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Laser clad functionally graded coatings

机译:激光包覆功能梯度涂层

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摘要

With a well-controlled laser melt injection (LMI) process, for the first time the feasibility is demonstrated to produce SiC particles (SiCp) reinforced Ti6Al4V functionally graded materials (FGMs). SiCp are injected just behind the laser beam into the extended part of the laser melt pool that is formed at relatively high beam scanning velocities. The process allows for the minimization of the decomposition reaction between SiCp and Ti6Al4V melt, and also leads to FGMs of SiCp/Ti6Al4V instead of a homogeneous composite layer on Ti6Al4V substrates. An injection model is designed based on the temperature/viscosity field of the laser pool for a deeper understanding the mechanism of formation of the FGMs with LMI. The model is based on finite element calculations of the temperature field in the melt pool, physical considerations of the LMI process and it is supported by experimental observations.
机译:利用良好控制的激光熔融喷射(LMI)工艺,首次证明了可行性以产生SiC颗粒(SICP)增强Ti6Al4V功能分级材料(FGM)。 SICP在激光束后面注射到激光熔池的延伸部分,其形成在相对高的光束扫描速度。该方法允许最小化SICP和Ti6Al4V熔体之间的分解反应,并且还导致SiCP / Ti6Al4V的FGM而不是Ti6Al4V基板上的均匀复合层。基于激光池的温度/粘度场设计注射模型,以更深地理解与LMI形成FGM的机制。该模型基于熔体池中的温度场的有限元计算,LMI工艺的物理考虑,并通过实验观察支持。

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