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Experiment on Particle Conveying Mechanism for Lunar Soil Containing Basalt Particles

机译:含有玄武岩颗粒的月球土壤粒子输送机制的实验

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Based on the analysis results of components and the particle diameter distribution of lunar soil, some basalt particles with different diameters are mixed into homogeneous soil to simulate the drilling process and particles conveying condition. Lunar soil containing basalt particles with different diameters can affect drilling process, penetration rate and conveying power consumption. The experiment results revealed that basalt particles move upward in an irregular spiral state during drilling; the basalt particles can convey smoothly and has little effect on drilling process, penetration rate and power consumption when the particle diameter is less than 5mm. The basalt particles can't convey smoothly and has great effect on penetration rate and power consumption while particle diameter is bigger than 10mm. Particles in lunar soil will lead to torque increasing sharply and drilling pressure on bit adding to achieve continuous drilling.
机译:基于组分的分析结果和月球土壤的粒径分布,将具有不同直径不同的玄武岩颗粒混合到均匀的土壤中以模拟钻井过程和颗粒输送条件。含有不同直径的玄武岩颗粒的月球土壤可以影响钻井过程,渗透率和输送功耗。实验结果表明,玄武岩颗粒在钻井期间以不规则的螺旋状态向上移动;玄武岩颗粒可以平滑地传送,并且当粒径小于5mm时,对钻井过程,渗透率和功耗几乎没有影响。玄武岩颗粒不能平稳地传达,对粒径大于10mm的渗透率和功耗具有很大的影响。月球土壤中的颗粒将导致扭矩急剧增加,钻头增加钻孔,以实现连续钻孔。

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