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Initial Condition Dependence of Dynamics and Evaporation of Polymer Spallation Particles Flying in Polymer Ablated Arcs

机译:聚合物消融弧中的初始条件依赖性和聚合物脱模颗粒蒸发的蒸发

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This paper describes the influence of initial conditions for spallation particles flying in polymer ablation arcs on dynamics and evaporation of the polymer spallation particles using the numerical model. Through our previous experiments, we had found micro-sized 'spallation particles' ejected from polyamide materials by thermal plasma contact. To obtain the dynamics of spallation particles in polymer ablation arcs, we have developed a numerical model on dynamics of spallation particles flying in the polymer ablated arcs. The influence of pressure inside the polymer ablated arc, the initial particle diameter and the initial velocity of spallation particles were studied as parameters in the present paper. Under the given temperature and gas flow distributions in specified initial conditions, the trajectories of spallation particles flying in the polymer ablated arc were simulated numerically, considering the time variations in the temperature and the diameter of the particles. The results show that the highest flight altitude of the PA6 spallation particle flying in the PA6 ablated arc is affected by the initial particle diameter and velocity remarkably.
机译:本文介绍了使用数值模型对聚合物消融电弧在聚合物消融弧中飞行的初始条件对聚合物灭活颗粒的动力学和蒸发的影响。通过我们之前的实验,我们发现通过热等离子体接触从聚酰胺材料中发现了微小的“脱水颗粒”。为了获得聚合物消融弧中的椎间壳颗粒的动态,我们已经开发了一种关于在聚合物消融弧中飞行的椎间壳颗粒动态的数值模型。在本文中,研究了聚合物消融弧内的压力,初始粒径和初始粒径和初始速度的初始速度。在指定的初始条件下给定的温度和气流分布下,在数值上模拟在聚合物消融弧中飞行在聚合物消融电弧中的倒装颗粒的轨迹,考虑到颗粒的温度和直径的时间变化。结果表明,PA6消融弧中的PA6脱浆颗粒的最高飞行高度受到初始粒径和速度的显着影响。

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