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Hot rolling workability, texture and grain boundary character distribution of B2-type FeAl, NiAl and CoTi intermetallic compounds

机译:B2型FeAl,NiAl和CoTi金属间化合物的热轧加工性,织构和晶界特征分布

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摘要

Hot-rolling workability, texture and grain boundary character distribution of B2-type FeAl, NiAl and CoTi intermetallic compounds were investigated as a function of alloy stoichiometry. All the FeAl (i.e., Fe-38Al, -43Al and -48Al, denoted by at.%), and stoichiometric NiAl and CoTi were successfully hot-rolled at 1273 K but off-stoichiometric NiAl (Ni-48Al and -52Al) and CoTi (Co-48Ti and -49Ti) failed. After hot-rolling, all the FeAl showed microstructures with recrystallized coarse grains while (stoichiometric) CoTi retained a deformed microstructure. Hot-rolled (stoichiometric) NiAl showed an intermediate microstructure between FeAl and CoTi. The hot-rolling and annealing textures of FeAl essentially consisted of {111}〈u v w〉. For NiAl and CoTi, {111}〈110〉 and {111}〈112〉 were prominent in the hot-rolling texture, respectively. Both the hot-rolled NiAl and CoTi showed fully-recrystallized microstructures by subsequent annealing, but the resultant recrystallization textures were similar to their hot-rolling textures. On the other hand, grain boundary character distributions of FeAl, NiAl and CoTi with fully-recrystallized microstructures were similar to one another and characterized by a high frequency of low angle boundaries (i.e. Σ 1 boundaries). Based on these results, recrystallization and grain boundary structure of the B2-type ordered intermetallic compounds were briefly discussed.
机译:研究了B2型FeAl,NiAl和CoTi金属间化合物的热轧可加工性,织构和晶界特征分布随合金化学计量的变化。所有的FeAl(即Fe-38Al,-43Al和-48Al,以原子%表示)以及化学计量的NiAl和CoTi均在1273 K下成功热轧,但化学计量比的NiAl(Ni-48Al和-52Al)和CoTi(Co-48Ti和-49Ti)失败。热轧后,所有FeAl均显示出具有重结晶粗晶粒的微观结构,而(化学计量)CoTi保留了变形的微观结构。热轧(化学计量)NiAl表现出介于FeAl和CoTi之间的中间微观结构。 FeAl的热轧和退火织构主要由{111} 〈u v w〉组成。对于NiAl和CoTi,{111} <110>和{111} <112>分别在热轧织构中突出。通过随后的退火,热轧的NiAl和CoTi均显示出完全重结晶的显微组织,但所得的重结晶织构与它们的热轧织构相似。另一方面,具有完全重结晶的微结构的FeAl,NiAl和CoTi的晶界特征分布彼此相似,并且具有高频率的低角度边界(即∑1边界)。基于这些结果,简要讨论了B2型有序金属间化合物的重结晶和晶界结构。

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  • 来源
    《Journal of Materials Science》 |2005年第3期|733-740|共8页
  • 作者单位

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University;

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University;

    Department of Metallurgy and Materials Science Graduate School of Engineering Osaka Prefecture University;

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