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Investigation and optimization of the electro-discharge machining parameters of 2024 aluminum alloy and Al/7.5% Al2O3 particulate-reinforced metal matrix composite

机译:2024铝合金与Al / 7.5%Al 2 O 3 颗粒增强金属基复合材料的放电加工参数研究与优化

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摘要

Being newly advanced materials, metal matrix composites enjoy the properties of high service temperature, light weight, high specific strength, good wear resistance, high stiffness, and a low thermal expansion coefficient. However, machining these materials by conventional methods is difficult. A key machining process for difficult-to-machine materials like composites is electro-discharge machining, which is widely used in non-conventional material removal processes. The current work aims to identify different parameters, such as voltage, current, pulse on-time, and pulse off-time, which influence the material removal rate (MRR), tool wear rate (TWR), and surface roughness (SR). By applying regression equations, a mathematical model is adopted to estimate MRR, TWR, and SR. The optimum machining parameters are investigated using the Taguchi method with L9 orthogonal array. The optimum values are also analyzed by multi-objective Taguchi method with calculation of total normalized quality loss (TNQL) and multi-signal to noise ratio (MSNR) included. Analysis of the Taguchi method introduced voltage and pulse off-time as the two main significant factors that influence the value of the material removal rate. The discharge current and pulse off-time also have a statistically significant impact on both tool wear rate and surface roughness.
机译:作为新的先进材料,金属基复合材料具有较高的工作温度,重量轻,比强度高,耐磨性好,刚度高和热膨胀系数低的特性。然而,通过常规方法加工这些材料是困难的。复合材料等难加工材料的关键加工工艺是放电加工,它广泛用于非常规材料去除工艺中。当前的工作旨在识别不同的参数,例如电压,电流,脉冲接通时间和脉冲断开时间,这些参数会影响材料去除率(MRR),工具磨损率(TWR)和表面粗糙度(SR)。通过应用回归方程,采用数学模型来估计MRR,TWR和SR。使用带有L9正交阵列的Taguchi方法研究了最佳加工参数。还通过多目标Taguchi方法分析了最佳值,并计算了总归一化质量损失(TNQL)和多信噪比(MSNR)。 Taguchi方法的分析引入了电压和脉冲关闭时间作为影响材料去除率值的两个主要重要因素。放电电流和脉冲关闭时间对工具的磨损率和表面粗糙度也有统计学上显着的影响。

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