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Thermodynamic and kinetic study on interfacial reaction and diamond graphitization of Cu Fe-based diamond composite 被引量:1

Thermodynamic and kinetic study on interfacial reaction and diamond graphitization of Cu Fe-based diamond composite
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摘要 Cu-Fe based diamond composites used for saw-blade segments are directly fabricated by vacuum and pressureassisted sintering. The carbide forming elements Cr and Ti are added to improve interfacial bonding between diamond and the Cu-Fe matrix. The interfacial reactions between diamond/graphite and Cr or Ti, and diamond graphitization are investigated by thermodynamics/kinetics analyses and experimental methods. The results show that interfacial reactions and graphitization of diamond can automatically proceed thermodynamically. The Cr3C2, Cr7C3, Cr23C6, and TiC are formed at the interfaces of composites by reactions between diamond and Cr or Ti; diamond graphitization does not occur because of the kinetic difficulty at 1093 K under the pressure of 13 MPa. Cu-Fe based diamond composites used for saw-blade segments are directly fabricated by vacuum and pressureassisted sintering. The carbide forming elements Cr and Ti are added to improve interfacial bonding between diamond and the Cu-Fe matrix. The interfacial reactions between diamond/graphite and Cr or Ti, and diamond graphitization are investigated by thermodynamics/kinetics analyses and experimental methods. The results show that interfacial reactions and graphitization of diamond can automatically proceed thermodynamically. The Cr3C2, Cr7C3, Cr23C6, and TiC are formed at the interfaces of composites by reactions between diamond and Cr or Ti; diamond graphitization does not occur because of the kinetic difficulty at 1093 K under the pressure of 13 MPa.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第1期524-530,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 51165021) the Science Fund for Distinguished Young Scholars of Gansu Province, China (Grant No. 111RJDA0103)
关键词 THERMODYNAMICS KINETICS diamond composites diamond graphitization thermodynamics, kinetics, diamond composites, diamond graphitization
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