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Design and analysis of active fluid-and-cellular solid composites for controllable stiffness robotic elements

机译:用于可控刚度机器人元件的有源流体 - 细胞固体复合材料的设计和分析

摘要

The purpose of this thesis is to investigate the use of a new class of materials for realizing soft robots. Specifically, meso-scale composites--composed of cellular solids impregnated with active fluids-were be designed to have controllable stiffness to take the form of a continuous body of a soft robot. This represents an improvement compared to past efforts in soft robotics, which often involved modifying the infrastructure of current, rigid robots to yield softer ones. This latter approach often faced the challenges of developing actuators that were "soft" but still discrete, and were limited in performance. In contrast, the controllable-stiffness composites proposed in this thesis eliminate the need for multiple actuators; a single structure can transition between various states to serve as both rigid, load-bearing components as well as morphable, compliant ones. While the vast range of fluid-foam combinations for such an application have yet to be explored, the work presented here focuses on a specific composite: open-cell polyurethane foam impregnated with wax. This type of composite can be thermally activated to exhibit both solid and nearly fluid states (while the wax can be melted to become a fluid, the foam holds the composite together as a pseudo-solid). This thesis discusses the research that has been conducted to 1) characterize the mechanical properties of wax-foam composites as well as 2) investigate possible ways in which the composites can be used as robotic components.
机译:本文的目的是研究使用新型材料来实现软机器人。具体来说,中尺度复合材料(由浸有活性流体的细胞固体组成)被设计为具有可控制的刚度,以采用软机器人的连续体的形式。与过去在软机器人方面的努力相比,这是一种进步,后者通常涉及修改当前的刚性机器人的基础结构以生产更软的机器人。后一种方法常常面临开发“软”但仍离散且性能受限的执行器的挑战。相反,本文提出的可控刚度复合材料消除了对多个致动器的需求。一个单一的结构可以在各种状态之间转换,以同时充当刚性的承重组件以及可变形的柔顺组件。虽然尚未探索用于这种应用的各种流体泡沫组合,但此处介绍的工作集中在一种特定的复合材料上:用蜡浸渍的开孔聚氨酯泡沫。这种类型的复合材料可以被热活化以表现出固态和接近液态的状态(虽然蜡可以熔化成为一种流体,但泡沫将复合材料以假固体形式结合在一起)。本文讨论了已进行的研究,以进行以下研究:1)表征蜡泡沫复合材料的机械性能,以及2)研究将复合材料用作机器人组件的可能方式。

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