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Reaction force of percussive corer, rotary-friction corer, and rotary-percussive corer

机译:打击型升降机,旋转摩擦升降机和旋转式摄入型乙醇的反作用力

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Future NASA exploration missions will increasingly require sampling, in-situ analysis and possibly the return of material to Earth for laboratory analysis. To address these objectives, effective and optimized drilling techniques are needed. This requires developing comprehensive tools to be able to determine analytically what takes place during the operation and what are the control parameters that can be enhanced. In this study, three types of coring techniques were studied and were identified as potential candidates for operation from a possible future Mars Sample Return (MSR) mission rover. These techniques include percussive, rotary-friction, and rotary-percussive coring. Theoretical models were developed to predict the dynamic reaction forces transmitted from these three types of corers to the robotic arms that hold them. The predicted reaction forces will then be used in a dynamic simulation environment to simulate a representative corer tool to obtain a best estimate of a tool that can be operated from a small rover. The predicted dynamic reaction forces will be presented in this paper.
机译:未来的美国航空航天局勘探任务将越来越需要采样,原位分析,并可能返回地球以进行实验室分析。为了解决这些目标,需要有效和优化的钻井技术。这需要开发综合工具,以便能够在操作期间分析地进行分析,以及可以增强的控制参数是什么。在这项研究中,研究了三种类型的芯技术,并被确定为从可能的未来MARS样本返回(MSR)Mission Rover的潜在候选人。这些技术包括次齿轮,旋转摩擦和旋转冲击芯片。开发了理论模型,以预测从这三种类型的血管传递到保持它们的机器人臂的动态反作用力。然后将预测的反作用力用于动态模拟环境中以模拟代表性的乙型工具,以获得可以从小型流动器操作的工具的最佳估计。本文将提出预测的动态反应力。

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