Osaka Electro-Communication University

|Osaka Electro-Communication University

Superiority of lonsdaleite to diamond in wear resistance as abrasive grain based on molecular dynamics analysis of grinding silicon carbide

Abrasion,Diamond,Grinding,Wear

Effect of grinding wheel-workpiece interactions in fine grinding on material removal of silicon based on molecular dynamics analysis

Diamond,Grinding,Silicon,Simulation

Fracture mechanism of lonsdaleite based on molecular dynamics analysis of three-point bending

Bending,Diamond,Fracture,Simulation

Deformation mechanism of Lonsdaleite based on molecular dynamics analysis of nanoindentation

Results of molecular dynamics analysis of nanoindentation in monocrystalline and amorphous silicon carbide compared with experimental results

Deformation mechanism of nano-polycrystalline diamond on nanoindentation based on molecular dynamics analysis

Possible mechanism of strength change of diamond depending on thermal histories based on molecular dynamics analysis

Guideline for Ultra-precision Machining of Silicon Carbide Based on Molecular Dynamics Analysis

Phase transformation mechanism from carbon materials to diamond in synthesis process based on molecular dynamics analysis

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