Impact of multi-lattice inner structures on FDM PLA 3D printed orthosis using Industry 4.0 concepts

被引:0
|
作者
William S. Barbosa
Mariana M. Gioia
Guilherme P. Temporão
Marco A. Meggiolaro
Felipe C. Gouvea
机构
[1] PUC-Rio,Department of Electrical Engineering
[2] PUC-Rio,Department of Mechanical Engineering
[3] CETUC - PUC-RIO,undefined
[4] TECGRAF Institute PUC-Rio,undefined
关键词
Orthosis; Industry 4.0; Digital manufacturing; Lattice structures; Optimization;
D O I
暂无
中图分类号
学科分类号
摘要
The use of digital manufacturing for the construction of orthosis and prostheses has become common since the popularization of 3D printers and the advent of Industry 4.0. Furthermore, due to the fact that the manufacture of orthosis is interactive and for personal use, generic production is difficult. In this sense, the large-scale production of these products lacks of improvements, standardization of processes and production optimization. An aggravation of this is the recent social distance due to the COVID-19 pandemic, which makes the use of temporary orthosis made in 3D printers to have a recent growth. Parallel to this, the use of multi-lattice inner structures for internal structuring of prints has also been increasing and taking on a more consolidated form. This article aims to present the multi-lattice optimization as a solution to this problem, in order to reduce material waste while maintaining the mechanical behavior of printed parts.
引用
收藏
页码:371 / 383
页数:12
相关论文
共 50 条
  • [21] Experimental investigation on mechanical characterization of 3D printed PLA produced by fused deposition modeling (FDM)
    Moradi, Mahmoud
    Aminzadeh, Ahmad
    Rahmatabadi, Davood
    Hakimi, Alireza
    MATERIALS RESEARCH EXPRESS, 2021, 8 (03)
  • [22] Defects and residual stresses finite element prediction of FDM 3D printed wood/PLA biocomposite
    Morvayova, Alexandra
    Contuzzi, Nicola
    Casalino, Giuseppe
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2023, 129 (5-6): : 2281 - 2293
  • [23] Defects and residual stresses finite element prediction of FDM 3D printed wood/PLA biocomposite
    Alexandra Morvayová
    Nicola Contuzzi
    Giuseppe Casalino
    The International Journal of Advanced Manufacturing Technology, 2023, 129 : 2281 - 2293
  • [24] AN ALGORITHM FOR GENERATING 3D LATTICE STRUCTURES SUITABLE FOR PRINTING ON A MULTI-PLANE FDM PRINTING PLATFORM
    Ishak, Ismayuzri B.
    Moffett, Mark B.
    Larochelle, Pierre
    PROCEEDINGS OF THE ASME INTERNATIONAL DESIGN ENGINEERING TECHNICAL CONFERENCES AND COMPUTERS AND INFORMATION IN ENGINEERING CONFERENCE, 2018, VOL 2B, 2018,
  • [25] Vibration Fatigue of FDM 3D Printed Structures: The Use of Frequency Domain Approach
    Palmieri, Massimiliano
    Zucca, Guido
    Morettini, Giulia
    Landi, Luca
    Cianetti, Filippo
    MATERIALS, 2022, 15 (03)
  • [26] Broadband Effective Dielectric Permittivity of Heterogeneous 3D Printed PLA Structures
    Azpurua, Marco A.
    Mateu-Mateus, Marc
    Pous, Marc
    Quilez, Marcos
    Silva, Ferran
    2022 INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY (EMC EUROPE 2022), 2022, : 335 - 339
  • [27] Fracture characterization and modeling of Gyroid filled 3D printed PLA structures
    Torun, Ahmet Refah
    Dike, Ali Sinan
    Yildiz, Ege Can
    Saglam, Ismail
    Choupani, Naghdali
    MATERIALS TESTING, 2021, 63 (05) : 397 - 401
  • [28] Multi-material FDM 3D Printed Arm with Integrated Pneumatic Actuator
    Conrad, Stefan
    Speck, Thomas
    Tauber, Falk J.
    BIOMIMETIC AND BIOHYBRID SYSTEMS, LIVING MACHINES 2022, 2022, 13548 : 27 - 31
  • [29] From concept to wearable: 3D printed jewellery using FDM technology
    Saharan, Mamta
    Saharan, Lokesh
    INTERNATIONAL JOURNAL OF FASHION DESIGN TECHNOLOGY AND EDUCATION, 2024,
  • [30] Measuring the Impact of Infill Pattern and Infill Density on the Properties of 3D-Printed PLA via FDM
    Garg, Siddharth
    Singh, Aditya
    Murtaza, Qasim
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2025,