Influence of surfactant type on the dispersion state and properties of graphene nanoplatelets reinforced aluminium matrix nanocomposites

被引:23
|
作者
Baig, Zeeshan [1 ]
Mamat, Othman [1 ]
Mustapha, Mazli [1 ]
Sarfraz, Mansoor [2 ]
机构
[1] Univ Teknol Petronas, Dept Mech Engn, Tronoh 32610, Perak, Malaysia
[2] King Saud Univ, Coll Engn, Sustainable Energy Technol Ctr, Riyadh, Saudi Arabia
关键词
graphene; dispersion; micro-hardness; nanocomposites; tribology; SODIUM ALGINATE MODIFICATION; ALCOHOL PVA NANOCOMPOSITES; CARBON NANOTUBES; MECHANICAL-PROPERTIES; TRIBOLOGICAL PROPERTIES; THERMAL-PROPERTIES; EPOXY NANOCOMPOSITES; ASSISTED DISPERSION; TENSILE PROPERTIES; COMPOSITES;
D O I
10.1080/1536383X.2017.1362396
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Graphene dispersion in aluminium matrix is a critical concern for the attainment of composite improved mechanical and tribological properties which hinders broad applications of Al nanocomposites. Herein, graphene nanoplatelets (GNPs) dispersion in Al matrix achieved by colloidal processing, i.e., combining sonication and surfactant dispersing aid. In this work, the performance of the two types of surfactant (anionic, sodium dodecyl benzene sulfonate (SDBS), and nonionic polymeric, ethyl cellulose (EC)) were evaluated for effective GNPs dispersion in a solvent and Al matrix. Surfactant assisted GNPs solvent dispersion characterized through sedimentation test and UV-vis spectroscopy to optimize surfactant concentration. Density, hardness, wear properties and microstructural characterizations of GNPs/Al powder and sintered discs were performed to gauge the effect of surfactant type. It was found that surfactant addition enhances dispersion ability of GNPs than neat GNPs but at low GNPs fractions. The results show that EC assisted GNPs/Al nanocomposites of 0.5 wt% GNPs concentration has shown an increase in hardness (31%) and reduce wear rate (98%). Whereas, 0.3 wt% SDBS assisted GNPs/Al nanocomposites shown maximal increases in hardness (18%) and reduce wear rate (98%) as compared to pure aluminium, respectively. Conclusively, it has been revealed that polymeric EC based surfactant GNPs owing to steric repulsion shows better dispersion effect resulting in high density and improved wear resistance and performed better than SDBS based surfactant GNPs in Al matrix.
引用
收藏
页码:545 / 557
页数:13
相关论文
共 50 条
  • [1] Fabrication and heat treatment of graphene nanoplatelets reinforced aluminium nanocomposites
    Chak, Vineet
    Chattopadhyay, Himadri
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2020, 791 (791):
  • [2] An Overview of Metal Matrix Nanocomposites Reinforced with Graphene Nanoplatelets; Mechanical, Electrical and Thermophysical Properties
    Saboori, Abdollah
    Dadkhah, Mehran
    Fino, Paolo
    Pavese, Matteo
    METALS, 2018, 8 (06)
  • [3] Mechanical and tribological behaviours of aluminium matrix composites reinforced by graphene nanoplatelets
    Senel, Mahmut Can
    Gurbuz, Mevluet
    Koc, Erdem
    MATERIALS SCIENCE AND TECHNOLOGY, 2018, 34 (16) : 1980 - 1989
  • [4] A Review of Graphene Nanoplatelets in Nanocomposites: Dispersion
    Park, Sang-Yu
    Hwang, Ji-Young
    Park, Young Su
    Kang, Seung Beom
    COMPOSITES RESEARCH, 2020, 33 (06): : 321 - 328
  • [5] Influence of graphene nanoplatelets on curing and mechanical properties of graphene/epoxy nanocomposites
    M. G. Prolongo
    C. Salom
    C. Arribas
    M. Sánchez-Cabezudo
    R. M. Masegosa
    S. G. Prolongo
    Journal of Thermal Analysis and Calorimetry, 2016, 125 : 629 - 636
  • [6] Graphene/graphene nanoplatelets reinforced polyamide nanocomposites: A review
    Madhad, Himanshu, V
    Mishra, Nikita S.
    Patel, Sunil B.
    Panchal, Siddhi S.
    Gandhi, Rusvi A.
    Vasava, Dilip V.
    HIGH PERFORMANCE POLYMERS, 2021, 33 (09) : 981 - 997
  • [7] Influence of graphene nanoplatelets on curing and mechanical properties of graphene/epoxy nanocomposites
    Prolongo, M. G.
    Salom, C.
    Arribas, C.
    Sanchez-Cabezudo, M.
    Masegosa, R. M.
    Prolongo, S. G.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2016, 125 (02) : 629 - 636
  • [8] Novel nanoprocessing route for bulk graphene nanoplatelets reinforced metal matrix nanocomposites
    Chen, Lian-Yi
    Konishi, Hiromi
    Fehrenbacher, Axel
    Ma, Chao
    Xu, Jia-Quan
    Choi, Hongseok
    Xu, Hui-Fang
    Pfefferkorn, Frank E.
    Li, Xiao-Chun
    SCRIPTA MATERIALIA, 2012, 67 (01) : 29 - 32
  • [9] An Overview of Key Challenges in the Fabrication of Metal Matrix Nanocomposites Reinforced by Graphene Nanoplatelets
    Saboori, Abdollah
    Moheimani, Seyed Kiomars
    Dadkhah, Mehran
    Pavese, Matteo
    Badini, Claudio
    Fino, Paolo
    METALS, 2018, 8 (03)
  • [10] Graphene Nanoplatelets in Epoxy System: Dispersion, Reaggregation, and Mechanical Properties of Nanocomposites
    Wei, Jiacheng
    Atif, Rasheed
    Vo, Thuc
    Inam, Fawad
    JOURNAL OF NANOMATERIALS, 2015, 2015