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Thickness and waviness of surface coatings formed by overlap: modelling and experiment

机译:通过重叠形成的表面涂层的厚度和波纹:建模和实验

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Several surface engineering techniques are known that form a hard facing coating on an inexpensive substrate by a successive overlap of individual cladding tracks. Typical examples include laser cladding and laser additive manufacturing. Realistic predicting the final thickness and waviness of the coating as a function of geometry of single cladding track and their overlap are lacking in literature. In this contribution a recursive model for the calculation of the coating profile is presented. A few basic shapes of single tracks are presumed and on the basis of physical assumptions a recursive formula is deduced to construct a shape of the whole coating profile. Calculations of such profiles for different shapes of tracks and different overlaps show a dependence of the coating thickness and its waviness on these parameters. The model is tested experimentally for a laser cladding process, in which the laser track is formed by a continuous deposition of small metallic particles into the meltpool formed by a high power laser beam continuously moving over the substrate.
机译:已知几种表面工程技术,通过各个包层轨道的连续重叠在廉价的基板上形成硬面涂层。典型的实例包括激光包层和激光添加剂制造。作为单个包层轨道几何形状的函数预测涂层的最终厚度和波纹及其重叠缺乏文献。在该贡献中,提出了用于计算涂层轮廓的递归模型。假定几个单轨道的基本形状,并基于物理假设推导出递归公式以构建整个涂层轮廓的形状。用于不同形状的轨道和不同重叠的这种曲线的计算显示涂层厚度及其对这些参数的波纹的依赖性。通过实验测试模型,用于激光包覆工艺,其中通过将小金属颗粒连续沉积到由高功率激光束形成的梅特波池上连续地移动在基板上形成的激光轨道。

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