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Geometry Modelling of Clads Generated by Laser Cladding

机译:激光熔覆产生的熔覆的几何建模

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摘要

The laser cladding process is based on the generation of a melt-pool in a substrate where a filler material is injected, generating a high quality clad with a minimum heat affected zone. This process is industrially used to generate coatings over wear or damaged surfaces, being an alternative to traditional deposition techniques. One of the most important aspects for its industrial application is to know the clad geometry in order to calculate the deposited layer thickness. This work presents a model in which, starting from the concentration of injected material and the melt-pool geometry, clad height is finally estimated. Both input variables are obtained by two previous validated models. On one hand, the melt pool is estimated by a thermal model based on the finite difference method, and on the other hand, concentration of injected material is provided by a particle concentration CFD model. This data is used in a mass balance over melt-pool area in order to estimate the deposited clad height.
机译:激光熔覆工艺是基于在填充了填充材料的基板中产生熔池,从而产生具有最小热影响区的高质量熔覆。该方法在工业上用于在磨损或损坏的表面上生成涂层,是传统沉积技术的替代方法。对于其工业应用而言,最重要的方面之一是了解包层几何形状,以便计算沉积层的厚度。这项工作提出了一个模型,其中从注入的材料的浓度和熔池的几何形状开始,最终估计了包层高度。这两个输入变量都是通过两个先前验证的模型获得的。一方面,熔池是通过基于有限差分法的热模型估算的,另一方面,通过粒子浓度CFD模型来提供注入材料的浓度。该数据用于熔池面积的质量平衡中,以估算沉积的包层高度。

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