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Mechanical and Thermal Studies on Epoxy Toluene Oligomer-Modified Epoxy Resin/Marble Waste Composites

机译:环氧甲苯低聚物改性的环氧树脂/大理石废料复合材料的机械和热学研究

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In this research, marble dust waste was recycled as raw material for the preparation of composite materials. Epoxy toluene oligomer (ETO) was synthesized from toluene and epichlorohydrin, which was used as a comatrix in 50 wt% with commercial epoxy resin (ER). Its chemical structure was characterized with Fourier transform infrared spectroscopy and chemical analyses. The rigid filler used in epoxy polymer matrix was the marble processing waste obtained from wastewater using different coagulants, such as sepiolite, zeolite, or pumice. The thermal and mechanical properties of the composites were evaluated with thermogra-vimetric and mechanical analyses. The results showed that the marble wastes with all coagulants can significantly improve the thermal stability of an ER-ETO matrix at temperatures above 350 C. Composites exhibited a higher thermal degradation temperature with a much higher char yield. Surface hardness and tensile strength of the composites were higher than those of pure epoxy polymer matrix, as well. Scanning electron microscopy was used for the characterization of surface and cross-sections of the composites to verify the results.
机译:在这项研究中,大理石粉尘废物被回收用作制备复合材料的原料。由甲苯和环氧氯丙烷合成环氧甲苯低聚物(ETO),环氧丙烷与环氧氯丙烷以50 wt%的比例用作市售环氧树脂(ER)的混合物。通过傅里叶变换红外光谱和化学分析对其化学结构进行了表征。环氧聚合物基质中使用的硬质填料是大理石加工废料,是使用不同的凝结剂(例如海泡石,沸石或浮石)从废水中获得的。通过热重分析和机械分析评估了复合材料的热和机械性能。结果表明,具有所有凝结剂的大理石废料可以显着改善ER-ETO基体在350℃以上的温度下的热稳定性。复合材料表现出更高的热降解温度和更高的炭收率。复合材料的表面硬度和拉伸强度也高于纯环氧聚合物基体。扫描电子显微镜用于表征复合材料的表面和横截面以验证结果。

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