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Thermo-physical, thermal degradation, and flexural properties of betel nut husk fiber reinforced vinyl ester composites

机译:槟榔果壳纤维增强乙烯基酯复合材料的热物理,热降解和弯曲性能

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This study aims to investigate the thermo-physical, mechanical, and thermal degradation properties of betel nut husk (BNH) fiber reinforced vinyl ester (VE) composites. These properties were evaluated as a function of fiber maturity, fiber content, and fiber orientation. Thermo-physical properties were analyzed experimentally using a hot disk TPS method. The introduction of BNH was found to reduce the thermal conductivity of neat VE. The thermal conductivity and thermal diffusivity of BNH reinforced VE composites decreased with the increase in fiber content. Short fiber BNH reinforced VE composites showed the lowest thermal conductivity as compared to the unidirectional and random nonwoven composites. The TGA analysis shows lower resin transition peak for the BNH reinforced VE composites than the peak of neat VE. Fiber maturity had a notable effect on the flexural modulus of the BNH fiber reinforced VE composites. Incorporation of 10 wt% BNH fibers into the composite has increased the composites' flexural modulus by 46.37%. However, further increases in the fiber content reduced both flexural strength and modulus of the composites. POLYM. COMPOS., 37:2008-2017, 2016. (c) 2015 Society of Plastics Engineers
机译:这项研究旨在研究槟榔壳(BNH)纤维增强的乙烯基酯(VE)复合材料的热物理,机械和热降解特性。评估这些性能是纤维成熟度,纤维含量和纤维取向的函数。使用热盘TPS方法对热物理性质进行了实验分析。发现引入BNH会降低纯净VE的热导率。 BNH增强VE复合材料的导热系数和热扩散系数随纤维含量的增加而降低。与单向无规无纺布复合材料相比,短纤维BNH增强VE复合材料显示出最低的导热性。 TGA分析显示,BNH增强的VE复合材料的树脂转变峰低于纯VE的峰。纤维成熟度对BNH纤维增强VE复合材料的弯曲模量有显着影响。将10 wt%的BNH纤维掺入复合材料可使复合材料的弯曲模量提高46.37%。然而,纤维含量的进一步增加降低了复合材料的弯曲强度和模量。 POLYM。 COMPOS。,37:2008-2017,2016.(c)2015年塑料工程师学会

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