Powder spreading, densification, and part deformation in binder jetting additive manufacturing

被引:0
|
作者
Yousub Lee
Peeyush Nandwana
Srdjan Simunovic
机构
[1] Oak Ridge National Laboratory,Computational Sciences and Engineering Division
[2] Oak Ridge National Laboratory,Material Science and Technology Division
来源
关键词
Binder jetting; Additive manufacturing; Powder spreading; Sintering deformation; Discrete element method; Finite element method; Particle segregation;
D O I
暂无
中图分类号
学科分类号
摘要
Binder jetting additive manufacturing (AM) can print complex structures in economical and scalable manner. Binder jetting AM comprises of deposition and weak binding of particles, known as green part, at room temperature and subsequent binder removal and sintering densification at high temperatures. However, during the densification (i.e., sintering), the part significantly deforms due to volume shrinkage. The deformation during sintering is difficult to predict, which prevents the widespread application of this technology. In this research, powder spreading simulation using discrete element method (DEM) was performed first to capture local variations in powder bed configuration. Second, finite element method (FEM) with a phenomenological continuum constitutive model was used to predict part shrinkage during the sintering process. DEM simulation showed variations in packing density, particle segregation, formation of uneven powder bed surface, and shift in particle size distribution (PSD). The sintering simulation modeled part deformation with a reasonable accuracy of 3% for solid-state sintering and intermediate liquid phase sintering. A demonstration case with non-uniform initial packing density showed that inhomogeneous green part density and PSD should be accounted for prediction of part deformation in binder jetting AM.
引用
收藏
页码:111 / 125
页数:14
相关论文
共 50 条
  • [31] Impact of binder on part densification: Enhancing binder jetting part properties through the fabrication of shelled geometries
    Rahman, Kazi Moshiur
    Wei, Amanda
    Miyanaji, Hadi
    Williams, Christopher B.
    ADDITIVE MANUFACTURING, 2023, 62
  • [32] SiC-Si composite part fabrication via SiC powder binder jetting additive manufacturing and molten-Si infiltration
    Oh, Ji-Won
    Park, Jinsu
    Nahm, Sahn
    Choi, Hanshin
    INTERNATIONAL JOURNAL OF REFRACTORY METALS & HARD MATERIALS, 2021, 101
  • [33] Ceramic binder jetting additive manufacturing: Relationships among powder properties, feed region density, and powder bed density
    Li, Ming
    Miao, Guanxiong
    Moghadasi, Mohammadamin
    Pei, Zhijian
    Ma, Chao
    CERAMICS INTERNATIONAL, 2021, 47 (17) : 25147 - 25151
  • [34] Investigation of Sintering Shrinkage in Binder Jetting Additive Manufacturing Process
    Wang, Yujia
    Zhao, Yaoyao Fiona
    45TH SME NORTH AMERICAN MANUFACTURING RESEARCH CONFERENCE (NAMRC 45), 2017, 10 : 779 - 790
  • [35] Additive manufacturing of inorganic components using a geopolymer and binder jetting
    Elsayed, Hamada
    Gobbin, Filippo
    Picicco, Martiniano
    Italiano, Antonino
    Colombo, Paolo
    ADDITIVE MANUFACTURING, 2022, 56
  • [36] Additive manufacturing of lead-free KNN by binder jetting
    Mariani M.
    Beltrami R.
    Migliori E.
    Cangini L.
    Mercadelli E.
    Baldisserri C.
    Galassi C.
    Lecis N.
    Journal of the European Ceramic Society, 2022, 42 (13): : 5598 - 5605
  • [37] Difference between powder bed density and green density for a free-flowing powder in binder jetting additive manufacturing
    Li, Ming
    Miao, Guanxiong
    Du, Wenchao
    Pei, Zhijian
    Ma, Chao
    JOURNAL OF MANUFACTURING PROCESSES, 2022, 84 : 448 - 456
  • [38] Ceramic binder jetting additive manufacturing: Effects of granulation on properties of feedstock powder and printed and sintered parts
    Miao, Guanxiong
    Du, Wenchao
    Moghadasi, Mohammadamin
    Pei, Zhijian
    Ma, Chao
    ADDITIVE MANUFACTURING, 2020, 36
  • [39] Fabrication of barium titanate by binder jetting additive manufacturing technology
    Gaytan, S. M.
    Cadena, M. A.
    Karim, H.
    Delfin, D.
    Lin, Y.
    Espalin, D.
    MacDonald, E.
    Wicker, R. B.
    CERAMICS INTERNATIONAL, 2015, 41 (05) : 6610 - 6619
  • [40] Additive Manufacturing of a Chalk Powder NRD 3-Port Junction via Binder Jetting Technology
    Massoni, E.
    Espin-Lopez, P. F.
    Pasian, M.
    Bozzi, M.
    Perregrini, L.
    Marconi, S.
    Alaimo, G.
    Auricchio, F.
    2017 IEEE MTT-S INTERNATIONAL MICROWAVE WORKSHOP SERIES ON ADVANCED MATERIALS AND PROCESSES FOR RF AND THZ APPLICATIONS (IMWS-AMP), 2017,