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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >An Overview of the Thermomechanical Processing of alpha/beta Titanium Alloys: Current Status and Future Research Opportunities
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An Overview of the Thermomechanical Processing of alpha/beta Titanium Alloys: Current Status and Future Research Opportunities

机译:α/β钛合金热机械加工概述:现状和未来研究机会

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摘要

Current understanding of the principles underlying the thermomechanical processing (TMP) of alpha/beta titanium alloys is reviewed. Attention is focused on the formulation of constitutive descriptions for plastic flow under hot-working conditions, the evolution of microstructure, the occurrence of defects, and novel/emerging TMP techniques. With regard to constitutive behavior, descriptions of the plastic flow of the individual phases and two-phase alloys per se are summarized. The important influence of phase morphology, size, and volume fraction on plastic flow is emphasized. Mechanisms which underlie microstructure evolution include beta recrystallization (in the high-temperature beta field), the development of dislocation substructure and its effect on dynamic and static spheroidization of colony microstructures (in the two-phase field), static and dynamic coarsening of primary alpha, and the development of deformation and transformation textures. In the area of defects, the effect of TMP variables and starting microstructure on the formation of cavities, the persistence of microtexture, and the development of undesirably-coarse beta grain structures are described. The current status of relatively new processing techniques for alpha/beta titanium alloys such as low-temperature superplastic forming and solid-state joining (via linear friction or friction-stir methods) are also briefly reviewed. Last, R&D which could help to resolve deficiencies in the current knowledge base for TMP of alpha/beta titanium alloys are summarized for each of the areas.
机译:综述了目前对α/β钛合金热机械加工(TMP)的原理的理解。注意力集中在热工作条件下的塑性流动的构成描述的配方,微观结构的演化,缺陷的发生以及新颖/新兴的TMP技术。关于组成型行为,总结了单个阶段的塑料流动和本身的两相合金的描述。强调了相位形态,大小和体积分数对塑性流动的重要影响。提高微观结构演化的机制包括β重结晶(在高温β场),位错子结构的发展及其对菌落微观结构的动态和静态球化(在两相场中的静态球化的影响,静态和动态粗发以及变形和转化纹理的发展。在缺陷面积中,描述了TMP变量和起始微观结构对腔体形成的影响,微调的持久性以及不期望的粗β晶粒结构的发展。还简要介绍了α/β钛合金的相对较新的处理技术的当前状态,例如低温超塑性成形和固态连接(通过线性摩擦或摩擦搅拌方法)。最后,对于每个地区,总结了有助于解决目前α/β钛合金TMP的知识基础的缺陷。

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