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Auto-Gopher-Ⅱ - A wireline rotary-hammer ultrasonic drill that operates autonomously

机译:Auto-Gopher-Ⅱ-自主运行的有线旋转锤式超声波钻

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An important challenge of exploring the solar system is the ability to penetrate at great depths the subsurface of planetary bodies for sample collection. The requirements of the drilling system are minimal mass, volume and energy consumption. To address this challenge, a deep drill, called the Auto-Gopher Ⅱ, is currently being developed as a joint effort between JPL's NDEAA laboratory and Honeybee Robotics Corp. The Auto-Gopher Ⅱ is a wireline rotary-hammer drill that combines breaking formations by hammering using a piezoelectric actuator and removing the cuttings by rotating a fluted bit. The hammering is produced by the Ultrasonic/Sonic Drill/Corer (USDC) mechanism that has been developed by the JPL team as an adaptable tool for many drilling and coring applications. The USDC uses an intermediate free-flying mass to convert high frequency vibrations of a piezoelectric transducer horn tip into sonic hammering of the drill bit. The USDC concept was used in a previous task to develop an Ultrasonic/Sonic Ice Gopher and then integrated into a rotary hammer device to develop the Auto-Gopher-Ⅰ. The lessons learned from these developments are being integrated into the development of the Auto-Gopher-Ⅱ, an autonomous deep wireline drill with integrated cuttings and sample management and drive electronics. In this paper the latest development will be reviewed including the piezoelectric actuator, cuttings removal and retention flutes and drive electronics.
机译:探索太阳系的一个重要挑战是能够穿透很深的深度以收集样品的行星体的地下空间。钻孔系统的要求是最小的质量,体积和能耗。为应对这一挑战,JPL的NDEAA实验室与Honeybee Robotics Corp.共同开发了一种名为Auto-GopherⅡ的深钻。Auto-GopherⅡ是一种有线旋转锤钻,结合了破碎地层,使用压电致动器进行锤击,并通过旋转带槽钻头去除碎屑。锤击是由JPL团队开发的超声波/超声波钻/ Corer(USDC)机制生产的,该机制可作为适用于许多钻井和取芯应用的工具。 USDC使用中间自由飞行的质量将压电换能器喇叭头的高频振动转换为钻头的音锤。在先前的任务中使用了USDC概念来开发超声波/声波冰地鼠,然后将其集成到旋转锤设备中以开发Auto-Gopher-Ⅰ。从这些开发中汲取的经验教训已被整合到Auto-Gopher-Ⅱ的开发中,Auto-Gopher-Ⅱ是一种具有集成切削,样品管理和驱动电子装置的自动深层电缆钻。在本文中,将对最新发展进行回顾,包括压电致动器,切屑清除和固定槽以及驱动电子装置。

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