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Impact Dynamics of a Percussive System Based on Rotary-Percussive Ultrasonic Drill

机译:基于旋转冲击超声钻的冲击系统的冲击动力学

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摘要

This paper presents an impact dynamic analysis of a percussive system based on rotary-percussive ultrasonic drill (RPUD). The RPUD employs vibrations on two sides of one single piezoelectric stack to achieve rotary-percussive motion, which improves drilling efficiency. The RPUD’s percussive system is composed of a percussive horn, a free mass, and a drill tool. The percussive horn enlarges longitudinal vibration from piezoelectric stack and delivers the vibration to the drill tool through the free mass, which forms the percussive motion. Based on the theory of conservation of momentum and Newton’s impact law, collision process of the percussive system under no-load condition is analyzed to establish the collision model between the percussive horn, the free mass, and the drill tool. The collision model shows that free mass transfers high-frequency small-amplitude vibration of percussive horn into low-frequency large-amplitude vibration of drill tool through impact. As an important parameter of free mass, the greater the weight of the free mass, the higher the kinetic energy obtained by drill tool after collision. High-speed camera system and drilling experiments are employed to validate the inference results of collision model by using a prototype of the RPUD.
机译:本文介绍了基于旋转冲击超声钻(RPUD)的冲击系统的影响动态分析。 RPUD在一个压电堆叠的两侧采用振动,以实现旋转冲击运动,这提高了钻井效率。 RPUD的打击系统由打击喇叭,自由质量和钻头组成。打击喇叭从压电堆叠扩大纵向振动,并通过自由质量向钻刀输送振动,从而形成冲击运动。根据动量守恒理论和牛顿的影响法,分析了无负荷条件下打击系统的碰撞过程,以建立冲击喇叭,自由质量和钻头之间的碰撞模型。碰撞模型表明,通过冲击,自由质量将冲击喇叭的高频小振幅振动变为钻刀的低频大振幅振动。作为自由质量的重要参数,自由质量的重量越大,碰撞后通过钻孔工具获得的动能越高。采用高速摄像机系统和钻井实验来通过使用RPUD的原型来验证碰撞模型的推理结果。

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