Design and Implementation of a Multisensor Coaxial Monitoring System With Correction Strategies for Selective Laser Melting of a Maraging Steel

被引:52
作者
Demir, Ali Gokhan [1 ]
De Giorgi, Chiara [1 ]
Previtali, Barbara [1 ]
机构
[1] Politecn Milan, Dept Mech Engn, Via La Masa 1, I-20156 Milan, Italy
来源
JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME | 2018年 / 140卷 / 04期
关键词
additive manufacturing; in situ monitoring; defect correction; maraging steel; METAL-POWDER; STAINLESS-STEEL; QUALITY-CONTROL; HIGH-SPEED; SLM; CONSOLIDATION; ALLOY; FLOW;
D O I
10.1115/1.4038568
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Development of monitoring devices becomes crucially important in selective laser melting (SLM) due to the high process complexity and the high value of the products obtained. This work discusses the design of a coaxial monitoring system for SLM using multiple sensors. In particular, an optical model is developed for the propagation of the process emission from the workpiece to the monitoring module. The model is used to determine the field of view (FOV) around the monitored zone. The lens arrangements and the optical filters are chosen according to the model results. They were implemented to construct a monitoring module consisting of two cameras viewing visible and near-infrared wavelength bands, as well as a photodiode viewing the back-reflected laser emission, all integrated in a coaxial configuration. The system functionality is tested with a prototype SLM machine during the processing of 18Ni300 maraging steel, a material known to be prone to porosity. In particular, different remelting strategies were employed as possible correction strategies to reduce porosity. The signals were interpreted as being indicators of the change in absorptivity of the laser light by the powder bed, of the plasma and molten pool, as well as of the evolution of the temperature field.
引用
收藏
页数:14
相关论文
共 48 条
  • [1] [Anonymous], SOL FREEF FABR S P
  • [2] Quality control of laser- and powder bed-based Additive Manufacturing (AM) technologiesro
    Berumen, Sebastian
    Bechmann, Florian
    Lindner, Stefan
    Kruth, Jean-Pierre
    Craeghs, Tom
    [J]. LASER ASSISTED NET SHAPE ENGINEERING 6, PROCEEDINGS OF THE LANE 2010, PART 2, 2010, 5 : 617 - 622
  • [3] Characterization of the process control for the direct laser metallic powder deposition
    Bi, Guijun
    Gasser, Andres
    Wissenbach, Konrad
    Drenker, Alexander
    Poprawe, Reinhart
    [J]. SURFACE & COATINGS TECHNOLOGY, 2006, 201 (06) : 2676 - 2683
  • [4] In situ quality control of the selective laser melting process using a high-speed, real-time melt pool monitoring system
    Clijsters, S.
    Craeghs, T.
    Buls, S.
    Kempen, K.
    Kruth, J-P.
    [J]. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2014, 75 (5-8) : 1089 - 1101
  • [5] THROUGH OPTICAL COMBINER MONITORING OF FIBER LASER PROCESSES
    Colombo, D.
    Previtali, B.
    [J]. INTERNATIONAL JOURNAL OF MATERIAL FORMING, 2010, 3 : 1123 - 1126
  • [6] Comparison of methods for data analysis in the remote monitoring of remote laser welding
    Colombo, Daniele
    Colosimo, Bianca Maria
    Previtali, Barbara
    [J]. OPTICS AND LASERS IN ENGINEERING, 2013, 51 (01) : 34 - 46
  • [7] Craeghs T., 2011, Proc. Solid Free. Fabr. Symp, P212
  • [8] Detection of process failures in Layerwise Laser Melting with optical process monitoring
    Craeghs, Tom
    Clijsters, Stijn
    Kruth, Jean-Pierre
    Bechmann, Florian
    Ebert, Marie-Christin
    [J]. LASER ASSISTED NET SHAPE ENGINEERING 7 (LANE 2012), 2012, 39 : 753 - 759
  • [9] Determination of geometrical factors in Layerwise Laser Melting using optical process monitoring
    Craeghs, Tom
    Clijsters, Stijn
    Yasa, Evren
    Bechmann, Florian
    Berumen, Sebastian
    Kruth, Jean-Pierre
    [J]. OPTICS AND LASERS IN ENGINEERING, 2011, 49 (12) : 1440 - 1446
  • [10] Feedback control of Layerwise Laser Melting using optical sensors
    Craeghs, Tom
    Bechmann, Florian
    Berumen, Sebastian
    Kruth, Jean-Pierre
    [J]. LASER ASSISTED NET SHAPE ENGINEERING 6, PROCEEDINGS OF THE LANE 2010, PART 2, 2010, 5 : 505 - 514