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Shock-Driven Decomposition of Polymers and Polymeric Foams

机译:聚合物和聚合物泡沫的冲击驱动分解

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摘要

Polymers and foams are pervasive in everyday life, as well as in specialized contexts such as space exploration, industry, and defense. They are frequently subject to shock loading in the latter cases, and will chemically decompose to small molecule gases and carbon (soot) under loads of sufficient strength. We review a body of work—most of it performed at Los Alamos National Laboratory—on polymers and foams under extreme conditions. To provide some context, we begin with a brief review of basic concepts in shockwave physics, including features particular to transitions (chemical reaction or phase transition) entailing an abrupt reduction in volume. We then discuss chemical formulations and synthesis, as well as experimental platforms used to interrogate polymers under shock loading. A high-level summary of equations of state for polymers and their decomposition products is provided, and their application illustrated. We then present results including temperatures and product compositions, thresholds for reaction, wave profiles, and some peculiarities of traditional modeling approaches. We close with some thoughts regarding future work.
机译:聚合物和泡沫在日常生活中以及在太空探索,工业和国防等特殊环境中无处不在。在后一种情况下,它们经常承受冲击载荷,并且在足够强度的载荷下会化学分解为小分子气体和碳(烟灰)。我们回顾了在极端条件下有关聚合物和泡沫的工作,其中大部分工作在洛斯阿拉莫斯国家实验室进行。为了提供一些背景,我们首先简要回顾一下冲击波物理学中的基本概念,包括特定于过渡(化学反应或相变)的特征,这些特征导致体积急剧减小。然后,我们讨论化学配方和合成,以及在冲击载荷下用于讯问聚合物的实验平台。提供了聚合物及其分解产物的状态方程的高级摘要,并举例说明了它们的应用。然后,我们介绍结果,包括温度和产物组成,反应阈值,波动曲线以及传统建模方法的一些特殊性。我们以关于未来工作的一些想法结束。

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