Corrosion behavior of Shape Memory Alloy in NaCl environment and recovery maintenance in Cu-Zn-Al sysytem

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Brotzu, B. de Filippo, S. Natali, L. Zortea
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引用次数: 1

Abstract

Shape memory effect (SME) and the relation with corrosion behavior of Cu-Zn-Al Smart Memory Alloys (SMAs) were investigated using different techniques: Scanning Electron Microscopy equipped with an Energy Dispersive System, X-Ray Diffraction analysis, Electrochemical Test in NaCl solutions with different concentrations (0.035%, 0.35% and 3.5%), which simulate coastal conditions, mechanical characterization through tensile test and guided bend test.  SMAs are an important class of smart materials able to recover after deformation a pre-imposed shape through a temperature modification. These alloys show great potential, finding several applications in medicine and in different types of industry sectors (aerospace, architecture, automotive etc.). Cu-based SMAs, including Cu-Zn-Al alloys, have lower production costs with respect to Ni-Ti alloys as well as good possibility in seismic and architectural applications. A Cu-Zn-Al alloy with a theoretical composition of 25 wt.% Zn and 4 wt.% Al was produced by casting method. The aim of this study is to characterize the microstructure, the mechanical properties and the corrosion behavior through different kind of standard corrosion tests of this alloy and to evaluate the effect of corrosion damage on the shape memory recovery capability through a combination of corrosion and thermos-mechanical cyclic test and SEM observation
形状记忆合金在NaCl环境中的腐蚀行为及Cu-Zn-Al体系中的恢复维持
采用能量色散扫描电镜、x射线衍射分析、模拟海岸条件下不同浓度NaCl溶液(0.035%、0.35%和3.5%)的电化学测试、拉伸试验和导向弯曲试验对Cu-Zn-Al智能记忆合金(SMAs)的形状记忆效应(SME)及其与腐蚀行为的关系进行了研究。sma是一类重要的智能材料,能够在通过温度修饰变形后恢复预施加的形状。这些合金显示出巨大的潜力,在医学和不同类型的工业部门(航空航天,建筑,汽车等)中找到了几种应用。与Ni-Ti合金相比,包括Cu-Zn-Al合金在内的cu基sma具有更低的生产成本,并且在地震和建筑应用方面具有良好的可能性。采用铸造法制备了理论成分为25wt .% Zn和4wt .% Al的Cu-Zn-Al合金。本研究旨在通过不同类型的标准腐蚀试验来表征该合金的显微组织、力学性能和腐蚀行为,并通过腐蚀-热-力学循环试验和SEM观察相结合来评估腐蚀损伤对形状记忆恢复能力的影响
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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