2022
DOI: 10.1007/s13399-022-02994-0
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Mechanical and machining behavior of betel nut fiber/leather/chitin-toughened epoxy hybrid composite

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Cited by 17 publications
(2 citation statements)
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“…When dealing with the long-term behavior of natural fiber composites, other issues become important, such as the effect of hygrothermal aging on post-drilling fatigue; for short birch fiber/high density polyethylene (HDPE) composites, the influence of the treatment on the composites' fatigue performance was demonstrated to be minimal, which was a promising result with respect to the possible fabrication of spur gear using this composite [105]. In this respect, silane treatment was also investigated, showing some success in improving the fatigue performance of machined betelnut fiber/leather/chitin composites, partly by compensating for the complexity of the hybrid material [106]. Further information was also offered in a recent review on the fatigue of hybrid natural fiber composites [107].…”
Section: Post-drilling Fatigue Of Natural Fiber Compositesmentioning
confidence: 99%
“…When dealing with the long-term behavior of natural fiber composites, other issues become important, such as the effect of hygrothermal aging on post-drilling fatigue; for short birch fiber/high density polyethylene (HDPE) composites, the influence of the treatment on the composites' fatigue performance was demonstrated to be minimal, which was a promising result with respect to the possible fabrication of spur gear using this composite [105]. In this respect, silane treatment was also investigated, showing some success in improving the fatigue performance of machined betelnut fiber/leather/chitin composites, partly by compensating for the complexity of the hybrid material [106]. Further information was also offered in a recent review on the fatigue of hybrid natural fiber composites [107].…”
Section: Post-drilling Fatigue Of Natural Fiber Compositesmentioning
confidence: 99%
“…Author observed that the prepared films had strong tensile properties, UV resistance, and water resistance. Same way, Sivakumar et al 22 researched on the development of peanut husk carbon quantum dots and ferrite foil epoxy composite for EMI shielding applications at high frequency bands. According to the results the relative permittivity and dielectric loss of the composite were increased 65% and 66%, when 1 vol% of carbon quantum dots are included.…”
Section: Introductionmentioning
confidence: 99%