从植物根系的剥落和径向膨胀机理到用于土壤探测的软探针

Anand Kumar Mishra, F. Tramacere, B. Mazzolai
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引用次数: 2

摘要

在本文中,我们提出了一种创新的土壤渗透探针,灵感来自植物在根尖区域(即根尖)水平上利用径向扩张和脱落机制的策略。这些现象有助于根在运动过程中减少与土壤的摩擦和穿透所需的压力。我们模仿这些自然特征,研制了四种不同的探针,探针的尖端分别装有球体和滚珠轴承。这些解决方案在探针进入土壤时产生滑动效应,与不脱落的探针相比,在穿透能量消耗方面提高了13.0%,穿透力提高了13.4%。获得最佳性能的原型机需要0.4 J的能量消耗和7.1 N的侵彻力,侵彻深度为150mm。此外,我们通过多室软致动器模拟根端径向扩张策略,我们观察到在120 mm深度土壤阻抗降低了91%。此外,我们测量了与没有径向膨胀的相同系统相比,具有径向膨胀的探针节省的总能量为11%。我们在受控的环境条件下,在颗粒土壤(POM,聚甲醛珠)中测试了生物启发探针。我们的研究结果可以用于改进现有的土壤挖掘机,并为不同的应用领域构想创新工具,例如地球和行星勘探以及岩土工程研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From plant root's sloughing and radial expansion mechanisms to a soft probe for soil exploration
In this paper, we present an innovative probe for soil penetration inspired by the strategies of radial expansion and sloughing mechanisms exploited by plants at the level of their root apical regions (i.e., apexes). These phenomena help roots in reducing friction with soil during their movements and pressure needed for penetration. We imitated these natural features developing four different probes endowed with spheres and ball bearings in their tips. These solutions produce a sliding effect of the probe while it moves into the soil with an improvement in terms of penetration energy consumption by 13.0% and penetration force by 13.4% respect to the probe without sloughing strategy. The prototype that got the best performance required 0.4 J energy consumption, 7.1 N penetration force for 150 mm penetration depth. Additionally, we mimicked the root apex radial expansion strategy via multi-chamber soft actuators and we observed a reduction of soil impedance by 91% at 120 mm depth. Moreover, we measured a total energy saved by the probe with radial expansion by 11% in comparison with the same system without a radial expansion. We tested the bioinspired probes in a granular soil (POM, polyoxymethylene beads), in controlled environmental conditions. Our results can be useful both for improving current soil diggers and conceiving innovative tools for different application fields, such as earth and planetary exploration and geotechnical studies.
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