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Effect of Aging Heat Treatment on the High Cycle Fatigue Life of Ni_(50.3)Ti_(29.7)Hf_(20) High-Temperature Shape Memory Alloy

机译:老化热处理对Ni_(50.3)Ti_(29.7)HF_(20)高温形状记忆合金的高循环疲劳寿命的影响

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摘要

Shape memory alloys can be utilized as actuators for several applications in aerospace industry which require high strength and stable actuation cycles together with the transformation temperatures above 100°C. Aging is one of the methods for Nickel rich NiTiHf alloys that adjusts the transformation temperatures and enhances the cyclic stability due to the formation of nano-sized precipitates. In this study, the high cycle functional fatigue life and behavior of the extruded and aged Ni_(50.3)Ti_(29.7)Hf_(20) high-temperature shape memory alloy were investigated in order to reveal the effect of aging on the stability of the actuation strain and transformation temperatures. The aging was conducted at 550°C for 3 h. 200 MPa was chosen in the functional fatigue experiments since no irrecoverable strain was determined under this stress magnitude for the extruded and the aged samples in the load-biased heating cooling experiments. The fatigue experiments were conducted twice to check the repeatability of the shape memory properties of the samples and it was observed that the life cycle of the aged sample was determined as 20,337 and the extruded sample completely lost the shape recovery ability after 5000 cycles.
机译:形状记忆合金可用于致动器,用于航空航天工业中的几种应用,其需要高强度和稳定的致动循环与100°C以上的转化温度。老化是镍富镍氢合金的方法之一,该方法调节转化温度并增强由于形成纳米尺寸沉淀而导致的环状稳定性。在本研究中,研究了挤出和老化Ni_(50.3)Ti_(29.7)HF_(20)高温形状记忆合金的高循环功能疲劳寿命和行为,以揭示老化对稳定性的影响致动应变和转化温度。老化在550℃下进行3小时。在功能疲劳实验中选择了200MPa,因为在该应力幅度下没有测定了挤出的和载荷偏置的加热冷却实验中的老化样品的不可恢复的菌株。进行疲劳实验两次以检查样品的形状记忆性质的可重复性,并且观察到老化样品的寿命周期确定为20,337,挤出样品在5000次循环后完全丧失了形状回收能力。

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