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Shape of mole nose providing minimum axial resistance

机译:痣的形状提供最小的轴向阻力

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Introduction As a carrier of different sensors, moles can penetrate into the regolith automatically and keep investigating the subsurface environment continuously. In this section, features of several moles with different applications are introduced to explain why we choose a hammer-driven mole to study. Mole driven by a hammer In this section, the penetrating principle of a hammer-driven mole is illustrated and a circular arc shape for the front nose is proposed. Moreover, applying the penetrating principle, experiments of the mole with an arc-shaped nose are performed to observe the penetration phenomena in a simulated lunar regolith. Mechanics analysis According to soil mechanics theory, regions of soil failure are divided and a mechanics model is established between soil and mole with an arc-shaped nose. The work is done to get approximate axial resistance equations which are analyzed with the defined geometric parameters caliber-radius-head. EDEM simulations EDEM is leading global software based on discrete element method, whose main function is to analyze and observe the movement of particles. Lunar soil simulacrum is established to simulate axial resistance. Eventually, the theoretical results are validated by simulation.
机译:引言作为不同传感器的载体,痣可以自动渗透到硬脂岩中,并不断调查地下环境。在本节中,将介绍几种具有不同用途的痣的特征,以解释为什么我们选择锤击驱动的痣来进行研究。由锤子驱动的痣在本节中,说明了锤子驱动的痣的穿透原理,并提出了前鼻的圆弧形状。此外,利用穿透原理,对带有弧形鼻子的痣进行了实验,以观察模拟的月球巨石中的穿透现象。力学分析根据土壤力学理论,对土壤破坏区域进行了划分,并建立了具有弧形鼻孔的土与痣之间的力学模型。完成工作以获得近似的轴向阻力方程,并使用定义的几何参数口径-半径-头进行分析。 EDEM模拟EDEM是基于离散元素方法的全球领先软件,其主要功能是分析和观察粒子的运动。建立月球土壤模拟物以模拟轴向阻力。最终,通过仿真验证了理论结果。

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