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Ultrasonic Processing for Structure Refinement: An Overview of Mechanisms and Application of the Interdependence Theory

机译:超声处理以细化结构:相互依赖理论的机理和应用概述

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摘要

Research on ultrasonic treatment (UST) of aluminium, magnesium and zinc undertaken by the authors and their collaborators was stimulated by renewed interest internationally in this technology and the establishment of the ExoMet program of which The University of Queensland (UQ) was a partner. The direction for our research was driven by a desire to understand the UST parameters that need to be controlled to achieve a fine equiaxed grain structure throughout a casting. Previous work highlighted that increasing the growth restriction factor can lead to significant refinement when UST is applied. We extended this approach to using the Interdependence model as a framework for identifying some of the factors (e.g., solute and temperature gradient) that could be optimised in order to achieve the best refinement from UST for a range of alloy compositions. This work confirmed established knowledge on the benefits of both liquid-only treatment and the additional refinement when UST is applied during the nucleation stage of solidification. The importance of acoustic streaming, treatment time and settling of grains were revealed as critical factors in achieving a fully equiaxed structure. The Interdependence model also explained the limit to refinement obtained when nanoparticle composites are treated. This overview presents the key results and mechanisms arising from our research and considers directions for future research.
机译:作者及其合作者对铝,镁和锌进行超声波处理(UST)的研究受到了国际上对该技术的重新关注并建立了昆士兰大学(UQ)的合作伙伴ExoMet计划,从而激发了人们的兴趣。我们研究的方向是由理解UST参数的愿望所驱动的,而UST参数需要进行控制才能在整个铸件中实现精细的等轴晶粒结构。先前的工作着重指出,应用UST时,增加生长限制因子可以导致重大改进。我们将这种方法扩展为使用相互依赖模型作为框架,以识别可以优化的一些因素(例如溶质和温度梯度),以实现从UST对一系列合金成分进行最佳精炼。这项工作证实了在固溶成核阶段应用UST时,仅液体处理和额外精制的好处方面的既定知识。揭示了声流,处理时间和颗粒沉降的重要性是获得完全等轴结构的关键因素。相互依赖性模型还解释了处理纳米粒子复合材料时获得的细化极限。本概述介绍了我们研究的关键结果和机制,并考虑了未来研究的方向。

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