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A numerical model for simulating mechanical behavior of flexible fibers

机译:模拟柔性纤维力学行为的数值模型

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A numerical method is developed for simulating the mechanical behavior of flexible fibers. A circular crossed fiber is represented by a number of cylindrical segments linked by spring dash-pot systems. Segments are lined up and bonded to each neighbor. Each bond can be stretched or compressed by changing the bond distance. Bending deflection and twist movement occur, respectively, in the bending and torsion planes. While the bending angle is determined by the positions of two neighboring bonds, a reference twist vector is introduced to record the torsion motion along the segment chain. Fluid drag forces are calculated based on the Stokes' Law, where a free draining assumption is made. The motion of the fiber is determined by solving the translational and rotational equations of individual segments. Computer simulation has been found between the simulation results and the theory in various situations such as beam deflection under static loads, vibrating cantilevers, and dynamics of helical shaped fibers. Examining orientations of rigid fibers in a viscous shear flow, simulation results suggest that the rotational time is sensitive to the fluid drag torque which is related to the shape of the segments. For highly flexible fibers, the effect of bending deformation on the period of rotation and the rotation orbits is also investigated. This numerical model for single flexible fibers linked by discrete segments provides a framework in the future studies on fibrous assemblies.
机译:开发了一种数值方法来模拟柔性纤维的机械性能。圆形交叉纤维由通过弹簧冲量壶系统连接的多个圆柱段表示。段对齐并绑定到每个邻居。可以通过更改键距来拉伸或压缩每个键。弯曲偏转和扭转运​​动分别发生在弯曲和扭转平面中。当弯曲角度由两个相邻键的位置确定时,引入参考扭转向量以记录沿段链的扭转运动。流体阻力是根据斯托克斯定律计算的,在该定律下可以自由排水。纤维的运动是通过求解各个段的平移和旋转方程来确定的。在各种情况下,例如在静态载荷下的梁挠度,振动悬臂和螺旋形纤维的动力学情况下,已经在模拟结果和理论之间找到了计算机模拟。检查粘性剪切流中刚性纤维的取向,模拟结果表明旋转时间对与段形状相关的流体阻力很敏感。对于高柔性纤维,还研究了弯曲变形对旋转周期和旋转轨道的影响。这种由离散段链接的单根柔性纤维的数值模型为将来的纤维组件研究提供了一个框架。

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