Abhijit Bhowmik, Biplab Bhattacharjee, Abayomi Adewale Akinwande, Prasanta Majumder, J. Giri, P. Satish Kumar, J. Katiyar
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引用次数: 0
摘要
本研究探讨了在铝基复合材料(尤其是与 Al6063 混合的复合材料)中使用 TiB2 粒子增强材料的问题,因为 TiB2 具有抗机械侵蚀、低氧化率和出色的导热性能。复合材料采用搅拌铸造法生产,TiB2 含量为 9 wt%。研究重点是磨损行为,考察了三种关键工艺参数,如负载、滑动速度和四种设置下的覆盖滑动距离,以确定实现良好磨损率的最佳组合。方差统计分析显示,测试参数之间存在显著差异。总之,该研究强调了灰色模糊方法在验证磨损性能属性决策方面优于简单的灰色关系等级。研究发现,最显著的灰色关系等级和灰色模糊等级值分别为 0.913 和 0.902。这些值与最佳运行条件相对应,特别是 15 N 的载荷、15 m/s 的滑动速度和 1200 m 的滑动距离。研究结果强调了灰色模糊技术在验证与磨损性能特征相关的决策过程中的有效性,突出了其优于单纯的灰色关系等级。
Optimization of tribological performance of TiB2-reinforced Al6063 composite using grey-fuzzy tool
The utilization of TiB2 particle reinforcement in aluminium matrix composites, particularly with Al6063, has been explored in this study for its resilience to mechanical erosion, low oxidation rate, and excellent heat conductivity. The composite was produced using stir casting with 9 wt% TiB2. The investigation focuses on wear behaviour, examining three key process parameters such as load, sliding speed, and covering sliding distance across four settings to identify the optimal combination for achieving a favourable wear rate. Statistical analysis of variance reveals significant differences among the tested parameters. Conclusively, the study highlights the superiority of the grey-fuzzy approach over a simple grey relational grade in validating decision-making for wear performance attributes. The research identifies the ost significant grey relational grade and grey fuzzy grade values as 0.913 and 0.902, respectively. These values correspond to optimal operating conditions, specifically a 15 N load, a sliding speed of 15 m/s, and a sliding distance of 1200 m. The findings underscore the efficacy of the grey-fuzzy technique in authenticating decision-making processes related to wear performance characteristics, emphasizing its superiority over relying solely on a plain grey relational grade.