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首页> 外文期刊>Journal of intelligent material systems and structures >Influence of limiting the actuation strain on the functional fatigue behavior of Ni_(50.3)Ti_(29.7)Hf_(20) high temperature shape memory alloy
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Influence of limiting the actuation strain on the functional fatigue behavior of Ni_(50.3)Ti_(29.7)Hf_(20) high temperature shape memory alloy

机译:限制致动应变对Ni_(50.3)Ti_(29.7)HF_(20)高温形状记忆合金的功能疲劳行为的影响

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摘要

The cyclic stability and the fatigue life of NiTiHf alloys are very important for their functionality at high temperatures. The previous studies have shown that the increase in Upper Cycle Temperature (UCT) and the magnitude of applied stress decreased the cyclic stability and fatigue life of NiTiHf high temperature shape memory alloys due to plasticity with dislocation formation at high temperature. On the other hand, this study was dedicated to the effect of limited actuation strain against the applied constant stress to the functional fatigue life and the possible damage mechanism such as dislocation and crack formation. Strain limitation led to observe insignificant amount of accumulated irrecoverable strain but significant amount of crack formation such that the reason of the failure of Ni_(50.3)Ti_(29.7)Hf_(20)(at%) alloy was found to be the crack formation instead of dislocation accumulation.
机译:NITIHF合金的循环稳定性和疲劳寿命对于它们在高温下的功能非常重要。先前的研究表明,上循环温度(UCT)的增加和施加应力的幅度降低了NITIHF高温形状记忆合金的循环稳定性和疲劳寿命由于高温下位错形成的可塑性。另一方面,该研究专用于有限的致动应变对施加恒定应力的影响,对功能疲劳寿命和可能的损伤机制如错位和裂缝形成。应变限制导致观察累积的累积菌株但显着量的裂缝形成,使得Ni_(50.3)Ti_(29.7)HF_(20)(20)(以%)合金的失效的原因是裂缝形成脱位积累。

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