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Shock compression of pyrolytic graphite to 18GPa: Role of orientational order

机译:热解石墨的冲击压缩至18GPa:取向顺序的作用

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Shock wave response of highly-oriented pyrolytic graphite (HOPG) compressed to stresses above the phase transformation onset (~20GPa) depends strongly on the HOPG orientational order [Erskine and Nellis, Nature 349, 317 (1991)]. To gain insight into this finding, which is not understood, and because corresponding results do not exist at stresses below the transition stress, the shock compression responses of three grades of pyrolytic graphite, differing in their orientational order, were examined at peak stresses below ~20 GPa. Measured wave profiles and the corresponding end states reveal significant differences in the shock wave response of highly oriented ZYB-grade HOPG, less oriented ZYH-grade HOPG, and as-deposited pyrolytic graphite (PG). For peak stresses above 9 GPa, ZYB-grade HOPG exhibits a two-wave structure (elastic-inelastic response); the large elastic wave amplitudes for ZYB-grade increase linearly with peak stress, reaching 16 GPa for a peak stress of 18 GPa. In contrast, ZYH-grade HOPG and PG exhibit single (overdriven) wave profiles, due to considerably smaller elastic limits, at all peak stresses. Measured peak states show that PG is more compressible than ZYB- and ZYH-grade HOPG. Our results show that orientational order plays a significant role in the shock wave response of pyrolytic graphite over a broad range of stresses below the transition stress (~20 GPa). This finding agrees well with the orientational order effects observed above the phase transition onset. The ZYB-grade HOPG, the only pyrolytic graphite that showed a clear phase transition response above ~20 GPa in the work by Erskine and Nellis, is also the only pyrolytic graphite that displayed a large elastic limit which increases with peak stress. The latter finding suggests that the rapid phase change observed in shocked ZYB-grade HOPG may be a consequence of the large elastic compression observed for this orientational order.
机译:高取向热解石墨(HOPG)的冲击波响应被压缩到高于相变开始(〜20GPa)的应力,在很大程度上取决于HOPG的取向顺序[Erskine and Nellis,Nature 349,317(1991)]。为了深入了解这一发现,这是未知的,并且由于在低于转变应力的应力下不存在相应的结果,因此在峰值应力低于〜的情况下,研究了三种不同方向取向的热解石墨的冲击压缩响应。 20 GPa。测得的波形和相应的最终状态表明,高度取向的ZYB级HOPG,取向较低的ZYH级HOPG和沉积的热解石墨(PG)的冲击波响应存在显着差异。对于9 GPa以上的峰值应力,ZYB级HOPG表现出两波结构(弹性-非弹性响应)。 ZYB级的大弹性波振幅随峰值应力线性增加,对于18 GPa的峰值应力达到16 GPa。相比之下,ZYH级HOPG和PG由于在所有峰值应力下的弹性极限要小得多,因此呈现出单一(过驱动)的波形。测得的峰态表明,PG比ZYB级和ZYH级HOPG更可压缩。我们的结果表明,在低于转变应力(〜20 GPa)的宽范围应力下,取向顺序在热解石墨的冲击波响应中起着重要作用。这一发现与相变开​​始以上观察到的取向顺序效应非常吻合。 ZYB级HOPG是Erskine和Nellis的工作中唯一在20 GPa以上显示出清晰的相变响应的热解石墨,也是唯一显示出较大弹性极限并随峰值应力而增加的热解石墨。后一个发现表明,在震荡的ZYB级HOPG中观察到的快速相变可能是针对该取向顺序观察到的大弹性压缩的结果。

著录项

  • 来源
    《Journal of Applied Physics 》 |2013年第9期| 093515.1-093515.10| 共10页
  • 作者单位

    Institute for Shock Physics and Department of Physics, Washington State University, Pullman, Washington 99164, USA;

    Institute for Shock Physics and Department of Physics, Washington State University, Pullman, Washington 99164, USA;

    Institute for Shock Physics and Department of Physics, Washington State University, Pullman, Washington 99164, USA;

  • 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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