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Influence of fibre treatment and glass fibre hybridisation on thermal degradation and surface energy characteristics of hemp/unsaturated polyester composites

机译:纤维处理和玻璃纤维杂化对大麻/不饱和聚酯复合材料热降解和表面能特性的影响

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摘要

The effect of fibre treatment on the thermal degradation and surface energy characteristics of hemp fibre reinforced unsaturated polyester (HFRUP) composites was investigated by means of a thermogravimetric analyser (TGA) in a nitrogen atmosphere and contact angle measurement. In order to modify the fibre/ matrix interface, NaOH treatment and glass fibre hybridisation were employed. HFRUP composites were compared to the unreinforced UP, NaOH treated hemp and glass fibre hybridised hemp/UP composites. TGA test results show that the weight loss for all samples occurred between 200 and 415 ℃. The unreinforced UP had a maximum weight loss of 1.011%/℃. For the HFRUP composites, the maximum rate of weight loss was 0.81%/℃. For the NaOH treated and glass fibre hybridised hemp/UP composites, the maximum rate of weight loss was 0.78%/℃ and 0.79%/℃, respectively. The effect of fibre treatment on the surface energy of studied samples and their dispersive and polar components were also investigated. Surface energy characteristics obtained from contact angle measurement revealed that for unreinforced UP, the contact angle measured with glycerol is 49.37°. For hemp/UP composites, the contact angle is 76.05°. For NaOH treated hemp/UP composites sample, the contact angle was recorded 78.89°, higher than untreated one. For hemp/CSM/UP specimen, the contact angle was recorded 69.80°. Both TGA and contact angle results indicated that surface treatment and glass fibre hybridisation led to better thermal stability and the wetting behaviour of hemp/UP composites.
机译:借助热重分析仪(TGA)在氮气氛下和接触角测量下研究了纤维处理对大麻纤维增强不饱和聚酯(HFRUP)复合材料的热降解和表面能特性的影响。为了修改纤维/基质界面,采用了NaOH处理和玻璃纤维杂交。将HFRUP复合材料与未增强的UP,经NaOH处理的大麻和玻璃纤维混合的大麻/ UP复合材料进行了比较。 TGA测试结果表明,所有样品的失重发生在200到415℃之间。未经增强的UP的最大失重为1.011%/℃。对于HFRUP复合材料,最大失重率为0.81%/℃。对于经NaOH处理和玻璃纤维混合的大麻/ UP复合材料,最大失重率分别为0.78%/℃和0.79%/℃。还研究了纤维处理对所研究样品的表面能及其分散和极性成分的影响。从接触角测量获得的表面能特性表明,对于未增强的UP,甘油测量的接触角为49.37°。对于大麻/ UP复合材料,接触角为76.05°。对于用NaOH处理的大麻/ UP复合材料样品,记录的接触角为78.89°,高于未处理的样品。对于大麻/ CSM / UP样品,接触角记录为69.80°。 TGA和接触角结果均表明表面处理和玻璃纤维杂化导致更好的热稳定性和大麻/ UP复合材料的润湿行为。

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  • 来源
    《Composites》 |2012年第7期|p.2757-2761|共5页
  • 作者单位

    Advanced Polymer and Composites (APC) Research Croup, University of Portsmouth, School of Engineering, Anglesea Road, Anglesea Building, P01 3DJ, UK;

    Advanced Polymer and Composites (APC) Research Croup, University of Portsmouth, School of Engineering, Anglesea Road, Anglesea Building, P01 3DJ, UK;

    Advanced Polymer and Composites (APC) Research Croup, University of Portsmouth, School of Engineering, Anglesea Road, Anglesea Building, P01 3DJ, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Polymer-matrix composites (PMCs); A. Hybrid; E. Surface treatments; Thermogravemetric analysis (TGA);

    机译:A.聚合物基复合材料(PMC);A.混合动力;E.表面处理;热重分析(TGA);

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