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Estimation of Concentration of Particles in Polymerizing Fluid during Centrifugal Casting of Functionally Graded Polymer Composites

机译:功能梯度聚合物复合材料离心浇铸过程中聚合流体中颗粒浓度的估算

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摘要

The concentration of uniformly distributed particles in a fluid changes with time in the direction of gravitational or centrifugal force to form a concentration gradient. The change in the concentration is an outcome of velocity variation of particles in a fluid. A modified equation for terminal velocity, v m of particles in polymerizing-fluid under centrifugal force is proposed to estimate the changes in the volume fraction of particles in the graded composites. The proposed equation introduces the effect of cure kinetics of polymer and its effect on particle movement in the model that was based on the modified Stoke’s law, considering the parameters related to particle hindrance, centrifugal force, particle dimensions, viscosity variation etc. The model predictions of concentration changes at the different locations of samples were compared with calcium carbonate filled polysulphide-modified-epoxy graded composites prepared by centrifugal casting.. The effect of particle size, delayed curing rate of matrix were explored. The simulated results are in good agreement with those of experiments.
机译:流体中均匀分布的颗粒的浓度在重力或离心力的方向上随时间变化以形成浓度梯度。浓度的变化是流体中颗粒速度变化的结果。提出了修正流体在离心力作用下颗粒在流体中的最终速度v m 的修正方程,以估算梯度复合材料中颗粒体积分数的变化。考虑到与颗粒阻碍,离心力,颗粒尺寸,粘度变化等有关的参数,所提出的方程式在基于改进的斯托克定律的模型中引入了聚合物的固化动力学及其对颗粒运动的影响。模型预测将样品不同位置的浓度变化与离心铸造制备的碳酸钙填充的聚硫化物改性环氧分级复合材料进行了比较。探讨了粒径,基体延迟固化速率的影响。仿真结果与实验结果吻合良好。

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