taken in. The length of the air charging pipe 502 is greater than the reciprocating height of the lifting throwing piece 4 during the throwing operation, that is, during the throwing operation, the sleeve pipe 503 is always sleeved on the air charging pipe 502 and cannot be separated, and the sleeve pipe 503 and the air charging pipe 502 are sealed by a rubber ring. During the throwing operation, when the throwing frame 401 rises, the sleeve pipe 503 moves upward relative to the air charging pipe 502, at this time, the negative pressure between the sleeve pipe 503 and the air charging pipe 502 can extract the gas in the gas storage box 501, and the spring supporting pipe 505 can bear the downward pressure of the parts through the load bearing net plate 6, so as to compress the spring supporting pipe 505 relative to the butt joint pipe 504, and a part of the gas between the spring supporting pipe 505 and the butt joint pipe 504 is extruded. When the throwing frame 401 descends, the parts are first empty for a certain time due to the upward inertia, the spring supporting pipe 505 loses a part of the downward pressure of the parts, so as to extend relative to the butt joint pipe 504. At this time, the sleeve pipe 503 descends relative to the air charging pipe 502, extruding the extracted gas into the butt joint pipe 504. Then, the parts continue to be pressed downward due to the gravity, the spring supporting pipe 505 is compressed relative to the butt joint pipe 504, and the gas therein is extruded. In this way, the continuous air discharge of the gas storage box 501 can generate a large amount of bubbles at the bottom of the parts, and the bubbles are much larger than the bubbles generated by the cavitation effect. The bubbles generated by the cavitation effect can drive the bubbles to burst, so as to improve the impact on the impurities on the parts, improve the cleaning effect, reduce the time for treating stubborn stains, and improve the overall cleaning efficiency.
[0046] The automatic dirt removal piece 7 includes a dirt removal frame 701 mounted in the machine body 1 and in communication with the water storage tank 102, and an oil-water separation tank 702 in communication with the dirt removal frame 701 is fixedly connected to the outside of the machine body 1. The automatic dirt removal piece 7 can automatically process the oil stains floating on the surface of the cleaning liquid, which can avoid the secondary contamination of the oil stains when the parts are discharged after cleaning, increase the safety, and make the cleaning liquid continue to clean the parts, reduce the replacement frequency of the cleaning liquid, and improve the overall cleaning efficiency. It should be noted that the bubble effect generated by the buffer efficiency piece 5 can also cooperate with the throwing operation to make the surface water flow towards the edge, so as to quickly guide the oil stains into the dirt removal frame 701, improve the dirt removal efficiency, and reduce the time required for dirt removal.
[0047] As Figure 2 shown, the structure of the automatic turnover cover 3 of the application is disclosed, one side of the top of the body 1 is constructed with a middle frame 104, the middle frame 104 is connected with a vertical edge frame 105 installed on the edge of the body 1 at both ends horizontally, the throwing frame 401 is slidingly installed in the two vertical edge frames 105, the shaft rod 8 is rotatably installed on the top of the middle frame 104, the driving motor 801 for driving the shaft rod 8 to rotate is fixedly installed on the top of the middle frame 104, the pull rope 803 is wound around the rotating wheel 802 on the shaft rod 8, the other end of the pull rope 803 is connected to the movable end of the cover 3, the water storage tank 102 is automatically opened and closed, the working efficiency of the device is improved, when it is needed to open the water storage tank 102, only the shaft rod 8 is rotated by the driving motor 801, the pull rope 803 is wound by the rotating wheel 802, the movable end of the cover 3 is pulled up, the automatic opening operation is realized, and when it is closed, only the pull rope 803 is released, the cover 3 can be automatically turned down by gravity, the water storage tank 102 is clamped, the overflow of cleaning liquid during cleaning is avoided, the safety is increased, the automatic opening and closing are realized, the manual operation is more rapid, and the overall cleaning efficiency is improved.
[0048] As Figure 5 shown, the specific structure of the U-shaped throwing frame 401 of the application is disclosed, the throwing frame 401 comprises a U-shaped frame 4011 slidingly arranged in the water storage tank 102, the U-shaped frame 4011 is connected with a pulling frame 4012 slidingly installed in the vertical edge frame 105 at both ends of the top, the pulling frame 4012 is connected with the cylinder moving part 402, it should be noted that the two sides of the U-shaped frame 4011 are open, and the object supporting frame 2 is installed in the U-shaped frame 4011, in this way, when the U-shaped frame 4011 is lifted to the outside of the water storage tank 102, the object supporting frame 2 can be directly horizontally separated from the throwing frame 401, the feeding and discharging operations are facilitated, and the convenience is improved.
[0049] As Figures 5-6As shown, the specific structure of the cylinder moving piece 402 is disclosed, the linkage is improved, the cylinder moving piece 402 includes a cylinder barrel 4021 fixedly connected in the mounting box 103, a piston rod 4022 is slidably inserted in the cylinder barrel 4021, the top of the piston rod 4022 is connected on the pulling frame 4012, the side of the cylinder barrel 4021 is structured with an air inlet pipe 4023 and an air outlet pipe 4024 located below the piston of the piston rod 4022 and a pressurizing pipe 4025 located above the piston of the piston rod 4022, the air inlet pipe 4023 is communicated with the outside through a one-way valve, the air outlet pipe 4024 is communicated with the gas storage box 501 through a one-way valve, it needs to be explained that the pressurizing pipe 4025 is communicated with a gas pump, it is a pressurizing component, used for providing a downward thrust for the piston rod 4022, when the piston rod 4022 moves downward, the air inlet pipe 4023 is closed, the air outlet pipe 4024 is opened, the gas can be injected into the gas storage box 501, when the piston rod 4022 moves upward, the air inlet pipe 4023 is opened, the air outlet pipe 4024 is closed, the reciprocating operation can realize the gas supplement operation of the gas storage box 501, meanwhile, the upward and downward movement of the piston rod 4022 can also drive the movement of the throwing frame 401, thereby realizing the throwing and cleaning operation of the parts.
[0050] As Figures 7-8As shown, the internal structure of the docking pipe 504 and the spring support pipe 505 is disclosed, which guarantees the smooth operation of air extraction and air outlet. The docking pipe 504 includes a vertical pipe 5041 detachably connected to the bottom of the object holding frame 2, and two support ring pieces 5042 are arranged in the middle of the vertical pipe 5041. The spring support pipe 505 includes a guide pipe 5051 slidingly sleeved outside the vertical pipe 5041, a piston pipe 5052 is arranged in the guide pipe 5051, an air outlet hole 5053 is arranged in the top of the piston pipe 5052 and penetrates the guide pipe 5051, a spacing ring plate 5054 is arranged in the middle of the piston pipe 5052, and a support spring 5055 is connected between the spacing ring plate 5054 and the support ring piece 5042. A one-way flow piece 9 is arranged between the two support ring pieces 5042 and between the spacing ring plate 5054 and the air outlet hole 5053. The one-way flow piece 9 is an opening and closing control element, which is used to control the gas flow direction of the docking pipe 504 and the spring support pipe 505. It should be noted that the gas flow direction of the docking pipe 504 and the spring support pipe 505 is upward flow, and the one-way flow direction is consistent. When the throwing operation is performed, the upward movement of the piston rod 4022 drives the throwing frame 401 to move upward. The upward movement of the piston rod 4022 can draw external gas into the air cylinder barrel 4021 through the air inlet pipe 4023. At this time, the sleeve pipe 503 moves upward to draw the gas in the gas charging pipe 502, and the vertical pipe 5041 and the guide pipe 5051 are closed to avoid drawing the cleaning liquid. At the same time, the downward pressure of the parts will cause the compression of the support spring 5055, the piston pipe 5052 moves towards the inside of the vertical pipe 5041, and the gas between the vertical pipe 5041 and the sleeve pipe 503 is squeezed towards the cleaning liquid. The sleeve pipe 503 draws the gas in the gas storage tank 501, and then the piston rod 4022 drives the throwing frame 401 to move downward, and the gas drawn into the air cylinder barrel 4021 is squeezed into the gas storage tank 501 for gas supplement. At the same time, the sleeve pipe 503 moves downward compared with the gas charging pipe 502. At this moment, the support spring 5055 is stretched, which moves the piston pipe 5052 towards the outside of the vertical pipe 5041, so as to draw the gas in the sleeve pipe 503. Then, the gravity of the parts is downwardly pressed, which causes the compression of the support spring 5055, so that the guide pipe 5051 moves downward compared with the vertical pipe 5041, and the gas stored therein is squeezed out towards the cleaning liquid. The whole process does not need additional power, and the intermittent jet is realized by mechanical transmission, which guarantees the cleaning effect, reduces the time for cleaning stubborn stains, and improves the efficiency.
[0051] As Figures 7-8The specific structure of the single-pass component 9 of the present invention is disclosed, which realizes unidirectional flow. The single-pass component 9 includes a return spring 901 fixedly connected to the top of the support ring plate 5042 and the piston tube 5052. The end of the return spring 901 is connected to a blocking ball 902 that abuts against another support ring plate 5042 and the spacer ring plate 5054. The elastic force of the return spring 901 always applies a force in one direction to the blocking ball 902. When there is a pushing force in the direction of the applied force, the return spring 901 can be compressed, causing the blocking ball 902 to disengage from the blocking opening. Applying a force in the opposite direction will make the blocking ball 902 seal more tightly, thereby realizing unidirectional flow operation and ensuring the smooth operation of the device.
[0052] like Figures 7-8 As shown, the detachable structure of the buffer enhancement component 5 is disclosed, which facilitates replacement and maintenance. The bottom of the support frame 2 is constructed with a threaded tube 201, and the vertical tube 5041 is slidably installed inside the threaded tube 201. The outer side of the vertical tube 5041 is constructed with a positioning ring 5043 that abuts against the top of the threaded tube 201. A fixing nut 5044 connected to the threaded tube 201 is movably sleeved on the positioning ring 5043. By setting the threaded tube 201 and the fixing nut 5044, the vertical tube 5041 can be detached, so as to facilitate its replacement and maintenance, and increase the flexibility and convenience of the device.
[0053] like Figures 9-11 As shown, the specific structure of the support mesh plate 6 of the present invention is disclosed. The bottom of the support mesh plate 6 is constructed with a plurality of cover tubes 601 for sleeved with guide tubes 5051. The upper side of the support mesh plate 6 is constructed with air jet holes 602 connected to the cover tubes 601. An arc-shaped protrusion 603 is fixedly connected to the support mesh plate 6 and sleeved on the air jet holes 602. The middle part of the arc-shaped protrusion 603 is constructed with a vent hole 604 connected to the air jet holes 602. The top of the arc-shaped protrusion 603 is constructed with a cross groove 605 connected to the vent hole 604. The cover tubes 601 are used to wrap and sleeve the guide tubes 5051 to realize the detachable connection of the support mesh plate 6, which facilitates the subsequent disassembly operation and increases the flexibility of the device. The arc-shaped protrusion 603 is provided on it so that the cross groove 605 on it can be used to ensure that the vent hole 604 is always ventilated, so as to prevent the air jet holes 602 from being blocked after the parts are placed, and ensure that the gas can flow out smoothly to realize the bubble impact operation on the parts, thus ensuring the cleaning effect and cleaning efficiency.
[0054] like Figure 12As shown, the automatic pollution discharge structure of the present application is disclosed, the oil-water separation tank 702 includes a sewage tank 7021 fixedly connected to the outside of the machine body 1, the top of the sewage tank 7021 is provided with two sockets 7022, one of which is inserted with a filter cover 7023, the pollution discharge frame 701 is connected with the filter cover 7023 through the hose 7011, and the other socket 7022 is inserted with a mounting cover 7024, and the mounting cover 7024 is provided with a belt oil separator 10. It should be noted that the number of openings of the pollution discharge frame 701 can be multiple, and the shape is not limited, such as a rectangular strip, which can be arranged at any position of the water storage groove 102, and at least one opening is on the horizontal plane of the water storage groove 102. The oil stains and impurities floating on the horizontal plane can be guided to flow out by cooperating the hose 7011 with the pollution discharge frame 701, so that they flow into the filter cover 7023 by gravity. The filter cover 7023 includes a cover and a net frame connected to the lower side of the cover. The impurities can be separated out by using the net frame, and then the oil stains can be separated out step by step by using the belt oil separator 10. Then the cleaning liquid can be re-injected into the water storage groove 102 by using the circulating pump, realizing the reuse of the cleaning liquid, saving resources, reducing the replacement frequency, and increasing the overall cleaning efficiency.
[0055] As shown, Figure 13 The specific structure of the belt oil separator 10 is disclosed, which is used for separating oil stains from cleaning liquid. The belt oil separator 10 includes an L-shaped half frame 1001 detachably inserted into the mounting cover 7024, a oil separation half frame 1002 is inserted and connected to the open side of the L-shaped half frame 1001, an installation frame 1003 is connected to the top of the L-shaped half frame 1001, an installation plate 1004 is connected to the bottom of the L-shaped half frame 1001, a rotating shaft 1005 is rotatably installed on the installation frame 1003 and the installation plate 1004, an oil absorption belt 1006 is sleeved between the two rotating shafts 1005, the oil absorption belt 1006 is inserted between the L-shaped half frame 1001 and the oil separation half frame 1002, and a rotating motor 1007 for driving the rotating shaft 1005 to rotate is fixedly connected to the installation frame 1003. It should be noted that the L-shaped half frame 1001 and the oil separation half frame 1002 are both frame plates with open upper end and side end, which can form a rectangular frame with open upper end after combination, and are used for receiving oil stains. The oil absorption belt 1006 is inserted therein, and the oil stains adsorbed thereon can be scraped off by scraping. Then, during subsequent cleaning, the entire mounting cover 7024 is detached, and then the installation frame 1003 is detached from the mounting cover 7024, so that the L-shaped half frame 1001 and the oil separation half frame 1002 can be separated, increasing the flexibility and convenience of the device. The entire pollution removal process does not require human intervention, improves automation, and increases the convenience of the device.
[0056] The foregoing description of the disclosed embodiments enables a person skilled in the art to make or use the application. Modifications of these embodiments will occur to persons of skill in the art, and that the appended claims are intended to cover all such modifications that do not depart from the true spirit and scope of the application. Therefore, the application is not limited to the embodiments shown but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. An ultrasonic cleaning machine for efficient cleaning, characterized in that, Include: Machine body (1), which is internally structured with a support frame (101), the support frame (101) is internally structured with a water storage tank (102), the water storage tank (102) is provided with a containing frame (2), the machine body (1) is hingedly provided with a flip cover (3) for closing the water storage tank (102); Lift and throw member (4), the water storage tank (102) is vertically slidingly installed with a throwing frame (401), the containing frame (2) is detachably connected in the throwing frame (401), the machine body (1) is internally structured with a mounting box (103) located at both ends of the support frame (101), the mounting box (103) is provided with a cylinder moving member (402) for pushing the throwing frame (401) up and down; Buffering and efficiency member (5), including a gas storage tank (501) structured at the bottom of the water storage tank (102), a plurality of inflation tubes (502) structured on the gas storage tank (501) slidingly penetrating the throwing frame (401), a sleeve (503) structured in the throwing frame (401) sleeved on the inflation tube (502), a butt joint pipe (504) mounted on the bottom of the containing frame (2) and sleeved with the sleeve (503), a spring support pipe (505) slidingly sleeved on the upper end of the butt joint pipe (504), the spring support pipe (505) is provided with a through hole (506) at the top and can be opened and closed in communication with the butt joint pipe (504), the spring support pipe (505) is provided with a load-bearing mesh plate (6) slidingly arranged in the containing frame (2); Automatic decontamination member (7), including a sewage discharge frame (701) mounted in the machine body (1) and communicated with the water storage tank (102), an oil-water separation tank (702) fixedly connected outside the machine body (1) and communicated with the sewage discharge frame (701); The butt joint pipe (504) includes a vertical pipe (5041) detachably connected to the bottom of the containing frame (2), the vertical pipe (5041) is structured with two support ring pieces (5042) in the middle, the spring support pipe (505) includes a guide pipe (5051) slidingly sleeved outside the vertical pipe (5041), the guide pipe (5051) is internally structured with a piston pipe (5052) inserted into the vertical pipe (5041), the piston pipe (5052) is internally structured with an air outlet hole (5053) penetrating the guide pipe (5051) at the top, the piston pipe (5052) is structured with a spacing ring plate (5054) in the middle, the spacing ring plate (5054) and the support ring piece (5042) are connected with a support spring (5055), two support ring pieces (5042) and spacing ring plate (5054) and air outlet hole (5053) are both provided with a single-pass member (9); The single-pass member (9) includes a reset spring (901) fixedly connected in the support ring piece (5042) and the top of the piston pipe (5052), the reset spring (901) is connected with a blocking ball (902) abutting against the other support ring piece (5042) and the spacing ring plate (5054).
2. The high efficiency cleaning ultrasonic cleaner of claim 1, wherein, The machine body (1) top side is provided with a middle frame (104), the middle frame (104) is horizontally connected with a vertical edge frame (105) installed on the edge of the machine body (1) at both ends, the throwing frame (401) is slidingly installed in the two vertical edge frames (105), the shaft rod (8) is rotatably installed on the top of the middle frame (104), the driving motor (801) for driving the shaft rod (8) to rotate is fixedly installed on the top of the middle frame (104), the pulley (802) is arranged on the shaft rod (8), and one end of the pull rope (803) is connected to the movable end of the flip cover (3).
3. The high efficiency cleaning ultrasonic cleaner of claim 1, wherein, The throwing frame (401) includes a U-shaped frame (4011) slidingly arranged in the water storage tank (102), and both ends of the top of the U-shaped frame (4011) are connected with pull frames (4012) slidingly installed in the vertical edge frames (105).
4. The high efficiency cleaning ultrasonic cleaner of claim 3, wherein, The cylinder moving part (402) includes a cylinder barrel (4021) fixedly connected in the installation box (103), a piston rod (4022) slidingly inserted in the cylinder barrel (4021), the piston rod (4022) is connected to the pull frame (4012), the cylinder barrel (4021) is provided with an air inlet pipe (4023) and an air outlet pipe (4024) below the piston of the piston rod (4022) and a pressurizing pipe (4025) above the piston of the piston rod (4022), the air inlet pipe (4023) is connected with the outside through a one-way valve, and the air outlet pipe (4024) is connected with the gas storage tank (501) through a one-way valve.
5. The high efficiency cleaning ultrasonic cleaner of claim 1, wherein, The object supporting frame (2) is provided with a threaded pipe (201) at the bottom, the vertical pipe (5041) is slidingly installed in the threaded pipe (201), the vertical pipe (5041) is provided with a positioning ring (5043) abutting against the top end of the threaded pipe (201) on the outer side, and the positioning ring (5043) is movably sleeved with a fixing nut (5044) connected with the threaded pipe (201).
6. The high efficiency cleaning ultrasonic cleaner of claim 1, wherein, The bottom of the bearing net plate (6) is provided with a plurality of cover pipes (601) for sleeving guide pipes (5051), the upper side of the bearing net plate (6) is provided with air injection holes (602) connected with the cover pipes (601), the bearing net plate (6) is fixedly connected with an arc-shaped protrusion (603) sleeved on the air injection holes (602), the arc-shaped protrusion (603) is provided with an air hole (604) connected with the air injection holes (602) in the middle, and the top of the arc-shaped protrusion (603) is provided with a cross-shaped recess (605) connected with the air hole (604).
7. The high efficiency cleaning ultrasonic cleaner of claim 1, wherein, The oil-water separation tank (702) comprises a sewage tank (7021) fixedly connected outside the machine body (1), two sockets (7022) are arranged on the top of the sewage tank (7021), a filter cover (7023) is arranged in one of the sockets (7022), the sewage frame (701) is connected with the filter cover (7023) through a hose (7011), and a mounting cover (7024) is arranged in the other socket (7022).
8. The high efficiency cleaning ultrasonic cleaner of claim 7, wherein, The belt oil separator (10) comprises an L-shaped half frame (1001) which is detachably inserted into the mounting cover (7024), a belt oil separator half frame (1002) is connected to the opening side of the L-shaped half frame (1001), a mounting frame (1003) is connected to the top of the L-shaped half frame (1001), a mounting plate (1004) is connected to the bottom of the L-shaped half frame (1001), a rotating shaft (1005) is rotatably connected to the mounting frame (1003) and the mounting plate (1004), an oil absorption belt (1006) is sleeved between the two rotating shafts (1005), the oil absorption belt (1006) is inserted between the L-shaped half frame (1001) and the belt oil separator half frame (1002), and a rotating motor (1007) for driving the rotating shaft (1005) to rotate is fixedly connected to the mounting frame (1003).
Citation Information
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