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Drilling Load Model of an Inchworm Boring Robot for Lunar Subsurface Exploration

Weiwei Zhang, Shengyuan Jiang, Dewei Tang, Huazhi Chen, Jieneng Liang

发表年份
2017
引用次数
18
访问权限
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摘要

In the past decade, the wireline robot has received increasing attention due to the advantages of light weight, low cost, and flexibility compared to the traditional drilling instruments in space missions. For the lunar subsurface in situ exploration mission, we proposed a type of wireline robot named IBR (Inchworm Boring Robot) drawing inspiration from the inchworm. Two auger tools are utilized to remove chips for IBR, which directly interacted with the lunar regolith in the drilling process. Therefore, for obtaining the tools drilling characteristics, the chips removal principle of IBR is analyzed and its drilling load model is further established based on the soil mechanical theory in this paper. And then the proposed theoretical drilling load model is experimentally validated. In addition, according to the theoretical drilling load model, this paper discusses the effect of the drilling parameters on the tools drilling moments and power consumption. These results imply a possible energy-efficient control strategy for IBR.

关键词

WirelineDrillingMeasurement while drillingRobotFlexibility (engineering)AugerEngineeringRegolithProcess (computing)Marine engineering

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