The Synergistic Effects of Hybrid Micro and Nano Silica in Influencing the Mechanical Properties of Epoxy Composites-A New Model

被引:7
|
作者
Othman, Raja Nor Raja [1 ]
Subramaniam, Dinesh Kumar [1 ]
Ezani, Nursa'adah [1 ]
Abdullah, Mohamad Faizal [1 ]
Ahmad, Ku Zarina Ku [1 ]
机构
[1] Natl Def Univ Malaysia, Dept Mech Engn, Kuala Lumpur 57000, Malaysia
关键词
hybrid silica particles; nano silica; micro silica; synergistic effect; extended model for hybrid; FRACTURE-TOUGHNESS; TOUGHENING MECHANISMS; PARTICLE-SIZE; NANOSILICA; MATRIX; RUBBER;
D O I
10.3390/polym14193969
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Epoxy nano composites containing micro and nano silica were prepared by varying the filler's weight loading as an attempt to investigate the effects of incorporating these fillers in influencing its mechanical properties. Mechanical properties characterizations include the evaluation of tensile. The mechanical properties of the epoxy composites were found to tremendously increase as both micro and nano silica were added together at a 1:1 wt.% ratio. For example, the highest values of Young's modulus were recorded to be 5.39 GPa for 25 wt.% loading (12.5 wt.% Micro + 12.5 wt.% nano), while Young's modulus values of 5.22 MPa and 5.32 MPa were recorded for micro and nano silica, respectively, at the same weight loading. The most outstanding results were observed at 25 wt.% hybrids (12.5 wt.% micro silica + 12.5 wt.% nano silica), where the values of Young's modulus were increased by 228% compared to the neat epoxy. This study successfully demonstrated synergistic effects demonstrated by combining micro and nano silica fillers, which created an interaction that significantly enhanced the Young's modulus of epoxy composites.
引用
收藏
页数:13
相关论文
共 50 条
  • [31] Electrical Insulation and Mechanical Properties of Epoxy/Micro-silica (MS)/Micro-alumina (MA) Composites
    Jae-Jun Park
    Transactions on Electrical and Electronic Materials, 2019, 20 : 46 - 51
  • [32] Mechanical and Tribological Behavior of Epoxy/Silica Nanocomposites at the Micro/Nano Scale
    Zheng Zhi Wang
    Ping Gu
    Zhong Zhang
    Lei Gu
    You Zhong Xu
    Tribology Letters, 2011, 42 : 185 - 191
  • [33] Charge dynamics and thermal properties of epoxy based micro and nano hybrid composites at high temperatures
    Chen, Xiangrong
    Dai, Chao
    Hong, Zelin
    Awais, Muhammad
    Paramane, Ashish
    Tanaka, Yasuhiro
    JOURNAL OF APPLIED POLYMER SCIENCE, 2021, 138 (28)
  • [34] Mechanical and Tribological Behavior of Epoxy/Silica Nanocomposites at the Micro/Nano Scale
    Wang, Zheng Zhi
    Gu, Ping
    Zhang, Zhong
    Gu, Lei
    Xu, You Zhong
    TRIBOLOGY LETTERS, 2011, 42 (02) : 185 - 191
  • [35] Investigation of Mechanical and Durability Properties of Concrete Influenced by Hybrid Nano Silica and Micro Zeolite
    Eskandari, H.
    Vaghefi, M.
    Kowsari, K.
    5TH INTERNATIONAL BIENNIAL CONFERENCE ON ULTRAFINE GRAINED AND NANOSTRUCTURED MATERIALS, UFGNSM15, 2015, 11 : 594 - 599
  • [36] Enhanced mechanical properties of epoxy composites using cellulose micro- and nano-crystals
    Semaan, Patricia
    Zahran, Abraham
    Schlapp-Hackl, Inge
    Tehrani-Bagha, Ali R.
    Mustapha, Samir
    JOURNAL OF APPLIED POLYMER SCIENCE, 2024, 141 (14)
  • [37] The mechanical properties and fracture behaviour of epoxy-inorganic micro- and nano-composites
    Kinloch, A. J.
    Taylor, A. C.
    JOURNAL OF MATERIALS SCIENCE, 2006, 41 (11) : 3271 - 3297
  • [38] The mechanical properties and fracture behaviour of epoxy-inorganic micro- and nano-composites
    A. J. Kinloch
    A. C. Taylor
    Journal of Materials Science, 2006, 41 : 3271 - 3297
  • [39] APTES/Calcium silica hydrate nano-hybrid composites with enhanced mechanical properties
    Orozco, Carlos A.
    Duque-Redondo, Eduardo
    Aretxabaleta, Xabier M.
    Manzano, Hegoi
    Monteiro, Paulo J. M.
    CONSTRUCTION AND BUILDING MATERIALS, 2024, 438
  • [40] Enhancement of mechanical and viscoelastic properties of epoxy and epoxy-nano silica composites using self-healing microcapsules
    Singh, Sushil Kumar
    Yadav, Avadesh
    Singh, Samarjit
    Jain, Anuj
    Kumar, Abhishek
    MATERIALS TODAY COMMUNICATIONS, 2025, 43