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Thermomechanical Processing of a Near-α Ti Matrix Composite Reinforced by TiB

机译:TIB加固近αTI矩阵复合材料的热机械加工

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摘要

To further improve the mechanical properties of the as-cast 7.5 vol.% TiBw/Ti–6Al–2.5Sn–4Zr–0.7Mo–0.3Si composite, multi-directional forging (MDF) and subsequent heat treatments were carried out to adjust TiB whiskers (TiBw) and matrix characteristics. The effect of various microstructures on the tensile properties and fracture toughness of the composites was analyzed in this paper. After MDF, the TiBw are broken into short rods with a low aspect ratio and display a random distribution. Moreover, distinct microstructures were obtained after thermomechanical processing and different heat treatments. Both room-temperature and high-temperature tensile strength and ductility are improved after thermomechanical processing. By increasing the solution-treatment temperature, the microstructures transform from equiaxed to fully lamellar. A simultaneous improvement of the room-temperature and high-temperature properties is associated with the microstructural changes. In addition, the fracture toughness exhibits an increasing trend as the volume fraction of equiaxial α phases decreases. The lamellar microstructure demonstrates excellent fracture toughness due to deflection of the crack propagation path.
机译:进一步改善AS-施放7.5体积的机械性能。%TIBW / TI-6AL-2.5SN-4ZR-0.7MO-0.3SI复合材料,多向锻造(MDF)和随后的热处理进行调整TIB晶须(TIBW)和矩阵特征。本文分析了各种微观结构对复合材料的拉伸性能和断裂韧性的影响。在MDF之后,TIBW被分成具有低纵横比的短杆,并显示随机分布。此外,在热机械加工和不同的热处理之后获得了不同的微观结构。在热机械加工后,室温和高温拉伸强度和延展性都得到改善。通过提高溶液处理温度,微结构从等轴转换为完全层层。同时改善室温和高温性质与微观结构变化有关。另外,随着诸如均匀α相的体积分数降低,断裂韧性表现出越来越大的趋势。由于裂缝繁殖路径的偏转,层状微观结构显示出优异的断裂韧性。

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