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Longitudinal Milling and Fine Abrasive Finishing Operations to Improve Surface Integrity of Metal AM Components

机译:纵向铣削和精细研磨精加工操作,以提高金属增材制造组件的表面完整性

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Growing market of additive manufacturing and in particular, metal AM has allowed the manufacturers to produce a wide variety of complex designs with near-net shape in minimum time without the need for custom tooling. However, the application of additive manufactured components in various applications, e.g., biomechanical contacts, naval and aerospace components are limited due to its poor surface integrity and part feature tolerance limits. Traditional methods, e.g., milling, do provide solution to some of the post-processing needs, however, results in poor material utilization, requires custom tooling or may be completely infeasible for complex geometries. In the current work, we focus on developing a post-processing strategy by coupling traditional machining processes with non-traditional fine abrasive finishing (FAF) methods. Preliminary results on 316 L stainless steel components fabricated via laser powder-bed fusion suggests that the proposed post-processing strategy can be used to (a) selectively impart surface finish S a 25 nm, and (b) reduce the surface porosity by ~89% when compared to the as-fabricated sample.
机译:不断增长的增材制造市场,尤其是金属增材制造市场,使制造商能够在最短的时间内生产出接近最终形状的各种复杂设计,而无需定制工具。然而,由于其不良的表面完整性和零件特征公差极限,在各种应用中,例如生物力学接触,海军和航空航天零件中,增材制造部件的应用受到限制。传统方法(例如铣削)确实可以解决一些后处理需求,但是会导致材料利用率差,需要定制工具或对于复杂的几何形状可能完全不可行。在当前的工作中,我们专注于通过将传统的加工过程与非传统的精细磨料精加工(FAF)方法相结合来开发后处理策略。通过激光粉末床熔合制备的316 L不锈钢组件的初步结果表明,所提出的后处理策略可用于(a)选择性赋予表面光洁度S a <25 nm,并且(b)将表面孔隙率降低〜与制成样品相比,为89%。

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