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含Nb的Ti-Al-Si系金屬間化合物的熱軋組織與性能
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TG113.26

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國(guó)家自然科學(xué)基金


Microstructure and Properties of the Ti Al Si Intermetallics with Nb
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    摘要:

    研究了Ti-24Al-11Nb-2Si和Ti-24Al-11Nb-5Si金屬間化合物合金的熱軋組織與性能,結(jié)果發(fā)現(xiàn):隨著變形量的增加,兩種合金第二相Ti5Si3變得細(xì)小且趨向于均勻分布。變形量越大,合金的室溫四點(diǎn)彎曲程度越大,含Ti5Si3較多的Ti-24Al-11Nb-5Si合金的彎曲強(qiáng)度較高。兩種合金的室溫彎曲斷口形貌均為準(zhǔn)解理形式,兩相界面結(jié)合較強(qiáng)。高溫拉伸試驗(yàn)表明:隨變形量的增大,Ti-24Al-11Nb-2Si合金的拉伸強(qiáng)度和塑性都增加。Ti-24Al-11Nb-5Si合金由于變形量較大和較高的

    Abstract:

    The microstructure and properties of hot rolled Ti 24Al 11Nb 2Si and Ti 24Al 11Nb 5Si intermetallic alloys are studied. The results indicate that the precipitate (Ti 5Si 3) in both alloys becomes finer and tends towards a homogeneous distribution with increasing the deformation amount. The larger the deformation amount is, the higher the values of four point bending strength of the alloys at room temperature are. Because larger amout of Ti 5Si 3 exists in Ti 24Al 11Nb 5Si alloy,the bending strength of Ti24Al 11Nb 5Si is higher than that of Ti[ 24Al 11Nb 2Si with increasing the deformation amount. The bending fracture morphologies of both alloys at room temperature show the characteristics of quasicleavage mode, and the bonding strength of phase boundaries is strong. The tensile experiments at high temperature show that the tensile strength and plasticity of Ti 24Al 11Nb 2Si increase with increasing the deformation amount. Because of Ti 24Al 11Nb 5 Si alloy having larger amount of Ti 5Si 3 and larger deformation amount, its tensile strength is much higher than that of Ti 24Al 11Nb 5Si, but its plasticity becomes much lower. The strength of both alloys decreases and their plasticity increases with increasing temperature.

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華偉,吳建生,張瀾庭.含Nb的Ti-Al-Si系金屬間化合物的熱軋組織與性能[J].稀有金屬材料與工程,1999,(1):41~45.[Hua Wei, Wu Jiansheng, Zhang Lanting. Microstructure and Properties of the Ti Al Si Intermetallics with Nb[J]. Rare Metal Materials and Engineering,1999,(1):41~45.]
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