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首页> 外文期刊>International journal of energetic materials and chemical propulsion >VISCOELASTIC PLASTIC MODEL AND EXPERIMENTAL VALIDATION FOR A GRANULAR ENERGETIC MATERIAL
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VISCOELASTIC PLASTIC MODEL AND EXPERIMENTAL VALIDATION FOR A GRANULAR ENERGETIC MATERIAL

机译:颗粒状能量材料的粘弹塑性模型与实验验证

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摘要

A numerical viscoelastic plastic constitutive model is proposed to simulate the non-linear behavior of a granular energetic material under quasi-static conditions. This model is restricted to an isotropic framework. It includes a damage evolution and two separate uncoupled failure criteria. The yield criterion is parabolic and based on the two first stress invariants in order to take into account the pressure. The plastic flow rule is non-associated and is introduced through a compaction/dilatancy parameter. The viscoelastic part is described by a generalized Maxwell model. The model is calibrated using an extended experimental database that includes a dynamic mechanical analysis test, cyclic compression, and tensile tests with relaxation and recovery stages. Some compressive tests include a confinement pressure. The parallel structure of the model allows for separate identification of the elastoplastic and viscoelastic parts. The model constitutive equations and its implementation in a commercial finite-element code are presented. The model validation is based on a three-point bending test and a Brazilian test. The simulations show good correlation with the uniaxial experimental results. Some discrepancies are observed between the experimental and simulated results for the Brazilian test, which are related to a biaxial load case. This highlights the induced damage anisotropy observed from cyclic tests, which is not taken into account in our model.
机译:提出了一种数值粘弹性塑性本构模型来模拟粒状高能材料在准静态条件下的非线性行为。该模型仅限于各向同性框架。它包括损害演变和两个独立的非耦合失效准则。为了考虑压力,屈服准则是抛物线的,并且基于两个第一应力不变量。塑性流动规则是不相关的,并通过压实/膨胀参数引入。粘弹性部分由广义麦克斯韦模型描述。使用扩展的实验数据库对模型进行校准,该实验数据库包括动态力学分析测试,循环压缩以及具有松弛和恢复阶段的拉伸测试。一些压缩测试包括围压。该模型的并行结构允许分别识别弹塑性和粘弹性零件。给出了模型本构方程及其在商业有限元代码中的实现。模型验证基于三点弯曲测试和巴西测试。仿真结果与单轴实验结果具有良好的相关性。在巴西测试的实验结果和模拟结果之间观察到一些差异,这与双轴载荷情况有关。这突出了从循环试验中观察到的诱发损伤各向异性,这在我们的模型中未予考虑。

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