Mechanical Properties and Fracture Resistance of 3D-Printed Polylactic Acid

被引:1
|
作者
Yadav, Deepesh [1 ]
Jaya, Balila Nagamani [1 ]
机构
[1] Indian Inst Technol, Dept Met Engn & Mat Sci, Bombay 400076, Maharashtra, India
关键词
3D printing; raster angle; tensile properties; damage resistance; fracture; mechanical behavior; plastic behavior; WORK; TOUGHNESS; QUALITY; PATTERN; IMPACT;
D O I
10.1115/1.4063614
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
3D printing is a layer-by-layer deposition process, which results in highly anisotropic structures and contains interfaces. Complex shapes manufactured by 3D printing carry defects. Complete elimination of these defects and interfaces is not possible, and these defects degrade the mechanical properties. In the present study, mechanical properties of printed dog bone samples are quantified as a function of building parameters, in particular, filling patterns, raster angle, and orientation of build direction with respect to that of loading, in polylactic acid (PLA). The tensile strength of 3D-printed PLA is the same for hexagonal and linear pattern filling when the build direction is along thickness and width, and failure was initiated at the defects in the structure, while better overall toughness is offered by hexagonal pattern filling. Build direction along specimen gauge length gives very low tensile strength and toughness, and failure happens between the printing layers. To minimize the defects especially near the grip section, cuboid samples were first deposited and micro-machined by laser into dog bone shape to perform tension test. Tensile strength and elastic modulus of micro-machined samples are surprisingly lower, while failure strain is highest among line filling printed samples. Damage resistance was quantified in terms of work of fracture, and hexagonal filling provided better damage resistance than line filling patterns for conditions of 0 deg raster angle with respect to the crack, whereas line filling with 45 deg and 90 deg raster angle tolerated damage better than hexagonal filling.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] The Mechanical Properties and Degradation Behavior of 3D-Printed Cellulose Nanofiber/Polylactic Acid Composites
    Zhang, Zhongsen
    Cao, Bingyan
    Jiang, Ning
    [J]. MATERIALS, 2023, 16 (18)
  • [2] Physicochemical Properties of 3D-Printed Polylactic Acid/Hydroxyapatite Scaffolds
    Perez-Davila, Sara
    Garrido-Gulias, Natalia
    Gonzalez-Rodriguez, Laura
    Lopez-Alvarez, Miriam
    Serra, Julia
    Lopez-Periago, Jose Eugenio
    Gonzalez, Pio
    [J]. POLYMERS, 2023, 15 (13)
  • [3] Piezoresistive Properties of 3D-Printed Polylactic Acid (PLA) Nanocomposites
    Sanatgar, Razieh Hashemi
    Cayla, Aurelie
    Guan, Jinping
    Chen, Guoqiang
    Nierstrasz, Vincent
    Campagne, Christine
    [J]. POLYMERS, 2022, 14 (15)
  • [4] Effects of Gamma Irradiation Upon the Mechanical and Chemical Properties of 3D-Printed Samples of Polylactic Acid
    West, Conrad
    McTaggart, Robert
    Letcher, Todd
    Raynie, Douglas
    Roy, Ranen
    [J]. JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME, 2019, 141 (04):
  • [5] Printability and Properties of 3D-printed Poplar Fiber/Polylactic Acid Biocomposite
    Yang, Zhaozhe
    Feng, Xinhao
    Xu, Min
    Rodrigue, Denis
    [J]. BIORESOURCES, 2021, 16 (02) : 2774 - 2788
  • [6] Degradation of 3D-Printed Porous Polylactic Acid Scaffolds Under Mechanical Stimulus
    Chen, Heming
    Shi, Quan
    Shui, Hengtao
    Wang, Peng
    Chen, Qiang
    Li, Zhiyong
    [J]. FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2021, 9
  • [7] Mechanical and Electrical Properties of 3D-Printed Highly Conductive Reduced Graphene Oxide/Polylactic Acid Composite
    Choi, Hyung Woo
    Cox, Alex
    Mofarah, Hamed Mohammadi
    Jabbour, Ghassan
    [J]. ADVANCED ENGINEERING MATERIALS, 2024, 26 (05)
  • [8] Effects of infill temperature on the tensile properties and warping of 3D-printed polylactic acid
    Croccolo, Dario
    De Agostinis, Massimiliano
    Fini, Stefano
    Mele, Mattia
    Olmi, Giorgio
    Campana, Giampaolo
    [J]. PROGRESS IN ADDITIVE MANUFACTURING, 2024, 9 (04) : 919 - 934
  • [9] Effects of infill temperature on the tensile properties and warping of 3D-printed polylactic acid
    Croccolo, Dario
    De Agostinis, Massimiliano
    Fini, Stefano
    Mele, Mattia
    Olmi, Giorgio
    Campana, Giampaolo
    [J]. PROGRESS IN ADDITIVE MANUFACTURING, 2024, 9 (04) : 919 - 934
  • [10] Mechanical and Thermal Properties of 3D-Printed Biocomposites of Polylactic Acid and Thermally Modified Wood Flour with Silver Nanoparticles
    Yurttas, Elif
    Ayrilmis, Nadir
    [J]. MACROMOLECULAR MATERIALS AND ENGINEERING, 2023, 308 (12)