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Two-step laser based surface treatments of laser metal deposition manufactured Ti6A14V components

机译:基于两步激光的激光金属沉积表面处理,制造了Ti6a14V组件

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摘要

Surface treatment is required in additive manufacturing (AM) to improve the surface quality. However, laser polishing (LP) with a small molten zone cannot directly remove the surface waviness generated by laser metal deposition (LMD). In this study, a two-step surface treatment involving picosecond laser machining (PLM) and LP is presented to improve the surface quality of Ti6Al4V components fabricated by LMD. The effectiveness of PLM on the surface waviness removal is investigated by evaluating 3D surface topography and 2D surface profile under different processing parameters. The surface roughness improvement is mainly contributed by LP as compared to PLM. The surface quality can be greatly improved by the present two-step laser based treatment. The microstructure evolution in the present treatment is also investigated through experimental observation and thermal analysis based on finite element method.
机译:在加性制造(AM)中需要表面处理,以改善表面质量。 然而,具有小熔融区的激光抛光(LP)不能直接去除激光金属沉积(LMD)产生的表面波纹。 在该研究中,提出了一种涉及PICOSECOND激光加工(PLM)和LP的两步表面处理,以改善LMD制造的Ti6Al4V部件的表面质量。 通过在不同的处理参数下评估3D表面形貌和2D表面轮廓来研究PLM对表面波纹去除的有效性。 与PLM相比,表面粗糙度改善主要由LP贡献。 通过基于两步激光的处理可以大大提高表面质量。 通过基于有限元方法的实验观察和热分析,还研究了本处理中的微观结构演化。

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