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Finite Element Analysis of Coupling Force for TiNiFe Shape Memory Pipe Coupling

机译:定型形状记忆管耦合耦合力的有限元分析

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Shape memory alloy (SMA) is widely used in aerospace devices, and shape memory pipe coupling is one of the most successful SMA applications. Dimension design is a key aspect for shape memory pipe coupling, and determines the connecting strength of the connecting system. Numerical simulation provides a theoretical basis for dimension design. In this paper,finite element method (FEM) is used to simulate the coupling force of the connecting system. In the simulation, material property parameters of titanium-nickel-iron (TiNiFe) SMA are measured from experiments. Three-dimensional analysis for pipe coupling is performed with a thermo-mechanical model. The influence of inner diameter,expansion ratio of diameter and operating temperature on the radial stress of the connecting system was investigated. The results of the simulation are used to guide the adjustment of parameters such as the inner diameter and the expansion ratio of diameter for the purpose of maximizing the connecting strength.
机译:形状记忆合金(SMA)广泛应用于航空航天装置,形状存储器管耦合是最成功的SMA应用之一。尺寸设计是形状存储管耦合的关键方面,并确定连接系统的连接强度。数值模拟为尺寸设计提供了理论依据。在本文中,有限元方法(FEM)用于模拟连接系统的耦合力。在模拟中,从实验中测量钛 - 镍铁(TINEIFE)SMA的材料性能参数。管耦合的三维分析采用热机械模型进行。研究了内径,直径膨胀比和操作温度对连接系统的径向应力的影响。模拟结果用于引导诸如内径的参数和直径的膨胀比的调节,以便最大化连接强度。

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