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An Approximate Solution of Energy Partition in Grind-hardening Process

机译:磨削加工过程中能量分区的近似解

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In order to estimate the energy partition within the workpiece, an integral approximation solution of energy partition is found in the grind-hardening process. Heat transfer models of the abrasive grain, workpiece, chips and fluid were analyzed by using the integral approximation method. The present model can calculate the energy partition with and without film boiling in the grinding zone. The temperature underneath the surface of the workpiece was measured using semi--natural thermocouple method. The workpiece background temperature calculated by the present model agreed very well with the experimental results. Energy partition model can be used to calculate the grinding temperature for controlling thermal damage and predicting the harden layer depth in grinding.
机译:为了估计工件内的能量分区,在研磨硬化过程中发现了能量分区的积分近似解。通过使用整体近似法分析磨料晶粒,工件,芯片和流体的传热模型。本模型可以在磨削区内用薄膜煮沸计算能量隔板。使用半天然热电偶法测量工件表面下方的温度。本模型计算的工件背景温度与实验结果非常好。能量分区模型可用于计算用于控制热损伤并预测研磨中的硬化层深度的研磨温度。

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