Analysis of thermal and dynamic mechanical properties of epoxy bio-composites reinforced with sisal fibers and carbon nanotubes. [PDF]
Rao DK +8 more
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Advances in tribological performance of plant-fiber reinforced epoxy composites. [PDF]
Mia NM +6 more
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Natural fibers in sustainable materials: extraction technologies, fiber modification, and performance-sustainability relationships. [PDF]
Sayam S.
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Impact performance and probabilistic reliability of natural fiber-reinforced standard and high-strength concrete. [PDF]
S AH, Kothandapani K.
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Comprehensive Review on Mechanical Performance of Concrete Reinforced with Fibers and Waste Materials. [PDF]
Mishra RK +4 more
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Adhesion chemistry of plant-based cellulosic fibers and polymeric matrices in composites: a review. [PDF]
Shadhin M +4 more
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Comprehensive evaluation of impact strength and microstructural characteristics of geopolymer concrete reinforced with four types of natural fibers of varying lengths. [PDF]
Bazarkhankyzy A +7 more
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Abstract Sisal fibers were mercerized, under tension and no tension, to improve their tensile properties and interfacial adhesion with soy protein resin. Mercerization of fibers under tension is known to minimize fiber shrinkage and to lower the microfibrillar angle by aligning them along the fiber axis. Mercerization improved the fracture stress and
Jun Tae Kim, Anil Netravali
exaly +2 more sources
Flexural Strengthening of RC Beams with Sisal Fiber Composites and Sisal Fiber Rods
Materials Science Forum, 2016The present study is conducted to examine the effectiveness of sisal fiber in flexural strengthening of reinforced concrete (RC) beams. In order to obtain this objective, two different strengthening configurations are adopted (use of sisal fiber composites and use of sisal fiber rods). A total of five flexural strengthened reinforced concrete beams are
Arslan Qayyum Khan +3 more
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Sisal fiber (SF) and waterborne polyurethane adhesive were used to prepare SF‐based sound absorption material through hot press molding. SF with elastic polyethylene (PE) film interlayers was also fabricated as a new type of sound absorbing composite. The effects of SF treatment methods and PE film on sound absorption coefficient were evaluated.
Ting Wang, Heyi Ge, Fujun Wang
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