Abstrac'/> Numerical mesoscopic investigations of dynamic damage and failure mechanisms of polymer bonded explosives
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Numerical mesoscopic investigations of dynamic damage and failure mechanisms of polymer bonded explosives

机译:聚合物粘结炸药动态损伤和失效机制的数值介观研究

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AbstractA damage elasto-viscoplastic model has been developed for cyclotetramethylenetetranitramine (HMX) crystals, which considers the anisotropy nature of HMX crystals and dislocation-mediated plasticity as well as the cleavage damage. A damage viscoelastic model has been developed for the polymer binder and the interface, which captures rate dependent damage due to binder rupture and binder debonding during the loading process. The proposed models were implemented in the finite element code ABAQUS by the user subroutine VUMAT. Macroscopic mechanical responsesof Polymer Bonded explosives (PBXs) 9501 homogenized across the microstructure is generally in agreement with Split Hopkinson Pressure Bar (SHPB) experimental stress-strain responsesat the strain rate of 2000?s?1. Microstructural heterogeneity is responsible for the non-uniform stress, strain and damage fields. Crystal fracture is the dominant failure mechanism under dynamic compression while interfacial debonding plays a more important role under dynamic tension. Mesoscale modeling results along with macroscopic responses are significantly important to have a better understanding of deformation, damage and failure mechanisms of PBX samples under dynamic loading and to improve our predictive ability.]]>
机译:<![cdata [ Abstract 已经开发了损伤的弹性粘塑料模型用于环旋过甲基四硝基硝胺(HMX)晶体,其考虑了HMX晶体的各向异性性质和脱位介导的可塑性以及裂解损坏。已经为聚合物粘合剂和界面开发了损伤的粘弹性模型,其由于粘合剂破裂和装载过程中的粘合剂剥离而捕获速率依赖性损伤。所提出的模型由用户子程序VUMAT在有限元代码ABAQU中实现。宏观机械响应 s 通常与分裂霍普金森压力棒(SHPB)实验应力 - 应变反应协议 S 以2000的应变率为2000?s ?1 。微观结构异质性负责非均匀应力,应变和损伤场。晶体骨折是动态压缩下的主要故障机制,而界面剥离在动态张力下发挥了更重要的作用。 Messcale建模结果随着宏观反应的显着理解在动态负载下更好地了解PBX样品的变形,损伤和失效机制,提高了我们的预测能力。 ]]>

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