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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructural Evolution and Mechanical Properties of Ti-22Al-25Nb (At.%) Orthorhombic Alloy with Three Typical Microstructures
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Microstructural Evolution and Mechanical Properties of Ti-22Al-25Nb (At.%) Orthorhombic Alloy with Three Typical Microstructures

机译:三种典型微结构Ti-22al-25nb(atthiply)正交合金的微结构演化与力学性能

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摘要

Microstructural evolution, tensile and creep behavior of Ti-22Al-25Nb (at.%) orthorhombic alloy with three typical microstructures were investigated. The three typical microstructures were obtained by different solution and age treatment temperatures and analyzed by the BSE technique. The tensile strengths of the alloy at room temperature and 650 A degrees C were investigated. The creep behaviors of the three typical microstructures were also studied at 650 A degrees C/150 MPa for 100 h in air. The phase transformation mechanisms in creep deformation were also found. The experimental results showed that the formations of the three typical microstructures were decided by the isothermal forging and heat treatment. It was supposed that the high-temperature solution treatment might be dominant for the volume fraction and diameter of the equiaxed particles. While the double age treatment would lead to lamellar O phases. Due to grain refinement strengthening, the equiaxed microstructure presented the best tensile strength and ductility. The fully lamellar microstructure had the best creep resistance than that of other microstructures. In this paper, the phenomenon of creep-induced alpha (2) phase decomposition was occurred during creep deformation of the equiaxed microstructure.
机译:研究了Ti-22al-25nb(atthiply)正交合金的微结构演化,拉伸和蠕变行为,具有三种典型微结构的正交合金。通过不同的溶液和年龄处理温度获得三种典型的微观结构,并通过BSE技术分析。研究了室温下合金的拉伸强度和650℃。在空气中,还在650℃/ 150MPa下研究了三种典型微观结构的蠕变行为。还发现了蠕变变形中的相变机制。实验结果表明,三种典型微观结构的形成由等温锻造和热处理决定。假设高温溶液处理可能是平衡颗粒的体积分数和直径的显性。虽然双年龄治疗会导致层状o阶段。由于晶粒细化强化,等轴微观结构呈现了最佳的拉伸强度和延展性。完全层状组织具有比其他微结构的抗蠕变性最佳。在本文中,在等轴微结构的蠕变变形期间发生蠕变诱导的α(2)相分解的现象。

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