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Micromechanics-based determination of effective elastic properties of polymer bonded explosives

机译:基于微力学的聚合物粘结炸药的有效弹性性能测定

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Polymer bonded explosives are particulate composites containing a high volume fraction of stiff elastic explosive particles in a compliant viscoelastic binder. Since the volume fraction of particles can be greater than 0.9 and the modulus contrast greater than 20 000, rigorous bounds on the elastic moduli of the composite are an order of magnitude different from experimentally determined values. Analytical solutions are also observed to provide inaccurate estimates of effective elastic properties. Direct finite element approximations of effective properties require large computational resources because of the complexity of the microstructure of these composites. An alternative approach, the recursive cells method (RCM) is also explored in this work. Results show that the degree of discretization and the microstructures used in finite element models of PBXs can significantly affect the estimated Young's moduli. (C) 2003 Elsevier B.V. All rights reserved. [References: 7]
机译:聚合物粘结炸药是颗粒状复合材料,在顺应性粘弹性粘合剂中包含高体积分数的硬质弹性炸药颗粒。由于颗粒的体积分数可以大于0.9,模量对比度大于20000,因此复合材料弹性模量的严格界限与实验确定的数值相差一个数量级。还观察到分析解决方案无法提供有效弹性特性的准确估算。由于这些复合材料微观结构的复杂性,有效特性的直接有限元逼近需要大量的计算资源。在这项工作中还探索了一种替代方法,即递归细胞方法(RCM)。结果表明,PBX的离散化程度和微观结构可显着影响估计的杨氏模量。 (C)2003 Elsevier B.V.保留所有权利。 [参考:7]

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