时效热处理对50wt .% Ni-42.5 wt.% Ti-7.5 wt.% Cu形状记忆合金组织和力学性能的影响

Omrani Emad, Shokuhfar Ali
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引用次数: 1

摘要

NiTi合金具有良好的形状记忆性能,加入Cu等合金元素可以使其具有更小的温度滞后、更好的热弹性、更小的超弹性滞后、更高的阻尼能力和优异的疲劳性能。本文研究了50 wt.% Ni-42.5 wt.% Ti-7.5 wt.%的功能力学性能。研究了时效热处理对合金组织和力学性能的影响。结果表明:随着时效温度的升高,由于高温下的高扩散,析出物的尺寸趋于增大;力学性能评价表明,高温时效试样的断裂强度较低,而断裂应变较高。时效时间对性能也有影响,随着时效时间的延长,由于有足够的时间进行扩散,析出物的大小和数量也会增加。随着时间的增加,断裂强度逐渐增大,直至达到临界点,之后断裂强度逐渐减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Aging Heat Treatment on Microstructure and Mechanical Properties of 50 wt.% Ni-42.5 wt.% Ti-7.5 wt.% Cu Shape Memory Alloy
NiTi alloys have good shape memory properties that adding alloying elements such as Cu can help to have smaller temperature hysteresis, better thermoelasticity, smaller superelastic hysteresis, higher damping capacity, and superior fatigue properties. The present work addresses functional mechanical properties of 50 wt.% Ni-42.5 wt.% Ti-7.5 wt.%. We study how aging heat treatment affects the alloy microstructure and mechanical properties. The results exhibit that increasing the aging temperature tend to increase the size of precipitation due to high diffusion in high temperature. The evaluation of mechanical properties reveals that the samples that aged in high temperature has lower fracture strength while these samples shows higher fracture strain. Aging time also has an effect on properties where by increasing the time, the size and amount of precipitations increase due to sufficient time for diffusion. By increasing the time, the fracture strength increase until a critical point and after that the fracture strength reduces.
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