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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Maximization of the effective impulse delivered by a high-frequency/low-frequency planetary drill tool
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Maximization of the effective impulse delivered by a high-frequency/low-frequency planetary drill tool

机译:最大化高频/低频行星钻具传递的有效脉冲

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摘要

Ultrasonic tools are used for a variety of cutting applications in surgery and the food industry, but when they are applied to harder materials, such as rock, their cutting performance declines because of the low effective impulse delivered by each vibration cycle. To overcome this problem, a technique known as high-frequency/low-frequency (or alternatively, ultrasonic/sonic) drilling is employed. In this approach, an ultrasonic step-horn is used to deliver an impulse to a free mass which subsequently moves toward a drilling bit, delivering the impulse on contact. The free mass then rebounds to complete the cycle. The horn has time between impacts to build significant vibration amplitude and thus delivers a much larger impulse to the free mass than could be delivered if it were applied directly to the target. To maximize the impulse delivered to the target by the cutting bit, both the momentum transfer from the ultrasonic horn to the free mass and the dynamics of the horn/free mass/cutting bit stack must be optimized. This paper uses finite element techniques to optimize the ultrasonic horns and numerical propagation of the stack dynamics to maximize the delivered effective impulse, validated in both cases by extensive experimental analysis.
机译:超声波工具在外科手术和食品工业中用于各种切割应用,但是当将其应用于坚硬的材料(例如岩石)时,由于每个振动周期所传递的有效脉冲较低,因此切割性能会下降。为了克服该问题,采用了被称为高频/低频(或者,超声/声波)钻孔的技术。在这种方法中,使用超声波步进喇叭将脉冲传递至自由块,该自由块随后向钻头移动,从而在接触时传递脉冲。然后自由质量反弹以完成循环。变幅杆在两次撞击之间有一定的时间,以建立明显的振动幅度,因此,与直接施加到目标上所产生的冲击相比,对自由质量的冲击要大得多。为了使切割头传递到目标的脉冲最大化,必须优化从超声变幅杆到自由质量的动量传递,以及变幅杆/自由质量/切割头堆叠的动力学。本文使用有限元技术来优化超声变幅杆和烟囱动力学的数值传播,以使传递的有效脉冲最大化,这两种情况均通过广泛的实验分析得到了验证。

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