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Computational and Experimental Studies of Flexible Fiber Flows in a Normal-Stress-Fixed Shear Cell

机译:柔性纤维在正常应力固定剪切单元中流动的计算与实验研究

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Flow properties of flexible fibers are poorly understood compared to those of rigid particles. In this study, a Schulze ring shear tester is used to measure the flow properties of fibers made of cut fishing wire and cut rubber cord, which have different levels of flexibility. For a comprehensive study, the discrete element method is employed to simulate flexible fiber flows. The simulations are validated by comparing with the experimental measurements. Studies show that an increase in fiber bending modulus leads to a reduction in the deformation and solid volume fraction, but it has no effect on the shear stress with the same normal stress. An increase in fiber-fiber friction coefficient, below a critical value of 0.8, can augment the angle of internal friction. The contact stiffness, contact damping coefficient, and bond damping coefficient only have limited impact on the shear flow behavior in the ranges considered. (c) 2018 American Institute of Chemical Engineers AIChE J, 65: 64-74, 2019
机译:与刚性颗粒相比,柔性纤维的流动性质较差。在这项研究中,血栓剪切测试仪用于测量由切割钓鱼线和切割橡胶帘线制成的纤维的流动性,这具有不同的柔韧性。对于综合研究,采用离散元件法模拟柔性纤维流。通过与实验测量进行比较,验证模拟。研究表明,纤维弯曲模量的增加导致变形和固体体积分数的降低,但对具有相同正常应力的剪切应力没有影响。纤维纤维摩擦系数的增加,低于0.8的临界值,可以增加内部摩擦的角度。接触刚度,接触阻尼系数和债券阻尼系数仅对所考虑的范围内的剪切流动行为产生有限的影响。 (c)2018年美国化学工程师AICHE J,65:64-74,2019

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