|
Particle and Aerosol Research Vol. 8, No. 2, June 2012 |
ISSN : 1738-8716 (Print) ISSN : 2287-8130 (Online) |
Analysis for Cokes Fracture Behavior using Discrete Element Method
À¯ ¼ö Çö1)⋅¹Ú ÁØ ¿µ2)*
Abstracts
The strength of lumped cokes can be represented by some index numbers. Although some indexes are suggested, these indexes are not enough to enlighten fracture mechanism. To find essential mechanism, a computational way, discrete element method, is applied to the uniaxial compression test for cylindrical specimen. The cylindrical specimen is a kind of lumped particle mass with parallel bonding that will be broken when the normal stress and shear stress is over a critical value. It is revealed that the primary factors for cokes fracture are parallel spring constant, parallel bond strength, bonding radius and packing ratio the parallel bond strength and radius of the parallel combination the packing density. Especially, parallel spring constant is directly related with elastic constant and yield strength.
Keywords£ºDiscrete Element Method, Cokes Fracture, Bonded Particle Model, Parallel Bond Model
File
4¹ÚÁØ¿µ(75-81).pdf
Download


> ÇÐȸÁö°Ë»ö > 