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Cutting Force Model for Thermal-Assisted Machining of Tool Steel Based on the Taguchi Method

机译:基于TAGUCHI方法的工具钢热辅助加工切割力模型

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摘要

This paper investigates cutting force in thermal-assisted machining (TAM) by induction heating for SKD11 tool steel which is widely used in the mold industry. Experimental studies were first conducted at room and elevated temperatures to evaluate the effectiveness of the heating process on chip morphology and the cutting forces during the thermal-assisted machining and comparing with conventional machining method. The Taguchi method based on orthogonal array and analysis of variance ANOVA method was then used to design the number of experiments and evaluate the influence of cutting speed, feed rate, cutting depth, and elevated temperature on the cutting force. Study results showed a decrease in the cutting force in the TAM process. The optimal condition of parameters obtained for thermal-assisted machining were cutting speed 280 m/min, feed rate 230 mm/min, cutting depth 0.5 mm and temperature 400 °C. Finally, a proposed equation was established to determine the cutting force that was presented as a function of elevated temperatures when milling SKD11 material. A proposed cutting force model was compared, evaluated and confirmed to be in good agreement with experimental results.
机译:本文通过对模具行业广泛应用的SKD11工具钢感应加热来研究热辅助加工(TAM)中的切割力。首先在室温下进行实验研究,高温,以评估热辅助加工过程中加热过程对切屑形态和切割力的有效性,并与传统加工方法进行比较。基于正交阵列的TAGUCHI方法和方差分析ANOVA方法设计实验次数,并评估切割速度,进料速率,切削深度和温度升高对切割力的影响。研究结果表明,TAM过程中的切削力减少。获得热辅助加工的参数的最佳条件是切割速度280m / min,进给速率230mm / min,切割深度0.5mm,温度400°C。最后,建立了一个建议的等式,以确定当铣削SKD11材料时作为升高温度的函数呈现的切割力。比较了一个拟议的切割力模型,评估并确认与实验结果吻合良好。

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