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Thermal residual stress analysis of coated diamond grits
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作者 zi-qian huang Bo Xian +1 位作者 Yue-hui He Bai-yun huang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第2期215-219,共5页
Residual stresses of coated diamond grits were analyzed by a finite element unit cell model. Diamond grits coated with four types of metals, W, Mo, Ti, and Cr, were considered. The numerical results show that compress... Residual stresses of coated diamond grits were analyzed by a finite element unit cell model. Diamond grits coated with four types of metals, W, Mo, Ti, and Cr, were considered. The numerical results show that compressive stress occurs in the diamond particles and tensile stress occurs in the metal matrix; compressive stress is concentrated in the diamond sharp comer; interface stresses decrease by more than 1000 MPa with a metal interlayer; plastic deformation of the matrix begins near the sharp corner of diamond grits and extends toward the peripheral zone. Stress concentration dramatically decreases due to plastic deformation of the matrix. The deposition of transition metals on a diamond surface can dramatically promote the adhesion between diamond grits and the metal bond. 展开更多
关键词 diamond grit residual stress INTERLAYER finite element method
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