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Modelling and validation of a continuous rotary motor combining shape memory wires and overrunning clutches

机译:结合形状记忆线和超越离合器的连续旋转电机的建模和验证

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This article presents the conceptual design, modelling, prototyping and testing of a novel rotary motor featuring shape memory alloy wires and overrunning clutches. The device comprises a shape memory alloy wire wound around a low-friction cylindrical drum contrasted by a backup beam spring and fitted to the output shaft through an overrunning clutch. Electrical heating produces a contraction of the wire, hence a rotation of the drum which is transferred to the shaft. Thanks to the overrunning clutch, during the recoiling phase, the drum rotates backward while the shaft does not move. Spurious backward movements of the shaft are contrasted by a second overrunning clutch linking the shaft to the frame. This article develops a model for the quasi-static simulation of the motor and the experimental characterization of a prototype device featuring three active drums, a rotary sensor and an angular brake to apply the external load. Despite the low degree of optimization, the tested motor performs well in terms of specific stroke, specific output torque and specific output work per cycle. Winding of the wire on the drum impairs somewhat the fatigue life with respect to publish data on straight wires, a drawback which calls for further design refinements.
机译:本文介绍了具有形状记忆合金线和超越离合器的新型旋转电机的概念设计,建模,原型设计和测试。该设备包括一个形状记忆合金丝,该合金丝缠绕在一个低摩擦圆柱鼓上,并与一个备用梁弹簧形成对比,并通过一个超越离合器安装在输出轴上。电加热使金属丝收缩,从而使转鼓的旋转传递到轴上。由于离合器处于超速状态,在反冲阶段,滚筒会向后旋转,而轴不会移动。轴的虚假向后运动与将轴连接到框架的第二超速离合器形成对比。本文为电动机的准静态仿真开发了一个模型,并对具有三个主动鼓,一个旋转传感器和一个施加外部负载的角度制动器的原型设备的实验特性进行了实验表征。尽管优化程度较低,但在每个冲程的特定行程,特定输出扭矩和特定输出功方面,被测试的电动机仍表现良好。相对于将数据发布到直线上,将电线缠绕在滚筒上会在一定程度上削弱疲劳寿命,这是一个缺点,需要进一步改进设计。

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