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Progress in numerical simulation of the laser cladding process

机译:激光熔覆过程数值模拟研究进展

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摘要

Laser Cladding is one of the developing manufacturing techniques used for diverse applications such as coating, repairing and prototyping. Complex processing phenomena and the formation and growth of thin clad of few micrometres to millimetres range in most cases are yet to be fully understood. However, in recent past, several numerical models have been reported to get some understanding of physical, dynamic and metallurgical phenomena of this process. This article reviews the progress of numerical simulations spanning over three distinct stages of the process to model powder flow dynamics, melt pool and clad properties. For each stage, the governing equations, the effect of process variables and experimental validation techniques have been discussed. Specifically, we have outlined some of the underlying assumptions in the current numerical models which can act as pointers for further improvement of the existing numerical models. Authors recommend that numerical simulation results have to be complemented with experimental results to achieve better clad properties.
机译:激光熔覆是发展中的制造技术之一,可用于多种应用,例如涂层,维修和原型制作。在大多数情况下,复杂的加工现象以及几微米至毫米范围的薄包层的形成和生长尚待充分了解。然而,近来,已经报道了一些数值模型,以使人们对该过程的物理,动态和冶金现象有所了解。本文回顾了跨越过程三个不同阶段的数值模拟进展,以模拟粉末流动动力学,熔池和熔覆特性。对于每个阶段,都讨论了控制方程,过程变量的影响和实验验证技术。具体而言,我们概述了当前数值模型中的一些基本假设,这些假设可以作为进一步改进现有数值模型的指标。作者建议,数值模拟结果必须与实验结果相补充,以获得更好的包覆性能。

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