期刊文献+

微量硼和应变速率对变形TiAl合金室温力学性能的影响 被引量:5

EFFECTS OF TRACE BORON ADDITION AND STRAIN RATE ON ROOM TEMPERATURE MECHANICAL PROPERTIES OF WROUGHT TiAl ALLOY
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摘要 以形变Ti47Al2Mn2Nb合金为对象,研究了微量硼合金化和应变速率对TiAl合金室温力学性能的影响。发现添加微量(1.0%,摩尔分数)硼就能有效地细化形变Ti47Al2Mn2Nb合金的近全片层组织,显著提高其室温强度,并在一定程度上改善室温塑性;变形TiAl合金不论添硼与否,其室温强度均随应变速率的升高而升高,而延伸率对应变速率不太敏感;微量硼合金化和应变速率对变形TiAl合金室温断裂方式无明显影响。 Wrought Ti 47Al 2Mn 2Nb alloy was chosen to investigate the effects of trace (1.0%, mole fraction) boron addition and the strain rate on tensile properties of TiAl alloy at room temperature. It was found that the addition of boron effectively refines grains in the alloy, increases its strength and improves its ductility; on the other hand, the strengths of the two alloys, doped or undoped with boron, increase with the strain rate while tensile ductility is not so much sensitive to the strain rate as the strength; moreover, neither microalloying with boron nor a change in the strain rate from 10 -5 to 10 -1 s -1 produces an obvious change in fractography at room temperature.
作者 王瑜 林栋梁
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 1999年第1期1-7,共7页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金 上海交通大学与美国United Technologies-Prat & Whitney公司合作研究项目
关键词 金属间化合物 TIAL合金 应变速率 力学性能 intermetallics titanium aluminide tensile properties strain rate boron
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参考文献4

  • 1Liu C T,Inter Metallics,1996年,4期,429页
  • 2Liu C T,J Metals,1993年,45卷,5期,38页
  • 3Liu C T,Scripta Metall,1992年,27卷,5期,599页
  • 4Liu C T,Scripta Metall,1990年,24卷,1285页

同被引文献35

  • 1蒲忠杰,石建东,邹敦叙,仲增墉.TiAl基合金组织对拉伸性能的影响[J].金属学报,1993,29(8). 被引量:6
  • 2陈仕奇,曲选辉,雷长明,黄伯云.TiAl+La有序合金的室温力学性能[J].金属学报,1994,30(1). 被引量:17
  • 3贺连龙,叶恒强,徐仁根,杨德庄.TiAl-V-Si合金中Ti_(5)Si_3析出相与基体相的取向关系[J].金属学报,1994,30(4). 被引量:8
  • 4陈伶晖,黄伯云,曲选辉,谢佑卿,贺跃辉,曹鹏,徐强.TiAl基合金的复合热机械处理[J].中国有色金属学报,1996,6(1):120-126. 被引量:23
  • 5[1]Ward-Close C M, Froes F H. Developments in synthesis of light weight metal. JOM, 1994, 46(1): 28.
  • 6[2]Huang SC, Hall EL. Plastic deformation and fracture of binary TiAl-base alloys. Metall Trans A, 1991,22:427.
  • 7[3]Yamaguchi M, Inui H, Yokoshima S, et al. Resent progress in our understanding of deformation and fracture of two-phase and singlephase TiAl alloys. Mater Sci Eng A, 1996, 213: 25.
  • 8[4]Tang J C, Huang B Y, He Y H, et al. Effect of nitrogen addition on microstructures and mechanical properties of TiAl based alloys.Trans Nonferrous met Soc China, 1999, 9: 692.
  • 9[5]Sermiatin S L, Seetharaman V, Jian V K. Microstructure development during conventional and isothermal hot forging of a near-gamma TiAl. Metall Mater Trans A, 1994, 25: 2753.
  • 10[7]Kumpfert J, KimYW, DimidukDM. Effect of microstructure of fatigue and tensile properties of the Ti-46.3Al-3.0Nb-2.1Cr-0.2W.Mater Sci Eng A, 1995,192/193: 465.

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