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Research Article

2000W Blue laser directed energy deposition of AlSi7Mg: process parameters, molten pool characteristics, and appearance defects

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Article: e2120405 | Received 09 Jul 2022, Accepted 29 Aug 2022, Published online: 20 Sep 2022

References

  • Akbari, P., F. Ogoke, N. Y. Kao, K. Meidani, C. Y. Yeh, W. Lee, and A. B. Farimani. 2022. “MeltpoolNet: Melt Pool Characteristic Prediction in Metal Additive Manufacturing Using Machine Learning.” Additive Manufacturing 55): 102817. doi:10.1016/j.addma.2022.102817.
  • Asano, K., M. Tsukamoto, Y. Funada, Y. Sakon, N. Abe, Y. Sato, R. Higashino, M. Sengoku, and M. Yoshida. 2018. “Copper Film Formation on Metal Surfaces with 100 W Blue Direct Diode Laser System.” Journal of Laser Applications 30 (3): 032602. doi:10.2351/1.5040635.
  • Brandau, B., A. Da Silva, C. Wilsnack, F. Brueckner, and A. F. H. Kaplan. 2022. “Absorbance Study of Powder Conditions for Laser Additive Manufacturing.” Materials & Design 216): 110591. doi:10.1016/j.matdes.2022.110591.
  • Britten, S. W., L. Schmid, T. Molitor, and M. Rütering. 2020. “Blue High-Power Laser Sources for Processing Solutions in e-Mobility and Beyond.” Procedia CIRP 94: 592–595. doi:10.1016/j.procir.2020.09.082.
  • Caprio, L., A. G. Demir, and B. Previtali. 2020. “Observing Molten Pool Surface Oscillations During Keyhole Processing in Laser Powder bed Fusion as a Novel Method to Estimate the Penetration Depth.” Additive Manufacturing 36): 101470. doi:10.1016/j.addma.2020.101470.
  • Chen, B., Y. Z. Yao, Y. H. Huang, W. K. Wang, C. W. Tan, and J. C. Feng. 2019. “Quality Detection of Laser Additive Manufacturing Process Based on Coaxial Vision Monitoring.” Sensor Review 39 (4): 512–521. doi:10.1108/SR-03-2018-0068.
  • Chen, B., Y. Z. Yao, X. G. Song, C. W. Tan, L. Cao, and J. C. Feng. 2018. “Microstructure and Mechanical Properties of Additive Manufacturing AlSi10Mg Alloy Using Direct Metal Deposition.” Ferroelectrics 523 (1): 153–166. doi:10.1080/00150193.2018.1392147.
  • Das, A., R. Fritz, M. Finuf, and I. Masters. 2020. “Blue Laser Welding of Multi-Layered AISI 316L Stainless Steel Micro-Foils.” Optics & Laser Technology 132): 106498. doi:10.1016/j.optlastec.2020.106498.
  • Donadello, S., V. Furlan, A. G. Demir, and B. Previtali. 2022. “Interplay Between Powder Catchment Efficiency and Layer Height in Self-Stabilized Laser Metal Deposition.” Optics and Lasers in Engineering 149): 106817. doi:10.1016/j.optlaseng.2021.106817.
  • Doubenskaia, M., M. Pavlov, S. Grigoriev, and I. Smurov. 2013. “Definition of Brightness Temperature and Restoration of True Temperature in Laser Cladding Using Infrared Camera.” Surface and Coatings Technology 220: 244–247. doi:10.1016/j.surfcoat.2012.10.044.
  • Feng, W., Z. Z. Mao, Y. Yang, H. Ma, K. Zhao, C. Q. Qi, C. Hao, Z. W. Liu, H. M. Xie, and S. Liu. 2022. “Online Defect Detection Method and System Based on Similarity of the Temperature Field in the Melt Pool.” Additive Manufacturing 54): 102760. doi:10.1016/j.addma.2022.102760.
  • Gao, Y., J. B. Zhao, Y. H. Zhao, Z. G. Wang, H. W. Song, and M. Q. Gao. 2019. “Effect of Processing Parameters on Solidification Defects Behavior of Laser Deposited AlSi10Mg Alloy.” Vacuum 167: 471–478. doi:10.1016/j.vacuum.2019.06.042.
  • Hara, T., Y. Sato, R. Higashino, Y. Funada, T. Ohkubo, K. Morimoto, N. Abe, and M. Tsukamoto. 2020. “Pure Copper Layer Formation on Pure Copper Substrate Using Multi-Beam Laser Cladding System with Blue Diode Lasers.” Applied Physics A 126 (6): 418. doi:10.1007/s00339-020-03559-6.
  • International A. Standard Guide for Directed Energy Deposition of Metals. West Conshohocken, PA.: ASTM International. https://www.astm.org/f3187-16.html.
  • Jia, H. L., H. Sun, H. Z. Wang, Y. Wu, and H. W. Wang. 2022. “Size Effect in Selective Laser Melting Additive Manufacturing of 700 mm Large Component.” Journal of Manufacturing Processes 75: 125–137. doi:10.1016/j.jmapro.2022.01.011.
  • Kiani, P., A. D. Dupuy, K. K. Ma, and J. M. Schoenung. 2020. “Directed Energy Deposition of AlSi10Mg: Single Track Nonscalability and Bulk Properties.” Materials & Design 194): 108847. doi:10.1016/j.matdes.2020.108847.
  • Ono, K., Y. Sato, Y. Takazawa, Y. Morimoto, K. Takenaka, Y. Yamashita, Y. Funada, N. Abe, and M. Tsukamoto. 2021. “Development of High Intensity Multibeam Laser Metal Deposition System with Blue Diode Lasers for Additively Manufacturing of Copper rod.” Journal of Laser Applications 33 (4): 042014. doi:10.2351/7.0000510.
  • Onwubolu, G. C., J. P. Davim, C. Oliveira, and A. Cardoso. 2007. “Prediction of Clad Angle in Laser Cladding by Powder Using Response Surface Methodology and Scatter Search.” Optics & Laser Technology 39 (6): 1130–1134. doi:10.1016/j.optlastec.2006.09.008.
  • Prasad H, Siva, F. Brueckner, and A. F. H. Kaplan. 2020. “Powder Incorporation and Spatter Formation in High Deposition Rate Blown Powder Directed Energy Deposition.” Additive Manufacturing 35: 101413. doi:10.1016/j.addma.2020.101413.
  • Sampson, R., R. Lancaster, M. Sutcliffe, D. Carswell, C. Hauser, and J. Barras. 2020. “An Improved Methodology of Melt Pool Monitoring of Direct Energy Deposition Processes.” Optics & Laser Technology 127: 106194. doi:10.1016/j.optlastec.2020.106194.
  • Sinclair, L., S. J. Clark, Y. H. Chen, S. Marussi, S. R. Shah, O. V. Magdysyuk, R. C. Atwood, G. J. Baxter, M. Jones, D. G. McCartney, et al. 2022. “Sinter Formation During Directed Energy Deposition of Titanium Alloy Powders.” International Journal of Machine Tools and Manufacture 176): 103887. doi:10.1016/j.ijmachtools.2022.103887.
  • Singh, A., A. Ramakrishnan, and G. P. Dinda. 2017. “Direct Laser Metal Deposition of Eutectic Al-Si Alloy for Automotive Applications.” TMS, 146t. h Annual Meeting & Exhibition Supplemental Proceedings2017. p. 71-80. Springer International Publishing.
  • Tang, Z. J., W. W. Liu, Z. R. Yan, H. Wang, and H. C. Zhang. 2019. “Study on Evolution Behavior of Geometrical Accuracy Based on Dynamic Characteristics of Molten Pool in Laser-Based Direct Energy Deposition.” Journal of Mechanical Engineering 55 (15): 39–47. doi:10.3901/JME.2019.15.039.
  • Tang, Z. J., W. W. Liu, Y. W. Wang, K. M. Saleheen, Z. C. Liu, S. T. Peng, Z. Zhang, and H. C. Zhang. 2020a. “A Review on in Situ Monitoring Technology for Directed Energy Deposition of Metals.” The International Journal of Advanced Manufacturing Technology 108 (11-12): 3437–3463. doi:10.1007/s00170-020-05569-3.
  • Tang, Z. J., W. W. Liu, N. Zhang, Y. W. Wang, and H. C. Zhang. 2020. “Real-time Prediction of Penetration Depths of Laser Surface Melting Based on Coaxial Visual Monitoring.” Optics and Lasers in Engineering 128: 106034. doi:10.1016/j.optlaseng.2020.106034.
  • Tang Z-j,: Liu W-w, Zhu L-n, Liu Z-c, Yan Z-r, Lin D, Zhang Z, Zhang H-C. 2021. “Investigation on Coaxial Visual Characteristics of Molten Pool in Laser-Based Directed Energy Deposition of AISI 316L Steel.” Journal of Materials Processing Technology 290 (290): 116996. doi:10.1016/j.jmatprotec.2020.116996.
  • Wang, H., Y. Kawahito, R. Yoshida, Y. Nakashima, and K. Shiokawa. 2017. “Development of a High-Power Blue Laser (445  nm) for Material Processing.” Optics Letters 42 (12): 2251–2254. doi:10.1364/OL.42.002251.
  • Wang , X., L. Q. Li, J. Y. Qu, and W. Tao. 2019. “Microstructure and Mechanical Properties of Laser Metal Deposited AlSi10Mg Alloys.” Materials Science and Technology 35 (18): 2284–2293. doi:10.1080/02670836.2019.1674022.
  • Wang, A., H. Z. Wang, Y. Wu, and H. W. Wang. 2021. “3D Printing of Aluminum Alloys Using Laser Powder Deposition: A Review.” The International Journal of Advanced Manufacturing Technology 116 (1-2): 1–37. doi:10.1007/s00170-021-07440-5.
  • Wang, H., Y. Wu, and H. Wang. 2021. “Current Status of Applying the Blue Laser in Nonferrous Metals Processing.” Chin J Nonferrous Met 31 (11): 3059–3070. doi:10.11817/j.ysxb.1004.0609.2021-42030.
  • Yan, Z. R., W. W. Liu, Z. J. Tang, X. Y. Liu, N. Zhang, Z. Q. Wang, and H. C. Zhang. 2019. “Effect of Thermal Characteristics on Distortion in Laser Cladding of AISI 316L.” Journal of Manufacturing Processes 44: 309–318. doi:10.1016/j.jmapro.2019.06.011.
  • Yang, H., J. Wu, Q. Wei, Z. Tang, A. Wang, X. Jin, X. Li, Y. Wu, G. Lu, H. Wang, et al. 2022. “Stable Cladding of High Reflectivity Pure Copper on the Aluminum Alloy Substrate by an Infrared-Blue Hybrid Laser.” Additive Manufacturing Letters 3: 100040. doi:10.1016/j.addlet.2022.100040.