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微量TiC对Mo-Ti-Zr-TiC合金性能与显微组织的影响
引用本文:钱 昭,范景莲,成会朝,田家敏.微量TiC对Mo-Ti-Zr-TiC合金性能与显微组织的影响[J].稀有金属材料与工程,2012,41(6):1107-1110.
作者姓名:钱 昭  范景莲  成会朝  田家敏
作者单位:中南大学 粉末冶金国家重点实验室,湖南长沙,410083
基金项目:国家杰出青年科学基金资助 (50925416)
摘    要:采用粉末冶金方法制备Mo-Ti-Zr-TiC合金,研究微量TiC的添加对Mo-Ti-Zr-TiC合金的拉伸性能和显微组织的影响。结果表明,在Mo-Ti-Zr合金中添加微量TiC(0.1%~0.5%,质量分数)后,合金的相对密度和室温抗拉强度得到了提高,当TiC添加量为0.4%时,合金强度最高,较Mo-Ti-Zr合金提高了28.1%。微量TiC的添加,阻碍了合金烧结过程中的晶粒长大,合金晶粒尺寸随TiC添加量的增加而降低。添加的细小TiC粒子在高温烧结过程中或与坯体中的微量氧发生反应形成了由Mo、Ti、C及O4种元素组成的(Mo,Ti)xOyCz细小复合第二相粒子,或发生团聚结成大颗粒,对合金起到净化晶界氧和弥散强化的作用,因而合金的性能相比Mo-Ti-Zr合金有了较明显的提高。

关 键 词:Mo-Ti-Zr-TiC合金  拉伸性能  晶粒度  第二相粒子
收稿时间:2011/6/18 0:00:00

Effect of Trace TiC on Property and Microstructure of Mo-Ti-Zr-TiC Alloy
Qian Zhao,Fan Jinglian,Cheng Huichao and Tian Jiamin.Effect of Trace TiC on Property and Microstructure of Mo-Ti-Zr-TiC Alloy[J].Rare Metal Materials and Engineering,2012,41(6):1107-1110.
Authors:Qian Zhao  Fan Jinglian  Cheng Huichao and Tian Jiamin
Affiliation:State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China
Abstract:Mo-Ti-Zr-TiC alloy was prepared via powder metallurgy method. The effects of trace TiC additive on the mechanical properties and microstructure of TiC reinforced Mo-Ti-Zr-TiC alloy were studied. The results indicate that the relative density and the tensile strength at room temperature of Mo-Ti-Zr-TiC alloy is effectively enhanced by adding trace TiC (0.1wt%~0.5wt%). The tensile strength achieves the highest value when the content of TiC is 0.4wt%, which is 28.1% higher than that of Mo-Ti-Zr alloy. The adding of trace TiC can inhibit the grain growth during alloy sintering process, which leads to the decrease of grain sizes with the rise of TiC content. A part of the fine TiC particles react with trace oxygen in molybdenum matrix to form (Mo,Ti)xOyCz compound second phase particles during high temperature sintering, while the other part are agglomerated into large particles, which play a role in grain boundaries purification and dispersion-strengthening.
Keywords:Mo-Ti-Zr-TiC alloy  tensile strength  grain size  second phase particles
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