Oscillating oil separation device for sesame oil production and implementation method thereof
A technology of sesame oil and oscillating plate, which is applied in the field of oscillating oil separation device for sesame oil production, which can solve the problems of easy overflow, high difficulty of overflow, large loss of driving energy, etc., and achieve the effect of avoiding spilling and saving driving energy
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Embodiment 1
[0035] refer to figure 1 , a kind of oscillating oil separation device for sesame oil production, comprising an oil cylinder 1, a leftward oscillating mechanism 2, a rightward oscillating mechanism 3 and a bottom oscillating mechanism 4, the left side of the oil cylinder 1 is fixedly connected with a leftward oscillating mechanism 2, and the right side of the oil cylinder 1 The side is fixedly connected with a right swinging mechanism 3, and the bottom oscillating mechanism 4 is connected between the left swinging mechanism 2 and the right swinging mechanism 3; the oil cylinder 1 includes a cylinder body 11, and the front and rear sides of the cylinder body 11 are provided with downward The bent strip-shaped protrusion 12 and the slide groove 426 are slidably connected to the strip-shaped protrusion 12 .
[0036] refer to figure 2, the structures of the leftward swinging mechanism 2 and the rightward swinging mechanism 3 are consistent, both of them include a column 31, a sl...
Embodiment approach
[0042] refer to Figure 8 , in order to better show the implementation method process of the oscillating oil separation device for sesame oil production, the present embodiment now proposes an implementation method of the oscillating oil separation device for sesame oil production, including the following steps:
[0043] S101: Start the moving assembly 423 and the telescopic cylinder 424, adjust the position of the shock plate 41 in the oil cylinder 1, and close the moving assembly 423 and the telescopic cylinder 424 after the adjustment is completed;
[0044] S102: Pour the sesame residue and water into the oil tank 1 according to a certain ratio;
[0045] S103: Start the rotary motor 443 to drive the wire barrel 442 to rotate, and then pull the position adjustment frame 42 to move left and right along the side wall of the oil cylinder 1, and extract the oil from the lower layer of sesame residue to the upper layer through the vibration of the bottom layer;
[0046] S104: st...
Embodiment 2
[0048] refer to Figure 9 to Figure 10 , the difference between this embodiment and Embodiment 1 is that the telescopic assembly 5 is added in this embodiment. The addition of the telescopic assembly 5 enables the oil cylinder 1 to use the elasticity of the spring 53 to carry out multiple small vibrations after a single large shock. aftershocks, save driving energy, and improve the effect of oil residue layering. Between the oil cylinder 1 and the left swing mechanism 2, between the oil cylinder 1 and the right swing mechanism 3, there are telescopic components 5, and the telescopic components 5 are composed of a rod 51 and a sleeve 52 slidingly sleeved on the outside of the rod body 51, the end of the rod body 51 is connected with the slider 33 through the universal rotary joint, the end of the sleeve 52 is connected with the oil cylinder 1 through the universal rotary joint, and the rod body A spring 53 is sleeved on the outside of the sleeve 51 and the sleeve 52, and the tw...
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