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Microstructure and superplasticity of AZ31 sheet fabricated by differential speed rolling

机译:差速轧制AZ31板材的组织和超塑性

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摘要

Microstructure evolution and superplasticity in AZ31 alloy by differential speed rolling (DSR) with a highspeed ratio (=3) between the upper and lower rolls was examined. With increase in thickness reduction by DSR at 473 K, degree of grain refinement and microstructure homogeneity increased. The microstructure obtained by a single rolling pass for a 70% reduction in thickness consisted of recrystallized grains with a mean size of ~2 μm, and fraction of HAGBs and average misorientation angle determined by the EBSD analysis were 0.47 and 23.21°, respectively. The DSR AZ31 alloy exhibited enhanced superplasticity as compared with the conventionally processed AZ31. A maximum elongation of 830% was obtained at 2 × 10~(-4) s~(-1) and 673 K. The strain hardening exponent measured at 2 × 10~(-4) s~(-1) and 673 K was as high as 0.71, which could be related to accelerated grain growth in the highly refined microstructure during superplastic flow.
机译:研究了通过上下辊之间的高速比(= 3)的差速轧制(DSR)在AZ31合金中的组织演变和超塑性。随着DSR在473 K下的减薄厚度增加,晶粒细化程度和微观结构均匀性增加。通过单道次轧制获得的厚度降低70%的组织由平均粒径约为2μm的重结晶晶粒组成,通过EBSD分析测得的HAGBs比例和平均取向差角分别为0.47和23.21°。与常规加工的AZ31相比,DSR AZ31合金具有增强的超塑性。在2×10〜(-4)s〜(-1)和673 K下获得最大伸长率830%。在2×10〜(-4)s〜(-1)和673 K下测得的应变硬化指数。该值高达0.71,这可能与超塑性流动过程中高度细化的微结构中晶粒加速生长有关。

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