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Analysis of the transformations temperatures of helicoidal Ti-Ni actuators using computational numerical methods

机译:用计算数值方法分析螺旋Ti-Ni致动器的转变温度

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摘要

The development of shape memory actuators has enabled noteworthy applications in the mechanical engineering, robotics, aerospace, and oil industries and in medicine. These applications have been targeted on miniaturization and taking full advantage of spaces. This article analyses a Ti-Ni shape memory actuator used as part of a flow control system. A Ti-Ni spring actuator is subjected to thermomechanical training and parameters such as transformation temperature, thermal hysteresis and shape memory effect performance were investigated. These parameters were important for understanding the behavior of the actuator related to martensitic phase transformation during the heating and cooling cycles which it undergoes when in service. The multiple regression methodology was used as a computational tool for analysing data in order to simulate and predict the results for stress and cycles where the experimental data was not developed. The results obtained using the training cycles enable actuators to be characterized and the numerical simulation to be validated.
机译:形状记忆执行器的发展已使其在机械工程,机器人技术,航空航天和石油工业以及医学领域中得到了值得注意的应用。这些应用的目标是小型化并充分利用空间。本文分析了用作流量控制系统一部分的Ti-Ni形状记忆执行器。对Ti-Ni弹簧执行器进行热机械训练,并研究了诸如转变温度,热滞和形状记忆效应等参数。这些参数对于理解执行器在使用中在加热和冷却循环过程中与马氏体相变有关的行为非常重要。多元回归方法被用作分析数据的计算工具,以便模拟和预测应力和周期的结果,而未开发实验数据。使用训练周期获得的结果可以对执行器进行表征,并对数值模拟进行验证。

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