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Effects on the Bending Strength of Metal-bonded Diamond Segments in DEM Simulation

机译:对DEM仿真中金属粘结金刚石段弯曲强度的影响

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摘要

An attempt was taken to simulate the bending strength of diamond impregnated segments in three point bending tests by using a discrete element method (DEM). The influences of main bond matrix components (Fe and Cu), the porosity in the matrix, the coefficient of friction among the matrix particles, and the connection strength between abrasive particles and matrix particles on the bending strength were investigated through simulation. It is found that the bending strength increases with the proportion of Fe but decreases with the increase of porosity. An increase in both the friction coefficient of the matrix particles and the bonding strength between the diamond grains and metal matrix particles can also lead to the increase of bending strength.
机译:通过使用离散元件方法(DEM),采用三点弯曲试验模拟金刚石浸渍段的弯曲强度。主键基质组分(Fe和Cu),基质中的孔隙率,基质颗粒之间的摩擦系数,以及磨料颗粒和基质颗粒之间的连接强度的影响,通过模拟研究。发现弯曲强度随着Fe的比例而增加,但随着孔隙率的增加而降低。金刚石和金属基质颗粒之间的基质颗粒的摩擦系数和粘合强度的增加也可以导致弯曲强度的增加。

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