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Prediction of cutting tool vibration and surface roughness in hard turning of AISI52100 steel

机译:AISI52100钢硬路刀具振动和表面粗糙度的预测

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摘要

The changing behavior of vibration signals with varying cutting parameters (cutting speed, feed rate and depth of cut) for turning hardened AISI52100 steel has been studied and reported. The vibration response of cutting tool in all three mutually perpendicular directions, namely, in feed Vx, radial Vy and, tangential Vz directions have been captured by mounting piezoelectric tri-axial accelerometer close to the cutting tool. Experiments are planned and conducted as per Central composite rotatable design of Surface response methodology. The second order multiple regression models are developed to correlate cutting parameters with vibration acceleration and surface roughness. The coefficient of regression R2 for all models is found close to 0.92 which shows that the developed models are reliable and provide an excellent explanation between the cutting parameter and the vibration of cutting tool within limits. The analysis of the results revealed that cutting conditions are having prominent and mixed type effect on vibration signals. The acceleration amplitude Vx, Vy and Vz increases with increase in cutting speed, and depth of cut. The vibration amplitude Vx, Vy and Vz initially increases as feed increases and, with further increase in feed, the vibration amplitude decreases. The surface roughness is highly influenced by the feed rate followed by cutting speed whereas the depth of cut was found less significant. The fluctuation in frequency is observed in all directions. However, the band of frequency remains within a certain range. Within selected cutting parameter range, the maximum acceleration amplitude is observed in frequency band of 4 kHz - 16 kHz.
机译:振动信号的具有不同切削参数(切削速度,进给速度和切削深度),用于车削硬化AISI52100钢的改变行为进行了研究和报导。在所有的三个相互垂直的方向切割工具,即,在进料Vx的,径向和VY的振动响应,切线方向1/2已经通过安装压电三轴加速计接近切削工具捕获。实验计划,为每表面响应方法论中央复合旋转设计进行。二阶多元回归模型的开发,以与振动加速度和表面粗糙度相关成分的切削参数。回归R2的所有型号的系数被发现接近0.92这表明开发的模型是可靠的,提供切削参数和界限内刀具的振动之间的优异的解释。结果的分析表明,切削条件是在振动信号具有突出和混合型的效果。振幅增加切割速度,和切削深度Vx的,VY和VZ增加的加速度。振幅Vx的,VY和VZ振动最初增加作为进料的增加,并且与在进料进一步增加,振动振幅减小。表面粗糙度高度由进料速率,然后切割速度,而切口的深度被发现较少显著影响。在振动频率的变动在所有方向上观察到。但是,频率的频带保持在一定范围内。 16千赫 - 内所选切削参数范围内时,最大加速度振幅在4kHz的频带观察到。

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