首页> 外文期刊>Machining Science and Technology >INDUCTION-HEATED TOOL MACHINING OF ELASTOMERS - PART 1: FINITE DIFFERENCE THERMAL MODELING AND EXPERIMENTAL VALIDATION
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INDUCTION-HEATED TOOL MACHINING OF ELASTOMERS - PART 1: FINITE DIFFERENCE THERMAL MODELING AND EXPERIMENTAL VALIDATION

机译:弹性体的感应加热工具加工-第1部分:有限差分热建模和实验验证

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摘要

Experiments and finite difference thermal modeling of the induction-heated tool for end milling of elastomers are investigated. Three sets of experiments are designed to calibrate the contact thermocouple for the tool tip temperature measurement, study the effect of tool rotational speed on induction heat generation and convective heat transfer, and measure the tool temperature distribution for finite difference inverse heat transfer solution and validation of modeling results. Experimental results indicate that effects of tool rotation on induction heat generation and convective heat transfer are negligible when the spindle speed is below 2000 rpm. A finite difference thermal model of the tool and insulator is developed to predict the distribution of tool temperature. The thermal model of a stationary tool can be expanded to predict the temperature distribution of an induction-heated rotary tool within a specific spindle speed range. Experimental measurements validate that the thermal model can accurately predict tool tip peak temperature.
机译:研究了感应加热工具用于弹性体端铣削的实验和有限差分热模型。设计了三组实验来校准用于刀尖温度测量的接触热电偶,研究刀具转速对感应热产生和对流传热的影响,并测量刀具温度分布以用于有限差分逆向传热解决方案和验证建模结果。实验结果表明,当主轴转速低于2000 rpm时,刀具旋转对感应生热和对流传热的影响可忽略不计。建立了工具和绝缘体的有限差分热模型,以预测工具温度的分布。可以扩展固定工具的热模型来预测感应加热的旋转工具在特定主轴转速范围内的温度分布。实验测量证明,该热模型可以准确地预测刀尖峰值温度。

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