Printing and characterization of three-dimensional high-loaded nanocomposites structures

被引:1
|
作者
Sciancalepore C. [1 ,2 ]
Bondioli F. [2 ,3 ]
Messori M. [2 ,3 ]
Milanese D. [1 ,2 ]
机构
[1] Department of Engineering and Architecture, University of Parma, Parma
[2] National Interuniversity Consortium of Materials Science and Technology (INSTM), Florence
[3] Department of Applied Science and Technology, Politecnico di Torino, Turin
来源
关键词
crosslinking degree; hybrid formulation; mechanical properties; nanocomposites; stereolithography;
D O I
10.1002/mdp2.256
中图分类号
学科分类号
摘要
This study demonstrates the feasibility of fabricating by additive manufacturing composite objects based on acrylic hybrid photocurable formulations, containing 45% by weight of silica nanoparticles, with an average size of about 30 nm. A commercial stereolithography apparatus was used to selectively cure, layer by layer, the high-loaded acrylic resin. The presence of the filler determines an increase in the physical and mechanical properties of the samples that become significantly stiffer and stronger than the pristine matrix. Dynamic mechanical analysis performed on the printed samples gave promising results for the use of developed formulation in the realization of three-dimensional (3D) polymeric structures with improved mechanical properties. © 2021 John Wiley & Sons, Ltd.
引用
收藏
相关论文
共 50 条
  • [1] A performance study on the three-dimensional stage of a new high-loaded helium compressor
    Long, Yanli
    Xu, Limin
    Yu, Jinglei
    Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University, 2012, 33 (04): : 464 - 469
  • [2] THREE-DIMENSIONAL PRINTING OF POLYVINYLIDENE FLUORIDE NANOCOMPOSITES
    Bodkhe, Sampada
    Gosselin, Frederick P.
    Therriault, Daniel
    20TH INTERNATIONAL CONFERENCE ON COMPOSITE MATERIALS, 2015,
  • [3] Three-dimensional printing of complex graphite structures
    Sajadi, Seyed Mohammad
    Enayat, Shayan
    Vasarhelyi, Livia
    Alabastri, Alessandro
    Lou, Minghe
    Sassi, Lucas M.
    Kutana, Alex
    Bhowmick, Sanjit
    Durante, Christian
    Kukovecz, Akos
    Puthirath, Anand B.
    Konya, Zoltan
    Vajtai, Robert
    Boul, Peter
    Tiwary, Chandra Sekhar
    Rahman, Muhammad M.
    Ajayan, Pulickel M.
    CARBON, 2021, 181 : 260 - 269
  • [4] Three-Dimensional Printing of Multifunctional Nanocomposites: Manufacturing Techniques and Applications
    Farahani, Rouhollah D.
    Dube, Martine
    Therriault, Daniel
    ADVANCED MATERIALS, 2016, 28 (28) : 5794 - 5821
  • [5] High-resolution, reconfigurable printing of liquid metals with three-dimensional structures
    Park, Young-Geun
    An, Hyeon Seok
    Kim, Ju-Young
    Park, Jang-Ung
    SCIENCE ADVANCES, 2019, 5 (06)
  • [6] Three-dimensional printing of ellipsoidal structures using Mercury
    Brown, Matthew L.
    Van Wieren, Ken
    Tailor, Hamel N.
    Hartling, David
    Jean, Anthony
    Merbouh, Nabyl
    CRYSTENGCOMM, 2018, 20 (03): : 271 - 274
  • [7] Three-dimensional printing of SiSiC lattice truss structures
    Fu, Z.
    Schlier, L.
    Travitzky, N.
    Greil, P.
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2013, 560 : 851 - 856
  • [8] Three-Dimensional Printing of Magnetic Data Storage Structures
    Corey Breznak
    Paris von Lockette
    MRS Advances, 2019, 4 : 1137 - 1142
  • [9] Three-Dimensional Printing of Magnetic Data Storage Structures
    Breznak, Corey
    von Lockette, Paris
    MRS ADVANCES, 2019, 4 (20) : 1137 - 1142
  • [10] Bringing Crystal Structures to Reality by Three-Dimensional Printing
    Kitson, Philip J.
    Macdonell, Andrew
    Tsuda, Soichiro
    Zang, HongYing
    Long, De-Liang
    Cronin, Leroy
    CRYSTAL GROWTH & DESIGN, 2014, 14 (06) : 2720 - 2724