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Auto-Gopher - a wire-line rotary-hammer ultrasonic drill

机译:Auto-Gopher-钢丝锤式超声锤

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Developing technologies that would enable NASA to sample rock, soil, and ice by coring, drilling or abrading at a significant depth is of great importance for a large number of in-situ exploration missions as well as for earth applications. Proven techniques to sample Mars subsurface will be critical for future NASA astrobiology missions that will search for records of past and present life on the planet, as well as the search of water and other resources. A deep corer, called Auto-Gopher, is currently being developed as a joint effort of the JPL's NDEAA laboratory and Honeybee Robotics Corp. The Auto-Gopher is a wire-line rotary- hammer drill that combines rock breaking by hammering using an ultrasonic actuator and cuttings removal by rotating a fluted bit. The hammering mechanism is based on the Ultrasonic/Sonic Drill/Corer (USDC) that has been developed as an adaptable tool for many of drilling and coring applications. The USDC uses an intermediate free-flying mass to transform the high frequency vibrations of the horn tip into a sonic hammering of a drill bit. The USDC concept was used in a previous task to develop an Ultrasonic/Sonic Ice Gopher. The lessons learned from testing the ice gopher were implemented into the design of the Auto-Gopher by inducing a rotary motion onto the fluted coring bit. A wire-line version of such a system would allow penetration of significant depth without a large increase in mass. A laboratory version of the corer was developed in the NDEAA lab to determine the design and drive parameters of the integrated system. The design configuration lab version of the design and fabrication and preliminary testing results are presented in this paper.
机译:开发技术使NASA可以通过在相当大的深度进行取心,钻孔或磨蚀来对岩石,土壤和冰进行采样,这对于大量的现场勘探任务以及地球应用而言都至关重要。成熟的火星地下采样技术对于未来的NASA天文生物学任务至关重要,该任务将搜索地球上过去和现在的生活记录,以及搜索水和其他资源。 JPL的NDEAA实验室和Honeybee Robotics Corp共同开发了一种称为Auto-Gopher的深孔钻。Auto-Gopher是一种钢丝绳电锤钻头,结合了通过使用超声波执行器进行锤击来破碎岩石的功能旋转带槽的钻头去除碎屑。锤击机制基于超声波/超声波钻/ Corer(USDC),已开发为多种钻探和取芯应用的自适应工具。 USDC使用中间自由飞行的质量将喇叭形尖端的高频振动转换为钻头的声音锤击。在先前的任务中使用了USDC概念来开发超声波/超声波冰地鼠。通过在带槽的取芯钻头上进行旋转运动,从测试冰球的过程中吸取的教训被应用到了自动球囊的设计中。这种系统的有线版本将允许在不大幅增加质量的情况下穿透较大深度。 NDEAA实验室开发了corer的实验室版本,以确定集成系统的设计和驱动参数。本文介绍了设计配置实验室版本的设计和制造以及初步的测试结果。

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