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Wear characteristics of glass-polyester-based hybrid composites: A parametric analysis using response surface method and fuzzy logic

机译:基于玻璃 - 聚酯的混合复合材料的磨损特性:使用响应面法和模糊逻辑的参数分析

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摘要

Marble dust generated during processing of the marble producing rocks is a major solid waste with a detrimental impact on environment. Analysis shows that this waste has constituents having compounds like SiO2, Al2O3, Fe2O3, CaO, MgO, etc., in different proportions. This paper explores on the possible use of waste marble dust as secondary filler in glass-polyester composites and reports on its dry sliding wear characteristics. Such hybrid composites with unsaturated polyester as the matrix are fabricated by keeping the woven glass fibre loading fixed and by varying the weight fraction of the particulate filler, that is, marble dust through a simple hand layup route. Dry sliding wear trials are conducted under different test conditions as per ASTM G 99-05 following the L-30 model of response surface method (RSM). A parametric appraisal of the wear process is made using RSM and the significant control factors and their interactions influencing the specific wear rates are identified. Scanning electron microscopy of the worn composite surfaces is done to ascertain the wear mechanism. It is found that the presence of marble dust improves the wear resistance of unfilled glass-polyester composites substantially. Further, prediction of wear rate of the composites for a wide range of filler content and sliding velocities is conducted using RSM and another prediction model based on fuzzy logic and the outcomes are compared.
机译:在制造大理石生产岩石中产生的大理石灰尘是一种主要的固体废物,对环境有害。分析表明,该废物具有具有SiO 2,Al 2 O 3,Fe 2 O 3,CaO,MgO等的化合物的成分,其不同比例。本文探讨了废物大理石粉尘作为玻璃聚酯复合材料中的二次填料,并报告其干滑动磨损特性。通过保持织造玻璃纤维装载固定的纺织玻璃纤维负载并通过改变颗粒填料的重量分数来制造这种具有不饱和聚酯的混合复合材料,即通过简单的手持途径的大理石灰尘。在L-30响应面法(RSM)的L-30模型之后,根据ASTM G 99-05在不同的试验条件下进行干滑动磨损试验。使用RSM制造磨损过程的参数评估,并确定了影响特定磨损率的显着控制因素及其相互作用。磨损复合表面的扫描电子显微镜是为了确定磨损机构。结果发现大理石粉尘的存在改善了未填充的玻璃聚酯复合材料的耐磨性。此外,使用RSM和基于模糊逻辑的另一预测模型进行宽范围的填充物含量和滑动速度的复合材料的磨损率预测。

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