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Coupled Coating Formation Simulation in Thermal Spray processes using CFD and FEM

机译:使用CFD和FEM的热喷涂过程中耦合涂层形成模拟

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This paper deals with the simulation of coating formation in Thermal Spray processes. That means that impingement and flattening of molten metal- or ceramic particles with a diameter of about 50 microns on a rough surface have to be regarded. Virtually all recent coating formation simulations are based on Computational Fluid Dynamics and are accomplished by the Volume of Fluid method. The disadvantage here is that only the pure flattening process can be considered. In order to implicate the shrinking of the particles due to cooling down after solidification, which is responsible for the occurrence of pores and thermal stresses, a Finite Element calculation has to be done. Due to the fact that the time between two successive particle impacts at the same place is statistically greater than the solidification time of the first particle, the separate treatment of the two processes is possible.
机译:本文涉及热喷涂过程中涂层形成的模拟。这意味着必须考虑将直径约为50微米的熔融金属或陶瓷颗粒撞击和弄平在粗糙表面上。实际上,所有最近的涂层形成模拟都基于计算流体动力学,并且是通过“流体体积”方法完成的。此处的缺点是只能考虑纯平整过程。为了暗示由于凝固后冷却而导致的颗粒收缩(这是造成孔和热应力的原因),必须进行有限元计算。由于在同一位置两次连续的粒子撞击之间的时间在统计上大于第一粒子的凝固时间,因此可以对这两个过程进行单独处理。

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