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Peierls-Nabarro stresses of dislocations in monoclinic cyclotetramethylene tetranitramine (beta-HMX)

机译:Peierls-nabarro单岩环四亚甲基四硝胺(Beta-HMX)的脱位胁迫

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摘要

HMX (cyclotetramethylene tetranitramine) is an energetic material which releases substantial amounts of energy upon decomposition. The role of defects and deformation in causing reaction initiation was discussed in the literature but remains insufficiently understood. In this work, we identify, using computational methods, the slip systems which are potentially active in beta-HMX and rank them in terms of their propensity for slip. To this end, we develop first a tentative ranking based on the degree of steric hindrance associated with slip. This is quantified using a geometric analog of the gamma-surface. Further, we use atomistic models to compute the Peierls-Nabarro (PN) stress for the motion of dislocations in the slip systems with smallest degree of steric hindrance. A complex mechanical behavior is observed, including strong slip asymmetry, twinning and cleavage. The five systems with the lowest PN stress are (011)[011], (011)[100], (101)[010], (101)[101] and (021)[100]. We conclude that the material has enough slip systems available for supporting a generalized state of plastic strain provided the twinning system (101)[101] is taken into consideration and that the resolved shear stress is at least 260 MPa.
机译:HMX(环四亚甲基四硝胺)是一种能量材料,其在分解时释放大量能量。文献中讨论了缺陷和变形在引起反应开始时的作用,但仍然不充分理解。在这项工作中,我们使用计算方法来识别诸如Beta-HMX中可能活跃的滑动系统,并根据其滑动倾向进行排序。为此,我们根据与滑动相关的空间障碍程度开发出初步排名。这是使用伽马表面的几何模拟量化的。此外,我们使用原子型模型来计算Peierls-nabarro(pn)应力,用于具有最小的空间障碍程度的滑移系统中的错位运动。观察到复杂的机械行为,包括强滑动不对称,孪生和切割。具有最低PN应力的五种系统(011)[011],(011)[100],(101)[010],(101)[101]和(021)[100]。我们得出结论,该材料具有足够的滑动系统可用于支撑塑料应变的广义状态,所以考虑孪晶系统(101)[101],并且分离的剪切应力是至少260MPa。

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