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Microstructure evolution of near-α titanium alloys during thermomechanical processing

机译:热加工过程中近α钛合金的组织演变

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In this work, near-α Ti-1100 alloys with TiC (1 vol.%) ceramic particles reinforcement were fabricated. After casting, ingots breakdown was performed at 1150℃. The volume fraction of the primary α-phase in the microstructure as a function of heated temperature, and the β_t temperature of this material, were examined by metallographic method. The ingots after breakdown were forged using various thermomechanical processing parameters. According to whether the deformation was performed in the β-phase field, the α + β-phase field, or the upper α-phase field, four types of hot deformation are recognized: deformation in the β-phase field; deformation started in the β-phase field and finished in α + β-phase field; deformation in α + β-phase field; deformation in the upper α-phase field. The characteristics of the microstructural evolution are different for the four types of deformation process. The final microstructures of this alloy after thermomechanical processing are depended on two factors. One is the thermomechanical processing process, and the other is the cooling process after hot deformation. The result will deepen the understanding of the microstructural characteristics of near-α titanium alloy during thermomechanical processing and optimize the microstructural control.
机译:在这项工作中,制造了具有TiC(1体积%)陶瓷颗粒增强材料的近αTi-1100合金。铸造后,在1150℃下进行铸锭分解。通过金相方法检查了微观结构中的主要α相的体积分数随加热温度的变化以及该材料的β_t温度。使用各种热机械加工参数锻造分解后的铸锭。根据是在β相场,α+β相场还是在上部α相场中进行变形,识别出四种类型的热变形:β相场中的变形;热变形。变形在β相场开始,在α+β相场结束。 α+β相场的变形; α相场的形变。对于四种类型的变形过程,微观结构演化的特征是不同的。经过热机械加工后,该合金的最终微观结构取决于两个因素。一个是热机械加工过程,另一个是热变形后的冷却过程。结果将加深对近α钛合金热机械加工过程中显微组织特性的理解,并优化显微组织控制。

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