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Variation of mechanical properties of shape memory alloy bars in tension under cyclic loadings

机译:循环载荷下形状记忆合金棒力学性能的变化

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It is well-known that the behavior of shape memory alloys (SMAs) depends on varying the temperature and dynamic loading frequency. However, the relationship between SMA behavior and cyclic loads has not been clearly discussed. This relationship is very important in the field of seismic application of SMAs. Therefore, this study arranges several dynamic tensile tests of martensitic and austenitic SMA bars. The parameters of the tests are the initial strain of the SMA bars, the number of cycles, and the loading frequency. The hysteretic curves of the stress-strain relation are measured, and the mechanical properties of the residual strain, Young's modulus is varied at first, but becomes stable after 250 cyclic loading. However, the damping ratio decreases continuously when the number of loading cycles increased. It is found that the initial strain and loading frequency do not affect the mechanical properties significantly. Only the residual strain is influenced by the amount of initial strain but not the loading frequency.
机译:众所周知,形状记忆合金(SMA)的行为取决于温度和动态加载频率的变化。但是,SMA行为与循环载荷之间的关系尚未明确讨论。这种关系在SMA的地震应用领域中非常重要。因此,本研究安排了几种马氏体和奥氏体SMA棒的动态拉伸试验。测试的参数是SMA钢筋的初始应变,循环次数和加载频率。测量了应力-应变关系的磁滞曲线,并且残余应变的机械性能,杨氏模量首先发生变化,但在250次循环加载后变得稳定。但是,当加载循环数增加时,阻尼比会连续降低。发现初始应变和加载频率不会显着影响机械性能。仅残余应变受初始应变的量影响,而不受加载频率的影响。

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