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The improved properties and microstructure of β-solidify TiAl alloys by boron addition and multi steps forging process

机译:硼添加和多步锻造工艺改善β-凝固TiAl合金的性能和组织

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摘要

A novel forging process has been designed for better mechanical properties of Ti-43Al-6Nb-1Mo-1Cr-(0,0.6)B alloys in this paper. Multi step forging process could provide much finer microstructure, higher room-temperature strength, increased high-temperature strength and elongation with these alloys. The forged alloys without boron exhibit strength and elongation as 676.05 ± 11.37 MPa and 41.32 ± 1.38% at 800 °C, while the average grain size represents as 12.63 ± 3.77 μm. The forged alloys with 0.6 at.% B represent better mechanical properties than the forged alloys without boron, due to the refined microstructure with dispersive borides. Meanwhile, the detailed mechanism of increased strength and elongation caused by finer microstructure were concluded and discussed.
机译:本文设计了一种新的锻造工艺,以提高Ti-43Al-6Nb-1Mo-1Cr-(0,0.6)B合金的机械性能。这些合金的多步锻造工艺可以提供更精细的组织,更高的室温强度,更高的高温强度和伸长率。不含硼的锻造合金在800 C时的强度和延伸率分别为676.05±11.37 MPa和41.32±1.38%,平均晶粒尺寸为12.63±3.77μm。具有0.6%at。%B的锻造合金具有比不含硼的锻造合金更好的机械性能,这是由于其具有分散的硼化物的精细组织。同时,总结并讨论了由更精细的微观结构引起的强度和伸长率增加的详细机理。

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