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Numerical analysis of strain rate sensitivity in ball indentation on cohesive powder Beds

机译:粘性粉末床球压痕中应变率敏感性的数值分析

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摘要

In the shear deformation of powder beds beyond the quasi-static regime the shear stress is dependent on the strain rate. Extensive work has been reported on the rapid chute flow of large granules but the intermediate regime has not been widely addressed particularly in the case of cohesive powders. However in industrial powder processes the powder flow is often in the intermediate regime. In the present work an attempt is made to investigate the sensitivity of the stresses in an assembly of cohesive spherical particles to the strain rate in ball indentation using the Distinct Element Method. This technique has recently been proposed as a quick and easy way to assess the flowability of cohesive powders. It is shown that the hardness, deviatoric and hydrostatic stresses within a bed, subjected to ball indentation on its free surface, are dependent on the indentation strain rate. These stresses are almost constant up to a dimensionless strain rate of unity, consistent with trends from traditional methods of shear cell testing, though fluctuations begin to increase from a dimensionless strain rate of 0.5. For dimensionless strain rates greater than unity, these stresses increase, with the increase in hardness being the most substantial. These trends correlate well with those established in the literature for the Couette device. However quantitative value of the strain rate boundaries of the regimes differ, due to differences in the geometry of shear deformation band. Nevertheless, this shows the capability of the indentation technique in capturing the dynamics of cohesive powder flow.
机译:在粉末床的剪切变形超过准静态范围时,剪切应力取决于应变率。关于大颗粒的快速溜槽流动已进行了广泛的研究,但是中间状态尚未得到广泛解决,特别是在粘性粉末的情况下。但是,在工业粉末工艺中,粉末流通常处于中间状态。在本工作中,尝试使用“离散元法”(Distinct Element Method)研究内聚球形颗粒组件中的应力对球压痕中应变率的敏感性。最近,已提出将该技术作为评估粘性粉末的流动性的快速简便的方法。结果表明,在床的自由表面上受到球压痕作用的床内硬度,偏应力和静水压力取决于压痕应变率。这些应力几乎一直恒定到一个无量纲的统一应变率,这与传统的剪切单元测试方法的趋势一致,尽管波动从0.5的无量纲应变率开始增加。对于大于一的无量纲应变率,这些应力会增加,而硬度的增加最为明显。这些趋势与有关Couette装置的文献中确定的趋势紧密相关。然而,由于剪切变形带的几何形状的差异,该制度的应变率边界的定量值不同。尽管如此,这表明压痕技术具有捕获粘性粉末流动动力学的能力。

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