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研究了γ-TiAl基合金的室温拉伸性能与断裂韧度随晶粒尺寸变化的关系.结果表明:晶粒尺寸较大的近全层组织的室温拉伸性能低于晶粒尺寸较小的双态组织的拉伸性能;然而前者的室温断裂韧度要高于后者的室温断裂韧度;拉伸性能与断裂韧度与晶粒尺寸变化而出现相反的变化规律是由于两种试验时断裂途径取样体积的不同所致.

参考文献

[1] 张永刚;韩雅芳;陈国良.金属闯化合物结构材料[M].北京:国防工业出版社,2001:705-750.
[2] J.Yamaguchi;H.Inui .High-temperature structural intermetallics[J].Acta materialia,2000(1):307-322.
[3] KimYW;Froes F H.In High-temperature alurninides and intermetallics[M].TMS Warreddate,PA,1990:465-492.
[4] LarsenJM;Williams K A;Balsone S J.In high-temperature aluminides and intermeallics[A].Warreddate,PA,1990:521-556.
[5] TsujimotoT;Hashimoto K.In high-temperature ordered intermetallic alloys Ⅲ[A].Pittsburgh,PA,1989:391-396.
[6] KimYW.In high-temperature ordered intermetallic alloys Ⅳ[A].Pittsburgh,PA,1991:777-794.
[7] HUANGSC;Hall E L.In high-temperature ordered intermetallic alloys Ⅲ[A].Pittsburgh,PA,1989:373-383.
[8] J. H. CHEN;R. CAO;G. Z. WANG .Study on Notch Fracture of TiAl Alloys at Room Temperature[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2004(2):439-456.
[9] CHANKS;Onstott J;Kumar K S .The fracture resistance of a binary TiAl alloy[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2000,31:71-80.
[10] KimYW;Dimiduk D M;George R.Irwin symposium oncleavage fracture[A].,1997:305-317.
[11] 梁益龙;雷文;钟蜀辉 等.板条马氏体钢的断裂韧性与缺口韧性、拉伸塑性的关系[J].金属学报,1998,34(09):950-958.
[12] CHANKS .Toughening mechanisms in titanium aluminides[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1993,24(03):569-583.
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