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Experimental investigation of hybrid shape memory alloy pneumatic actuators

机译:混合式记忆合金气动执行器的实验研究

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Pneumatic actuators are a lightweight, compliant means of exerting force and are especially promising for systems thatinteract with the human body. These actuators typically consist of an elastomeric bladder and a surrounding sleeve. Thesleeve is created using traditional textile manufacturing processes (e.g., wrapping, braiding, and knitting) where the fiberswithin the textile sleeves are inextensible components that limit the local expansion of the bladder. By varying the fiberangles and applied pressure, different kinematic motions (extension, contraction, bending, and twisting) are achieved.Anti-symmetric fiber angles within the textile sleeve architecture result in axial and radial motion. In this experimentalinvestigation, shape memory alloy (SMA) wires are integrated into two types of passive sleeves (wrapped and knitted) toincrease the range of motion of the actuator. Applying pressure to the system pre-strains the martensitic SMA throughradial expansion of the actuator. When heated above the austenite finish temperature, the shape memory effect enablescontraction of the SMA wire. This fiber contraction causes reorientation of the textile architecture, resulting in additionalmotion. The effect of the control variables, air pressure and electrical current, on axial displacements and rotations areexperimentally characterized using discrete marker tracking. This study explores two basic textile sleeve architectures forhybrid SMA-pneumatic actuators and sets the foundation for increased kinematic tailorability through the design ofcomplex multi-functional actuating textile sleeves.
机译:气动执行器是一种轻质,柔顺的施加力,尤其有望用于系统与人体互动。这些致动器通常由弹性囊和周围套筒组成。这套筒是使用传统纺织制造工艺(例如,包装,编织和针织)创造的在纺织套筒内是不可伸展的组件,限制膀胱的局部扩张。通过改变纤维角度和施加压力,实现不同的运动动作(延伸,收缩,弯曲和扭曲)。纺织套筒架构内的反对称纤维角导致轴向和径向运动。在这个实验中调查,形状记忆合金(SMA)电线集成到两种类型的无源套管(包裹和针织)中。增加执行器的运动范围。对系统施加压力通过前导地位的Martensitic SMA执行器的径向膨胀。在高于奥氏体结束温度的情况下,形状记忆效果使得能够实现SMA线的收缩。这种纤维收缩导致纺织架构的重新定位,导致额外的运动。控制变量,空气压力和电流在轴向位移和旋转的效果是使用离散标记跟踪实验表征。本研究探讨了两个基本的纺织套筒架构混合动力SMA-气动执行器,并通过设计设计增加运动尺寸复杂的多功能驱动纺织套筒。

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