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The Effects of Hot-Pack Coating Materials on the Pack Rolling Process and Microstructural Characteristics during Ti-46Al-8Nb Sheet Fabrication

机译:热包涂层材料对TI-46A-8NB-8NB制造过程中的轧制工艺和微观结构特性的影响

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摘要

The effects of the package materials on the hot workability and stress-strain characteristics of high-Nb TiAl alloy with a nominal composition of Ti-46Al-8Nb (in at.%) were systematically studied via “sandwich structure” hot compression. TiAl sheet fabrication was conducted by hot pack rolling, and the microstructural characteristics and deformation mechanisms were investigated. Based on the analysis of compressed samples and stress-strain curves, the stainless steel/TiAl structure showed better deformation compatibility with homogeneous deformation and decreasing resistance. However, severe interfacial reactions were inevitable. Meanwhile, for the titanium alloy/TiAl structure, few interfacial reactions happened, but wavy deformation and high resistance complicated the compression process. Finally, a package structure with an outer stainless steel isolation layer and inner titanium alloy was determined for the pack rolling process. A TiAl sheet with no crack defects was obtained with 80% reduction. The pack-rolled TiAl sheet took on alternate microstructure of the grain-boundary Al-enriched ribbons and elongated lamellar colonies ribbons. The grain-boundary recrystallized α2 phase, lumpy γ phase, and massive α2/γ lamellae could be observed, which led to the scatter microstructure. The microstructural characteristics mainly resulted from the solute segregations of as-cast Ti-46Al-8Nb alloys, which triggered the local flow softening and deformation incompatibility during hot pack rolling.
机译:通过“夹层结构”热压缩,系统地研究了封装材料对高NB Tial合金的热加工性和应力 - 应力特性的影响,通过“夹心结构”热压缩。通过热包装轧制进行TiAl片材制造,并研究了微观结构特性和变形机制。基于压缩样品和应力 - 应变曲线的分析,不锈钢/ Tial结构显示出更好的变形兼容性与均匀变形和阻力下降。然而,严重的界面反应是不可避免的。同时,对于钛合金/ Tial结构,发生了很少的界面反应,但波浪变形和高电阻复杂的压缩过程。最后,确定具有外部不锈钢隔离层和内钛合金的包装结构,用于包装轧制工艺。没有裂纹缺陷的TiAl片材,减少80%。包装轧制的Tial片材在晶界型型丝带和细长的层状菌落带上的交替微观结构上。可以观察到晶粒边界重结晶α2相2相,块状γ相和大规模α2/γ薄片,这导致了散射微观结构。微观结构特性主要是由铸造Ti-46A-8NB-8NB合金的溶质偏析引发,该溶液在热包装轧制过程中引发了局部流动软化和变形不相容性。

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