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Simulations of fibre orientation in dilute suspensions with front moving in the filling process of a rectangular channel using level-set method

机译:水平集法模拟矩形通道填充过程中带前移的稀悬浮液中纤维取向

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The simulation of fibre orientation in dilute suspension with front moving is carried out using the projection and level-set methods. The motion of fibres is described using the Jeffery equation, and the contribution of fibres to the flow is accounted for by the configuration-field method. The dilute suspension of short fibres in Newtonian fluids is considered. The governing Navier-Stokes equation for the fluid flow is solved using the projection method with finite difference scheme, while the fibre-related equations are directly solved with the Runge-Kutta method. In the present study for fibres in dilute suspension flow for injection molding, the effects of various flow and material parameters on the fibre orientation, the velocity distributions and the shapes of the leading flow front are found and discussed. Our findings indicate that the presence of fibre motion has little influence on the front shape in the ranges of fibre parameters studied at the fixed Reynolds number. Influence of changing fibre parameters only causes variation of front shape in the region near the wall, and the front shape in the central core area does not vary much with the fibre parameters. On the other hand, the fibre motion has strong influence on the distributions of the streamwise and transverse velocities in the fountain flow. Fibre motion produces strong normal stress near the wall which leads to the reduction of transversal velocity as compared to the Newtonian flow without fibres, which in turn, leads to the increased streamwise velocity near the wall. Thus, the fibre addition to the flow weakens the strength of the fountain flow. The Reynolds number has also displayed significant influence on the distribution of the streamwise velocity behind the flow front for a given fibre concentration. It is also found that the fibre orientation is not always along the direction of the velocity vector in the process of mold filling. In the region of the fountain flow, the fibre near the centreline is more oriented across the streamwise direction compared to that in the region far behind the flow front. This leads to the fact that the fibre near the centreline in the region of fountain flow is more extended along the transverse direction. As the fibre orientation in the suspension flow and the shape of the flow front have great bearing on the quality of the product made from injection molding, this study has much implications for engineering applications. These results can also be useful in other fields dealing with fibre suspensions.
机译:使用投影和水平设置方法对带有前移的稀悬浮液中的纤维取向进行仿真。纤维的运动用Jeffery方程描述,纤维对流动的贡献是通过配置场方法来解释的。考虑了短纤维在牛顿流体中的稀悬浮液。使用有限差分方案的投影方法求解控制流体的Navier-Stokes方程,而使用Runge-Kutta方法直接求解与纤维相关的方程。在本研究中,对稀悬液中的纤维进行注射成型,发现并讨论了各种流动和材料参数对纤维取向,速度分布和前导流前沿形状的影响。我们的发现表明,在固定雷诺数下研究的纤维参数范围内,纤维运动的存在对前部形状几乎没有影响。改变纤维参数的影响仅导致壁附近区域的前部形状变化,并且中心纤芯区域中的前部形状随纤维参数变化不大。另一方面,纤维运动对喷泉流中的流向和横向速度的分布有很大的影响。与没有纤维的牛顿流相比,纤维运动会在壁附近产生强大的法向应力,从而导致横向速度降低,进而导致壁附近的水流速度增加。因此,纤维添加到流中会削弱润版液流的强度。对于给定的纤维浓度,雷诺数对流动前沿后面的流向速度分布也显示出显着影响。还发现在模具填充过程中,纤维取向并不总是沿着速度矢量的方向。在喷泉流的区域中,与在中心线附近的纤维相比,在远流后部的区域中的纤维在流向上的取向更大。这导致以下事实:在喷泉流的区域中的中心线附近的纤维沿横向方向更延伸。由于悬浮液中的纤维取向和流动前沿的形状对注塑成型产品的质量有很大影响,因此这项研究对工程应用具有重要意义。这些结果在涉及纤维悬浮液的其他领域中也可能有用。

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