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Fatigue behaviour of FDM-3D printed polymers, polymeric composites and architected cellular materials

机译:FDM-3D印刷聚合物,聚合物复合材料和胎选细胞材料的疲劳行为

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摘要

Polymer-based materials are increasingly produced through fused deposition modelling (FDM) - an additive manufacturing process, due to its intrinsic advantages in manufacturing complex shapes and structures at low overhead costs. The versatility of this technology has attracted several industries to print complex geometrical structures. This underlines the importance of studying the mechanical strength of FDM printed polymeric materials, especially their fatigue behaviour in cyclic loading conditions. Conventionally manufactured polymeric materials (e.g. injection moulding) have superior fatigue performance than FDM printed materials. Unlike conventionally manufactured polymers, FDM-made polymers have layer by layer adhesion and the influence of printing parameters make fatigue analysis complex and critical. The influences of printing parameters and printing material characteristics have a significant impact on the fatigue behaviour of these materials. The underlying mechanism behind the fatigue of FDM printed polymers is crucial for the assessment of these materials in structural applications. However, the fatigue behaviour of FDM printed polymeric materials has not been reviewed in detail. Therefore, this article aims to evaluate 3D printed polymeric materials' fatigue properties. The importance of fatigue in the FDM printed biomedical materials is also reviewed, and more importantly, the novel FDM printed architected cellular material fatigue properties are also introduced.
机译:通过融合沉积建模(FDM) - 一种添加剂制造方法,越来越多地生产基于聚合物的材料,这是由于其在低开销成本下的复杂形状和结构的固有优点。这项技术的多功能性吸引了几个行业来打印复杂的几何结构。这强调了研究FDM印刷聚合物材料的机械强度的重要性,特别是循环负载条件下的疲劳行为。通常制造的聚合物材料(例如注塑)具有优异的疲劳性能,而不是FDM印刷材料。与常规制造的聚合物不同,FDM制造的聚合物通过层粘附层具有层,并且印刷参数的影响使疲劳分析复杂和关键。印刷参数和印刷材料特性的影响对这些材料的疲劳行为产生了重大影响。 FDM印刷聚合物疲劳背后的潜在机制对于评估结构应用中这些材料是至关重要的。然而,尚未详细审查FDM印刷聚合物材料的疲劳行为。因此,本文旨在评估3D印刷聚合物材料的疲劳性能。还介绍了FDM印刷生物医学材料中疲劳在FDM印刷生物医学材料中的重要性,更重要的是,还引入了新型FDM印刷的胎选细胞材料疲劳性能。

著录项

  • 来源
    《International Journal of Fatigue》 |2021年第2期|106007.1-106007.15|共15页
  • 作者单位

    Faculty of Mechanical Engineering Kalasalingam Academy of Research and Education Krishnankoil 626 126 India;

    Department of Fibre and Polymer Technology Polymeric Materials Division School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology Stockholm 100 44 Sweden;

    Center for Polymer Composites and Natural Fiber Research Madwai 625005 India;

    Faculty of Mechanical Engineering Kalasalingam Academy of Research and Education Krishnankoil 626 126 India;

    Faculty of Mechanical Engineering Kalasalingam Academy of Research and Education Krishnankoil 626 126 India;

    Department of Mechanical Engineering Saveetha School of Engineering Saveetha Institute of Medical and Technical Sciences Thandalam Chennai 602 105 India;

    Department of Materials and Polymer Engineering Faculty of Engineering Hakim Sabzevari University Sabzevar 9617976487 Iran;

    Department of Fibre and Polymer Technology Polymeric Materials Division School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology Stockholm 100 44 Sweden;

    Center for Nanofibers and Nanotechnology Department of Mechanical Engineering Faculty of Engineering Singapore 117576 Singapore;

    Department of Mechanical Engineering Norwegian University of Science and Technology Trondheim 7491 Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Additive manufacturing; 3D printing; Polymeric composite; Architected cellular material; Fatigue behaviour;

    机译:添加剂制造;3D打印;聚合物复合材料;架构的细胞材料;疲劳行为;

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