Effect of Printing Velocity on the Microscopic Void Distribution of 3D-Printed Short-Fiber-Reinforced Composites

被引:0
|
作者
Hui Luo
Haoming Yang
Li Xi
Binbin Liao
Ke Bo
机构
[1] China Special Equipment Inspection and Research Institute,Institute of Advanced Structure Technology
[2] Beijing Institute of Technology,School of Naval Architecture, Ocean and Energy Power Engineering
[3] Wuhan University of Technology,undefined
关键词
3D printing; X-ray micro-computed tomography; Internal voids; Out-of-plane compressive resistance;
D O I
暂无
中图分类号
学科分类号
摘要
Fused deposition modeling (FDM) is gradually being widely used in the field of composite materials manufacturing, especially for short carbon fiber (SCF)-reinforced composites. In this paper, the effect of printing velocity on the microscopic void distribution of 3D-printed SCF/PA6 composites was explored. The high-resolution X-ray micro-computed tomography (μCT) was employed to quantitate the internal morphological characteristics. The internal voids of the samples including the independent voids and connected voids were quantitatively counted, respectively. Experimental results demonstrated that the proportion of internal voids increased with the increasing of the printing velocity. The number of independent voids increased firstly and then fell, and the connected voids gradually became the main existence form. By comparison, higher proportion of internal voids led to the lower compressive modulus. This is because the voids were more easily compacted, resulting in weak out-of-plane compressive resistance.
引用
收藏
页码:1085 / 1090
页数:5
相关论文
共 50 条
  • [21] Mechanism based failure of 3D-printed continuous carbon fiber reinforced thermoplastic composites
    Dutra, Thiago Assis
    Ferreira, Rafael Thiago Luiz
    Resende, Hugo Borelli
    Blinzler, Brina Jane
    Asp, Leif E.
    COMPOSITES SCIENCE AND TECHNOLOGY, 2021, 213
  • [22] Investigation of recovery behavior on 3D-printed continuous plant fiber-reinforced composites
    Long, Yu
    Zhang, Zhongsen
    Bi, Zhixiong
    Fu, Kunkun
    Li, Yan
    ADDITIVE MANUFACTURING, 2024, 88
  • [23] The role of printing parameters on the short beam strength of 3D-printed continuous carbon fibre reinforced epoxy-PETG composites
    Almeida Jr, Jose Humberto S.
    Jayaprakash, Siddharth
    Kolari, Kari
    Kuva, Jukka
    Kukko, Kirsi
    Partanen, Jouni
    COMPOSITE STRUCTURES, 2024, 337
  • [24] 3D printing with tension and compaction: prevention of fiber waviness in 3D-printed continuous carbon fiber-reinforced thermoplastics
    Ichihara, Naruki
    Ueda, Masahito
    Kajiwara, Kentaro
    Le Duigou, Antoine
    Castro, Mickael
    ADVANCED COMPOSITE MATERIALS, 2024, 33 (03) : 377 - 387
  • [25] EFFECT OF COMPOUNDING ON THE PROPERTIES OF SHORT-FIBER-REINFORCED INJECTION-MOLDABLE THERMOPLASTIC COMPOSITES
    BIGG, DM
    PLASTICS ENGINEERING, 1984, 40 (03) : 56 - 56
  • [26] 3D printing of short fiber reinforced composites via material extrusion: Fiber breakage
    Yang, Zhihe
    Yang, Zeshi
    Chen, Hui
    Yan, Wentao
    ADDITIVE MANUFACTURING, 2022, 58
  • [27] A Study on the Effect of Fiber Orientation on the Strength and Failure of 3D-Printed Carbon Fiber Reinforced Polymers
    Kokner, Yesim
    Delpierre, Arthur
    Couzis, Jason P.
    Ardebili, Mahmoud
    Delale, Feridun
    PROCEEDINGS OF ASME 2023 INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, IMECE2023, VOL 4, 2023,
  • [28] Numerical simulation on elastic properties of short-fiber-reinforced metal matrix composites: Effect of fiber orientation
    Tian, Wenlong
    Qi, Lehua
    Su, Changqing
    Zhou, Jiming
    Jing, Zhao
    COMPOSITE STRUCTURES, 2016, 152 : 408 - 417
  • [29] Experimental and numerical investigations of 3D-printed glass fiber reinforced onyx composites with infill patterns
    Nikiema, Daouda
    Balland, Pascale
    Sergent, Alain
    JOURNAL OF REINFORCED PLASTICS AND COMPOSITES, 2024,
  • [30] Anomalous matrix and interlayer pore structure of 3D-printed fiber-reinforced cementitious composites
    Yang, Rijiao
    Zeng, Qiang
    Peng, Yu
    Wang, Hailong
    Wang, Zhendi
    CEMENT AND CONCRETE RESEARCH, 2022, 157