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Shock response of magnesium single crystals at normal and elevated temperatures

机译:镁单晶在常温和高温下的冲击响应

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摘要

A series of magnesium single crystals, from 0.2 to 3 mm thick, were shock loaded in directions parallel and perpendicular to the c-axis of the hexagonal closed packed (hcp) structure and at 45° to the c-axis. Shock compression along the c-axis is associated with the largest Hugoniot elastic limit (HEL) for this material. Microscopic observation of recovered c-cut samples demonstrated intense twinning with a greater density of twins near the impact surface. The low-energy basal slip was activated by shock loading along the inclined direction and has the smallest HEL. In all cases, we observe the decay of the elastic precursor wave and growth of the HEL with increasing temperature. For the inclined shock compression after the HEL, two plastic waves were found where the stress level of the first plastic wave depends on the peak shock stress. Finally, the largest spall strength was along the transversal direction and the smallest in the off-axis direction. The fracture surface of the sample of transversal orientation contains numerous groves oriented along the base planes of the crystals.
机译:一系列厚度为0.2至3 mm的镁单晶在与六方密堆积(hcp)结构的c轴平行且垂直的方向上且与c轴成45°的方向受到冲击载荷。沿c轴的冲击压缩与此材料的最大Hugoniot弹性极限(HEL)有关。显微镜下观察到回收的c-cut样品显示出强烈的孪晶,在冲击表面附近有更高的孪晶密度。低能量基础滑移是由沿倾斜方向的冲击载荷激活的,并且具有最小的HEL。在所有情况下,随着温度的升高,我们观察到弹性前驱波的衰减和HEL的增长。对于HEL之后的倾斜冲击压缩,发现了两个塑性波,其中第一个塑性波的应力水平取决于峰值冲击应力。最后,最大的剥落强度沿横向,最小的沿离轴方向。横向取向样品的断裂表面包含许多沿晶体底面取向的凹槽。

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