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home > News > Solution to the problem of paint bucket clogging during crushing process
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Solution to the problem of paint bucket clogging during crushing process
release date:2015-11-08        Views:3        Back to list
The working principle of the metal crusher is to impact, cut, impact and crush the materials entering the crushing cavity under the highly rotating hammer, and finally form granular metal balls through collision and friction with the lining plate. When the fineness requirement is reached, the metal particles will leak from the screen and come out from the discharge port. The iron sheets and large particles that do not meet the requirements will be impacted, cut, hit, rolled and rubbed again until the requirements are fully met and filtered out from the screen. After discharging, since they are mixed particles, the metal particles coming out of the discharge port will enter the automatic conveyor belt leading to the iron and aluminum separation device, and different particles of metal will be separated under different effects such as electromagnetic force and centrifugal force. Open up to achieve the ultimate goal and value of crushing.
In the metal crusher's crushing operation of paint buckets, it is very important for the crusher to adjust the addition of scraps and the discharge of finished materials. Especially during continuous operation, the rate of input of scraps should be consistent with that of the finished materials. The discharge speed of the materials should be equal to that of the crusher, so that the crusher's production capacity can be maximized. Because in the normal production process, different technical materials require different crushing particle size requirements. If you want to maximize the production capacity while also producing high-quality products, you need to master the crusher operation of the materials that can be crushed. range of granularity.
In the actual operation of the metal crusher, if there are finished product fragments retained in the crusher, it will affect the overall crushing effect. If the finished product fragments remain in the crusher, there is a possibility that they will continue to be crushed. property, in this case it will exceed the required particle size range. In this way, not only will it be useless, but the finished scraps will not meet the predetermined requirements. At the same time, these over-crushed finished particles will surround the uncrushed material particles in the crushing cavity. Many small particles surround the large particles. In this way, when the large particles are crushed, the surrounding small particles will play a role. A certain buffering effect, thereby further reducing the crushing efficiency.