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Numerical study of damage in particulate composites during high-strain rate loading using novel damage model

机译:用新型损伤模型在高菌株率荷载期间颗粒复合材料损伤的数值研究

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摘要

We perform large three-dimensional damage simulations of particulate composites under high-strain rate loading to address the effect of the microstructure on the overall transient mechanical behavior. We use spheres as well as oblate, prolate, and plane strain ellipsoids and show that resolving the wide range of spatial and temporal scales in complex morphologies is essential to apprehending fracture characteristics. We employ continuum damage mechanics and develop a novel damage model that properly accounts for deviatoric and volumetric energy contributions in the finite strain setting. In order to resolve the characteristic damage length scale, we utilize a highly parallel finite element solver, PGFem3D. The high-performance parallel simulations are performed on up to 1920 processing cores. We adopt a data-driven (image-based) materials modeling approach in constructing the computational domains. We show that high-strain rates as well as microstructural details play an important role in addressing complex damage patterns and overall material response.
机译:在高应变速率荷载下,在高应变速率荷载下进行大型三维损伤模拟,以解决微观结构对整体瞬态机械行为的影响。我们使用球体以及扁平,改性和平面菌株椭球,并表明在复杂形态中解析广泛的空间和时间尺度对于伪造骨折特性至关重要。我们采用连续损伤力学,并开发一种新的损伤模型,可妥善估算有限应变设置中的偏离有效性和体积能贡献。为了解决特征损伤长度,我们利用高度平行的有限元求解器PGFem3D。高性能并行模拟最多可在高达1920个加工核心进行。我们采用数据驱动(基于图像)材料建模方法构建计算域。我们表明,在解决复杂的损伤模式和整体材料响应方面发挥着重要作用。

著录项

  • 来源
    《Mechanics of materials》 |2021年第9期|103944.1-103944.12|共12页
  • 作者单位

    Univ Notre Dame Ctr Shock Wave Proc Adv React Mat Notre Dame IN 46556 USA;

    Univ Notre Dame Dept Aerosp & Mech Engn 367 Fitzpatrick Hall Engn Notre Dame IN 46556 USA|Univ Notre Dame Ctr Shock Wave Proc Adv React Mat Notre Dame IN 46556 USA;

    Univ Notre Dame Dept Aerosp & Mech Engn 367 Fitzpatrick Hall Engn Notre Dame IN 46556 USA|Univ Notre Dame Ctr Shock Wave Proc Adv React Mat Notre Dame IN 46556 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Data-driven modeling; Damage mechanics; High-strain rate; Particulate composites; High-performance computing;

    机译:数据驱动建模;损伤力学;高应变率;颗粒复合材料;高性能计算;

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