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EFFECT OF GEOMETRIC DESIGN PARAMETERS ON CONTRACTILE SMA KNITTED ACTUATOR PERFORMANCE

机译:几何设计参数对约束SMA编织执行器性能的影响

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Shape memory alloy (SMA) knitted actuators are a type of functional fabric that uses shape memory alloy wire as an active fiber within a knitted textile. Through intentional design of the SMA knitted actuator geometry, various two- and three-dimensional actuation motions, such as scrolling and contraction [1], can be accomplished. Contractile SMA knitted actuators leverage the unique thermo-mechanical properties of SMA wires by integrating them within the hierarchical knitted structure to achieve large distributed uniaxial contractions and variable stiffness behavior upon thermal actuation. During the knit manufacturing process, the SMA wire is bent into a network of interlacing adjacent loops, storing potential energy within the contractile SMA knitted actuator. Thermal actuation above the wire-specific austenite finish temperature leads to a partial recovery of the bending deformations, resulting in large distributed uniaxial contraction (15-40 % actuation contraction observed) of the SMA knitted actuator. The achievable load capacity and %-actuation contraction are dependent on the geometric loop parameters of the contractile SMA knitted actuator. While exact descriptions of the geometric loop parameters exist, a reduction of the geometric complexity is advantageous for high-level contractile SMA knitted actuator design procedures. This paper defines a simple geometric measure, the non-dimensional knit density, and experimentally correlates the contractile SMA knitted actuator performance to this measure. The experimentally demonstrated dependency of relevant actuator metrics on the knit density and the wire diameter, suggests the usability of the simplified geometry definition for a high-level contractile SMA knitted actuator design.
机译:形状记忆合金(SMA)编织致动器是一种功能性织物,它使用形状记忆合金丝作为编织纺织品内的活性纤维。通过对SMA编织执行器几何结构的有意设计,可以实现各种二维和三维执行运动,例如滚动和收缩[1]。可收缩的SMA编织执行器通过将SMA线集成到分层编织结构中来利用其独特的热机械性能,从而在热激励时实现大的分布式单轴收缩和可变的刚度行为。在编织制造过程中,SMA线弯曲成交错的相邻线圈交织的网络,将势能存储在可收缩的SMA编织致动器内。高于特定于钢丝的奥氏体终点温度的热致动导致弯曲变形的部分恢复,从而导致SMA编织致动器具有大的分布单轴收缩(观察到15-40%的致动收缩)。可达到的负载能力和促动收缩百分比取决于可收缩SMA编织促动器的几何回路参数。尽管存在对几何回路参数的精确描述,但降低几何复杂度对于高级可收缩SMA编织执行器设计程序是有利的。本文定义了一种简单的几何度量,即无量纲的编织密度,并通过实验将可收缩的SMA编织执行器性能与此度量相关联。实验证明相关致动器指标对编织密度和线径的依赖性,表明简化的几何形状定义可用于高级可收缩SMA编织致动器设计。

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