Laboratory single-groove flotation machine
A flotation machine and laboratory technology, used in flotation, solid separation and other directions, can solve the problems of not easy to replace, the structure is very different, and the size of the suction volume is difficult to adjust accurately, and achieve the effect of improving the effect.
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Embodiment 1
[0035] refer to Figure 1-2 , a laboratory single-cell flotation machine, including an upper connecting body 1, a motor 2, a lower connecting body 3, a main shaft 4, a tank body 5, a foam collecting tank 6 and a pulp collecting tank 8, and the upper connecting body 1 is telescopically arranged on On the top of the lower connecting body 3, the motor 2 is fixed on the upper connecting body 1, and the tank body 5 is fixed on the table top of the lower connecting body 3. The output end of the motor 2 is provided with an external inflatable mechanical stirring mechanism 22, and the external inflatable mechanical stirring The mechanism 22 is placed at the inner bottom of the tank body 5; the foam collection tank 6 is connected below the overflow weir of the tank body 5 through the foam tank bracket 7, and the pulp collection tank 8 is placed below the ore opening of the tank body 5.
[0036] The upper connecting body 1 is specifically arranged on the top of the lower connecting body...
Embodiment 2
[0038] refer to figure 2 , image 3 , Figure 4 , Figure 5 , is basically the same as Embodiment 1, furthermore, the output shaft of the motor 2 is connected with a V-belt 10, and the external air-filled mechanical stirring mechanism 22 includes a main shaft 4, an impeller 15, a stator 14, and the bottom end of the main shaft 4 extends to the groove The bottom end of the body 5, the impeller 15 is fixed on the bottom end of the main shaft 4, the stator 14 is fixed on the inner wall of the bottom end of the tank body 5, and is distributed around the impeller 15, the motor 2 drives the main shaft 4 to rotate through the V-belt, and the main shaft 4 further drives The impeller 15 at the bottom rotates inside the stator 14. In this embodiment, an externally inflated mechanical stirring method is designed to provide similar flotation kinetic conditions to the industrial field, thereby improving the effect of the flotation experiment.
[0039] The external inflatable mechanical...
Embodiment 3
[0043] refer to figure 2 , image 3 , Figure 6 , is basically the same as Embodiment 2, furthermore, the stator 14 is fixed on the bottom wall of the tank body 5 through a bracket, and the ore discharge port at the bottom of the tank body 5 is provided with a vent valve 16, and the existence of the vent valve 16 is convenient for the tank body The pulp in 5 flows into the pulp collection tank 8.
[0044] The diameter of the impeller 15 is 80 mm, and the number of blades is 9.
[0045] The diameter of the stator 14 is 150 mm, and the number of blades is 16. By increasing the size and number of blades on the impeller 15 and the stator 14, the stirring effect can be improved, and then the effect of the flotation experiment can be improved.
[0046] The foam tank support 7 includes a slide block 21, a support rod 18, and a storage plate 19. The end side wall of the lower connecting body 3 is fixedly provided with a slide rail groove 20, the slide block 21 is slidably arranged...
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