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A Novel Growing Device Inspired by Plant Root Soil Penetration Behaviors

机译:受植物根系土壤渗透行为启发的新型生长装置

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摘要

Moving in an unstructured environment such as soil requires approaches that are constrained by the physics of this complex medium and can ensure energy efficiency and minimize friction while exploring and searching. Among living organisms, plants are the most efficient at soil exploration, and their roots show remarkable abilities that can be exploited in artificial systems. Energy efficiency and friction reduction are assured by a growth process wherein new cells are added at the root apex by mitosis while mature cells of the root remain stationary and in contact with the soil. We propose a new concept of root-like growing robots that is inspired by these plant root features. The device penetrates soil and develops its own structure using an additive layering technique: each layer of new material is deposited adjacent to the tip of the device. This deposition produces both a motive force at the tip and a hollow tubular structure that extends to the surface of the soil and is strongly anchored to the soil. The addition of material at the tip area facilitates soil penetration by omitting peripheral friction and thus decreasing the energy consumption down to 70% comparing with penetration by pushing into the soil from the base of the penetration system. The tubular structure provides a path for delivering materials and energy to the tip of the system and for collecting information for exploratory tasks.
机译:在非结构化的环境(例如土壤)中移动,需要受这种复杂介质的物理约束的方法,并且可以确保能源效率并最大程度地减少探索和搜索时的摩擦。在生物中,植物是最有效的土壤勘探方法,其根系显示出显着的能力,可以在人工系统中利用。能量效率和降低的摩擦力通过生长过程来确保,其中通过有丝分裂在根尖添加新细胞,而根的成熟细胞保持静止并与土壤接触。我们提出了根类生长机器人的新概念,该概念受这些植物根系特征的启发。该设备可通过添加分层技术渗透土壤并发展其自身的结构:新材料的每一层都沉积在设备尖端附近。这种沉积既在尖端产生动力,又在空心管状结构中延伸到土壤表面并牢固地固定在土壤上。在尖端区域添加材料可避免周向摩擦,从而有助于土壤渗透,因此与从渗透系统底部推入土壤的渗透相比,能耗可降低至70%。管状结构提供了一条路径,用于将材料和能量传递到系统的尖端,并收集用于探索性任务的信息。

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