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Microstructure Tensile and Creep Behaviors of Ti-22Al-25Nb (at.) Orthorhombic Alloy with Equiaxed Microstructure

机译:具有等轴组织的Ti-22Al-25Nb(at。%)正交晶合金的组织拉伸和蠕变行为

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摘要

This article investigates the tensile and creep behaviors of the Ti-22Al-25Nb (at.%) alloy with equiaxed microstructure. The experimental results show that the equiaxed microstructures are formed by isothermal forging in the α2 + B2 + O phase region, and then heat treating in α2 + B2 + O and B2 + O phase regions. The equiaxed particles are determined by isothermal forging and solution heat treating, and the acicular O phase is obtained by adjusting the aging temperature. The strengths of the alloy are sensitive to the thickness of the secondary acicular O phase. Increase in aging temperature improves strength and reduces the ductility. Deformation of the alloy mainly depends on the volume fraction and deformability of the B2 phase. During the high-temperature tensile deformation, the flow stress decreases with the increasing deformation temperature and increases with the increasing strain rate. The microstructure obtained by higher aging temperature (HT-840) has better creep resistance, due to the coarsening of the secondary acicular O phase.
机译:本文研究了具有等轴组织的Ti-22Al-25Nb(at。%)合金的拉伸和蠕变行为。实验结果表明,通过等温锻造α2+ B2 + O相区,然后在α2+ B2 + O和B2 + O相区进行热处理,形成了等轴组织。通过等温锻造和固溶热处理确定等轴颗粒,并通过调节时效温度获得针状O相。合金的强度对第二针状O相的厚度敏感。时效温度的升高会提高强度并降低延展性。合金的变形主要取决于B2相的体积分数和可变形性。在高温拉伸变形过程中,流变应力随变形温度的升高而减小,随应变率的升高而增大。由于次级针状O相的粗化,较高的时效温度(HT-840)获得的显微组织具有较好的抗蠕变性。

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