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Microstructure and Mechanical Property Optimization of NiTiAl-based Alloys: Directional Solidification in Novel Ceramic Crucibles

机译:NiTiAl基合金的显微组织和力学性能优化:新型陶瓷坩埚中的定向凝固

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Directional solidification technique was successfully used to prepare highly reactive NiTiAl-based alloys using novel Y_(2)O_(3)-coated crucibles. Compared with the as-cast alloys fabricated by vacuum arc melting, the microstructure of the directionally solidified alloys was optimized and mechanical properties remarkably improved. After directional solidification, the microstructure of the alloys became much finer and preferentially grew along [001] orientation. The tensile strength and strain of the directionally solidified alloys at 1550°C were promoted to 1240?MPa and 2.1% respectively, which were 91.4% and 75% higher than that of the as-cast alloys. The strength increased up to 1328?MPa and 1419?MPa after homogenizing treating. The Y_(2)O_(3)-coated crucibles assured significant purification effect of the alloys. The maximum oxygen increase in the steady-state region of the ingot obtained at 1750°C was no more than 0.014?wt.%.
机译:定向凝固技术已成功用于使用新型Y_(2)O_(3)涂层坩埚制备高反应性NiTiAl基合金。与通过真空电弧熔化制备的铸态合金相比,定向凝固合金的微观结构得到优化,并且机械性能得到显着改善。定向凝固后,合金的微观结构变得更加精细,并优先沿[001]方向生长。定向凝固合金在1550°C的抗拉强度和应变分别提高到1240?MPa和2.1%,比铸态合金分别高91.4%和75%。均质处理后,强度增加到1328MPa和1419MPa。涂覆Y_(2)O_(3)的坩埚可确保合金具有显着的净化效果。在1750℃下获得的铸锭的稳态区中的最大氧增加量不超过0.014wt。%。

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