Domun N, Hadavinia H, Zhang T, Sainsbury T, Liaghat G H, Vahid S
Material Research Centre, SEC Faculty, Kingston University London, UK.
Nanoscale. 2015 Jun 21;7(23):10294-329. doi: 10.1039/c5nr01354b.
The incorporation of nanomaterials in the polymer matrix is considered to be a highly effective technique to improve the mechanical properties of resins. In this paper the effects of the addition of different nanoparticles such as single-walled CNT (SWCNT), double-walled CNT (DWCNT), multi-walled CNT (MWCNT), graphene, nanoclay and nanosilica on fracture toughness, strength and stiffness of the epoxy matrix have been reviewed. The Young's modulus (E), ultimate tensile strength (UTS), mode I (GIC) and mode II (GIIC) fracture toughness of the various nanocomposites at different nanoparticle loadings are compared. The review shows that, depending on the type of nanoparticles, the integration of the nanoparticles has a substantial effect on mode I and mode II fracture toughness, strength and stiffness. The critical factors such as maintaining a homogeneous dispersion and good adhesion between the matrix and the nanoparticles are highlighted. The effect of surface functionalization, its relevancy and toughening mechanism are also scrutinized and discussed. A large variety of data comprised of the mechanical properties of nanomaterial toughened composites reported to date has thus been compiled to facilitate the evolution of this emerging field, and the results are presented in maps showing the effect of nanoparticle loading on mode I fracture toughness, stiffness and strength.
将纳米材料掺入聚合物基体被认为是提高树脂力学性能的一种高效技术。本文综述了添加不同纳米颗粒(如单壁碳纳米管(SWCNT)、双壁碳纳米管(DWCNT)、多壁碳纳米管(MWCNT)、石墨烯、纳米黏土和纳米二氧化硅)对环氧基体断裂韧性、强度和刚度的影响。比较了不同纳米颗粒负载量下各种纳米复合材料的杨氏模量(E)、极限拉伸强度(UTS)、I型(GIC)和II型(GIIC)断裂韧性。综述表明,根据纳米颗粒的类型,纳米颗粒的掺入对I型和II型断裂韧性、强度和刚度有显著影响。强调了保持均匀分散以及基体与纳米颗粒之间良好粘附等关键因素。还对表面功能化的效果、相关性及增韧机制进行了审查和讨论。因此,汇编了迄今为止报道的大量由纳米材料增韧复合材料力学性能组成的数据,以促进这一新兴领域的发展,并将结果呈现在图表中,展示纳米颗粒负载量对I型断裂韧性、刚度和强度的影响。