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Lightweight Low Force Rotary Percussive Coring Tool for Planetary Applications

机译:适用于行星应用的轻型低力旋转冲击取芯工具

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A prototype low-force rotary-percussive rock coring tool for use in acquiring samples for geological surveys in future planetary missions was developed. The coring tool could eventually enable a lightweight robotic system to operate from a relatively small (less than 200 kg) mobile or fixed platform to acquire and cache Mars or other planetary rock samples for eventual return to Earth for analysis. To gain insight needed to design an integrated coring tool, the coring ability of commercially available coring bits was evaluated for effectiveness of varying key parameters: weight-on-bit, rotation speed, percussive rate and force. Trade studies were performed for different methods of breaking a core at its base and for retaining the core in a sleeve to facilitate sample transfer. This led to a custom coring tool design which incorporated coring, core breakage, core retention, and core extraction functions. The coring tool was tested on several types of rock and demonstrated the overall feasibility of this approach for robotic rock sample acquisition.
机译:开发了一种原型低力旋转冲击取芯工具,用于在未来的行星飞行任务中获取用于地质调查的样品。取芯工具最终可以使轻型机器人系统在相对较小(小于200千克)的移动或固定平台上运行,以获取并缓存火星或其他行星岩石样本,最终返回地球进行分析。为了获得设计集成取芯工具所需的见识,对市售取芯钻头的取芯能力进行了评估,以评估各种关键参数的有效性:钻头重量,转速,冲击速率和作用力。进行了各种贸易研究,研究了各种方法,这些方法可将核在其底部断裂,并将核保留在套筒中以方便样品转移。这导致了定制的取芯工具设计,该设计结合了取芯,岩心破损,岩心固位和岩心抽出功能。该取芯工具已在几种类型的岩石上进行了测试,并证明了该方法在机器人岩石样品采集中的整体可行性。

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