Epoxy/imidazole functionalized silica epoxy nanocomposites: Mechanical and fracture behaviour

被引:11
|
作者
Prasad, T. [1 ]
Halder, S. [1 ,2 ,3 ]
Dhar, S. S. [4 ]
Goyat, M. S. [5 ]
机构
[1] Natl Inst Technol Silchar, Dept Mech Engn, Silchar 788010, Assam, India
[2] Univ Alabama, Alabama Transportat Inst, Tuscaloosa, AL 35487 USA
[3] Ctr Adv Vehicle Technol, Aerosp Engn & Mech, Tuscaloosa, AL 35487 USA
[4] Natl Inst Technol Silchar, Dept Chem, Silchar 788010, Assam, India
[5] Univ Petr & Energy Studies, Sch Engn, Dept Appl Sci, Dehrdaun 28007, India
来源
EXPRESS POLYMER LETTERS | 2021年 / 15卷 / 03期
关键词
nanocomposites; interface; cure index; tensile strength; fracture toughness; SILANE COUPLING AGENTS; SURFACE MODIFICATION; PHYSICAL BEHAVIOR; PARTICLE-SIZE; NANOPARTICLES; COMPOSITES; TOUGHNESS; POLYMERS; FRACTION; FAILURE;
D O I
10.3144/expresspolymlett.2021.19
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this work, the mechanical and fracture performance of epoxy nanocomposites consisting of epoxide and imidazole functionalized silica nanoparticles has been studied. The post-synthesis grafting method was utilized to functionalized SiO2 nanoparticles with GPTMS (GGS) and used them as reinforcement (0-2 wt%) in epoxy resin. The cure behavior of nanocomposites demonstrated that the composite has excellent cure capability at 0.5 wt% of GGS. The composite containing 0.5 wt% of GGS exhibited significant improvement in tensile strength (similar to 65 %) and modulus of toughness (similar to 272 %), respectively. Additionally, the flexural strength, flexural modulus, and work of flexural were enhanced by similar to 48, similar to 50, and similar to 48%, respectively. Interestingly, the GGS showed its tremendous potential to improve the fracture toughness (K-1C) and the fracture energy (G(1C)) of the nanocomposite by similar to 97 and similar to 292 %, which is also evident by the study of cure behavior. The fractography analysis endorsed the enhancement of material properties due to the use of GGS in the epoxy matrix. Failure investigation examined under FESEM elucidated forced the crack to move around the poles of the nanoparticles due to better interfacial adhesion. Hence, GGS nanoparticle has the potential to use as an excellent cost-effective reinforcement for the epoxy matrix to mitigate the brittle failure in epoxy composites.
引用
收藏
页码:203 / 223
页数:21
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