Gyroscopic Torques Acting on Crushing Mill

Journal Title: Advances in Robotics & Mechanical Engineering - Year 2018, Vol 1, Issue 4

Abstract

Numerous mechanisms with rotating objects in engineering manifest gyroscopic effects, which mathematical models formulated on the law of kinetic energy conservation and the action of inertial torques. Known theories of gyroscopic effects are far from the practical result of the action inertial torques on the rotating objects. The new study demonstrates that the gyroscopic effects are the result of the simultaneous and interdependent action of the resistance and precession torques of rotating objects around different axes. The centrifugal and Coriolis forces are generated the first torques and the second one by the common inertial forces and the change in the angular momentum of the rotating mass of a spinning object. The principle of gyroscope effects has been applied in the crushing pendulum mills used for ore, seeds, etc., where the intense pressure is desired. The new principles of the action of internal and external torques on the crushing mill enable for the computing the actual forces that produce the work. This manuscript represents the mathematical model for the actual torques and power that manifest the crushing mill. Gyroscopic effects manifest at numerous rotating objects in engineering. Correct computing of and gyroscopic properties enables for the functioning of the gyroscopic devices in engineering. Since the Industrial Revolution published many gyroscope theories as well as many approaches and mathematical solutions that describe the gyroscope properties [1-4].

Authors and Affiliations

Ryspek Usubamatov

Keywords

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  • EP ID EP581447
  • DOI 10.32474/ARME.2019.01.000120
  • Views 78
  • Downloads 0

How To Cite

Ryspek Usubamatov (2018). Gyroscopic Torques Acting on Crushing Mill. Advances in Robotics & Mechanical Engineering, 1(4), 70-72. https://www.europub.co.uk/articles/-A-581447