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High thermal stability of diamond-cBN-B_4C-Si composites

High thermal stability of diamond-cBN-B_4C-Si composites
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摘要 Improving the thermal stability of diamond and other superhard materials has great significance in various applications. Here, we report the synthesis and characterization of bulk diamond–cBN–B4C–Si composites sintered at high pressure and high temperature(HPHT, 5.2 GPa, 1620–1680 K for 3–5 min). The results show that the diamond, cBN, B4C,BxSiC, SiO2 and amorphous carbon or a little surplus Si are present in the sintered samples. The onset oxidation temperature of 1673 K in the as-synthesized sample is much higher than that of diamond, cBN, and B4C. The high thermal stability is ascribed to the covalent bonds of B–C, C–N, and the solid-solution of BxSiC formed during the sintering process. The results obtained in this work may be useful in preparing superhard materials with high thermal stability. Improving the thermal stability of diamond and other superhard materials has great significance in various applications. Here, we report the synthesis and characterization of bulk diamond–cBN–B4C–Si composites sintered at high pressure and high temperature(HPHT, 5.2 GPa, 1620–1680 K for 3–5 min). The results show that the diamond, cBN, B4C,BxSiC, SiO2 and amorphous carbon or a little surplus Si are present in the sintered samples. The onset oxidation temperature of 1673 K in the as-synthesized sample is much higher than that of diamond, cBN, and B4C. The high thermal stability is ascribed to the covalent bonds of B–C, C–N, and the solid-solution of BxSiC formed during the sintering process. The results obtained in this work may be useful in preparing superhard materials with high thermal stability.
作者 Hong-Sheng Jia Pin-Wen Zhu Hao Ye Bin Zuo Yuan-Long E Shi-Chong Xu Ji Li Hai-Bo Li Xiao-Peng Jia Hong-An Ma 贾洪声;朱品文;叶灏;左斌;鄂元龙;徐仕翀;李季;李海波;贾晓鹏;马红安(Key Laboratory of Functional Materials Physics and Chemistry of the Ministry of Education,Jilin Normal University;State Key Laboratory of Superhard Materials,Jilin University)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期521-525,共5页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China(Grant No.51301075) the Project of Development and Reform Commission of Jilin Province,China(Grant No.2014Y136)
关键词 high pressure and high temperature diamond–cBN–B4C–Si COMPOSITES high thermal stability high pressure and high temperature diamond–cBN–B4C–Si composites high thermal stability
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