Sequential Self-Folding of Shape Memory Polymer Sheets by Laser Rastering Toward Origami-Based Manufacturing

被引:3
作者
Abdulhafez, Moataz [1 ,3 ]
Line, Joshua [1 ]
Bedewy, Mostafa [2 ,3 ]
机构
[1] Univ Pittsburgh, Dept Ind Engn, Pittsburgh, PA 15261 USA
[2] Univ Pittsburgh, Dept Ind Engn, Dept Chem, Pittsburgh, PA 15261 USA
[3] Univ Pittsburgh, Petr Engn, Dept Mech Engn & Mat Sci, Pittsburgh, PA 15261 USA
来源
JOURNAL OF MANUFACTURING SCIENCE AND ENGINEERING-TRANSACTIONS OF THE ASME | 2021年 / 143卷 / 09期
基金
美国国家科学基金会;
关键词
advanced materials and processing; laser processes; micro- and nano-machining and processing; sheet and tube metal forming;
D O I
10.1115/1.4050463
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Origami-based fabrication strategies open the door for developing new manufacturing processes capable of producing complex three-dimensional (3D) geometries from two-dimensional (2D) sheets. Nevertheless, for these methods to translate into scalable manufacturing processes, rapid techniques for creating controlled folds are needed. In this work, we propose a new approach for controlled self-folding of shape memory polymer sheets based on direct laser rastering. We demonstrate that rapidly moving a CO2 laser over pre-strained polystyrene sheets results in creating controlled folds along the laser path. Laser interaction with the polymer induces localized heating above the glass transition temperature with a temperature gradient across the thickness of the thin sheets. This gradient of temperature results in a gradient of shrinkage owing to the viscoelastic relaxation of the polymer, favoring folding toward the hotter side (toward the laser source). We study the influence of laser power, rastering speed, fluence, and the number of passes on the fold angle. Moreover, we investigate process parameters that produce the highest quality folds with minimal undesired deformations. Our results show that we can create clean folds up to and exceeding 90 deg, which highlights the potential of our approach for creating lightweight 3D geometries with smooth surface finishes that are challenging to create using 3D printing methods. Hence, laser-induced self-folding of polymers is an inherently mass-customizable approach to manufacturing, especially when combined with cutting for integration of origami and kirigami.
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页数:9
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共 29 条
  • [1] KNIFE-EDGE SCANNING OF AN ASTIGMATIC GAUSSIAN-BEAM
    BILGER, HR
    HABIB, T
    [J]. APPLIED OPTICS, 1985, 24 (05): : 686 - 690
  • [2] Hyperbolic origami-inspired folding of triply periodic minimal surface structures
    Callens, Sebastien J. P.
    Tumer, Nazli
    Zadpoor, Amir A.
    [J]. APPLIED MATERIALS TODAY, 2019, 15 : 453 - 461
  • [3] Three Dimensional Nanofabrication Using Surface Forces
    Cho, Jeong-Hyun
    Azam, Anum
    Gracias, David H.
    [J]. LANGMUIR, 2010, 26 (21) : 16534 - 16539
  • [4] Self-folding of polymer sheets using microwaves and graphene ink
    Davis, Duncan
    Mailen, Russell
    Genzer, Jan
    Dickey, Michael D.
    [J]. RSC ADVANCES, 2015, 5 (108): : 89254 - 89261
  • [5] Elsisy M., 2021, J. Eng. Mater. Technol, V143, P1
  • [6] Elsisy M, 2018, PROCEEDINGS OF THE ASME 13TH INTERNATIONAL MANUFACTURING SCIENCE AND ENGINEERING CONFERENCE, 2018, VOL 2
  • [7] A method for building self-folding machines
    Felton, S.
    Tolley, M.
    Demaine, E.
    Rus, D.
    Wood, R.
    [J]. SCIENCE, 2014, 345 (6197) : 644 - 646
  • [8] Self-folding with shape memory composites
    Felton, Samuel M.
    Tolley, Michael T.
    Shin, ByungHyun
    Onal, Cagdas D.
    Demaine, Erik D.
    Rus, Daniela
    Wood, Robert J.
    [J]. SOFT MATTER, 2013, 9 (32) : 7688 - 7694
  • [9] Towards Realizing Cybermanufacturing Kiosks: Quality Assurance Challenges and Opportunities
    Iquebal, Ashif Sikandar
    Wang, Zimo
    Ko, Woo-Hyun
    Wang, Zhujiang
    Kumar, P. R.
    Srinivasa, Arun
    Bukkapatnam, Satish T. S.
    [J]. 46TH SME NORTH AMERICAN MANUFACTURING RESEARCH CONFERENCE, NAMRC 46, 2018, 26 : 1296 - 1306
  • [10] Origami-based cellular metamaterial with auxetic, bistable, and self-locking properties
    Kamrava, Soroush
    Mousanezhad, Davood
    Ebrahimi, Hamid
    Ghosh, Ranajay
    Vaziri, Ashkan
    [J]. SCIENTIFIC REPORTS, 2017, 7