Bearing ultrasonic cleaning device

By introducing a reciprocating movement mechanism and a rapid drying mechanism into the ultrasonic cleaning device for bearings, the problems of low cleaning efficiency and long drying time of existing devices have been solved, achieving efficient cleaning and rapid drying.

CN223988826UActive Publication Date: 2026-03-13LISHUI TIANLI BEARING MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

Existing ultrasonic cleaning devices have low cleaning efficiency and lack drying function when cleaning bearings, resulting in long cleaning times.

Method used

An ultrasonic cleaning device for bearings was designed, comprising a cleaning tank, a temporary placement mesh box, a reciprocating moving mechanism, a rapid drying mechanism, and an ultrasonic vibrator. The bearings inside the mesh box are moved back and forth by a motor-driven turntable and swing arm to enhance the water flow impact effect, and the rapid drying mechanism uses air blowing and heating to achieve rapid drying.

Benefits of technology

This improved cleaning efficiency, shortened cleaning time, and enabled rapid drying of the bearings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bearing ultrasonic cleaning device which comprises a cleaning box, a temporary placing net box, a back-and-forth moving mechanism, a walking mechanism, a rapid drying mechanism and an ultrasonic vibrator, the temporary placing net box is arranged in the cleaning box, lengthening blocks are fixed to the two sides of the temporary placing net box, two transverse rods are fixed to the interior of the cleaning box, and the two transverse rods are arranged on the back-and-forth moving mechanism. Each lengthened block is installed on one transverse rod in a sliding mode, a back-and-forth moving mechanism used for driving the temporarily-placed net box to move is installed on the cleaning box, a walking mechanism is installed on the cleaning box, a rapid drying mechanism facing the temporarily-placed net box is installed on the walking mechanism, and an ultrasonic vibrator is installed at the bottom of the cleaning box. The bearing is moved back and forth during vibration cleaning, so that the impact of water flow on the bearing is enhanced, and the cleaning efficiency is higher; and the bearing is quickly dried after being cleaned, and time is saved.
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Description

Technical Field

[0001] This utility model relates to the field of bearing cleaning technology, and in particular to an ultrasonic cleaning device for bearings. Background Technology

[0002] Currently, ultrasonic cleaning technology is widely used for cleaning bearings. However, existing ultrasonic cleaning devices clean bearings by immersing them in water and relying on water vibration. Since the bearings remain largely stationary during cleaning, the impact of the water flow is weak, resulting in low cleaning efficiency. Furthermore, existing ultrasonic cleaning devices lack drying capabilities, requiring natural air drying after cleaning, which is time-consuming. Therefore, there is an urgent need to develop an ultrasonic bearing cleaning device that simultaneously vibrates and moves the bearing back and forth to enhance the impact of the water flow, resulting in higher cleaning efficiency; and that allows for rapid drying after cleaning, saving time, to overcome the shortcomings of current applications and meet current needs. Utility Model Content

[0003] The purpose of this invention is to provide an ultrasonic cleaning device for bearings to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] An ultrasonic cleaning device for bearings includes a cleaning tank, a temporary placement mesh box, a reciprocating moving mechanism, a traveling mechanism, a rapid drying mechanism, and an ultrasonic vibrator. The cleaning tank contains the temporary placement mesh box, with extension blocks fixed to both sides. Two crossbars are fixed inside the cleaning tank, and each extension block is slidably mounted on one of the crossbars. A reciprocating moving mechanism is installed on the cleaning tank to move the temporary placement mesh box. A traveling mechanism is installed on the cleaning tank, and a rapid drying mechanism facing the temporary placement mesh box is installed on the traveling mechanism. An ultrasonic vibrator is installed at the bottom of the cleaning tank. The reciprocating moving mechanism includes a motor, a turntable, a swing arm, a first pin, and a second pin. The motor is fixed to the cleaning tank, and the turntable is fixed to the motor's output shaft. The left end of the swing arm is rotatably connected to the turntable via the first pin, and the right end of the swing arm is rotatably connected to the temporary placement mesh box via the second pin.

[0006] Preferably, the walking mechanism includes an electric telescopic rod and a frame. The number of electric telescopic rods is two. The electric telescopic rods are fixed to the outer wall of the washing tank. The telescopic ends of the electric telescopic rods are fixed to the frame. The rapid drying mechanism is installed on the frame.

[0007] Preferably, the rapid drying mechanism includes: an air pump, a spiral tube, a distribution tube, a blower nozzle, and a heating rod. The air pump is fixed on the frame, the air outlet of the air pump is connected to the spiral tube, the spiral tube is connected to the distribution tube, multiple blower nozzles are installed on the distribution tube, and a heating rod is installed inside the spiral tube.

[0008] Preferably, the spiral tube is made of copper.

[0009] Preferably, the blower nozzle is directed towards the temporary placement net box.

[0010] Preferably, a drain pipe is installed at the lower end of the cleaning tank, and a valve is installed on the drain pipe.

[0011] The beneficial effects of this invention are as follows: When using this ultrasonic bearing cleaning device, the bearing is placed in a temporary placement mesh box, and cleaning fluid is added to the cleaning tank. Then, the ultrasonic vibrator is activated, causing the cleaning fluid to vibrate and clean the bearing. Simultaneously, a motor drives a turntable to rotate, which in turn drives a swing arm to swing. This swing arm causes the temporary placement mesh box to move back and forth along a horizontal bar, resulting in repeated impacts between the bearing and the water flow within the mesh box, thus improving cleaning efficiency. After cleaning, the valve is opened to drain the cleaning fluid. Then, an electric telescopic rod drives the frame to move back and forth, which in turn drives a rapid drying mechanism to move back and forth above the temporary placement mesh box. An air pump blows air into the spiral tube, and an electric heating rod heats the airflow. The hot airflow is then blown onto the bearing in the temporary placement mesh box through a nozzle, allowing the bearing to dry quickly. In summary, this invention, through vibration cleaning and simultaneous movement of the bearing, enhances the impact of the water flow on the bearing, resulting in higher cleaning efficiency; the rapid drying of the bearing after cleaning saves time. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 .

[0013] Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 .

[0014] Figure 3 This is a partial structural diagram of the present invention. Figure 1 .

[0015] Figure 4 This is a partial structural diagram of the present invention. Figure 2 .

[0016] Figure 5 This is a partial structural diagram of the present invention. Figure 3 .

[0017] Legend:

[0018] 1. Cleaning tank; 2. Drain pipe; 201. Valve; 3. Temporary mesh box; 301. Extension block; 302. Crossbar; 4. Reciprocating movement mechanism; 401. Motor; 402. Turntable; 403. Swing rod; 404. First pin; 405. Second pin; 5. Walking mechanism; 501. Electric telescopic rod; 502. Frame; 6. Rapid drying mechanism; 601. Air pump; 602. Spiral tube; 603. Diverter pipe; 604. Air nozzle; 605. Heating rod; 7. Ultrasonic vibrator; 8. Switch button. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0020] Specific implementation examples are given below.

[0021] See Figures 1-5 In this embodiment of the present invention, an ultrasonic cleaning device for bearings includes a cleaning tank 1, a temporary placement mesh box 3, a reciprocating moving mechanism 4, a walking mechanism 5, a rapid drying mechanism 6, and an ultrasonic vibrator 7. The cleaning tank 1 is provided with a temporary placement mesh box 3 for placing bearings. Extension blocks 301 are fixed on both sides of the temporary placement mesh box 3. Two crossbars 302 are fixed inside the cleaning tank 1, and each extension block 301 is slidably mounted on one crossbar 302. The cleaning tank 1 is equipped with a reciprocating moving mechanism 4 for moving the temporary placement mesh box 3. The cleaning tank 1 is equipped with a walking mechanism 5, and the walking mechanism 5 is equipped with a rapid drying mechanism 6 facing the temporary placement mesh box 3. The bottom of the cleaning tank 1 is equipped with an ultrasonic vibrator 7.

[0022] The lower end of the cleaning tank 1 is equipped with a drain pipe 2, and a valve 201 is installed on the drain pipe 2.

[0023] The reciprocating movement mechanism 4 includes: a motor 401, a turntable 402, a swing arm 403, a first pin 404, and a second pin 405. The motor 401 is fixed to the cleaning tank 1, and the turntable 402 is fixed on the output shaft of the motor 401. The left end of the swing arm 403 is rotatably connected to the turntable 402 through the first pin 404, and the right end of the swing arm 403 is rotatably connected to the temporary placement net box 3 through the second pin 405. In use, the motor 401 drives the turntable 402 to rotate, and the rotation of the turntable 402 drives the swing arm 403 to swing. The swing arm 403 drives the temporary placement net box 3 to move back and forth along the crossbar 302, thereby causing the bearings inside the temporary placement net box 3 to impact with the water flow back and forth, improving the cleaning effect.

[0024] The walking mechanism 5 includes: an electric telescopic rod 501 and a frame 502. There are two electric telescopic rods 501. The electric telescopic rods 501 are fixed to the outer wall of the washing tank 1. The telescopic ends of the electric telescopic rods 501 are fixed to the frame 502. The rapid drying mechanism 6 is installed on the frame 502. In use, the electric telescopic rods 501 drive the frame 502 to move back and forth, and the frame 502 drives the rapid drying mechanism 6 to move back and forth above the temporary placement net box 3.

[0025] The rapid drying mechanism 6 includes: an air pump 601, a spiral tube 602, a diversion tube 603, a blower nozzle 604, and a heating rod 605. The air pump 601 is fixed on the frame 502. The air outlet of the air pump 601 is connected to the spiral tube 602. The spiral tube 602 is connected to the diversion tube 603. Multiple blower nozzles 604 are installed on the diversion tube 603. The blower nozzles 604 face the temporary placement mesh box 3. The heating rod 605 is installed inside the spiral tube 602. The spiral tube 602 is made of copper, which gives it good thermal conductivity. In use, the air pump 601 blows air into the spiral tube 602, the heating rod 605 heats the airflow, and the blower nozzles 604 blow the hot airflow onto the bearing inside the temporary placement mesh box 3, so that the bearing dries quickly.

[0026] A switch button 8 is installed on the outer wall of the cleaning tank 1.

[0027] Working principle: When using this ultrasonic bearing cleaning device, the bearing is placed in the temporary placement mesh box 3, and cleaning fluid is added to the cleaning tank 1. Then, the ultrasonic vibrator 7 is started to make the cleaning fluid vibrate and clean the bearing. At the same time, the motor 401 drives the turntable 402 to rotate, which in turn drives the swing arm 403 to swing. The swing arm 403 drives the temporary placement mesh box 3 to move back and forth along the crossbar 302, so that the bearing in the temporary placement mesh box 3 is impacted by the water flow, improving the cleaning efficiency. After cleaning, the valve 201 is opened to drain the cleaning fluid. Then, the electric telescopic rod 501 drives the frame 502 to move back and forth. The frame 502 drives the rapid drying mechanism 6 to move back and forth above the temporary placement mesh box 3. The air pump 601 blows air into the spiral tube 602, and the electric heating rod 605 heats the airflow. The hot airflow is blown onto the bearing in the temporary placement mesh box 3 through the air nozzle 604, so that the bearing dries quickly.

[0028] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A bearing ultrasonic cleaning apparatus, characterized by, Including the cleaning tank (1), the temporary placement net box (3), the back and forth moving mechanism (4), the walking mechanism (5), the quick drying mechanism (6) and ultrasonic vibrator (7), the temporary placement net box (3) is provided in the cleaning tank (1), both sides of the temporary placement net box (3) are fixed with the lengthening block (301), the inside of the cleaning tank (1) is fixed with two cross bars (302), each lengthening block (301) is slidably installed on a cross bar (302), the cleaning tank (1) is installed with the back and forth moving mechanism (4) for driving the temporary placement net box (3) to move, the cleaning tank (1) is installed with the walking mechanism (5), the walking mechanism (5) is installed with the quick drying mechanism (6) to the temporary placement net box (3), the bottom of the cleaning tank (1) is installed with ultrasonic vibrator (7), the back and forth moving mechanism (4) includes motor (401), turntable (402), swing bar (403), first pin shaft (404) and second pin shaft (405), the motor (401) is fixed on the cleaning tank (1), the output shaft of the motor (401) is fixed with the turntable (402), the left end of the swing bar (403) is rotatably connected with the turntable (402) through the first pin shaft (404), the right end of the swing bar (403) is rotatably connected with the temporary placement net box (3) through the second pin shaft (405).

2. The bearing ultrasonic cleaning apparatus of claim 1, wherein The walking mechanism (5) includes electric telescopic rod (501) and rack (502), the number of the electric telescopic rod (501) is two, the electric telescopic rod (501) is fixed on the outer wall of the cleaning tank (1), the telescopic end of the electric telescopic rod (501) is fixed with the rack (502), the quick drying mechanism (6) is installed on the rack (502).

3. The bearing ultrasonic cleaning apparatus of claim 2, wherein, The quick drying mechanism (6) includes gas conveying pump (601), spiral pipe (602), shunt pipe (603), blow nozzle (604) and electric heating rod (605), the gas conveying pump (601) is fixed on the rack (502), the gas outlet end of the gas conveying pump (601) is connected with the spiral pipe (602), the spiral pipe (602) is connected with the shunt pipe (603), a plurality of blow nozzles (604) are installed on the shunt pipe (603), the electric heating rod (605) is installed in the spiral pipe (602).

4. The bearing ultrasonic cleaning apparatus of claim 3, wherein, The spiral pipe (602) is made of copper.

5. The bearing ultrasonic cleaning apparatus of claim 3, wherein, The blow nozzle (604) is opposite to the temporary placement net box (3).

6. The bearing ultrasonic cleaning apparatus of claim 1, wherein, The lower end of the cleaning tank (1) is installed with the drain pipe (2), the valve (201) is installed on the drain pipe (2).