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Modelling and experimental investigation of process parameters in WEDM of WC-5.3 % Co using response surface methodology

机译:响应面法对WC-5.3%Co电火花线切割工艺参数进行建模和实验研究

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Tungsten carbide-cobalt (WC-Co) composite is a difficult-to-machine material owing to its excellent strength and hardness at elevated temperature. Wire electrical discharge machining (WEDM) is a best alternative for machining of WC-Co composite into intricate and complex shapes. Efficient machining of WC-Co composite on WEDM is a challenging task since it involves large numbers of parameters. Therefore, in present work, experimental investigation has been carried out to determine the influence of important WEDM parameters on machining performance of WC-Co composite. Response surface methodology, which is a collection of mathematical and experimental techniques, was utilised to obtain the experimental data. Using face-centered central composite design, experiments were conducted to investigate and correlate the four input parameters pulse-on time, pulse-off time, servo voltage and wire feed for three output performance characteristics – cutting speed (CS), surface roughness (SR) and radial overcut (RoC). Using analysis of variance on experimental data, quadratic vs. two-factor interaction (2FI) models have been suggested for CS and RoC while two-factor interaction (2FI) has been proposed for SR. Using these mathematical models, optimal parameters can be determined easily for desired performance characteristics, and hence a trade-off can be made among different performance characteristics.
机译:碳化钨-钴(WC-Co)复合材料由于在高温下具有出色的强度和硬度,因此是难于加工的材料。线放电加工(WEDM)是将WC-Co复合材料加工成复杂形状的最佳选择。在WEDM上高效加工WC-Co复合材料是一项艰巨的任务,因为它涉及大量参数。因此,在目前的工作中,已经进行了实验研究以确定重要的电火花加工参数对WC-Co复合材料加工性能的影响。响应面方法是数学和实验技术的集合,用于获得实验数据。使用以面心为中心的中央复合设计,进行了实验,以研究和关联四个输入参数的脉冲接通时间,脉冲断开时间,伺服电压和送丝,以获得三个输出性能特征-切削速度(CS),表面粗糙度(SR)和径向超切(RoC)。通过对实验数据的方差分析,对于CS和RoC提出了二次与两因素相互作用(2FI)模型,而对于SR则提出了两因素相互作用(2FI)模型。使用这些数学模型,可以轻松确定所需性能特性的最佳参数,因此可以在不同性能特性之间进行权衡。

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