Anti-loosening robot part cleaning device and using method thereof
A technology for cleaning devices and parts, which is applied in the directions of cleaning methods using liquids, chemical instruments and methods, cleaning methods and utensils, etc., which can solve the vibration energy consumption, the cavity structure cleaning of difficult parts, and block the vibration energy of cleaning agents. It can improve the cleaning effect and achieve the effect of efficient and thorough cleaning.
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Embodiment 1
[0027] see Figure 1-5 , the present embodiment provides a kind of anti-loosening robot parts cleaning device, comprising a cleaning cabin 1 for holding a cleaning agent and a parts cabin 2 for holding parts, the inner wall of the bottom side of the cleaning cabin 1 is connected with a rotating shaft The parts compartment 2 is connected in rotation, the inside of the cleaning compartment 1 is filled with cleaning agent, and the side walls of the parts compartment 2 are hollow, so that the cleaning agent can enter the inside of the parts compartment 2 and wrap the parts.
[0028] The outside of the cleaning cabin 1 is provided with a motor for providing power to the rotating shaft. Before the motor is turned on to perform the parts cleaning operation, the parts can be soaked in the cleaning agent for a period of time, which can effectively improve the effect of parts cleaning.
[0029] In order to ensure the fixing effect of the parts compartment 2 on the components, the parts ...
Embodiment 2
[0042] see Figure 4 , a further improvement has been made on the basis of Example 1: the spring in the prior art has a certain stretching length limit, if the spring in the prior art is used in the elastic component, it is inevitable that the spring will reach the maximum stretching amount, The situation that the components are emptied inside the parts compartment 2 affects the cleaning of the parts to a certain extent.
[0043] Elastic assembly can be spring, also can be fixed on the permanent magnet 261 of movable bar 26 end and be fixed on the electromagnet 251 of movable hole 25 inwalls and form, and the magnetic pole of permanent magnet 261 and electromagnet 251 are identical, electromagnet 251 The magnetic field generated after electrification exerts a force on the permanent magnet 261 extending out of the movable hole 25 , which can effectively increase the movable range of the movable rod 26 .
[0044] When it is not necessary to fix the parts, it is only necessary t...
Embodiment 3
[0047] see Figure 4 with Image 6 On the basis of Embodiment 1, a further improvement has been made: the parts need to follow the parts cabin 2 to rotate inside the cleaning cabin 1 with the rotating shaft as the central axis. If the weight of the parts is not evenly distributed inside the parts cabin 2, It is easy to break the rotating shaft, which will cause certain safety hazards.
[0048] In order to make the weight distribution of parts inside the parts compartment 2 more intuitive, the top of the rotating shaft is inserted into the center of the bottom side of the bearing plate 21 through the clamp block 4 of the spherical structure, and the inclination of the bearing plate 21 at the top of the rotating shaft , which can make the weight distribution of parts more intuitive and avoid misoperation by staff.
[0049] In order to ensure that the rotating shaft and the carrying plate 21 can be deflected while not affecting the rotating shaft to drive the carrying plate 21 ...
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