Grinding tool for wine storage grids of wine cabinet and wine cabinet manufacturing method
A technology for grinding tools and wine storage, which is applied in the direction of manufacturing tools, grinding workpiece supports, and machine tools designed for grinding workpiece rotating surfaces, etc., which can solve the problems of laborious work, poor concentricity, etc. good effect
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Embodiment 1
[0037] Embodiment one, see figure 1 , a tool for polishing wine storage compartments in a wine cabinet, comprising a base 1 , a support sleeve 2 and a motor 5 . Several rubber pads 7 are arranged on the lower surface of the base 1 . The support sleeve 2 is provided with a rotating shaft 27 . The supporting sleeve 2 is rotatably connected to the base 1 through a rotating shaft 27 . The bottom surface of the supporting sleeve 2 constitutes the first supporting portion 22 . The motor 5 includes a motor shaft 51 and a motor housing 52 . The left end of the motor shaft 51 protrudes from the motor housing 52 . A grinding head 53 is connected to the left end of the motor shaft 51 . The grinding head 53 is located above the support sleeve 2 . The motor housing 52 is fixed on the motor mounting frame 54 . The base 1 is provided with a tilting self-cutting switch 9 . Tilt self-cutting switch 9 is used for controlling motor 5 to stop. The tilt self-cutting switch 9 includes a sh...
Embodiment 2
[0058]Embodiment two, the difference with embodiment one is:
[0059] see Figure 9 , also includes friction wheel 59 and transmission mechanism 3. The transmission mechanism 3 includes a first shaft 31, a second shaft 32, a third shaft 33, a first sector gear 34, a second sector gear 35, a third sector gear 36, a fourth sector gear 37, a fifth sector gear 38 and a Six sector gear 39. The motor shaft 51 extends in the left-right direction. Both left and right ends of the motor shaft 51 protrude from the motor housing 52 . The grinding head 53 is connected to the left end of the motor shaft 31 . The sixth sector gear 39 is connected to the right end of the motor shaft 51 . The fifth sector gear 38 and the sixth sector gear 39 mesh together. The fifth sector gear 38 is connected to the lower end of the third rotating shaft 33 . The fourth sector gear 37 is connected to the upper end of the third rotating shaft 33 . The fourth sector gear 37 and the third sector gear 36 m...
Embodiment 3
[0062] Embodiment three, the difference with embodiment two is:
[0063] see Figure 11 , the motor shaft 51 is supported on the motor housing 52 through two bearings 55 . An oil filling chamber 56 is formed between the motor housing 52 and the two bearings 55 . A first gear 58 and a second gear 57 are arranged in the oil filling chamber 56 . The first gear 58 and the second gear 57 mesh together. The first gear 58 is connected with the motor shaft 51 . The second gear 57 is rotationally connected with the motor housing 52 through a short shaft 571 .
[0064] see Figure 12 , the first gear 58 is provided with a refueling mechanism 8 . The number of refueling mechanisms 8 is equal to the number of teeth of the first gear 58 .
[0065] see Figure 13 , The refueling mechanism 8 includes an oil outlet 81 , an air supply port 82 , a sealing head 83 , a first spring 84 , a cylinder 85 and a piston 86 . The oil outlet 81 and the air supply port 82 of the same fueling mecha...
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