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Modeling of the Stress-Strain-Resistance Behaviour of Ni-Ti and Ni-Ti-Cu Shape Memory Alloys for use in Sensorless Actuator Position Control.

机译:用于无传感器执行器位置控制的Ni-Ti和Ni-Ti-Cu形状记忆合金的应力-应变-电阻行为建模。

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摘要

Shape memory alloys have become increasingly popular for use in many engineering fields, including aerospace, robotics, and biomechanics. A major research focus is the application of Nitinol shape memory alloy wire as an actuator. While position and force control of shape memory alloy actuator wires has been successfully demonstrated in the past, most control algorithms have been developed using position feedback. Recently, it has been shown that there exists a significant correlation between the electrical resistance and strain of the material. This correlation has been used to model the strain as a function of the electrical resistance for use in predicting the actuator position for control purposes. However, the influence of applied stress as well as the presence of a third microstructure phase (R-phase) make modeling of the resistance-strain correlation difficult since hysteretic effects become more substantial. This thesis presents new models of the resistance-stress-strain behaviour of shape memory alloy for use in actuator position control. Characterization of the material behaviour was performed through experimental analysis, and used to develop the models based on empirical curve fitting. The models were then validated through simulation as well as application in a simple PID position control algorithm. Furthermore, two different alloys were investigated: a Ni-Ti alloy called Flexinol which exhibits significant hysteresis due to the presence of R-phase, as well as a Ni-Ti-Cu alloy which shows negligible hysteresis.
机译:形状记忆合金已越来越广泛地用于许多工程领域,包括航空航天,机器人技术和生物力学。主要研究重点是镍钛诺形状记忆合金线作为致动器的应用。尽管过去已经成功地证明了形状记忆合金致动器线的位置和力控制,但是大多数控制算法都是使用位置反馈开发的。最近,已经表明,在电阻和材料的应变之间存在显着的相关性。该相关性已被用来对作为电阻的函数的应变进行建模,以用于预测用于控制目的的致动器位置。然而,由于滞后效应变得更加重要,因此施加应力的影响以及第三微观结构相(R相)的存在使电阻-应变相关性的建模变得困难。本文提出了用于执行器位置控制的形状记忆合金的电阻-应力-应变行为的新模型。通过实验分析对材料行为进行表征,并用于基于经验曲线拟合开发模型。然后通过仿真以及在简单的PID位置控制算法中的应用对模型进行验证。此外,还研究了两种不同的合金:一种名为Flexinol的Ni-Ti合金,由于存在R相而表现出明显的滞后性;另一种Ni-Ti-Cu合金则具有可忽略的滞后性。

著录项

  • 作者

    Lynch, Brian.;

  • 作者单位

    Carleton University (Canada).;

  • 授予单位 Carleton University (Canada).;
  • 学科 Engineering Aerospace.;Engineering Materials Science.;Engineering Robotics.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 200 p.
  • 总页数 200
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:03

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