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Effect of Ta Additions on the Microstructure Damping and Shape Memory Behaviour of Prealloyed Cu-Al-Ni Shape Memory Alloys

机译:Ta的添加对预合金Cu-Al-Ni形状记忆合金的组织阻尼和形状记忆行为的影响

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摘要

The influence of Ta additions on the microstructure and properties of Cu-Al-Ni shape memory alloys was investigated in this paper. The addition of Ta significantly affects the green and porosity densities; the minimum percentage of porosity was observed with the modified prealloyed Cu-Al-Ni-2.0 wt.% Ta. The phase transformation temperatures were shifted towards the highest values after Ta was added. Based on the damping capacity results, the alloy of Cu-Al-Ni-3.0 wt.% Ta has very high internal friction with the maximum equivalent internal friction value twice as high as that of the prealloyed Cu-Al-Ni SMA. Moreover, the prealloyed Cu-Al-Ni SMAs with the addition of 2.0 wt.% Ta exhibited the highest shape recovery ratio in the first cycle (i.e., 100% recovery), and when the number of cycles is increased, this ratio tends to decrease. On the other hand, the modified alloys with 1.0 and 3.0 wt.% Ta implied a linear increment in the shape recovery ratio with increasing number of cycles. Polarization tests in NaCl solution showed that the corrosion resistance of Cu-Al-Ni-Ta SMA improved with escalating Ta concentration as shown by lower corrosion current densities, higher corrosion potential, and formation of stable passive film.
机译:研究了钽添加量对Cu-Al-Ni形状记忆合金组织和性能的影响。 Ta的添加会显着影响生坯和孔隙率的密度;用改性的预合金Cu-Al-Ni-2.0%wt。Ta观察到最小的孔隙率百分比。添加Ta后,相变温度向最高值移动。根据阻尼结果,Cu-Al-Ni-3.0wt。%Ta合金具有很高的内摩擦力,最大等效内摩擦值是预合金化的Cu-Al-Ni SMA的两倍。此外,添加了2.0wt。%Ta的预合金化Cu-Al-Ni SMA在第一循环中表现出最高的形状回复率(即100%回复率),并且当增加循环数时,该比例趋于减少。另一方面,具有1.0和3.0wt。%Ta的改性合金意味着随着循环次数的增加,形状恢复率呈线性增加。在NaCl溶液中进行极化测试表明,随着Ta浓度的升高,Cu-Al-Ni-Ta SMA的耐腐蚀性得到改善,这表现为较低的腐蚀电流密度,较高的腐蚀电位以及形成稳定的钝化膜。

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