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A NOVEL DESIGN OF A LARGE-STROKE SHAPE MEMORY ALLOY LINEAR ACTUATOR

机译:大形状记忆合金线性执行机构的新型设计

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The traditional actuation systems such as combustion engines, electro motors, hydraulic and pneumatic machines, have several drawbacks: large volume and weight, huge energy consumption and high cost. To overcome these problems, this paper presents a novel large-stroke linear actuator actuated by shape memory alloy (SMA) wires. Multiple SMA wires are distributed in the space three-dimensionally and connected in series to achieve a larger stroke of the actuator. The tandem structure makes the SMA actuator easy to integrate into a narrow available space with dimension constraints. A theoretical model for bias element selection is developed through analysis of the driving paths. A prototype of the proposed SMA actuator is fabricated and corresponding experiments are conducted to verify the functions and performances. The critical working performances of the SMA actuator such as the output displacement, heating electric current, actuation time and reset time are obtained and investigated. The results prove that the proposed SMA actuator can output an ideal driving stroke and enough actuation force in confined space. This research provides design ideas for the large-stroke SMA actuator in more application fields.
机译:传统的致动系统,例如内燃机,电动机,液压和气动机器,有几个缺点:体积大,重量大,能耗大,成本高。为了克服这些问题,本文提出了一种由形状记忆合金(SMA)线驱动的新型大行程线性执行器。多条SMA导线三维分布在空间中,并串联连接,以实现更大的执行器行程。串联结构使SMA执行器易于集成到具有尺寸限制的狭窄可用空间中。通过对驱动路径的分析,建立了用于偏置元件选择的理论模型。制造了所提出的SMA执行器的原型,并进行了相应的实验以验证其功能和性能。获得并研究了SMA执行器的关键工作性能,例如输出排量,加热电流,启动时间和复位时间。结果证明,所提出的SMA致动器可以在狭窄的空间内输出理想的驱动行程和足够的致动力。这项研究为更多应用领域中的大行程SMA执行器提供了设计思路。

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