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A BLACK BOX DESIGN APPROACH TO AVIAN-INSPIRED SMA COIL ACTUATED WEARABLE MORPHING ANGEL WINGS

机译:航空电子启发的SMA线圈致动可变形天使翅膀的黑匣子设计方法

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Black box design is a constraint driven design approach that distills essential elements of a physical process into inputs and outputs. This paper details the black box design implementation and validation of shape memory alloy (SMA) coil actuators as active members in a Watt I six bar avian-inspired wearable morphing angel wing mechanism. SMA coil actuators leverage the unique characteristics of high energy density SMA wire by providing a compact structural platform for large actuation displacement applications. The moderate force and displacement performance of low spring index coil actuators paired with their virtually silent actuation performance made them an attractive actuator solution to an avian-inspired wearable morphing wing mechanism for the University of Minnesota Department of Theatre Arts and Dance production of 'Marisol'. The wing design constraints (extended span of 7.5 ft, a closed span of 3 ft) required a tailorable actuator system with capacity to perform at particular target force and strain metrics cyclically. A low spring index parameter study was conducted to facilitate an accelerated phase of design prototyping. The parameter study featured six SMA coil actuator prototypes made with 0.012" diameter Dynalloy Flexinol® wire of varying spring indexes (C = 2.5-4.9). The coil actuators were manufactured through a CNC winding process, shape set in a furnace at 450 °C for 10 minutes, and water quenched for hardening. A series of thermomechanical actuation tests were conducted to experimentally characterize the low spring index actuation performances. The coil actuation charac- terizations demonstrated increased force and decreased actuator displacement corresponding to decreased spring indexes. Scaling these results aided an accelerated design of an actuator system. The actuator system consisted of four C = 3.05 coil actuators wound with 0.02" diameter SMA that were integrated into each Watt I mechanism. The characterization of the force-displacement profiles for low index SMA coil actuators provides an effective empirical design strategy for scaling actuator performance to mechanical systems requiring moderate force, moderate displacement actuators.
机译:黑匣子设计是一种约束驱动的设计方法,可将物理过程的基本要素提取为输入和输出。本文详细介绍了黑匣子设计的实现方式,以及形状记忆合金(SMA)线圈执行器作为瓦特一世六杆鸟类启发式可穿戴变形天使翼机构中的主动构件的验证方法。 SMA线圈执行器通过为大型执行位移应用提供紧凑的结构平台,充分利用了高能量密度SMA线材的独特特性。低弹簧指数线圈致动器的中等力和位移性能,加上几乎无声的致动性能,使其成为明尼苏达大学剧院艺术与舞蹈系制作的“ Marisol”禽类灵感可穿戴变形机翼机构的有吸引力的致动器解决方案。 。机翼的设计约束(扩展跨度为7.5英尺,闭合跨度为3英尺)需要可定制的执行器系统,该系统必须能够周期性地执行特定的目标力和应变度量。进行了低弹簧指数参数研究,以促进设计原型设计的加速阶段。该参数研究采用了六个SMA线圈执行器原型,这些原型由直径为0.012英寸的DynalloyFlexinol®钢丝制成,具有不同的弹簧指数(C = 2.5-4.9)。线圈执行器是通过CNC绕线工艺制造的,形状设定在450°C的熔炉中持续10分钟,然后淬火水淬硬,进行了一系列的热机械致动试验,以实验方式表征低弹簧指数致动性能;线圈致动特性表明力增加了,而致动器位移减小了,从而降低了弹簧指数。该执行器系统由四个缠绕有0.02“直径SMA的C = 3.05线圈执行器组成,这些线圈执行器集成在每个Watt I机构中。低折射率SMA线圈执行器的力-位移曲线的表征提供了一种有效的经验设计策略,可将执行器的性能缩放到需要中等力,中等位移的执行器的机械系统。

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