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Effect of strain rate on the compressive mechanical behavior of a continuous alumina fiber reinforced ZE41A magnesium alloy based composite

机译:应变速率对连续氧化铝纤维增强ZE41A镁合金基复合材料压缩力学性能的影响

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摘要

The compressive mechanical response of an FP™ continuous fiber (35 vol.%) Mg composite has been determined in the transverse and longitudinal directions at quasi-static and high strain rates. It was found that the composite in the transverse direction exhibited strain rate sensitivity of the flow stress and maximum stress within the studied strain-rate range of 1.3 × 10−4 to 1550 s−1. The failure strain in this direction, however, decreased with increasing strain rate. Microscopic observations on the failed samples have shown that the composite failed by shear banding along the diagonal axis, 45° to the loading axis. Twinning was observed in the deformed cross-sections of the samples particularly in and near the shear band region. The strain rate sensitivity of the fracture stress of the composite in transverse direction is attributed to the matrix strain rate sensitivity. In the longitudinal direction, the composite failed by kink formation at quasi-static strain rates, while kinking and splitting were observed at the high strain rates. The maximum stress in the longitudinal direction was, however, found to be strain rate insensitive within the strain rate regime of 1.3 × 10−4 to 500 s−1. In this direction, similar to transverse direction, twinning was observed in the highly deformed kink region. Several different reasons are proposed for the strain rate insensitive compressive strength in this direction.
机译:已在准静态和高应变速率下在横向和纵向确定了FP™连续纤维(35%(体积))Mg复合材料的压缩机械响应。结果表明,在所研究的应变速率范围为1.3×10-4至1550 s-1的情况下,复合材料在横向方向上表现出对流动应力和最大应力的应变速率敏感性。但是,沿该方向的破坏应变随着应变率的增加而减小。对失效样品的微观观察表明,复合材料通过沿与载荷轴成45°的对角轴的剪切带断裂而失效。在样品的变形截面中观察到孪生,特别是在剪切带区域内和附近。复合材料在横向上的断裂应力的应变率敏感性归因于基体应变率敏感性。在纵向上,复合材料由于在准静态应变率下形成扭结而失效,而在高应变率下观察到扭结和分裂。然而,在1.3×10-4至500 s-1的应变速率范围内,发现纵向最大应力对应变速率不敏感。在这个方向上,类似于横向方向,在高度变形的扭结区域中观察到孪晶。对于该方向上的应变率不敏感的抗压强度,提出了几种不同的原因。

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