首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Strain rate dependence of dynamic flow stress of 2017 aluminum alloy at very high strain rates
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Strain rate dependence of dynamic flow stress of 2017 aluminum alloy at very high strain rates

机译:2017铝合金在非常高的应变率下的动态流应力应变率依赖性

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摘要

To estimate the strain rate dependence of the dynamic flow stress of aluminum alloys, 2017-O and T4, high strain rate and rate reduction tests are performed at strain rates ranging from about 1000/sec to 30000/sec. A steep increase in the flow stress is observed for 2017-O at the strain rate of about 3000/sec. For 2017-T4, the above phenomenon is observed at the strain rate above about 10000/sec. A simplified model for dislocation kinetics under dynamic plastic deformation is employed which can represent a transition in the rate controlling mechanism of dislocation motion from a thermally activated process to a viscous drag. It is expected that the steep increase in the flow stress observed at high strain rates is attributed to the rate dependence of the viscous drag on the dislocation motion.
机译:为了估计铝合金动态流动应力(2017-O和T4)的应变率依赖性,在约1000 / sec至30000 / sec的应变率下进行了高应变率和速率降低测试。在约3000 / sec的应变速率下,2017-O的流动应力急剧增加。对于2017-T4,在大约10000 / sec以上的应变速率下会观察到上述现象。采用了动态塑性变形下位错动力学的简化模型,该模型可以表示位错运动的速率控制机制从热激活过程到粘性阻力的转变。可以预料,在高应变速率下观察到的流动应力的急剧增加归因于粘性阻力对位错运动的速率依赖性。

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