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Mo-Zr合金燒結(jié)致密化行為及組織與性能研究
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國(guó)家杰出青年科學(xué)基金資助(50925416)


Sintering Densification Behavior, Microstructure and Property of Mo-Zr Alloys
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    摘要:

    采用粉末冶金方法制備Mo-Zr合金,研究Zr對(duì)Mo-Zr合金燒結(jié)致密化行為及其組織與性能的影響。結(jié)果表明,合金燒結(jié)后接近全致密,固相Mo顆粒間的固相燒結(jié)是導(dǎo)致合金致密化的主要原因;合金室溫抗拉強(qiáng)度相對(duì)于純Mo顯著提高,且隨Zr含量增加合金強(qiáng)度持續(xù)上升;提高壓制壓力使合金致密度改善,但對(duì)合金性能影響并不顯著,而提高燒結(jié)溫度對(duì)合金性能產(chǎn)生不利影響,1920 ℃燒結(jié)的合金具有最佳性能。少部分Zr原子固溶進(jìn)入Mo基體中產(chǎn)生顯著固溶強(qiáng)化作用,大部分Zr則吸附坯體中的氧元素形成氧化物二次相粒子彌散分布于晶界和晶粒內(nèi)部,凈化晶界氧的同時(shí),使合金晶粒得以顯著細(xì)化

    Abstract:

    Mo-Zr alloys were fabricated via a powder metallurgy method. The effects of Zr on sintering densification behavior, microstructure and property of Mo-Zr alloy were studied. The results indicate that the alloy with Zr addition approach full density after sintering, and the solid phase sintering between Mo particles is the main cause for the densification of the alloy. The tensile strength at room temperature of the alloy is effectively enhanced after adding Zr, and continues to rise with the increasing of Zr content. Enhancing the pressing pressure leads to a better density but not to the tensile strength, while increasing sintering temperature will do harm to the property of the alloy. The microstructure analysis reveals that a little part of Zr solves into Mo matrix, which enhances the tensile strength of the alloys signally, while other part of Zr form oxide second phase particles dispersing throughout grain boundary and inner grain and making the grains to be significantly refined

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錢 昭,范景蓮,成會(huì)朝,田家敏. Mo-Zr合金燒結(jié)致密化行為及組織與性能研究[J].稀有金屬材料與工程,2013,42(10):2144~2148.[Qian Zhao, Fan Jinglian, Cheng Huichao, Tian Jiamin. Sintering Densification Behavior, Microstructure and Property of Mo-Zr Alloys[J]. Rare Metal Materials and Engineering,2013,42(10):2144~2148.]
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  • 收稿日期:2012-10-16
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