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HIGH TEMPERATURE INTERMETALLIC ALLOY BASED ON A NEW INTERMETALLIC COMPOUND γ{sub}1 IN THE TiAl+Nb SYSTEM

机译:高温金属间合金基于TiAl + Nb系统中的新型金属间化合物γ} 1

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A new intermetallic phase γ{sub}1 has been found in the Ti-Al-Nb ternary system. The chemical formula of the γ{sub}1phase was determined to be Ti{sub}4Nb{sub}3Al{sub}9. The unit cell of the γ{sub}1phase contains 16 atoms and is 4 times larger than that of the γ-TiAl phase with L1 structure. The relationship of lattice parameters between the γand Γ{SUB}1 phases is: a{sub}(γ1)= √2 a{sub}γ and C{sub}(γ1)=2c{sub}γ. The x-ray diffraction pattern of stoichiometric γ{sub}1 phase, Ti{sub}4Nb{sub}3Al{sub}9, is shown in the paper. The typical atom occupation in the unit cell as well as the reciprocal lattice of γ{sub}1 phase is also shown in the paper. Nb atom in TiAl was confirmed to be substituted for Ti and preferentially occupies the Ti sublattice by the method of atom location by channeling enhanced microanalysis( ALCHEMI). For the case of low Nb content the site occupation of Nb atoms is random in the Ti sublattice. With increasing Nb content the distribution of Nb atoms in the sublattice gradually becomes ordered. The development of the Nb ordering on the Ti sublattice finally leads to the formation of a new ternary compound γ{sub}1. The paper also showed the mechanical properties of several γ{sub}1 based alloys that are located at the different phase region in the Ti-Al-Nb ternary phase diagram. It seems that the compressive yield strengths at the temperature from 20 °C up to 1100 °C are higher than conventional high Nb containing γ-TiAl alloy. The oxidation resistances of high Nb containing γ{sub}1 based alloys could be improved by Y addition without loss of strength.
机译:一种新的金属间相γ{子} 1已经在钛铝 - 铌三元体系中发现。的γ{子} 1相的化学式被确定为是Ti {子} 4NB {子} 3AL {子} 9。的γ{子} 1相的晶胞包含16个原子,并且是比γ-TiAl金属相L1结构的大4倍。的γ和Γ{SUB} 1两相之间的晶格参数的关系是:一个{子}(γ1)=√2{一个子}γ和C {子}(γ1)= 2C {子}γ。化学计量γ{子} 1个相的X射线衍射图案,钛{子} 4NB {子} 3AL {子} 9,示出了在纸。在该单元中的典型原子占领以及γ{子} 1相的倒易晶格中还示出的纸张。在TiAl金属铌原子被证实被取代Ti和优先被窜增强微量分析(ALCHEMI)占据由原子位置的方法在Ti亚晶格。对于低Nb含量的情况下,Nb原子的位点占用是在将Ti亚晶格随机的。随着Nb含量的Nb原子的亚晶格分布逐渐有序。在Ti亚晶格最终导致一个新的三元化合物γ{子} 1的形成使Nb排序的发展。本文还表明几个γ{子}的机械性能,它们位于在所述的Ti的Al-Nb的三元相图的不同相区1种基合金。看来,在从20℃的温度达到1100℃的压缩屈服强度比常规的高的Nb含有γ-TiAl基合金更高。含有γ高Nb的抗氧化性{子} 1种基合金可以用Y加成而不损失强度的提高。

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