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Hot Working of Zirconium Alloys: Some Recent Developments

机译:锆合金的热加工:一些最新进展

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The published results on the hot deformation behaviour of zirconium and its alloys have been reviewed critically to ascertain the type of information available in the areas of hot workability and evolution of microstructure during hot deformation. It is observed that in a majority of these investigations, the emphasis was on the fundamental aspects of hot deformation such as identification of the rate controlling mechanisms, activation energy for hot working and identification of softening mechanisms. However, no systematic effort has been directed towards the optimization materials. In recent years efforts have been made to characterize the hot workability and development of microstructure during hot deformation by constructing power dissipation maps or processing maps and flow instability maps in the format of Dynamic Materials Model. The power dissipation maps and instability maps have been found very useful in optimizing the hot workability and controlling the microstructure during hot deformation of several zirconium alloys.
机译:对于锆及其合金的热变形行为,已发表的研究成果进行了严格的审查,以确定在热加工性和热变形过程中微观组织演变方面可用的信息类型。可以看出,在大多数这些研究中,重点是热变形的基本方面,例如速率控制机制的识别,热加工的活化能和软化机制的识别。但是,没有针对优化材料进行系统的努力。近年来,通过构造动态材料模型格式的功耗图或处理图和流动不稳定性图,努力表征热变形过程中的热加工性能和微观结构的发展。已经发现,功率耗散图和不稳定性图对于优化热加工性和控制几种锆合金在热变形期间的微观结构非常有用。

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