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Mechanical model of hollow-external-screw drill rod for lunar soil particle vertical conveying

机译:中空外螺纹钻杆垂直输送月球土壤颗粒的力学模型

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This paper presents a mechanical model of drilling rod in lunar soil deep drilling process by expanding the theory of vertical screw conveyor. Space systems on lunar surface need to adapt to extremely bad environment and a drilling system would represent the fittest tool to collect soil sample to be analyzed in lunar exploration. Hollow-external-screw drill rod is a kind of most commonly used and reliable drill rod configuration which is one of the core executive components of lunar drilling-sampling mechanism. Drilling cuttings at the bottom of the hole are continuously sent to the lunar surface and the interaction between the drilling rod and the soil is difficult to model by numerical tools. Solid vertical transport theory in vertical screw conveyor and a soil-transporting mechanical model of long earth boring auger are applied to model the aforementioned interaction. In this force analysis of the mechanical model, not only the spiral angle variation is considered, but also the radial distribution and soil pressure in the particle vertical conveying. All these make the theoretical analysis more comprehensive than traditional methods. This paper also provides mathematical simulation of the soil-transporting process and the validation of the theoretical model mentioned above will be confirmed by the numerical and physical experiments.
机译:通过扩展垂直螺旋输送机的理论,提出了月球土壤深部钻探过程中钻杆的力学模型。月球表面的空间系统需要适应极端恶劣的环境,而钻井系统将成为最合适的工具,用于收集在月球探索中进行分析的土壤样品。中空外螺纹钻杆是一种最常用,最可靠的钻杆配置,是月球钻探采样机构的核心执行部件之一。孔底的钻屑连续发送到月球表面,并且很难用数值工具来模拟钻杆和土壤之间的相互作用。利用立式螺旋输送机中的固体垂直输送理论和长土钻螺旋输送器的土壤输送力学模型对上述相互作用进行了建模。在力学模型的这种力分析中,不仅考虑了螺旋角的变化,而且考虑了颗粒垂直输送过程中的径向分布和土壤压力。所有这些使理论分析比传统方法更加全面。本文还提供了土壤运移过程的数学模拟,并通过数值和物理实验证实了上述理论模型的有效性。

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