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Titlebook: Interfacial Bonding Characteristics in Natural Fiber Reinforced Polymer Composites; Fiber-matrix Interfa Senthilkumar Krishnasamy,Mohit Hem

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New Methodologies to Improve the Interfacial Interaction in Natural Fibre Polymer Composites,ttempts to use natural fibres instead of synthetic fibres in fibre reinforced composites. Natural fibres can be a sustainable resource for composites with several advantages such as being biodegradable, cheap and available, having acceptable strength to weight ratio, low density, excellent insulatin
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Morphology of the Interfacial Interface of the Natural Fibre Reinforced Polymer Composites,e requirements for different applications. Therefore, a growing interest is observed in the use of composite materials, especially polymeric matrices, because of the versatility that these materials exhibit.
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Spectroscopic Analysis of Interfacial Adhesion in Natural Fibre Polymer Composites,are non-toxic, biodegradable, less expensive, and have potential applications in a variety of industries, including packaging, furniture, and home goods. This is because natural fibres are abundant in nature, biodegradable, and inexpensive. However, due to inadequate interaction/bonding between hydr
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Effect of Interfacial Bonding Characteristics on the Tensile Properties of Kenaf Fiber Reinforced Cf its huge availability, less cost, withstanding ability for adverse climatic conditions, and fast growth. In the case of considering the kenaf fiber’s capability of mechanical strength which depends on the matrix material like all other natural fibers. Herein, the focus is on given the interfacial
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Effect of Interfacial Bonding Characteristics on Physical, Mechanical and Fire Performance of Bamboperformance. Because of their complete biodegradability and renewability, being economical, non-toxic, non-abrasive and environmentally friendly, having high aspect ratio, socio-economical advantage and strong mechanical performances, bamboo fibers are considered promising reinforcements for polymer
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