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Experimental investigation of ultrasonic vibration-assisted tapping

机译:超声振动攻丝的实验研究

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摘要

Vibration-assisted tapping was studied for fabricating internal threads for titanium metal. High frequency imposed on the workpiece, was generated by a piezoelectric actuator. The axial thrust force and the tapping torque were respectively plotted against the tap's traveled distance relative to the workpiece. Each of the plots demonstrated that the entire tapping process could be divided into six characteristic stages. The implication associated with each characteristic stage was discussed for each plot. The stages where there was maximum thrust force and maximum torque located were identified. The frequency, which was adjustable through a control unit, was found to generate the minimum tapping torque when it equalized the resonance frequency of the tapping setup, a significant finding, which could be applied to decrease the tapping torque, and in turn the likelihood of tap breakage. The effect of tap size employed and the role played by cutting oil were also identified and discussed. No adverse effect on the teeth's shapes fabricated by the vibration-assisted tapping was found.
机译:研究了振动辅助攻丝来制造钛金属内螺纹。压电致动器产生施加在工件上的高频。分别相对于丝锥相对于工件的行进距离绘制轴向推力和攻丝扭矩。每个图都表明整个攻丝过程可以分为六个特征阶段。针对每个情节讨论了与每个特征阶段相关的含义。确定存在最大推力和最大扭矩的阶段。发现该频率可通过控制单元进行调节,当该频率等于攻丝装置的共振频率时,它会产生最小的攻丝扭矩,这一重大发现可用于降低攻丝扭矩,进而降低水龙头损坏。还确定并讨论了所用丝锥尺寸的影响以及切削油所起的作用。没有发现对通过振动攻丝制成的牙齿形状的不利影响。

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