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Tests on Pretrained Superelastic NiTi Shape Memory Alloy Rods: Towards Application in Self-Centering Link Beams

机译:预磨料超弹性NITI形状记忆合金棒的测试:朝向自定心连杆梁应用

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摘要

Austenitic shape memory alloy has potential applications in self-centering seismic resistant structural systems due to its superelastic response under cyclic tension. Raw austenitic SMA needs proper pretreatments and pretraining to gain a stable superelastic property. In this paper, tests are carried out to investigate the effects of pretraining, pretreatments, loading rate, and strain amplitude on the mechanical performance on austenitic SMA rods with a given size. The tested rods are to be used in a new concept self-centering steel link beam. Customized pretraining scheme and heat treatment are determined through the tests. The effects of loading rate and strain amplitude are investigated. A simplified stress-strain model for the SMA rods oriented to numerical simulations is obtained based on the test results. An example of using the simplified material model in numerical analysis of a self-centering steel link beam is conducted to validate the applicability of the model.
机译:由于循环张力下的其超弹性响应,奥氏体形状记忆合金具有在自定心地震抗性结构系统中的潜在应用。未加工的奥氏体SMA需要适当的预处理和预制,以获得稳定的超弹性性能。在本文中,进行了测试,以研究预先训练,预处理,加载速率和应变幅度对具有给定尺寸的奥氏体SMA棒对机械性能的影响。测试的杆用于新概念自定心钢结梁。通过测试确定定制的预制方案和热处理。研究了负载率和应变幅度的影响。基于测试结果获得了定向于数值模拟的SMA棒的简化应力 - 应变模型。进行了在自定心钢结光束的数值分析中使用简化材料模型的示例以验证模型的适用性。

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