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Performance evaluation of micro-dimple formation on a Ti-6Al-4V alloy by using electrical discharge drilling

机译:用电气放电钻井对Ti-6Al-4V合金微浊形成的性能评价

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摘要

Micro-dimple formation improves the tribological behavior of a material. This study investigates dimple formation on a titanium (Ti-6Al-4V) alloy by using electrical discharge drilling. Input parameters, namely capacitance (C), pulse-on-time (Ton), and voltage (V), were varied to measure the output quality responses including dimple depth, burr height, and burr width. The experimental results indicated that the quality of the dimple is determined based on the spark energy and rate of material removal. A regression analysis was performed for each output response. The developed model confirmed the fitness at a 95 % confidence interval. The contribution of each factor and its significance was determined by using analysis of variance (ANOVA). Further, the optimum drilling condition was predicted by using desirability analysis (C = 10000 pF, Ton = 100 s, and V = 180 V). The microscopic view of the dimple array and the micro-dimple geometry were analyzed by using scanning electron microscopy images.
机译:微凹坑的形成改善了材料的摩擦学性能。本研究采用放电钻孔法研究了钛(Ti-6Al-4V)合金上的韧窝形成。改变输入参数,即电容(C)、脉冲开启时间(T)和电压(V),以测量输出质量响应,包括凹陷深度、毛刺高度和毛刺宽度。实验结果表明,电火花能量和材料去除率决定了凹坑的质量。对每个输出响应进行回归分析。开发的模型在95%的置信区间内确认了适用性。通过方差分析(ANOVA)确定各因素的贡献及其显著性。此外,通过使用可取性分析(C=10000 pF,T=100 s,V=180 V)预测了最佳钻井条件。利用扫描电镜图像分析了微凹阵列的微观形貌和微凹的几何结构。

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