Technology and mechanical properties of advanced γ-TiAl based alloys

材料科学 金属间化合物 锻造 合金 体积分数 微观结构 等温过程 冶金 制作 极限抗拉强度 热加工 变形(气象学) 蠕动 相(物质) 模具(集成电路) 进程窗口 复合材料 热力学 医学 化学 物理 替代医学 平版印刷术 有机化学 病理 光电子学 纳米技术
作者
Wilfried Wallgram,Thomas Schmölzer,Limei Cha,Gopal Das,Volker Güther,Helmut Clemens
出处
期刊:International Journal of Materials Research [De Gruyter]
卷期号:100 (8): 1021-1030 被引量:150
标识
DOI:10.3139/146.110154
摘要

Abstract The present paper summarizes our progress in establishing a novel production technology for -TiAl components to be used in advanced aircraft engines. In the beginning the main emphasis is put on the design of a -TiAl based alloy which exhibits excellent hot-workability. Then, the development of a “near conventional” hot-die forging route for this type of intermetallic material is described. Finally, the effect of two-step heat-treatments on the microstructure and the mechanical properties is discussed. Because of the small “deformation window” hot-working of -TiAl alloys is a complex and difficult task and, therefore, isothermal forming processes are favoured. In order to increase the deformation window a novel Nb and Mo containing -TiAl based alloy (TNM TM alloy) was developed, which solidifies via the β-phase and exhibits an adjustable β/B2-phase volume fraction. Due to high volume fractions of -phase at elevated temperatures the alloy can be hot-die forged under near conventional conditions, which means that conventional forging equipment with minor and inexpensive modifications can be used. Examples for the fabrication of -TiAl components employing a near conventional forging route are given. With subsequent heat-treatments balanced mechanical properties can be achieved. The results of tensile and creep tests conducted on forged and subsequently heat-treated TNM TM material are presented.
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