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How About the Power Consumption of Vibrating Feeder

  • Date Submitted: 11/25/2013 10:39 PM
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With the development of mining machinery industry, there are many kinds of mining machines in the market, such as crushers, cone crusher, jaw crusher and vibrating feeder and so on. Oh, saying the vibrating feeder, do you know the power consumption of vibrating grizzly feeder? If you have not ever heard of it, today our expert of HXJQ will talk something about it. I think you can read this article with your a little time.

At first, we will talk about the configuration design. Configuration design should be based on equipment performance requirements as far as possible. Configuration should be designed according to the requirements of the equipment performance, minimize material tank pressure required by the manufacturer, Bunker effective discharge port shall not be greater than one-fourth of the slot width, material flow speed should be controlled 6-18m /min. The structure of electromagnetic vibrating feeder is simple, and the device is easy to operate, there is no need to embellish it, power consumption is alos small; evenlyit can adjust the amount of ore; so it is widely used inmany fields.. The small electromagnetic vibrating feeders is generally applied for loose materials. The TK-Series Vibrating feeder, which also can called vibrating grizzly feeder,

sutilise grease lubricated unbalanced vibratory motors to create a linear motion.

In addition, this series vibrating feeders can be used for feeding, transporting, scalping and screening of materials.Most of the TK-Series vibrating feeders are available with either squirrel cage motors or hydraulic drives.For larger materials with feeding capacity, the silo bottom discharge should be set a sufficient height elam mine board; In order to not affect the performance of the feeder, the board shall be fixed in the tank. In order to smooth discharge for the silo, silo posterior wall inclination is designed of 55-65 degrees. The application of electromagnetic vibrating feeder: electromagnetic vibrating...


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