材料科学
复合材料
极限抗拉强度
环氧树脂
压缩成型
模具
复合数
抗弯强度
压缩(物理)
凯夫拉
玻璃纤维
造型(装饰)
弯曲
转移模塑
纤维
作者
Jayaprakash Venugopal,B. Dhanasakkaravarthi,Raviteja Surakasi,Moti Lal Rinawa,L.H. Manjunatha,Razan A. Alshgari,Saikh Mohammad Wabaidur,Md Ataul Islam,I. Jenish
摘要
Reinforcing fibers, nanofillers, matrix materials, and manufacturing techniques all have a role in the mechanical characteristics of hybrid composites. MWCNTs-reinforced E-glass/Kevlar/epoxy composites are appropriate fillers for structural applications. The impact of different concentrations of MWCNT fillers (0.4%, 0.8%, and 1.2% wt) on the mechanical characteristics of hybrid composites has been studied. Tensile and bending strength, as well as hardness, were measured in compression-molded composites. The effects of compression pressure, mold temperature, and applied pressure on hybrid (0.8% MWCNT) were investigated. When it came to composite tensile and bending strength, compression pressure was the most important factor, closely succeeded by mold temperature and pressure period. Compression molding were optimized, resulting in a tensile strength of 183 MPa, a bending strength of 158.3 MPa, and a hardness value of 23.8 HV.
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