Study on ultrasonic/sonic driller/corer for deep space exploration

Chao Chen, Weiqing Huang, Jun-jie Guo, Chun-sheng Zhao
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引用次数: 2

Abstract

A novel Ultrasonic/sonic Driller/Corer (USDC) has been developed for deep space exploration. This low axial load is required and few impact forces are produced for the USDC to sample rocks, which results in the important advantage of low energy dissipation. Based on inverse piezoelectric effect, the ultrasonic vibration is induced for the transducer of the USDC. The ultrasonic/sonic vibration energy conversion and coupling exists between the ultrasonic transducer and drill stem through the smart design of free mass. In this way the drill stem with the considerable sonic frequency can sample the rocks. In this paper the finite element model of the USDC is built and the dynamic analysis is conducted. The prototype is manufactured and the experimental results show that the USDC can dig into the rocks without extra axial forces.
深空探测用超声/声波钻机/井盖的研究
研制了一种用于深空探测的新型超声/声波钻/盖(USDC)。这种低轴向载荷是USDC对岩石取样所需要的,并且产生的冲击力很小,这带来了低能量耗散的重要优势。基于逆压电效应,对USDC换能器产生超声振动。通过自由质量的智能设计,实现超声换能器与钻杆之间的超声/声振动能量转换与耦合。这样,具有相当声波频率的钻杆就可以对岩石进行取样。本文建立了USDC的有限元模型,并对其进行了动力学分析。制作了样机,实验结果表明,USDC可以在没有额外轴向力的情况下钻入岩石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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