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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of composition and ageing on damping characteristics of Cu-Al-Mn shape memory alloys
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Effect of composition and ageing on damping characteristics of Cu-Al-Mn shape memory alloys

机译:成分和时效对Cu-Al-Mn形状记忆合金阻尼特性的影响

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Cu-Al-Mn shape memory alloys in the range of 10-15 wt.% of aluminum and 0-10 wt.% of manganese, exhibiting (3-phase at high temperatures and manifesting shape memory effect upon quenching to lower temperatures, were prepared through ingot metallurgy. The damping behavior of the alloys was studied using a dynamic mechanical analyzer. The damping capacity of the alloys increases with an increase in the aluminum content when the Cu/Mn ratio or amount of manganese is maintained constant. The damping capacity of the alloys decreases with an increase in the manganese content when the Cu/Al ratio or the amount of aluminum is maintained constant. The alloys exhibit an internal friction peak in the transition zone and that all of them exhibit higher damping capacity in the martensitic condition compared with that in the austenitic condition. While ageing of the alloys at 300 ℃ increases the transformation temperatures of the alloys, there is a reduction in the damping capacity of the alloys due to the formation of precipitates. The alloys aged at 500 ℃ do not exhibit the austenite to martensite transformation due to the formation of precipitates rich in aluminum and therefore exhibit very poor damping capacity.
机译:在铝的10-15 wt%和锰的0-10 wt%范围内的Cu-Al-Mn形状记忆合金表现出(在高温下呈三相,并且在淬火至较低温度时表现出形状记忆效应)。通过动态力学分析仪研究了合金的阻尼行为,当铜/锰比或锰含量保持恒定时,合金的阻尼能力随铝含量的增加而增加。当Cu / Al比或铝量保持恒定时,合金的含量随锰含量的增加而降低,合金在过渡区具有内摩擦峰,在马氏体条件下均具有较高的阻尼能力。与奥氏体状态相比,虽然在300℃时效使合金的相变温度升高,但由于阻尼作用,合金的阻尼能力却降低了。形成沉淀。在500℃时效的合金由于形成了富含铝的析出物而没有出现奥氏体到马氏体的转变,因此阻尼能力非常差。

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