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Stress Inhomogeneity in Powder Specimens Tested in the Jenike Shear Cell:Myth or Fact?

机译:在Jenike剪切细胞中测试的粉末样品中的应力不均匀性:神话还是事实?

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摘要

In the mechanical characterization of powders using the direct shear testers such as the Jenike shear cell,the existence of a uniform or well-defined stress field in a powder specimen is assumed.This assumption has not been subjected to any serious scrutiny in the literature.In this study,the normal stress variation in a silica powder was locally determined by locating a pressure-sensitive TekScan pad at the bottom section of a Jenike shear cell.A computer simulation of the consolidation and pre-shearing stages of the Jenike test procedure was performed using the Discrete Element Method (DEM).The paper presents both experimental and computational evidence for the existence of a complex stress field in the powder specimen,thus clearly invalidating the long-standing stress homogeneity assumption in the direct shear testing of powders.The implications of the stress inhomogeneity in terms of the accuracy of the material properties extracted from the Jenike test are also presented.
机译:在使用直接剪切测试仪(例如Jenike剪切池)对粉末进行机械表征时,假定粉末样品中存在均匀或定义明确的应力场。文献中对此假设没有进行任何认真的审查。在这项研究中,通过将压敏TekScan垫放置在Jenike剪切单元的底部来局部确定二氧化硅粉末的正应力变化.Jenike测试程序的固结和预剪切阶段的计算机模拟是本文使用离散元方法(DEM)进行了试验。本文提供了粉末样品中存在复杂应力场的实验和计算证据,因此显然使粉末直接剪切试验中长期存在的应力均匀性假设无效。还介绍了应力不均匀性对从Jenike测试中提取的材料特性的准确性的影响。

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