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In situ grain fracture mechanics during uniaxial compaction of granular solids

机译:颗粒状固体单轴压缩过程中的原位晶粒断裂力学

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摘要

Grain fracture and crushing are known to influence the macroscopic mechanical behavior of granular materials and be influenced by factors such as grain composition, morphology, and microstructure. In this paper, we investigate grain fracture and crushing by combining synchrotron x-ray computed tomography and three-dimensional x-ray diffraction to study two granular samples undergoing uniaxial compaction. Our measurements provide details of grain kinematics, contacts, average intra-granular stresses, inter-particle forces, and intra-grain crystal and fracture plane orientations. Our analyses elucidate the complex nature of fracture and crushing, showing that: (1) the average stress states of grains prior to fracture vary widely in their relation to global and local trends; (2) fractured grains experience inter-particle forces and stored energies that are statistically higher than intact grains prior to fracture; (3) fracture plane orientations are primarily controlled by average intra-granular stress and contact fabric rather than the orientation of the crystal lattice; (4) the creation of new surfaces during fracture accounts for a very small portion of the energy dissipated during compaction; (5) mixing brittle and ductile grain materials alters the grain-scale fracture response. The results highlight an application of combined x-ray measurements for non-destructivein situanalysis of granular solids and provide details about grain fracture that have important implications for theory and modeling.
机译:已知晶粒的破裂和破碎会影响粒状材料的宏观力学性能,并受诸如晶粒组成,形态和微观结构等因素的影响。在本文中,我们通过将同步加速器X射线计算机断层扫描和三维X射线衍射相结合来研究晶粒的破裂和破碎,以研究两个经过单轴压实的颗粒状样品。我们的测量提供了晶粒运动学,接触,平均晶粒内应力,粒子间作用力以及晶粒内晶体和断裂面方向的详细信息。我们的分析阐明了断裂和破碎的复杂性,表明:(1)断裂前晶粒的平均应力状态与全球和局部趋势的关系相差很大; (2)破裂的晶粒经历了粒子间作用力和储能,在统计学上高于破裂前完整的晶粒; (3)断裂面的取向主要受平均粒内应力和接触织物的控制,而不是晶格的取向。 (4)在断裂过程中产生的新表面仅占压实过程中所耗散能量的很小一部分; (5)混合脆性和韧性晶粒材料会改变晶粒尺度的断裂响应。结果突出显示了组合X射线测量在颗粒状固体非破坏性原位分析中的应用,并提供了有关晶粒断裂的细节,这些断裂对于理论和建模具有重要意义。

著录项

  • 来源
    《Journal of the Mechanics and Physics of Solids》 |2018年第3期|273-290|共18页
  • 作者单位

    Lawrence Livermore National Laboratory,Johns Hopkins University;

    Lawrence Livermore National Laboratory;

    Cornell High Energy Synchrotron Source;

    Lawrence Livermore National Laboratory;

    Lawrence Livermore National Laboratory;

  • 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

  • 入库时间 2022-08-18 02:59:42

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