Ti-6Al-4V hollow-strut lattice materials by laser powder bed fusion

被引:18
|
作者
Noronha, J. [1 ]
Rogers, J. [1 ]
Leary, M. [1 ]
Kyriakou, E. [1 ]
Inverarity, S. B. [1 ]
Das, R. [1 ]
Brandt, M. [1 ]
Qian, M. [1 ]
机构
[1] RMIT Univ, Ctr Addit Mfg, Sch Engn, Melbourne, VIC 3000, Australia
基金
澳大利亚研究理事会;
关键词
Hollow-strut lattice; Additive manufacturing; Mechanical properties; Ti-6Al-4V; MECHANICAL-PROPERTIES; POROUS BIOMATERIALS; BONE-REPLACEMENT; DEFORMATION; BEHAVIOR; DESIGN; MODELS; MAPS;
D O I
10.1016/j.addma.2023.103637
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Hollow-strut metal lattices are an emerging class of cellular metallic materials. However, their mechanical properties at relative densities (rho(RD)) higher than 10% are largely unknown because conventional manufacturing methods are ill-equipped to fabricate them. In this study, face-centered cubic (FCC) and FCC with Z-struts (FCCZ) Ti-6Al-4V hollow-strut lattices with rho(RD) = 8-16% were fabricated using laser powder bed fusion (LPBF) additive manufacturing (AM). Both lattice topologies exhibited yield strength (sigma*) and elastic modulus (E*) at the upper empirical limits for solid-strut metal lattices with similar pRD values. Furthermore, the difference in sigma* or E* between hollow-strut FCC and FCCZ lattices is much smaller than that between solid-strut FCC and FCCZ lattices. The deformation behaviours and failure modes of the LPBF-manufactured Ti-6Al-4V hollow-strut FCC and FCCZ lattices were investigated by uniaxial compression and finite element modelling (FEM). In addition to the lattice topology, the fine (similar to 20 mu m) prior-beta grains in the Ti-6Al-4V hollow-strut thin walls contribute positively to the superior mechanical properties, compared with the coarse grains in Ti-6Al-4V solid-strut lattices. Finally, the manufacturability established in this work provides a reliable pathway for LPBF-AM of Ti-6Al-4V hollow-strut lattices. The findings of this work are expected to apply to other hollow-strut lattice topologies.
引用
收藏
页数:18
相关论文
共 50 条
  • [1] Characterization of the structural features of Ti-6Al-4V hollow-strut lattices fabricated by laser powder bed fusion
    Zhong, H. Z.
    Song, T.
    Das, R.
    Li, C. W.
    Gu, J. F.
    Qian, M.
    MATERIALS CHARACTERIZATION, 2024, 217
  • [2] Manufacturability of Ti-6Al-4V Hollow-Walled Lattice Struts by Laser Powder Bed Fusion
    J. Noronha
    M. Qian
    M. Leary
    E. Kyriakou
    S. Brudler
    M. Brandt
    JOM, 2021, 73 : 4199 - 4208
  • [3] AlSi10Mg hollow-strut lattice metamaterials by laser powder bed fusion
    Noronha, Jordan
    Leary, Martin
    Brandt, Milan
    Qian, Ma
    MATERIALS ADVANCES, 2024, 5 (09): : 3751 - 3770
  • [4] Process variation in Laser Powder Bed Fusion of Ti-6Al-4V
    Chen, Zhuoer
    Wu, Xinhua
    Davies, Chris H. J.
    ADDITIVE MANUFACTURING, 2021, 41
  • [5] Thermal Conductivity of Ti-6Al-4V in Laser Powder Bed Fusion
    Bartsch, Katharina
    Bossen, Bastian
    Chaudhary, Waqar
    Landry, Michael
    Herzog, Dirk
    FRONTIERS IN MECHANICAL ENGINEERING-SWITZERLAND, 2022, 8
  • [6] Effect of powder recycling in laser-based powder bed fusion of Ti-6Al-4V
    Denti L.
    Sola A.
    Defanti S.
    Sciancalepore C.
    Bondioli F.
    Manufacturing Technology, 2019, 19 (02): : 190 - 196
  • [7] Laser surface polishing of Ti-6Al-4V parts manufactured by laser powder bed fusion
    Obeidi, Muhannad Ahmed
    Mussatto, Andre
    Dogu, Merve Nur
    Sreenilayam, Sithara P.
    McCarthy, Eanna
    Ul Ahad, Inam
    Keaveney, Shane
    Brabazon, Dermot
    SURFACE & COATINGS TECHNOLOGY, 2022, 434
  • [8] Dynamic a globularization in laser powder bed fusion additively manufactured Ti-6Al-4V
    Chen, J.
    Fabijanic, D.
    Brandt, M.
    Zhao, Y.
    Ren, S. B.
    Xu, W.
    ACTA MATERIALIA, 2023, 255
  • [9] A study on surface morphology and tension in laser powder bed fusion of Ti-6Al-4V
    Khorasani, Mahyar
    Ghasemi, AmirHossein
    Awan, Umar Shafique
    Hadavi, Elahe
    Leary, Martin
    Brandt, Milan
    Littlefair, Guy
    O'Neil, William
    Gibson, Ian
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2020, 111 (9-10): : 2891 - 2909
  • [10] Interplay of strain and phase evolution of laser powder bed fusion Ti-6Al-4V
    Andrews, C.
    Heo, T. W.
    Shi, R.
    Basgul, C.
    Kurtz, S.
    Matthews, M. J.
    Taheri, M. L.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2022, 855