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EFFECT OF INTER-PARTICLE INTERACTION ON PARTICLE DEPOSITION IN A CROSS-FLOW MICROFILTER

机译:颗粒相互作用对跨流微型微型粒子沉积的影响

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Recent studies show that inter-particle interaction can affect particle trajectories and particle deposition causing fouling in the microfilters used for metal working fluids (MWFs). Inter-particle interaction depends on various factors: particle geometry and surface properties, membrane pore geometry and surface properties, MWF's properties and system operating conditions, etc. A mathematical model with a Langevin equation for particle trajectory and a hard sphere model for particle deposition has been used to study the effect of particle's size, particle's surface zeta potential, inter-particle distance, and shape of membrane pore wall surface on particle trajectory and its deposition on membrane pore wall. The study reveals that bigger particles have a lesser tendency to be deposited on membrane pore walls than smaller particles. The shape of the membrane pore wall surface can also affect the particle deposition behavior.
机译:最近的研究表明,颗粒间相互作用可以影响粒子轨迹和颗粒沉积,导致用于金属工作流体(MWF)的微型过滤器中的污垢。颗粒间相互作用取决于各种因素:颗粒几何和表面性质,膜孔几何形状和表面性质,MWF的性质和系统操作条件等。具有Langevin方程的数学模型,用于粒子轨迹的Langevin方程和用于粒子沉积的硬球模型用于研究粒子尺寸,粒子表面ζ电位,粒径间距离和膜孔表面颗粒孔表面上的颗粒轨迹的影响及其在膜孔壁上的沉积。该研究表明,较大的颗粒具有较小的倾向于膜孔壁上的倾向而不是较小的颗粒。膜孔壁表面的形状也可以影响颗粒沉积行为。

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