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HETEROGENEOUS MICROSTRUCTURAL EVOLUTION AND REACTIONS DURING REPEATED INTENSE DEFORMATION

机译:重复强度变形过程中的异相微结构演变和反应

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With the recent improvements in severe plastic deformation and cold rolling, deformation processing has become an alternative to rapid-solidification processing for the synthesis of bulk metastable structures. The systematic study of the deformation patterns that develop during repeated rolling of multilayer based on a stacked elemental crystalline array including the analysis of interface areas and the evolution of interface roughening, offers an effective approach to the examination of the mechanism involved in deformation alloying, nanostructure synthesis and amorphization. A key-factor for deformation-induced phase transformations is the occurrence of atomic scale mixing effects at interfaces. The results from cold rolling experiments on Al-Pt and Al-Hf alloys demonstrate that the overall multilayer refinement represents an essential component for the prediction of amorphization by cold rolling in addition to the heat of mixing and a deformation enhanced mixing kinetics at individual interfaces. The effect of cold rolling on the devitrification behavior of Al-based glasses has also been addressed in a systematic study. For marginal glass formers, such as melt-spun Al_(88)Y_7Fe_5, cold rolling induced a complete crystallization without annealing while for melt-spun Al_(85)Ni_(10)Ce_5, a crystalline phase has not been observed under the same deformation conditions. The structural changes are observed to develop heterogeneously throughout the sample over several deformation cycles due to the distribution of microstructural size scales. These developments highlight the importance of the localized microstructural response to the overall sample deformation.
机译:随着近来严重的塑性变形和冷轧的改进,变形处理已成为用于合成亚稳结构的快速凝固处理的替代方法。对基于堆叠的元素晶体阵列的多层重复轧制过程中形成的变形模式的系统研究,包括对界面区域的分析和界面粗糙化的演变,为检验涉及变形合金化,纳米结构的机理提供了一种有效的方法合成和非晶化。变形引起的相变的关键因素是界面处原子尺度混合效应的发生。在Al-Pt和Al-Hf合金上进行冷轧实验的结果表明,除了混合热和单个界面处变形增强的混合动力学外,整个多层细化工艺是预测冷轧非晶化的重要组成部分。一项系统研究也已经解决了冷轧对铝基玻璃的失透行为的影响。对于边缘玻璃成形器,例如熔纺Al_(88)Y_7Fe_5,冷轧诱导完全结晶而没有退火,而对于熔纺Al_(85)Ni_(10)Ce_5,在相同变形下未观察到晶相条件。由于微观结构尺寸尺度的分布,观察到在几个变形周期中整个样品的结构变化均不均匀。这些发展突显了局部微结构响应对整体样品变形的重要性。

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