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The intertwined roles of particle shape and surface roughness in controlling the shear strength of a granular material

机译:颗粒形状和表面粗糙度控制粒状材料的剪切强度的交织作用

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摘要

Both the shape of individual particles and their surface properties contribute to the strength of a granular material under shear. Here we show the degree to which these two aspects can be intertwined. In experiments on assemblies of 3D printed, convex lens-shaped particles, we measure the stress-strain response under repeated compressive loading and find that the aggregate's shear strength falls rapidly when compared to other particle shapes. We probe the granular material at mm-scales with X-ray computed tomography and mu m-scales with high-resolution surface metrology to look for the cause of the degradation. We find that wear due to accumulated deformation smooths out the lens surfaces in a controlled and systematic manner that correlates with a significant loss of shear strength observed for the assembly as a whole. The sensitivity of lenses to changes in surface properties contrasts with results for assemblies of 3D printed tetrahedra and spheres, which under the same load cycling are found to exhibit only minor degradation in strength. This case study provides insight into the relationship between particle shape, surface wear, and the overall material response, and suggests new strategies when designing a granular material with desired evolution of properties under repeated deformation.
机译:各种颗粒的形状和它们的表面性质都有助于剪切下的粒状材料的强度。在这里,我们展示了这两个方面可以交织的程度。在对3D印刷的组件的实验中,我们测量重复压缩负载下的应力 - 应变响应,并发现与其他颗粒形状相比,聚集体的剪切强度迅速下降。我们用X射线计算断层扫描和MU M级探测MM-Scales的粒状材料,具有高分辨率表面计量,寻找降级原因。我们发现由于累积变形而导致的磨损以受控和系统的方式平滑透镜表面,其与整个组件观察到的剪切强度的显着损失相关。镜片对表面特性变化的敏感性与3D印刷四面体和球体组件的结果形成对比,其在相同的负载循环下发现仅在强度下表现出微小的降解。本案例研究提供了深入了解粒子形状,表面磨损和整体材料反应之间的关系,并在设计颗粒材料时建议在重复变形下具有所需性能演化的新策略。

著录项

  • 来源
    《Granular matter》 |2019年第3期|72.1-72.6|共6页
  • 作者单位

    Univ Chicago Dept Phys Chicago IL 60637 USA|Univ Chicago James Franck Inst 5640 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Phys Chicago IL 60637 USA|Univ Chicago James Franck Inst 5640 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Phys Chicago IL 60637 USA|Univ Chicago James Franck Inst 5640 S Ellis Ave Chicago IL 60637 USA;

    Univ Chicago Dept Phys Chicago IL 60637 USA|Univ Chicago James Franck Inst 5640 S Ellis Ave Chicago IL 60637 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

    Plastic deformation; Surface wear; X-ray tomography; Particle shape; Shear strength; Surface metrology;

    机译:塑料变形;表面磨损;X射线断层扫描;颗粒形状;剪切强度;表面计量;

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