基于不同多响应优化技术的钛合金电火花加工表面粗糙度参数优化

A. Sahu, S. Mahapatra
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引用次数: 7

摘要

在本章中,以钛合金为工件,选择性激光烧结(SLS)工艺制备的AlSiMg为工具电极,与铜和石墨一起进行电火花加工。EDM通过改变不同的工艺参数,如电压(V)、放电电流(Ip)、占空比(τ)和脉冲接通时间(Ton)来执行。利用表面粗糙度测量机测量表面粗糙度参数Ra、Rt、Rz。为了减少实验次数,采用了田口L27正交阵列等实验设计方法。采用理想函数法、TOPSIS法和VIKOR法对电火花加工样品的表面性能进行了优化,并给出了电火花加工过程的最佳参数设置。所有的优化技术收敛于相同的最优参数设置。工具类型是最重要的参数,其次是放电电流和电压。在电火花加工过程中使用AlSiMg RP电极,在较低的参数设置水平下,电火花加工样品的表面光洁度更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Surface Roughness Parameters by Different Multi-Response Optimization Techniques During Electro-Discharge Machining of Titanium Alloy
In this chapter, the EDM process is performed by taking titanium alloy as work piece and AlSiMg prepared by selective laser sintering (SLS) process as tool electrode along with copper and graphite. The EDM is performed by varying different process parameters like voltage (V), discharge current (Ip), duty cycle (τ), and pulse-on-time (Ton). The surface roughness parameters like Ra, Rt, and Rz are measured by the use of surface roughness measurement machine. To reduce the number of experiments, design of experiment (DOE) approach like Taguchi's L27 orthogonal array has been used. The surface properties of the EDM specimen are optimized by desirability function approach, TOPSIS and VIKOR method, and the best parametric setting is reported for the EDM process. All the optimization techniques convergence to the same optimal parametric setting. The type of tool is the most significant parameter followed by discharge current and voltage. Better surface finish of EDM specimen is produced with lower level of parametric setting along with the use of AlSiMg RP electrode during EDM.
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