Jayavelu Udaya Prakash, Subramani Ananth, Sunder Jebarose Juliyana, Robert Cep, Nitin Khedkar, Sachin Salunkhe, Emad Abouel Nasr, Ali Kamrani
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引用次数: 0
摘要
滑动部件的磨损非常突出,因此摩擦学性能在汽车和航空航天工业中起着重要作用。采用低成本搅拌铸造技术制备了3种不同掺量比例的铝合金LM6/ b4c /粉煤灰混杂复合材料,并基于实验设计(DoE)方法进行了实验,采用田口信噪比(S/N)分析对其进行了优化。采用滑动速度(S)、滑动距离(D)、载荷(L)和增强率(R %)等工艺参数进行分析,得到的响应为摩擦系数(COF)和比磨损率(SWR)。掺9wt %杂化(LM6 + 4.5% b4c + 4.5%粉煤灰)增强铝合金,与其他复合材料和基合金相比,具有密度低、硬度高的特点。获得最小SWR的最佳参数为S - 1 m/ S, D - 500 m, L - 45 N, R% - 6 wt%杂化(3%粉煤灰和3%碳化硼)。获得最小COF的最佳参数为S - 1.5 m/ S, D - 500 m, L - 30 N, R%−9 wt%杂化(4.5%粉煤灰和4.5%碳化硼)。负载(28.34%)是获得最小SWR的最重要参数,DL(31.62%)是获得最小COF的最重要参数。磨损销的SEM图像显示了amc的各种磨损机制。所生产的混合复合材料是新的,这些可用于活塞衬套和刹车片的应用。
Parametric optimization of wear parameters of hybrid composites (LM6/B4C/fly ash) using Taguchi technique
Wear is prominent in sliding components, so tribology property plays a major role in automotive as well as in the aerospace industries. In this work, Aluminium alloy LM6/B 4 C/Fly Ash hybrid composites with three different weight percentages of reinforcement were fabricated using the low-cost stir casting technique, and the experiments were conducted based on the Design of Experiments (DoE) approach and optimized using Taguchi’s Signal to noise ratio (S/N) analysis. The analysis was conducted with process parameters like Sliding Speed (S), Sliding distance (D), load (L) and reinforcement percentage (R %), the responses are Coefficient of Friction (COF) and Specific wear rate (SWR). Aluminum alloy reinforced with 9 wt% hybrid (LM6 + 4.5% B 4 C + 4.5% Fly Ash) has a low density and high hardness compared with other composites and base alloys. The optimum parameters for obtaining minimum SWR are S - 1 m/s, D - 500 m, L - 45 N, and R% - 6 wt% Hybrid (3% Fly ash and 3% boron carbide). The optimum parameters for obtaining minimum COF are S - 1.5 m/s, D - 500 m, L - 30 N, and R% −9 wt% Hybrid (4.5% Fly ash and 4.5% boron carbide). Load (28.34%) is the most significant parameter for obtaining minimum SWR, and DL (31.62%) for obtaining minimum COF. SEM images of the worn pins show the various wear mechanisms of the AMCs. The hybrid composite produced is new and these may be used for piston liner and brake pad applications.