Oil tank cleaning equipment and a cleaning method
A technology for cleaning equipment and oil tanks, applied in cleaning methods and utensils, cleaning hollow objects, chemical instruments and methods, etc., can solve the problems of laborious efficiency and low efficiency of the outer surface of oil tanks, and achieve good cleaning effect
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Embodiment 1
[0027] Embodiment one, see figure 1 , an oil tank cleaning equipment, including a track 1, a driving mechanism 5, a motor 2, a cleaning brush 3 and a moisture absorption roller 4.
[0028] Rail 1 extends in the left-right direction. Track 1 has a pair. Two rails in the pair of rails 1 are distributed along the front-to-back direction.
[0029] The driving mechanism 5 includes a casing 58 and a power input shaft 50 . The power input shaft 50 is rotatably connected to the casing 58 . The casing 58 is located in the middle of the power input shaft 50 . The front and rear ends of the power input shaft 50 are respectively provided with a road wheel 59 . Two traveling wheels 59 rest on a pair of rails 1 to realize the suspension of the driving mechanism 5 .
[0030] The motor 2 is fixed on the rear surface of the casing 58 . The rotating shaft of the motor 2 and the power input shaft 50 are coaxially fixed together.
[0031] Both the cleaning brush 3 and the moisture absorbi...
Embodiment 2
[0035] Embodiment two, the difference with embodiment one is:
[0036] see Figure 4 , also includes squeeze roller 7 and suction pump (not shown in the figure). The suction pump is affixed to the casing 58 (see figure 1 )of. The mandrel 41 is parallel to the squeeze roller 7 . The squeeze roller 7 includes a fixed shaft 71 and an outer tube 72 . Fixed shaft 71 is same casing 58 (referring to figure 1 ) are fixed together. The fixed shaft 71 is provided with a flow channel 75 . The upper end of the flow passage 75, that is, the outlet end, is butted together with the inlet of the suction pump. The outer tube 72 is rotatably sleeved on the lower end of the fixed shaft 71 . A plurality of suction holes 721 are provided on the peripheral surface of the outer tube 72 . The suction holes 721 are distributed along the circumferential direction of the squeeze roller 7 and along the axial direction of the squeeze roller. The outer tube 72 is fixedly connected with a driven g...
Embodiment 3
[0042] Embodiment three, the difference with embodiment two is:
[0043] see Figure 8 , the extrusion roller 7 is only composed of the outer tube 72 , and the suction hole 721 is only provided on the extrusion portion of the extrusion roller 7 . Outer tube 72 is non-rotating.
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