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Effects of initial microstructure and deformation method on grain refinement in a Cu-Cr-Zr alloy

机译:初始微观结构和变形方法对Cu-Cr-Zr合金中晶粒细化的影响

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The development of submicrocrystalline structure in a Cu-0.3wt.%Cr-0.5wt.%Zr during multidirectional forging (MDF) and equal channel angular pressing (ECAP) was investigated in comparison. A large number of strain-induced subboundaries with low-angle misorientations appeared at early deformation. The subsequent straining led to an increase in the misorientations of these subboundaries, resulting in the formation of submicrocrystalline structure at sufficiently large strains. The process of microstructural evolution can be considered as continuous dynamic recrystallization. MDF provided faster kinetics of new ultrafine grain formation as compared to ECAP. The fraction of ultrafine grains with a size below 2 urn comprised 0.59 or 0.23 after MDF or ECAP to a total strain of 4, respectively. The grain refinement kinetics could be accelerated by the presence of second phase precipitates. The fraction of ultrafine grains after MDF to a strain of 4 achieved 0.36 or 0.59 in the solution treated or aged samples, respectively.
机译:Cu-0.3wt中亚晶体晶体结构的发展。[多向锻造(MDF)期间的CR-0.5wt。%Zr。相比,研究了多向锻造(MDF)和等沟角压(ECAP)期间。在早期变形时出现了大量具有低角度杂志的应变引起的亚派对。随后的紧张导致这些亚派对的错误化的增加,导致在足够大的菌株中形成亚微晶结构。微观结构进化的过程可以被认为是连续的动态再结晶。与ECAP相比,MDF提供了新的超细晶粒形成的更快动力学。尺寸低于2 URN的超细晶粒的级分,在MDF或ECAP以0.59或0.23之后分别为4的总菌株。通过第二相沉淀物的存在,可以加速晶粒细化动力学。在溶液处理或老化的样品中,MDF在4的菌株至4的菌株后的超细晶粒的级分。

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