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Predictive Analysis for the Thermal Diffusion of the Plasma-Assisted Machining of Superalloy Inconel-718 Based on Exponential Smoothing

机译:基于指数平滑的高温合金Inconel-718等离子辅助加工热扩散的预测分析

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Nickel base and titanium base materials have been widely applied to engines in aerospace industry, and these engines are essential components of airplanes. The machining characteristics of aerospace materials may cause machining cutters to be worn down in a short time and thus reduce the accuracy of processing. The plasma-assisted machining adopted in the research is a kind of the complex machining method. In the cases of nickel base and titanium base alloys, the method can heat workpieces in an extremely short duration to soften the materials for the ease of cutting so that the cutting force, cutter wear, and machining cost will all be reduced. The research adopted plasma heating to soften parts of the materials and aimed to explore the heating of nickel base alloy. The temperature variation of the materials was investigated and measured by adjusting the current and feed velocity. Moreover, Inconel-718 superalloy was adopted for the comparison with nickel base alloy for the observation of the influence and change brought by heat, and the method of exponential smoothing was adopted to conduct the prediction and analysis of thermal diffusion for understanding the influence and change brought by electric current on nickel base materials. Finally, given the current from 20 A to 80 A and feed velocity from 1,000 mm/min to 3,000 mm/min, the influence of thermal diffusion was investigated and the related model was built.
机译:镍基和钛基材料已广泛应用于航空航天业的发动机,这些发动机是飞机的基本组件。航空航天材料的加工特性可能会导致加工刀具在短时间内磨损,从而降低加工精度。研究中采用的等离子辅助加工是一种复杂的加工方法。在镍基和钛基合金的情况下,该方法可以在极短的时间内加热工件以软化材料以便于切割,从而降低了切削力,刀具磨损和加工成本。该研究采用等离子加热来软化部分材料,并旨在探索镍基合金的加热。通过调节电流和进料速度来研究和测量材料的温度变化。此外,采用Inconel-718高温合金与镍基合金进行比较,以观察热量带来的影响和变化,并采用指数平滑法进行热扩散的预测和分析,以了解影响和变化。电流在镍基材料上带来的。最后,在20 A至80 A的电流和1,000 mm / min至3,000 mm / min的进给速度下,研究了热扩散的影响并建立了相关模型。

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