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Novel laser processed shape memory alloy actuator design with an embedded strain gauge sensor using dual resistance measurements. Part I: Fabrication and model-based position estimation

机译:新型激光加工形状记忆合金致动器设计,采用双电阻测量的嵌入式应变计传感器。 第一部分:基于制造和模型的位置估计

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Shape memory alloys have sparked great amount of interest in the field of actuation over the past decades. Until now, sensorless position estimation of SMA actuators under dynamic unknown applied stresses has not been feasible due to the complexity of the system and the number of unknown parameters which the proposed extra information obtained from the embedded sensor solves. In this paper, a novel laser processed NiTi shape memory alloy (SMA) actuator is proposed containing two different material compositions in one monolithic piece of actuator wire. Each of these compositions behaves differently at room temperature, one exhibits a shape memory effect (SME) for actuation, and the other is pseudo-elastic (PE) which is used to enable an embedded sensor. Fabrication of the wire included laser processing, heat-treatment, and cold-working procedures. The actuator wire was subsequently trained to stabilize its properties using iso-stress thermal cycling. Additionally, a novel model-based sensorless position estimation algorithm is presented. Proposed model can estimate the position of the actuator under varying applied stresses with an approximate accuracy of 95% only using dual resistance measurements across the two different material compositions. The proposed actuator has significant application in robotics, wearables, haptics, automotive, and any other application which the mechanical load is not known in advance. (C) 2017 Elsevier B.V. All rights reserved.
机译:形状记忆合金在过去几十年中对致动领域引发了大量兴趣。到目前为止,由于系统的复杂性以及从嵌入式传感器解决的所提出的额外信息的复杂性以及所提出的额外信息的复杂性,SMA致动器的无传感器位置估计并不可行。本文提出了一种新型激光加工的NITI形状记忆合金(SMA)致动器,其在一种整体上的致动器线中包含两种不同的材料组合物。这些组合物中的每一个在室温下表现不同,展示用于致动的形状记忆效果(SME),另一个是伪弹性(PE),其用于使嵌入式传感器能够实现嵌入式传感器。电线的制造包括激光加工,热处理和冷水工作程。随后训练致动器线以使用异源 - 应力热循环培训以稳定其性能。另外,介绍了一种新型基于模型的无传感器位置估计算法。所提出的模型可以在不同施加的应力下估计致动器的位置,近似精度为95%,仅在两种不同的材料组合物上使用双电阻测量。所提出的执行器在机器人,可穿戴设备,触觉,汽车和机器人预先未知的任何其他应用中具有重要应用。 (c)2017年Elsevier B.V.保留所有权利。

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