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Functional fatigue recovery of superelastic cycled NiTi wires based on near 100 °C aging treatments

机译:基于近100°C时效处理的超弹性循环NiTi线的功能疲劳恢复

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Functional fatigue affecting superelastic behaviour of NiTi wires includes an accumulation of residual strain and an uneven decrement of transformation stress on cycling. Although this evolution is observed to diminish asymptotically, it represents an important loss in the maximum recoverable strain level and in the hysteretic dissipative capacity of the material. In this work, the effect of moderate temperature aging treatment on the functionally degraded material properties was studied with two experimental setups. NiTi pseudoelastic wire samples of 0.5 and 2.46 mm diameter were subjected to different cycling programs intercalated by aging treatments of different durations up to 48 h at 100°C. Results show that important levels of recovery on the residual strains and the transformation stresses were attained after the aging treatments. The analysis indicates that the characteristics of the recovered cycles are rather independent from the treatment duration and from the reached condition before each treatment.
机译:影响NiTi线超弹性行为的功能性疲劳包括残余应变的积累和循环时相变应力的不均匀减小。尽管观察到这种演变渐近减小,但它代表了最大可恢复应变水平和材料的滞回耗散能力的重大损失。在这项工作中,通过两个实验装置研究了中温老化处理对功能退化的材料性能的影响。将直径为0.5和2.46 mm的NiTi伪弹性线样品置于不同的循环程序中,并通过在100°C下长达48小时的不同持续时间进行时效处理。结果表明,时效处理后,残余应变和相变应力达到了重要的恢复水平。分析表明,恢复周期的特征与治疗持续时间以及每次治疗之前达到的状况无关。

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