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Ultrasonic/sonic driller/corer (USDC) as a sampler for planetary exploration

机译:超声波/超声波钻机/钻孔机(USDC)作为行星探测的采样器

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Future NASA exploration missions to Mars, Europa, Titan, comets, and asteroids will perform sampling, in-situ analysis and possibly the return of material to Earth for further tests. One of the major limitations of sampling in low gravity environments is that conventional drills need high axial force. An ultrasonic/sonic driller/corer (USDC) mechanism was developed to address these and other limitations of existing drilling techniques. The USDC is based on an ultrasonic horn that is driven by a piezoelectric stack. The horn drives a free-mass, which resonates, between the horn and drill stem. Tests have shown that this device addresses some of the key challenges to the NASA objective of planetary in-situ sampling and analysis. The USDC is lightweight (450 g), requires low pre-load (>5N) and can be driven at low power (5 W). The device was operated from such robotic platforms as the Sojourner rover and the FIDO robotic arm and it has been shown to drill various rocks including granite, diorite, basalt and limestone. The drill can potentially operate at high and low temperatures and does not require sharpening. Although the drill is driven electrically at 20 kHz, a substantial subharmonic acoustic component is found that is crucial to drilling performance. Models that explain this low frequency coupling in the horn, free-mass, drill stem and rock are presented. Efforts are currently underway to integrate the models and experimentally corroborate the predictions.
机译:未来的NASA对火星,欧罗巴,泰坦,彗星和小行星的探索任务将进行采样,原位分析,并可能将材料送回地球以进行进一步测试。在低重力环境下采样的主要限制之一是常规钻头需要很高的轴向力。为了解决现有钻孔技术的这些和其他局限性,开发了超声波/超声波钻孔机/钻孔机(USDC)机制。 USDC基于超声变幅杆,该变幅杆由压电叠层驱动。喇叭驱动喇叭和钻杆之间产生共振的自由质量。测试表明,该设备解决了NASA行星原位采样和分析目标面临的一些关键挑战。 USDC重量很轻(450 g),要求低预载(> 5N),并且可以低功率(5 W)驱动。该设备可通过Sojourner漫游车和FIDO机械臂等机器人平台进行操作,并已显示可钻各种岩石,包括花岗岩,闪长岩,玄武岩和石灰石。钻头可能会在高温和低温下运行,并且不需要磨锐。尽管电钻以20 kHz的频率驱动,但发现次谐波声分量很大,这对钻削性能至关重要。提出了解释喇叭,自由质量,钻杆和岩石中这种低频耦合的模型。目前正在努力整合模型并通过实验证实这些预测。

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