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首页> 外文期刊>Materials Characterization >Increased structural stability in twin-roll cast AZ31 magnesium alloy processed by equal channel angular pressing
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Increased structural stability in twin-roll cast AZ31 magnesium alloy processed by equal channel angular pressing

机译:通过相等通道角压加工的双辊铸造AZ31镁合金的结构稳定性增加

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摘要

The present paper reports an effect of ECAP on the microstructure of the AZ31 magnesium alloy prepared in two conditions: conventionally cast and twin-roll cast. Subsequently, the thermal stability of fine-grained conditions was investigated with a special regard to microhardness, grain structure and dislocation density changes. Similar processing conditions of ECAP resulted in achieving similar average grain size for both initial conditions regardless differences in the initial microstructure. The only difference in the microstructure of a fine-grained condition was a distribution of beta-Al12Mg17 secondary phase particles. Isochronal annealing in the temperature range 160-500 degrees C showed differences in the response of individual fine-grained samples to the temperature increase. It was proven that these differences primarily originated from the different distribution of secondary phase particles, which significantly affected static recovery and grain growth. Consequently, the thermal stability of fine-grained structure was much better in twin-roll cast samples in the temperature range 220-340 degrees C. Exceeding 340 degrees C, accelerated dissolution of beta-Al12Mg17 phase resulted in a similar evolution of all studied parameters showing that distribution of secondary phase particles is a crucial parameter of thermal stability of fine-grained AZ31 magnesium alloy.
机译:本文报告了ECAP对两个条件制备的AZ31镁合金的微观结构的影响:常规铸造和双辊铸造。随后,研究了微硬度,晶粒结构和位错密度变化的特殊考虑细粒病变的热稳定性。类似的ECAP的加工条件导致初始条件的初始条件的平均平均晶粒尺寸达到初始微观结构的差异。细粒状况的微观结构的唯一差异是β-Al12Mg17二次相颗粒的分布。在160-500℃的温度范围内的同胞转换显示出各个细粒样品对温度升高的响应的差异。据证明,这些差异主要来自二次相颗粒的不同分布,这显着影响了静态回收和晶粒生长。因此,在220-340℃的温度范围内的双辊浇铸样品中,细粒结构的热稳定性好得多。超过340℃,β-Al12mg17阶段的加速溶解导致所有研究的参数的类似演变显示二次相颗粒的分布是细粒粒子AZ31镁合金的热稳定性的关键参数。

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