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Optimization of Recycled Glass Fibre-Reinforced Plastics Gear via Integration of the Taguchi Method and Grey Relational Analysis

机译:通过集成Taguchi方法和灰色关系分析优化再生玻璃纤维增​​强塑料齿轮

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The increase in demand for industrial gears has resulted in the increase in usage of plastic-matrix composites particularly glass fibre-reinforced plastics as the gear materials. The usage of these synthetic fibers is to enhance the mechanical strength and the thermal resistance of the plastic gears. Nevertheless, the production of large quantities of these synthetic fibre- reinforced composites poses a serious threat to the ecosystem. Comprehending to this fact, the present work aimed at investigating the effects of incorporating recycled glass fibre-reinforced plastics in various compositions particularly on dimensional stability and mechanical properties of gear produced with diverse injection moulding processing parameters setting. The integration of Grey relational analysis (GRA) and Taguchi method was adopted to evaluate the influence of recycled glass fibre-reinforced plastics and variation in processing parameters on gear quality. From the experimental results, the blending ratio was found as the most influential parameter of 56.0% contribution in both improving tensile properties as well as in minimizing shrinkage, followed by mould temperature of 24.1% contribution and cooling time of 10.6% contribution. The results obtained from the aforementioned work are expected to contribute to accessing the feasibility of using recycled glass fibre-reinforced plastics especially for gear application.
机译:工业齿轮需求的增加导致塑料基质复合材料的使用增加,特别是玻璃纤维增​​强塑料作为齿轮材料。这些合成纤维的使用是提高塑料齿轮的机械强度和热阻。然而,大量这些合成纤维增强复合材料的生产对生态系统构成严重威胁。理解这一事实,目前的作品旨在调查在各种组合物中掺入掺入再生玻璃纤维增​​强塑料的效果,特别是在用不同的注射成型加工参数设置产生的尺寸稳定性和机械性能。采用灰色关系分析(GRA)和Taguchi方法的集成来评估再生玻璃纤维增​​强塑料的影响和齿轮质量的加工参数的变化。从实验结果中,在改善拉伸性能以及最小化收缩方面,发现混合比例为56.0%的贡献,以及最小化的贡献和冷却时间为10.6%的贡献的24.1%的贡献和冷却时间为10.6%的贡献。预期从上述工作获得的结果有助于获得使用再生玻璃纤维增​​强塑料的可行性,特别是用于齿轮施加。

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