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Finite Element Analysis of Particle Impact on Substrates Using HVOF Thermal Spray Coating

机译:HVOF热喷涂粒子对粒子撞击的有限元分析

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Lower flame temperature characteristics of high velocity oxygen fuel (HVOF) flame spray process favor several surface coating applications. Simulation of HVOF coating is extremely complex to analyze, since its properties and microstructure depend on numerous processing parameters. Finite element analysis (FEA) is used in this paper to analyze the influence of particle heat input and impact velocity on HVOF coating on various substrates. HVOF thermal spray coating conditions, Tungsten Carbide Cobalt (WC-Co) particles and steel substrate were modeled using ANSYS 14.5. Droplets of different size were considered as particles in the numerical analysis to study their impact on the substrate. Thermal and residual stress analysis was done on both the particle and substrate during different stages of the high velocity impact process. Both rigid and soft conditions of the particle and substrate were simulated. Thermal stress of both the particle and substrate were found to increase rapidly very close to the impact process. Smaller sized particles had higher plastic strain when compared to larger sized particles. However, the residual stress and plastic strain of the substrate increased when impacted by larger sized particles. Residual stress of both particle and substrate were found to be influenced by the impact and thermal stress of each other. Higher velocity of the flame spray showed improved plastic strain and stress on individual particles, which is a major reason for the dense pattern of coating.
机译:高速氧气燃料(HVOF)火焰喷涂工艺的较低火焰温度特性有利于几种表面涂层应用。 HVOF涂层的仿真对于分析非常复杂,因为其性质和微观结构取决于许多加工参数。本文使用有限元分析(FEA),分析颗粒热输入和冲击速度对各种基材上HVOF涂层的影响。使用ANSYS 14.5模拟HVOF热喷涂条件,碳化钨碳化钴(WC-CO)颗粒和钢基材。不同尺寸的液滴被认为是数值分析中的粒子,以研究它们对基材的影响。在高速冲击过程的不同阶段,在颗粒和基板上进行热量和残余应力分析。模拟颗粒和基板的刚性和柔软的条件。发现颗粒和底物的热应力迅速增加非常接近冲击过程。与较大尺寸的颗粒相比,较小的尺寸颗粒具有更高的塑性菌株。然而,当受较大尺寸的颗粒撞击时,基板的残余应力和塑性应变增加。发现两种颗粒和底物的残余应力受到彼此的冲击和热应力的影响。火焰喷雾的较高速度显示出改善的塑性应变和个体颗粒的胁迫,这是涂层浓密的涂层图案的主要原因。

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