Finite Element Simulation in Micromachining Nanosized Silicon Carbide Particles Reinforced Composite Materials Based on Cohesive Zone Model
A finite element method based cohesive zone model has been used to study the micromachining process of nanosized silicon carbide particles(SiCp)reinforced aluminium-based matrix composite materials.The model considers the random properties of silicon carbide particle distribution and the interface bonding between silicon carbide particles and matrix.Key parameters including chip morphology,interface separation,cutting force and cutting temperature are conducted to verify the simulation parameters.
Cohesive zone model nanosized silicon carbide particles Composite Materials micromachining
H.M.Pen L.Wang N.Ni Y.F.Wang J.T.Wu
Tianjin Aerospace Electromechanical Equipment Research Institute,Tianjin 300458,China
国际会议
第十七届国际制造会议(The 17th International Manufacturing Conference in China)(IMCC 2017))
深圳
英文
1-8
2017-11-23(万方平台首次上网日期,不代表论文的发表时间)