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首页> 外文期刊>International journal of structural integrity >The Shockwave dispersion/ attenuation potential of a protective structure made of a chemically reactive mixture:A continuum-level analysis
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The Shockwave dispersion/ attenuation potential of a protective structure made of a chemically reactive mixture:A continuum-level analysis

机译:化学反应性混合物制成的防护结构的冲击波色散/衰减电位:连续水平分析

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Purpose - In the recent work, a new blast-wave impact-mitigation concept involving the use of a protective structure consisting of bimolecular reactants (polyvinyl pyridine + cyclohexyl chloride), capable of undergoing a chemical reaction (to form polyvinyl pyridinium ionic salt) under shockwave loading conditions, was investigated using all-atom reactive equilibrium and non-equilibrium molecular-dynamics analyses. The purpose of this paper is to reveal the beneficial shockwave dispersion/attenuation effects offered by the chemical reaction, direct simulations of a fully supported single planar shockwave propagating through the reactive mixture were carried out, and the structure of the shock front examined as a function of the extent of the chemical reaction (i.e. as a function of the strength of the incident shockwave). The results obtained clearly revealed that chemical reactions give rise to considerable broadening of the shockwave front. In the present work, the effect of chemical reactions and the structure of the shockwaves are investigated at the continuum level. Design/methodology/approach - Specifically, the problem of the (conserved) linear-momentum accompanying the interaction of an incident shockwave with the protective-structure/protected-structure material interface has been investigated, within the steady-wave/structured-shock computational framework, in order to demonstrate and quantify an increase in the time period over which the momentum is transferred and a reduction in the peak loading experienced by the protected structure, both brought about by the occurrence of the chemical reaction (within the protective structure). Findings - The results obtained clearly revealed the beneficial shock-mitigation effects offered by a protective structure capable of undergoing a chemical reaction under shock-loading conditions. Originality/value - To the authors' knowledge, the present manuscript is the first report dealing with a continuum-level analysis of the blast-mitigation potential of chemical reactions.
机译:目的-在最近的工作中,一种新的冲击波冲击减轻概念涉及使用由双分子反应物(聚乙烯基吡啶+环己基氯)组成的保护结构,该结构能够在以下条件下发生化学反应(形成聚乙烯基吡啶鎓离子盐)使用全原子反应平衡和非平衡分子动力学分析研究了冲击波的加载条件。本文的目的是揭示化学反应提供的有益的冲击波色散/衰减效果,对通过反应混合物传播的完全支撑的单个平面冲击波进行了直接模拟,并将冲击波前沿的结构作为函数进行了检验。化学反应的程度(即作为入射冲击波强度的函数)。得到的结果清楚地表明,化学反应引起冲击波前沿的相当大的拓宽。在目前的工作中,在连续水平上研究了化学反应的影响和冲击波的结构。设计/方法/方法-特别是,在稳态波/结构冲击计算中,研究了伴随入射冲击波与保护结构/受保护结构材料界面相互作用的(守恒)线性动量问题。为了证明并量化动量传递时间的增加和受保护结构所经历的峰值载荷的降低,两者都是由化学反应的发生(在保护结构内)引起的。发现-获得的结果清楚地表明了能够在冲击载荷条件下发生化学反应的保护性结构所带来的有益的减震效果。原创性/价值-就作者所知,本手稿是有关化学反应爆炸缓解潜力的连续水平分析的第一份报告。

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