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Visualising shear stress distribution inside flow geometries containing pharmaceutical powder excipients using photo stress analysis tomography and DEM simulations

机译:使用光应力分析层析成像和DEm模拟可视化含有药物粉末赋形剂的流动几何形状内的剪切应力分布

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摘要

For the first time, photo stress analysis tomography (PSAT) is applied to probe the distribution of maximum shear stress and direction of major principal stress field within 'powder' assemblies inside hopper geometries, and further supported by discrete element model (DEM) simulations. The results show that for decrease in hopper angle, the direction of major principle stress aligns with the direction of gravity which could promote flow rate under dynamic conditions. Conversely, the propensity of developing relatively more non-homogeneous distribution of shear resistance zones inside powder assemblies increases with the hopper angle, which could subsequently decrease their macroscopic flow rate.
机译:光应力分析层析成像技术(PSAT)首次用于探测料斗几何形状内“粉末”组件内最大剪切应力的分布和主要主应力场的方向,并进一步得到离散元素模型(DEM)模拟的支持。结果表明,为减小料斗角,主应力方向与重力方向一致,在动态条件下可提高流速。相反,粉末组件内部形成的剪切阻力区域相对不均匀分布的倾向随料斗角度的增加而增加,这随后可能会降低其宏观流速。

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