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首页> 外文期刊>Journal of Applied Polymer Science >Use of polyester/glass-fiber residues as fillers for composites
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Use of polyester/glass-fiber residues as fillers for composites

机译:聚酯/玻璃纤维残留物用作复合材料的填料

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In this work, the performance of polyester (P)/glass fiber mats (G) and P/G/calcium carbonate (CaCO _3) composites was compared with that of P/G/fiberglass waste composites. The residues used were conventional P/G postconsumer light resin-transfer-molding parts, obtained via knife or ball milling. Composites with up to 50 wt % reinforcement were prepared by hot compression molding and characterized via physical (density and water sorption), thermal (thermogravimetry and burnout), and mechanical (impact, Barcol hardness, and tensile) testing. The results show that the simple grinding and reincorporation of the composite residues yielded new composites with generally worse characteristics than the ones with calcium carbonate. Then, the waste was sorted by removing most of the pure resin particles from it. This yielded a resin-rich fraction, which could be better used for energy recovery and resin-covered fibers. The use of the latter as a filler yielded composites with better overall properties than those with calcium carbonate for a controlled amount of W; thus showing potential use as a replacement for the commonly used inorganic filler, maintaining the mechanical properties, decreasing the raw material cost, and reducing the amount of composite waste discarded in the environment.
机译:在这项工作中,将聚酯(P)/玻璃纤维毡(G)和P / G /碳酸钙(CaCO_3)复合材料的性能与P / G /玻璃纤维废料复合材料的性能进行了比较。使用的残留物是通过刀或球磨获得的常规P / G消费后轻质树脂转移成型零件。通过热压成型制备具有最多50 wt%增强物的复合材料,并通过物理(密度和吸水率),热(热重分析和燃尽)和机械(冲击,巴氏硬度和拉伸)测试进行表征。结果表明,对复合物残渣进行简单的研磨和重新掺入后,新复合物的性能通常会比含碳酸钙的复合物差。然后,通过从其中除去大部分纯树脂颗粒来分类废物。这产生了富含树脂的部分,可以更好地用于能量回收和树脂覆盖的纤维。使用后者作为填料,在W含量可控的情况下,其复合材料的综合性能优于碳酸钙。因此显示出潜在的用途,可以代替常用的无机填料,保持机械性能,降低原材料成本,并减少在环境中丢弃的复合废物量。

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