Fused Filament Fabrication Process: A Review of Numerical Simulation Techniques

被引:57
作者
Al Rashid, Ans [1 ]
Koc, Muammer [1 ,2 ]
机构
[1] Hamad Bin Khalifa Univ, Qatar Fdn, Coll Sci & Engn, Div Sustainable Dev, Doha 34110, Qatar
[2] Univ Karabuk, Fac Engn, TR-78050 Karabuk, Turkey
关键词
additive manufacturing; 3D printing; computational modeling; simulation technique; computational fluid dynamics; FIBER ORIENTATION; BONDING QUALITY; POLYMER; BEHAVIOR; PART; DEFORMATION; TEMPERATURE; COALESCENCE; MODEL;
D O I
10.3390/polym13203534
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Three-dimensional printing (3DP), also known as additive manufacturing (AM), has rapidly evolved over the past few decades. Researchers around the globe have been putting their efforts into AM processes improvement and materials development. One of the most widely used extrusion-based technology under AM processes is Fused Deposition Modeling (FDM), also known as Fused Filament Fabrication (FFF). Numerical simulation tools are being employed to predict the FFF process complexities and material behavior. These tools allow exploring candidate materials for their potential use in the FFF process and process improvements. The prime objective of this study is to provide a comprehensive review of state-of-the-art scientific achievements in numerical simulations of the FFF process for polymers and their composites. The first section presents an in-depth discussion of the FFF process's physical phenomena and highlights the multi-level complexity. The subsequent section discusses the research efforts, specifically on numerical simulation techniques reported in the literature for simulation of the FFF process. Finally, conclusions are drawn based on the reviewed literature, and future research directions are identified.</p>
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页数:20
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共 87 条
  • [1] THE USE OF TENSORS TO DESCRIBE AND PREDICT FIBER ORIENTATION IN SHORT FIBER COMPOSITES
    ADVANI, SG
    TUCKER, CL
    [J]. JOURNAL OF RHEOLOGY, 1987, 31 (08) : 751 - 784
  • [2] Current Biomedical Applications of 3D Printing and Additive Manufacturing
    Ahangar, Pouyan
    Cooke, Megan E.
    Weber, Michael H.
    Rosenzweig, Derek H.
    [J]. APPLIED SCIENCES-BASEL, 2019, 9 (08):
  • [3] Al Rashid A., 2020, INT C MAT ENG TECHN, P553
  • [4] Additive manufacturing of polymer nanocomposites: Needs and challenges in materials, processes, and applications
    Al Rashid, Ans
    Khan, Shoukat Alim
    Al-Ghamdi, Sami G.
    Koc, Muammer
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2021, 14 : 910 - 941
  • [5] Vat photopolymerization of polymers and polymer composites: Processes and applications
    Al Rashid, Ans
    Ahmed, Waqas
    Khalid, Muhammad Yasir
    Koc, Muammer
    [J]. ADDITIVE MANUFACTURING, 2021, 47
  • [6] Creep and Recovery Behavior of Continuous Fiber-Reinforced 3DP Composites
    Al Rashid, Ans
    Koc, Muammer
    [J]. POLYMERS, 2021, 13 (10)
  • [7] Additive manufacturing: Technology, applications, markets, and opportunities for the built environment
    Al Rashid, Ans
    Khan, Shoukat Alim
    Al-Ghamdi, Sami G.
    Koc, Muammer
    [J]. AUTOMATION IN CONSTRUCTION, 2020, 118
  • [8] Utilization of Banana Fiber-Reinforced Hybrid Composites in the Sports Industry
    Al Rashid, Ans
    Khalid, Muhammad Yasir
    Imran, Ramsha
    Ali, Umair
    Koc, Muammer
    [J]. MATERIALS, 2020, 13 (14)
  • [9] Warpage of FDM parts: Experimental tests and analytic model
    Armillotta, Antonio
    Bellotti, Mattia
    Cavallaro, Marco
    [J]. ROBOTICS AND COMPUTER-INTEGRATED MANUFACTURING, 2018, 50 : 140 - 152
  • [10] Bellehumeur C., 2004, J. Manuf. Process, V6, P170, DOI [10.1016/S1526-6125(04)70071-7, DOI 10.1016/S1526-6125(04)70071-7]