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- W3040572486 abstract "In the present study, the reinforcing effect of aluminum silicon carbide (Al–SiC) nanoparticles and chemically treated nanocellulose fiber on physical and mechanical characteristics of polymer nanocomposites has been investigated. The experimental design was selected as per response surface methodology (RSM) to optimize the effect of Al–SiC (1.59–18.41 wt%), nanocellulose fiber concentration (1.59–18.41 wt%), and sonication time (39.55–140.45 minutes). From the analysis of variance (ANOVA) results, it was found that the Al–SiC, nanocellulose fiber concentration, and sonication time played a significant role in the mechanical properties. In order to simultaneously maximize the flexural strength, the optimal values of nanocellulose fiber, Al–SiC nanoparticles, and sonication time were found to be 5 wt%, 5 wt%, and 120 minutes, respectively. From the normal distribution plot, it is found that there is a good agreement between experimental results and developed RSM model. Addition of Al–SiC (5 wt%) and nanocellulose fiber (5 wt%) in vinyl ester polymer improved the physical and mechanical properties. The scanning electron microscope analysis on Al–SiC and nanocellulose fiber-reinforced vinyl ester nanocomposites revealed uniform dispersion of nanocellulose fiber and Al–SiC in the polymer matrix, which is due to the improved mechanical characteristics." @default.
- W3040572486 created "2020-07-10" @default.
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- W3040572486 date "2020-07-03" @default.
- W3040572486 modified "2023-10-05" @default.
- W3040572486 title "Mechanical and Physical Test of Hybrid Fiber Composites" @default.
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- W3040572486 doi "https://doi.org/10.1002/9783527824571.ch3" @default.
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