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Intra- and Inter-Repeatability of Profile Deviations of an AlSi10Mg Tooling Component Manufactured by Laser Powder Bed Fusion

机译:激光粉末床熔合制造的AlSi10Mg工具组件的轮廓偏差的内部和内部重复性

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Laser powder bed fusion (LPBF) is one of the most potent additive manufacturing (AM) processes. Metallic LPBF is gaining popularity, but one of the obstacles facing its larger industrial use is the limited knowledge of its dimensional and geometrical performances. This paper presents a metrological investigation of the geometrical and dimensional deviations of a selected LPBF-manufactured component, according to the ASME Y14.5-2009 standard. This approach allows for an estimation of both the process capability, as per ISO 22514-4 standard, and the correlations between the part location in the manufacturing chamber and the profile deviations. Forty-nine parts, which are representative of a typical aerospace tooling component (30 mm in diameter and 27.2 mm in height) were manufactured from AlSi10Mg powder using an EOSINT M280 printer and subjected to a stress relief annealing at 300 °C for two hours. This manufacturing procedure was repeated three times. A complete statistical analysis was carried out and the results of the investigation show that LPBF performances for all geometrical variations of 147 identical parts fall within a range of 230 µm at a 99.73% level.
机译:激光粉末床熔合(LPBF)是最有效的增材制造(AM)工艺之一。金属LPBF越来越受欢迎,但是其较大的工业用途面临的障碍之一是对其尺寸和几何性能的了解有限。本文介绍了根据ASME Y14.5-2009标准对选定LPBF制造的组件进行几何和尺寸偏差的计量研究。这种方法既可以估计根据ISO 22514-4标准的处理能力,又可以估计制造室内零件位置与轮廓偏差之间的相关性。使用EOSINT M280打印机由AlSi10Mg粉末制造代表典型航空航天工具组件的49个零件(直径30毫米,高度27.2毫米),并在300°C下进行应力消除退火两个小时。将该制造过程重复三遍。进行了完整的统计分析,调查结果表明,对于147个相同零件的所有几何变化,LPBF性能在99.73%的水平范围内在230 µm之内。

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