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Anisotropy of Tensile Properties of Extruded Magnesium Alloy AZ31

机译:挤压镁合金AZ31的拉伸性能各向异性

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摘要

The mechanical behaviour of wrought magnesium alloy AZ31 has been characterised by tensile testing at room temperature. Tests were carried out at various, strain rates between 0.00003s~(-1) and 0.01s~(-1) on material which had been extruded to a bar of approximately 6mm thick, and 80mm wide. Specimens were machined from three orientations relative to the extrusion direction: parallel, perpendicular, and 45°from the extrusion direction. Significant variations of the properties were observed depending on the extrusion orientation and strain rate. At all strain rates the yield stress declined as the test orientation was rotated away from the extrusion direction. Parallel to the extrusion direction, the yield stress was found to increases markedly with increasing strain rate, whereas at 45° and 90° a lesser influence of strain rate was observed. The work hardening exponent was also influenced by me test orientation. Metallographic studies revealed a microstructure which was predominantly recrystallized: however, some large elongated grains were observed aligned with the extrusion direction, and structure-property correlations were inferred from these observations.
机译:变形镁合金AZ31的力学性能已通过室温拉伸试验进行了表征。对已被挤压成约6mm厚和80mm宽的棒材的材料,在0.00003s〜(-1)和0.01s〜(-1)之间的各种应变速率下进行了测试。从相对于挤出方向的三个方向加工样品:平行于,垂直于和与挤出方向成45°。观察到性质的显着变化取决于挤出取向和应变速率。在所有应变率下,随着测试方向从挤出方向旋转,屈服应力都会下降。平行于挤出方向,发现屈服应力随着应变率的增加而显着增加,而在45°和90°时,观察到应变率的影响较小。工作硬化指数也受我考试方向的影响。金相研究表明,显微组织主要是重结晶的;但是,观察到一些大的拉长晶粒与挤压方向对齐,并从这些观察中推断出结构与性能的相关性。

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