Yonehara Makiko, Kato Chika, Ikeshoji Toshi-Taka, Takeshita Koki, Kyogoku Hideki
Fundamental Technology for Next Generation Research Institute, Kindai University, 1 Takaya-Umenobe, Higashi-Hiroshima, Hiroshima, 739-2116, Japan.
Technology Research Association for Future Additive Manufacturing, Kindai University Hiroshima Branch, 1 Takaya-Umenobe, Higashi-Hiroshima, Hiroshima, 739-2116, Japan.
Sci Rep. 2021 Nov 24;11(1):22874. doi: 10.1038/s41598-021-02240-z.
The availability of an in-situ monitoring and feedback control system during the implementation of metal additive manufacturing technology ensures that high-quality finished parts are manufactured. This study aims to investigate the correlation between the surface texture and internal defects or density of laser-beam powder-bed fusion (LB-PBF) parts. In this study, 120 cubic specimens were fabricated via application of the LB-PBF process to the IN 718 Ni alloy powder. The density and 35 areal surface-texture parameters of manufactured specimens were determined based on the ISO 25,178-2 standard. Using a statistical method, a strong correlation was observed between the areal surface-texture parameters and density or internal defects within specimens. In particular, the areal surface-texture parameters of reduced dale height, core height, root-mean-square height, and root-mean-square gradient demonstrate a strong correlation with specimen density. Therefore, in-situ monitoring of these areal surface-texture parameters can facilitate their use as control variables in the feedback system.
在金属增材制造技术实施过程中,原位监测和反馈控制系统的可用性确保了高质量成品零件的制造。本研究旨在调查激光束粉末床熔融(LB-PBF)零件的表面纹理与内部缺陷或密度之间的相关性。在本研究中,通过对IN 718镍合金粉末应用LB-PBF工艺制造了120个立方体试样。根据ISO 25178-2标准测定了制造试样的密度和35个表面纹理面积参数。采用统计方法,观察到试样的表面纹理面积参数与密度或内部缺陷之间存在很强的相关性。特别是,减小的谷高、核心高度、均方根高度和均方根梯度等表面纹理面积参数与试样密度呈现出很强的相关性。因此,对这些表面纹理面积参数进行原位监测有助于将其用作反馈系统中的控制变量。