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Numerical Study on Laser Cladding of BT20 Alloy

机译:BT20合金激光熔覆的数值研究

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摘要

A 3-D modeling based on the numerical resolution of fluid flow and heat transfer are utilized to investigate the thermal phenomena during laser laser-cladding processes of BT20 alloy. From this model, it has been found that the shape and size of the molten pool in the work piece are affected by laser cladding parameters such as scanning speed and the incident laser power. The effects of process parameters on the melt pool are quantitatively discussed by numerical analysis. Furthermore, it has been observed that the surface tension temperature coefficient, Marangoni convection, which is sensitive to the active elements in the titanium alloy composition, also affect the pattern of the fluid flow in the molten pool.
机译:基于流体流动和热传递的数值分辨率的三维建模用于研究BT20合金激光激光覆层过程中的热现象。从该模型中,已经发现工件中熔池的形状和尺寸受激光包层参数的影响,例如扫描速度和入射激光功率。通过数值分析定量讨论了过程参数对熔融池的影响。此外,已经观察到表面张力温度系数,玛利诺对对钛合金组合物中的活性元素敏感的,也影响了熔池中的流体流动的图案。

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