Motion Analysis in Tumbling Mills by the Discrete Element Method
Анализ движения в мельницах с перекатыванием материала методом дискретных элементов
1990-01-01
SCID: 54.1/jdnamek7
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Discrete Element Methodball millcataracting and cascading motioncollision energy distributionmedia motion
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Abstract (AI)
The media motion in a ball mill is simulated using a numerical algorithm known as the Discrete Element Method. The motion of the charge is modelling by considering the forces acting at each contact point during a collision and following the movement of individual balls as per Newton's law. First, experimental verification of the model is shown. Then a few simulated results are shown for some interesting cases. For the first time it is possible to get information about the distribution of energy in the collision between balls. Also the cataracting and cascading motion of charge in large mills can be simulated accurately with this simulation program.
Key Findings
1
The method provides, for the first time, information on how collision energy is distributed between balls.
2
The numerical model is experimentally verified before being applied to representative mill-motion cases.
3
The simulation accurately reproduces cataracting and cascading charge motion in large mills.
4
The study simulates ball-mill media motion using the Discrete Element Method, tracking individual balls through contact forces and Newton’s laws.
Research Object
Media charge motion in ball and tumbling mills
Research Subject
Collision-energy distribution and cataracting and cascading charge-motion behavior
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Publication Date
1990-01-01
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