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Effects of rolling conditions on the microstructure and mechanical properties in a Mg-Al-Ca-Mn-Zn alloy sheet

机译:轧制条件对Mg-Al-Ca-Mn-Zn合金薄板组织和力学性能的影响

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摘要

Mg-1.2Al-0.3Ca-0.4Mn-0.3Zn (AXMZ1000) (wt%) alloy was rolled in three different conditions in order to understand the effects of the rolling conditions on the microstructure and mechanical properties. The sheet subjected to high temperature reheating at 500 degrees C for 5 min prior to each 100 degrees C rolling delivers the highest Index Erichsen (I.E.) value of 7.0 mm. The sheet rolled at 300 degrees C with 500 degrees C reheating for 5 min delivers the lowest I.E value of 5.4 mm, while the sheet continuously rolled at the same temperature shows a moderate I.E. value of 6.0 mm. Systematic observations of the microstructures of T4-treated and 3 mm stretched formed samples reveal that the large stretch formability of the sheet rolled at 100 degrees C with 500 degrees C reheating is associated the weak basal texture and fine-grained microstructure.
机译:Mg-1.2Al-0.3Ca-0.4Mn-0.3Zn(AXMZ1000)(wt%)合金在三种不同的条件下进行轧制,以了解轧制条件对组织和力学性能的影响。在每100摄氏度下轧制之前,在500摄氏度下进行5分钟高温再加热的片材具有7.0毫米的最高指数埃里克森(I.E.)值。在300摄氏度下经500摄氏度再加热5分钟轧制的薄板的最低I.E值为5.4 mm,而在相同温度下连续轧制的薄板的I.E.值6.0毫米。对T4处理和3 mm拉伸成形样品的微观结构的系统观察表明,在100℃轧制并经500℃加热的情况下,板材的较大拉伸成形性与较弱的基础织构和细晶粒的微观结构有关。

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