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Shock loading and unloading in bismuth

机译:铋的冲击装卸

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摘要

Shock loading and unloading was performed on bismuth specimens for initial temperatures of 293 and 473 K. Wave velocity profiles transmitted through the specimen were determined with an interferometer system. The maximum pressure achieved at room temperature was sufficient to induce a polymorphic transition to the high‐pressure solid phase of bismuth. At elevated temperatures, the pressures obtained in some experiments caused partial melting during shock compression. The stress‐volume states achieved during compression at 473 K agree closely with the calculated equilibrium hydrostat, and therefore give direct evidence that melting occurs. The measured initial unloading wave velocities from the shocked state show no major change at the onset of the polymorphic transition. However, a large decrease in the initial unloading wave velocity occurs for partial melting. The volume states achieved during unloading from states of partial melt indicate that refreezing back to the initial solid phase does occur, although there appears to be substantial rate effects associated with refreezing.
机译:在初始温度为293和473 K的铋样品上进行冲击加载和卸载。通过干涉仪系统确定通过样品传输的波速剖面。在室温下达到的最大压力足以诱发铋的多晶型转变为高压固相。在升高的温度下,某些实验中获得的压力在冲击压缩过程中导致部分熔化。在473 K压缩过程中达到的应力-体积状态与计算得出的平衡静水力非常吻合,因此可以直接证明发生熔化。在多态过渡开始时,从冲击状态测得的初始卸载波速没有显示出重大变化。但是,由于部分熔化,初始卸载波速大大降低。从部分熔融状态的卸载过程中获得的体积状态表明确实发生了重新冻结回到初始固相的过程,尽管似乎存在与重新冻结相关的实质性速率效应。

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    《Journal of Applied Physics》 |1977年第7期|P.2832-2844|共13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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