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Simulations of meso-scale deformation and damage of polymer bonded explosives by the numerical manifold method

机译:数值流形方法模拟聚合物粘结炸药的细观形变和损伤

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摘要

Polymer bonded explosive (PBX) is a particle-matix composite consisting of explosive particles, polymer matrix/binder, and the interface between the particles and the binder, and the particle volume fraction (PVF) in the PBX is extremely high. To simulate the meso-scale deformation and damage behaviors of PBX with the numerical manifold method (NMM), a bilinear cohesive contact relationship (BCCR) model with three parameters is incorporated in the NMM to describe the particle-binder interface, a visco-elastic constitutive model of prony series with 22 parameters is incorporated in the NMM to describe the polymer binder, and a fracturing algorithm based on the maximum tensile stress criterion and the Mohr Coulomb criterion is employed to describe the fracturing failures of the particles as well as the binder. The PBX meso-scale deformation and damage process of microcrack initiation, crack propagation and formation of crack bands under tensile or compressive conditions are studied through NMM simulations, and the influenes of the PVF and the explosive particle geometrical distribution (PGD) on PBX mechanical performaces are specially investigated. This work enables and proves the NMM to be an promissing roubust numerical tool for further simulation studies of the meso-scale mechanical performances of PBX, as well as other particle-fillled polymer composites.
机译:聚合物粘结炸药(PBX)是由炸药颗粒,聚合物基体/粘合剂以及颗粒与粘合剂之间的界面组成的颗粒-混合物混合物,PBX中的颗粒体积分数(PVF)非常高。为了用数值流形方法(NMM)模拟PBX的细观形变和破坏行为,在NMM中结合了具有三个参数的双线性内聚接触关系(BCCR)模型,以描述颗粒-粘合剂界面,一种粘弹性在NMM中引入了具有22个参数的prony级本构模型来描述聚合物粘合剂,并基于最大拉应力准则和Mohr Coulomb准则的断裂算法来描述颗粒和粘合剂的断裂破坏。 。通过NMM模拟研究了PBX在拉伸或压缩条件下微裂纹萌生,裂纹扩展和裂纹带形成的细观形变和破坏过程,以及PVF的影响和爆炸颗粒的几何分布(PGD)对PBX机械性能的影响。经过专门调查。这项工作使并证明了NMM是用于进一步模拟PBX以及其他填充颗粒的聚合物复合材料的中尺度机械性能的可靠的鲁棒数值工具。

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