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Numerical Simulation of Temperature for Al_2O_3 Ceramics during Micro-Detonation of Arc Strike Machining

机译:AL_2O_3陶瓷温度的数值模拟电弧撞机微爆炸过程中的影响

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A theoretical model of temperature for Al_2O_3 ceramics during micro-detonation of arc strike machining was established. Based on finite element theory, the temperature of Al_2O_3 ceramics during micro-detonation of arc strike machining was simulated with the aid of Ansys software, combined with the actual processing, the width and depth of cavity impacted by micro-detonation were calculated. The simulation results show that the highest temperature of Al_2O_3 ceramics is over 13435 °C in a given processing parameters, while the high-temperature zone is quite small. With the increase of pulse width and electricity, the temperature within the machined zone increases rapidly, but the outside area kept a low temperature; and with the increase of nozzle radius, the diameter to depth ratio of the distribution of temperature is increasing gradually. The data gained from the simulation is proved to be accordant with the data gained from experiments.
机译:建立了弧形冲击加工微爆炸过程中Al_2O_3陶瓷温度的理论模型。基于有限元理论,借助于ANSYS软件模拟了弧形撞击加工微爆炸过程中的AL_2O_3陶瓷的温度,结合实际处理,计算了通过微爆炸的腔腔的宽度和深度。仿真结果表明,在给定的处理参数中,Al_2O_3陶瓷的最高温度超过13435°C,而高温区非常小。随着脉冲宽度和电力的增加,加工区内的温度迅速增加,但外部区域保持低温;随着喷嘴半径的增加,温度分布的直径与深度比率逐渐增加。从模拟中获得的数据被证明与从实验中获得的数据一致。

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