Effect of inserting a-C layers on anticorrosion behavior of Ni-NiCr-NiCrAlSi composite coating on copper through magnetron sputtering for marine applications

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, COATINGS & FILMS Thin Solid Films Pub Date : 2024-10-20 DOI:10.1016/j.tsf.2024.140558
Hao Du , Jiayuan Wen , Guihong Song , Hao Wu , Ji-an Feng , Yan Huang , Yujiang Wang , Yansheng Yin
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Abstract

Amorphous carbon film by magnetron sputtering was inserted in the NiCrAlSi layer to form NiCrAlSi/a-C multilayer with modulation period in a range of 131.6 nm to 240.2 nm in the Ni-NiCr-NiCrAlSi coating for a further improvement to copper on corrosion resistance aiming at application as a heat exchanger for mariculture in sea water. After structure characterization, the corrosion behavior of the samples with variant modulation periods of the NiCrAlSi/a-C multilayer keeping the same total thickness(1 μm) was compared using potentiodynamic polarization and electrochemical impedance spectroscopy. The polarization curves show that the corrosion potentials of the coatings with modulation periods of 240.2 nm, 198.4 nm, 158.4 nm and bilayer number 4, 5, 6 for NiCrAlSi/a-C layer are more negative compared to that with modulation period of 131.6 nm and bilayer number 7, which indicates that the smallest modulation period results in the highest corrosion resistance. The amorphous a-C sublayer in the multilayer coatings plays an active role in the improvement, for an introduction of the more interfaces between the NiCrAlSi and the a-C sublayers, as well as the compact structure and the chemical inertness to sea water (Cl). In addition, the NiCrAlSi sublayer can be regarded as an interlayer to release stress in both the a-C sublayer and the NiCrAlSi sublayer, mainly from corrosion products, which also plays an important role for the improved corrosion resistance.
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通过磁控溅射在铜上镀镍-镍铬-镍铬-铝硅复合层对海洋应用中的防腐行为的影响
通过磁控溅射在镍铬硅层中加入无定形碳膜,形成镍铬硅/a-C 多层,镍铬硅-镍铬硅涂层的调制周期范围为 131.6 纳米到 240.2 纳米,以进一步提高铜的耐腐蚀性,从而应用于海水养殖的热交换器。在完成结构表征后,使用电位极化和电化学阻抗光谱法比较了在总厚度(1 μm)不变的情况下,镍铬铝硅/a-C 多层的不同调制周期样品的腐蚀行为。极化曲线显示,调制周期为 240.2 nm、198.4 nm、158.4 nm 和双层数为 4、5、6 的镍铬铝硅/a-C 涂层的腐蚀电位比调制周期为 131.6 nm 和双层数为 7 的镍铬铝硅/a-C 涂层的腐蚀电位更负,这表明调制周期越小,耐腐蚀性越强。多层镀膜中的无定形 a-C 子层在提高耐腐蚀性方面发挥了积极作用,因为它在 NiCrAlSi 和 a-C 子层之间引入了更多的界面,同时还具有紧凑的结构和对海水(Cl-)的化学惰性。此外,NiCrAlSi 亚层可被视为一个夹层,可释放 a-C 亚层和 NiCrAlSi 亚层中的应力,主要来自腐蚀产物,这对提高耐腐蚀性也起着重要作用。
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来源期刊
Thin Solid Films
Thin Solid Films 工程技术-材料科学:膜
CiteScore
4.00
自引率
4.80%
发文量
381
审稿时长
7.5 months
期刊介绍: Thin Solid Films is an international journal which serves scientists and engineers working in the fields of thin-film synthesis, characterization, and applications. The field of thin films, which can be defined as the confluence of materials science, surface science, and applied physics, has become an identifiable unified discipline of scientific endeavor.
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