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Milling Microchannels in Monel 400 Alloy by Wire EDM: An Experimental Analysis

机译:电火花线切割在Monel 400合金中铣削微通道的实验分析

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摘要

This paper presents the results of an investigation on the capacity of wire electrical discharge machining (WEDM) to produce microchannels in the Nickel-based alloy, Monel 400. The main objective of the current study is to produce microchannels with desired/target geometry and acceptable surface quality. Square cross-sectional microchannels with dimensions of 500 × 500 µm were investigated. Experiments were conducted based on the one-factor-at-a-time approach for the key input WEDM process parameters, namely pulse-on time (TON), pulse-off time (TOFF), average gap voltage (VGAP), wire feed (WF), and dielectric flow rate (FR). Dimensional accuracy, machining speed, surface roughness, surface morphology, microhardness, and microstructure were analyzed to evaluate the microchannels. The minimum errors of 6% and 3% were observed in the width and depth of the microchannels, respectively. Furthermore, microchannels with enhanced surface integrity could be produced exhibiting smooth surface morphology and shallow recast layer (~0–2.55 µm).
机译:本文介绍了对电火花加工(WEDM)在镍基合金Monel 400中生产微通道的能力的研究结果。本研究的主要目的是生产具有所需/目标几何形状和可接受的微通道。表面质量。研究了尺寸为500×500 µm的方形截面微通道。基于一次一因素方法对关键输入WEDM工艺参数进行了实验,这些关键参数是脉冲接通时间(TON),脉冲断开时间(TOFF),平均间隙电压(VGAP),送丝(WF)和介电流速(FR)。分析尺寸精度,加工速度,表面粗糙度,表面形态,显微硬度和显微组织以评估微通道。在微通道的宽度和深度上分别观察到最小误差为6%和3%。此外,可以生产出具有增强的表面完整性的微通道,这些通道具有光滑的表面形态和浅的重铸层(〜0–2.55 µm)。

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