Effect of 3D Printing Parameters on the Fatigue Properties of Parts Manufactured by Fused Filament Fabrication: A Review

被引:53
作者
Bakhtiari, Hamed [1 ]
Aamir, Muhammad [1 ]
Tolouei-Rad, Majid [1 ]
机构
[1] Edith Cowan Univ, Sch Engn, Joondalup, WA 6027, Australia
来源
APPLIED SCIENCES-BASEL | 2023年 / 13卷 / 02期
关键词
fatigue strength; fused filament fabrication; 3D printing parameters; additive manufacturing; mechanical properties; MECHANICAL CHARACTERIZATION; TENSILE-STRENGTH; BEHAVIOR; SCAFFOLDS; DEFORMATION;
D O I
10.3390/app13020904
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The advancement in 3D printing techniques has raised the hope to use additively manufactured parts as final products in various industries. However, due to the layer-by-layer nature of AM parts, they are highly susceptible to failure when they are subjected to fatigue loading. This review provides a detailed account of the influence of 3D printing parameters on the fatigue properties of parts manufactured by fused filament fabrication (FFF). Existing standards for fatigue testing of polymers and their limitation for 3D-printed parts are discussed. In addition, the cyclic behaviour of polymers is reviewed, and the impact of 3D printing parameters on the mechanical behaviour of FFF parts under tensile, compressive, flexural, and bending fatigue is investigated according to the published results in the literature. Finally, a summary of the works undertaken and suggestions for future research are provided. The influence of 3D printing parameters on the fatigue performance of prints can be different from that seen in the case of static loading and strongly depends on the fatigue loading type. While cross-over infill patterns, higher infill density, and higher layer height favour achieving higher fatigue strength in all loading types, raster orientation is best to be aligned parallel to the tensile loads and perpendicular to the compressive, flexural, and bending forces. In the case of tensile and flexural loading, Y build orientation yields the best result. Finally, print velocity was found to be less significant compared to other parameters, implying that it can be set at high values for faster printing.
引用
收藏
页数:27
相关论文
共 91 条
[31]   Fatigue Performance of ABS Specimens Obtained by Fused Filament Fabrication [J].
Domingo-Espin, Miquel ;
Antonio Travieso-Rodriguez, J. ;
Jerez-Mesa, Ramn ;
Lluma-Fuentes, Jordi .
MATERIALS, 2018, 11 (12)
[32]   Mechanical property characterization and simulation of fused deposition modeling Polycarbonate parts [J].
Domingo-Espin, Miquel ;
Puigoriol-Forcada, Josep M. ;
Garcia-Granada, Andres-Amador ;
Lluma, Jordi ;
Borros, Salvador ;
Reyes, Guillermo .
MATERIALS & DESIGN, 2015, 83 :670-677
[33]   Fatigue strength of additively manufactured polylactide (PLA): effect of raster angle and non-zero mean stresses [J].
Ezeh, O. H. ;
Susmel, L. .
INTERNATIONAL JOURNAL OF FATIGUE, 2019, 126 :319-326
[34]   On the fatigue strength of 3D-printed polylactide (PLA) [J].
Ezeh, O. H. ;
Susmel, L. .
IGF WORKSHOP FRACTURE AND STRUCTURAL INTEGRITY, 2018, 9 :29-36
[35]   Fatigue Behavior of FDM Parts Manufactured with Ultem 9085 [J].
Fischer, Matthias ;
Schoppner, Volker .
JOM, 2017, 69 (03) :563-568
[36]  
Forster A.M., 2015, National Institute of Standards and Technology
[37]   Interaction of chemical contaminants with microplastics: Principles and perspectives [J].
Fred-Ahmadu, Omowunmi H. ;
Bhagwat, Geetika ;
Oluyoye, Idowu ;
Benson, Nsikak U. ;
Ayejuyo, Olusegun O. ;
Palanisami, Thavamani .
SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 706
[38]   Design of FDM 3D printed polymers: An experimental-modelling methodology for the prediction of mechanical properties [J].
Garzon-Hernandez, S. ;
Garcia-Gonzalez, D. ;
Jerusalem, A. ;
Arias, A. .
MATERIALS & DESIGN, 2020, 188
[39]   A global sustainability perspective on 3D printing technologies [J].
Gebler, Malte ;
Uiterkamp, Anton J. M. Schoot ;
Visser, Cindy .
ENERGY POLICY, 2014, 74 :158-167
[40]   Fatigue performance of fused filament fabrication PLA specimens [J].
Gomez-Gras, Giovanni ;
Jerez-Mesa, Ramon ;
Antonio Travieso-Rodriguez, J. ;
Lluma-Fuentes, Jordi .
MATERIALS & DESIGN, 2018, 140 :278-285