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Dynamic Response of Aluminum

机译:铝的动态响应

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摘要

The dynamic stress‐strain relation of aluminum was measured in compression to a stress of 22 kbar using plate impacts to induce uniaxial strain. The results were compared to a uniaxial strain curve constructed from elastic moduli and quasistatically determined stress‐strain curves. The dynamically determined stress‐strain relation was not unique in that it varied as a function of the magnitude of the induced stress and was offset from the quasistatic curve. These small deviations are attributed to strain rate effects. The rate effects were further demonstrated by observing the transmission of an elastic compression stress wave in aluminum after the aluminum was dynamically stressed beyond the yield point and held at constant strain for a period of approximately 2 μsec. The dynamic stress‐strain relation was measured upon the release of a shock induced compressive stress of 10.5 kbar to a tension of -9 kbar by observing the effects of tensile stress waves. The deviation of the unloading stress‐strain relation from that predicted by simple elastic‐plastic theory is attributed to strain rate and Bauschinger effects.
机译:铝的动态应力-应变关系是通过板撞击产生单轴应变而在压缩至22 kbar应力下测量的。将结果与由弹性模量和准静态确定的应力应变曲线构成的单轴应变曲线进行比较。动态确定的应力-应变关系不是唯一的,因为它随诱导应力的大小而变化,并且偏离准静态曲线。这些小的偏差归因于应变率效应。速率效应通过观察铝中的弹性压缩应力波的传递而进一步证明,该应力在铝受到动态应力超过屈服点并保持恒定应变约2微秒的时间后发生。通过观察拉应力波的影响,在10.5 kbar的冲击引起的压缩应力释放到-9 kbar的张力时,测量了动态应力-应变关系。卸载应力-应变关系与简单弹塑性理论所预测的偏离是由于应变率和包辛格效应引起的。

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    《Journal of Applied Physics》 |1964年第4期|共10页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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