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Long-term behaviour of binary Ti-49.7Ni (at.%) SMA actuators - The fatigue lives and evolution of strains on thermal cycling

机译:二元Ti-49.7Ni(at。%)SMA执行器的长期性能-热循环时的疲劳寿命和应变演变

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Long-term behaviour and fatigue endurance are the key issues in the utilization of SMA actuators, but systematic research work is still needed in this field. This study concentrates on the effects of three major design parameters on the long-term behaviour of binary Ti-49.7Ni-based actuators: the effect of the temperature interval used in thermal cycling, the effect of the stress level used and the effect of the heat-treatment state of the wire used. The long-term behaviour of the wires was studied in a custom-built fatigue test frame in which the wires were thermally cycled under a constant stress level. The fatigue lives of tested specimens and the evolution of transformation and plastic strains on thermal cycling were recorded. Before the fatigue testing, a series of heat treatments was carried out to generate optimal actuator properties for the wires. One of the major conclusions of the study is that the temperature interval used for thermal cycling has a major effect on fatigue endurance: decreasing the temperature interval used for thermal cycling increased the fatigue life markedly. When the transformation is complete, a 20 ?C increase of the final temperature reduced the fatigue lives at the most by half for the studied Ti-49.7Ni wires. With partial transformations the effect is more distinct: even the 5 ?C increase in the final temperature reduced the fatigue life by half. The stress level and heat-treatment state used had a marked effect on the actuator properties of the wires, but the effects on fatigue endurance were minor. The fatigue test results reveal that designing and controlling long-term behaviour of binary Ti-49.7Ni actuators is very challenging because the properties are highly sensitive to the heat-treatment state of the wires. Even 5 min longer heat-treatment time could generate, at the most, double plastic strain values and 30% lower stabilized transformation strain values. The amount of plastic strain can be stated as one of the failure criteria for binary Ti-49.7Ni, but that every heat-treatment state and loading level should be treated and presented separately with its own design relations.
机译:长期性能和耐疲劳性是使用SMA执行器的关键问题,但该领域仍需要系统的研究工作。本研究集中于三个主要设计参数对二元Ti-49.7Ni基执行器长期性能的影响:热循环中使用的温度间隔的影响,所使用的应力水平的影响以及热循环的影响。所用金属丝的热处理状态。在定制的疲劳测试框架中研究了电线的长期性能,在该框架中,电线在恒定应力水平下进行了热循环。记录测试样品的疲劳寿命以及热循环中相变和塑性应变的演变。在疲劳测试之前,进行了一系列热处理,以使导线产生最佳的执行器性能。该研究的主要结论之一是,热循环所用的温度间隔对疲劳强度具有重要影响:减小热循环所用的温度间隔可显着延长疲劳寿命。转变完成后,最终温度升高20°C,对于研究的Ti-49.7Ni焊丝,疲劳寿命最多降低了一半。通过部分转换,效果更加明显:即使最终温度升高5°C,疲劳寿命也降低了一半。所用的应力水平和热处理状态对金属丝的致动器性能有显着影响,但对疲劳强度的影响很小。疲劳测试结果表明,设计和控制二元Ti-49.7Ni执行器的长期性能非常具有挑战性,因为其性能对导线的热处理状态高度敏感。即使延长5分钟的热处理时间,最多也可以产生两倍的塑性应变值,并且可以降低30%的稳定转变应变值。塑性应变的量可以说是二元Ti-49.7Ni的失效标准之一,但是每种热处理状态和载荷水平都应加以处理,并以其自己的设计关系单独给出。

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