In-situ alloying of Cu in 316L stainless steel by PBF-LB: Influence of laser power and rescanning strategy

被引:0
|
作者
Sokkalingam, Rathinavelu [1 ]
Asberg, Mikael [1 ]
Krakhmalev, Pavel [1 ]
机构
[1] Karlstad Univ, Fac Hlth Sci & Technol, Dept Engn & Phys, SE-65188 Karlstad, Sweden
关键词
Laser beam powder bed fusion (PBF-LB); 316L/Cu alloy; In-situ alloying; Laser power; Rescanning;
D O I
10.1016/j.jmrt.2025.02.154
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Present work focuses on the in-situ 316L/Cu alloy development by using laser beam powder bed fusion (PBF-LB) additive manufacturing. Influence of the most influential processing parameters i.e., the laser power, and the number of scans i.e., single melting (SM), double melting (DM) and triple melting (TM), on the in-situ alloying ability was studied. At the lowest laser power, 175 W, some 316L powder particles were unmelted and the Cu was not mixed properly into the matrix of 316L. Increasing the laser power from 175 W to 235 W, improves the complete melting of all the components in 316L/Cu powder mix and effective alloying of Cu into 316L with improved homogeneity in its distribution after solidification. However, there is minor copper rich banding at the track overlaps in SM sample prepared at 235 W. Employing of rescanning strategy further improves the homogeneity in distribution of copper owing to the clean and high-quality molten pool with better intermixing by strong molten pool convection.
引用
收藏
页码:6137 / 6146
页数:10
相关论文
共 50 条
  • [21] The importance of adjusting the processing parameters for the resulting material density of PBF-LB AISI 316L lattice structures
    Szczesniak, Krzysztof
    Pawlak, Andrzej
    Dybala, Bogdan
    Kras, Aleksander
    ARCHIVES OF CIVIL AND MECHANICAL ENGINEERING, 2024, 24 (04)
  • [22] PBF-LB/M/316L vs. hot-rolled 316L-comparison of cyclic plastic material behavior
    Diller, Johannes
    Siebert, Dorina
    Radlbeck, Christina
    Mensinger, Martin
    23 EUROPEAN CONFERENCE ON FRACTURE, ECF23, 2022, 42 : 58 - 65
  • [23] The impact of alloying element Cu on corrosion and biofilms of 316L stainless steel exposed to seawater
    Gao, Yaohua
    Wu, Jiajia
    Zhang, Dun
    Wang, Peng
    Wang, Yi
    Zhu, Liyang
    Li, Ce
    Wang, Wenkai
    Zhao, Jinlong
    Yang, Chunguang
    Yang, Ke
    ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2024, 31 (12) : 18842 - 18855
  • [24] The impact of alloying element Cu on corrosion and biofilms of 316L stainless steel exposed to seawater
    Yaohua Gao
    Jiajia Wu
    Dun Zhang
    Peng Wang
    Yi Wang
    Liyang Zhu
    Ce Li
    Wenkai Wang
    Jinlong Zhao
    Chunguang Yang
    Ke Yang
    Environmental Science and Pollution Research, 2024, 31 : 18842 - 18855
  • [25] Direct laser deposition of 316L stainless steel
    Majumdar, JD
    Manna, I
    Li, L
    TRENDS IN MATERIALS AND MANUFACTURING TECHNOLOGIES FOR TRANSPORTATION INDUSTRIES AND POWDER METALLURGY RESEARCH AND DEVELOPMENT IN THE TRANSPORTATION INDUSTRY, 2005, : 41 - 44
  • [26] Repair of 304 stainless steel by laser cladding with 316L stainless steel powders followed by laser surface alloying with WC powders
    Song, Lijun
    Zeng, Guangcheng
    Xiao, Hui
    Xiao, Xianfeng
    Li, Simeng
    JOURNAL OF MANUFACTURING PROCESSES, 2016, 24 : 116 - 124
  • [27] Knowing the spectral directional emissivity of 316L and AlSi10Mg PBF-LB/M surfaces: gamechanger for quantitative in situ monitoring
    Becker, Tina
    Stark, Thomas
    Arduini, Mariacarla
    Manara, Jochen
    Altenburg, Simon J.
    PROGRESS IN ADDITIVE MANUFACTURING, 2024, 9 (03) : 695 - 704
  • [28] Laser surface modification of 316L stainless steel
    Balla, Vamsi Krishna
    Dey, Sangeetha
    Muthuchamy, Adiyen A.
    Ram, G. D. Janaki
    Das, Mitun
    Bandyopadhyay, Amit
    JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS, 2018, 106 (02) : 569 - 577
  • [29] On the in-situ characterisation of metastable pitting using 316L stainless steel as a case study
    Sander, Guilherme
    Cruz, Victor
    Bhat, Ninad
    Birbilis, Nick
    CORROSION SCIENCE, 2020, 177
  • [30] Improving creep strength of 316L stainless steel by alloying with nitrogen
    Mathew, M. D.
    Laha, K.
    Ganesan, V.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2012, 535 : 76 - 83