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Effect of Minimum Quantity Lubrication to Prediction of Cutting Temperature Distribution in Turning Material AISI-1045

机译:最小数量润滑对转动材料切削温度分布预测的影响AISI-1045

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This paper presents a prediction of cutting temperature in turning process, using a continuous cutting model of Johnson-Cook (J-C). An method to predict the temperature distribution in orthogonal cutting is based on the constituent model of various material and the mechanics of their cutting process. In this method, the average temperature at the primary shear zone (PSZ) and the secondary shear zone (SSZ) were determined for various materials, based on a constitutive model and a chip-formation model using measurements of cutting force and chip thicknes. The J-C model constants were taken from Hopkinson pressure bar tests. Cutting conditions, cutting forces and chip thickness were used to predict shear stress. Experimental cutting heat results with the same cutting parameters using the minimum lubrication method (MQL) were recorded through the Testo-871 thermal camera. The thermal distribution results between the two methods has a difference in value, as well as distribution. From the difference, we have analyzed some of the causes, finding the effect of the minimum quantity lubrication parameters on the difference.
机译:本文介绍了使用Johnson-Cook(J-C)的连续切割模型在转弯过程中的切削温度的预测。一种预测正交切割温度分布的方法基于各种材料的组成模型和其切削过程的机制。在该方法中,基于组成型模型和使用切割力和芯片厚度的芯片形成模型,确定初级剪切区(PSZ)和二次剪切区(SSZ)的平均温度。 J-C模型常数从霍普金森骨压杆试验中取出。切割条件,切割力和芯片厚度用于预测剪切应力。通过Testo-871热量相机记录使用使用最小润滑方法(MQL)的相同切割参数的实验切割热量。两种方法之间的热分布结果具有值差异,以及分布。从差异中,我们已经分析了一些原因,找到了最小数量润滑参数对差异的影响。

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