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微量TiC/ZrC對(duì)TZM合金室溫及高溫性能與組織的影響
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國家杰出青年科學(xué)基金(50925416)


Effect of Trace TiC/ZrC on Property and Microstructure of TZM Alloy at Room and High Temperature
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    摘要:

    采用粉末冶金方法制備Mo-Ti-Zr-TiC/ZrC合金,研究微量TiC/ZrC對(duì)合金性能與組織的影響。結(jié)果表明,添加微量TiC/ZrC后合金性能得以明顯提高,TiC/ZrC添加量為0.4%(質(zhì)量分?jǐn)?shù),下同)時(shí),合金室溫抗拉強(qiáng)度分別達(dá)到最高值。同時(shí),微量TiC/ZrC顯著提高了合金的高溫強(qiáng)度,添加的微量碳化物粒子促進(jìn)了合金高溫拉伸過程中韌窩的形成,使合金高溫拉伸由穿晶解理和韌窩斷裂的混合斷裂模式向韌窩斷裂轉(zhuǎn)變。

    Abstract:

    Mo-Ti-Zr-TiC/ZrC alloys were prepared via a powder metallurgy method. The effects of trace TiC/ZrC additive on the mechanical properties and microstructure of TiC/ZrC reinforced TZM alloy at room and high temperature were studied. The results indicate that the relative density and the tensile strength of Mo-Ti-Zr-TiC/ZrC alloy at room temperature are effectively enhanced by adding trace TiC/ZrC (0.1wt%~0.5wt%). The tensile strength achieves the highest value when the content of TiC/ZrC is 0.4wt%. Meanwhile, Mo-Ti-Zr-TiC/ZrC alloy with 0.4wt% TiC/ZrC shows excellent mechanical properties at 800 °C. The dispersive distribution of trace carbide particles accelerates the formation of dimples in the tensile procedure at elevated temperature, which leads to the transformation of fracture mechanism from the compound of trans-granular cleavage fracture and dimple fracture to simplex dimple fracture pattern.

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范景蓮,錢 昭,成會(huì)朝,田家敏,成創(chuàng)功.微量TiC/ZrC對(duì)TZM合金室溫及高溫性能與組織的影響[J].稀有金屬材料與工程,2013,42(4):853~856.[Fan Jinglian, Qian Zhao, Cheng Huichao, Tian Jiamin, Cheng Chuanggong. Effect of Trace TiC/ZrC on Property and Microstructure of TZM Alloy at Room and High Temperature[J]. Rare Metal Materials and Engineering,2013,42(4):853~856.]
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  • 收稿日期:2012-04-22
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