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Analytical model of particle interference effects in divergent erosive jets

机译:发散性侵蚀射流中颗粒干扰效应的解析模型

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摘要

An analytical model that describes the interference, due to collisions between an incident diverging axi-symmetric jet of spherical particles, and those rebounding from a flat surface oriented perpendicular to the jet axis (i.e., normal incidence), is presented. The model can accommodate non-uniform incident particle velocity and spatial distribution, variation in particle spacing along the jet axis, and non-elastic frictional impact kinematics. The model can be used to estimate interference effects at high flux, and to obtain the critical flux below which a given level of particle interference will occur in a solid particle erosion test. Because the equations that predict the level of interference can be solved in closed form, with the exception of an integral which must be solved numerically, implementation in erosion models is also possible. For the case of an incident jet typically used in abrasive jet micromachining applications, the model is validated against an existing computer model for a wide variety of conditions, with excellent agreement.
机译:提出了一种分析模型,该模型描述了由于入射发散的球状轴对称射流与从垂直于射流轴(即法线入射)的平面反弹而产生的碰撞之间的碰撞所引起的干扰。该模型可以适应非均匀的入射粒子速度和空间分布,沿射流轴的粒子间距变化以及非弹性的摩擦冲击运动学。该模型可用于估计高通量下的干扰效应,并获得临界通量,低于该通量后,在固体颗粒腐蚀测试中将发生给定水平的颗粒干扰。因为可以用封闭形式求解预测干扰程度的方程,除了必须在数值上求解的积分之外,还可以在侵蚀模型中实现。对于通常在磨料喷射微加工应用中使用的入射射流的情况,该模型已针对现有的计算机模型针对各种条件进行了验证,并具有极好的一致性。

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