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Eco-friendly composites based on ceramic tiles industrial wastes and acrylonitrile butadiene rubber

机译:基于陶瓷砖工业废物和丙烯腈丁二烯橡胶的环保复合材料

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Ceramic floor tile production lines commonly produce two types of waste: ground fired biscuit waste of ceramic tiles (WGB) and ground glazed fired floor tiles waste (WGF). These two wastes come from the same starting alumina silicate base materials but differ in thermal treatments (further firing) and surface treatments (glazing). These waste ceramics were ground into fine powders and evaluated as potential fillers for acrylonitrile butadiene rubber (NBR). The raw ceramic powders were investigated through X-ray diffraction, X-ray fluorescence, and laser scattering techniques. Particulate composites consisting of an NBR matrix with ceramic filler contents of 5, 10, 15, 20, 30, 40, and 50% were prepared in the form of cubes and discs. Scanning electron microscopy was used to determine the filler distribution inside NBR matrix. Electrical, mechanical, and thermal properties were also investigated. The electrical permittivity epsilon ' and the dielectric loss epsilon '' were found to be higher in the case of NBR/WGB than those measured for NBR/WGF at the same filler content. The mechanical properties follow the same trend as that of the electrical properties. The thermal stability of 5 and 40% concentrations were studied and the results indicate that the WGB loaded samples showed higher thermal stability than the samples loaded with WGF. Finally, the utilization of these ground waste ceramics as fillers for NBR was recommended due to improvements in electrical insulation, antistatic behavior, and thermal stability, especially for the Biscuit waste. Note that at the 30 wt% concentration for both fillers in NBR, results in composites that fulfill the targets of economical and environmental goals. POLYM. COMPOS., 40:544-552, 2019. (c) 2017 Society of Plastics Engineers
机译:陶瓷地板瓷砖生产线通常生产两种类型的废物:陶瓷砖(WGB)的地面烧制饼干浪费(WGB)和地面上釉射击地板瓦片废物(WGF)。这两种废物来自同样的起始氧化铝硅酸盐基础材料,但在热处理(进一步烧制)和表面处理(玻璃)中不同。将这些废物陶瓷研磨成细粉末,并评估为丙烯腈丁二烯橡胶(NBR)的潜在填料。通过X射线衍射,X射线荧光和激光散射技术研究原料陶瓷粉末。以陶瓷填料为5,10,15,20,30,40和50%的颗粒复合材料,以立方体和盘的形式制备。扫描电子显微镜用于确定NBR基质内的填充物分布。还研究了电气,机械和热性质。在NBR / WGB的情况下,发现电渗透度Epsilon'和介电损失Epsilon''比在相同的填料含量下测量的NBR / WGF的情况更高。机械性能遵循与电气特性相同的趋势。研究了5和40%浓度的热稳定性,结果表明,WGB负载样品显示比用WGF加载的样品稳定的热稳定性。最后,由于电绝缘,抗静电行为和热稳定性的改善,建议使用这些地面废物陶瓷作为NBR的填料,特别是对于饼干废物。注意,在NBR中填料的30wt%浓度下,结果符合满足经济和环境目标目标的复合材料。聚合物。 Compos。,40:544-552,2019。(c)2017塑料工程师协会

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