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Effect of drill bit structure on sample collecting of lunar soil drilling

机译:钻头结构对农历土壤钻井采集的影响

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摘要

The influence of the drill bit structure on the lunar soil drilling process is an important factor in the sampling mechanism design. The drilling process was simulated by a previously proposed discrete element model. The stress distribution showed that the boundary effects were within acceptable limits. By analyzing the source of the samples, the velocity field and the trajectory of the sample particles, a motion behavior of jumping and falling of the sample particles was observed and a bubble-shaped sample collecting law was summed up. The downward motion behavior of sample particles was verified by analyzing the sample length of a drilling experiment. Finally, based on the engineering requirement, the drill bit structure was optimized. The simulation results showed that the injection amount of the particles into the bit could be significantly increased by changing the cutting teeth from cylindrical to prismatic and adding complement ring to eliminate the protruding of the cutting teeth to the inside of the bit, and the sample leakage could be effectively prevented. The axial force and torque decrease obviously by changing the drill bit body from the cone shape to a funnel shape. The inner diameter expansion caused by the internal structure design of drill stem at the joint of the drill bit and stem had little effect on the injection quantity.
机译:钻头结构对农历土壤钻井过程的影响是采样机构设计的重要因素。通过先前提出的离散元件模型模拟钻井过程。压力分布表明边界效应是可接受的限制。通过分析样品的来源,速度场和样品颗粒的轨迹,观察到样品颗粒的跳跃和下降的运动行为,并且总结了泡形样品收集法。通过分析钻井实验的样品长度来验证样品颗粒的向下运动行为。最后,基于工程要求,优化了钻头结构。模拟结果表明,通过将切割齿从柱形和加入补圈和添加补体环的切割齿改变切割齿以消除钻头内部的切割齿,可以显着提高颗粒进入该位的喷射量。可以有效地预防。通过将钻头形体从锥体形状改变为漏斗形状,通过将钻头体改变为漏斗形状显然,轴向力和扭矩显然降低。由钻头接头处的钻杆内部结构设计引起的内径膨胀对喷射量影响不大。

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