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Numerical investigation of laser deposited Al-based coatings on Ti-6Al-4V alloy

机译:Ti-6Al-4V合金中激光沉积基涂层的数值研究

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摘要

Titanium Alloy (Ti6Al4V) opened a wide range of useful applications in aerospace industries; these industries make use of different additive manufacturing (AM) techniques to obtain parts of different properties for different uses by this titanium alloy. Ttitanium alloy mainly stands out due to the properties such as high specific strength to weight ratio, and excellent corrosion resistance. Despite these benefits, the formation of defects such as pores and cracks play a vital role in the quality of the deposited coatings. The presence of these unwanted artefacts on laser deposited coatings depends on the melting, cooling and solidification of the melt pool. In this research, a simulation of the heat transfers and fluid dynamics of the melt pool is developed to predict the process parameters and reinforcement proportions on the clad geometry quality. The results were compared to the experimental results for confirmation and validation. Numerical modelling using COMSOL multiphysics 5.2 revealed the thermal behaviour of the coated samples.
机译:钛合金(的Ti6Al4V)开设了广泛的航空航天工业有用的应用;这些行业利用不同添加剂制造(AM)技术通过此钛合金以获得用于不同用途的不同特性的部分。 Ttitanium合金主要脱颖而出由于性能如高的比强度重量比,和优异的耐腐蚀性。尽管有这些好处,如气孔和裂纹缺陷的形成起到沉积涂层的质量至关重要的作用。激光沉积涂层这些不需要的人为的存在依赖于熔化,冷却和熔池的固化。在这项研究中,热量转移和熔池的流体动力学的模拟来预测的工艺参数和加固的比例对复合几何质量。结果进行比较,以确认和验证的实验结果。使用多物理COMSOL 5.2数值模拟揭示了经涂覆的样品的热行为。

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