CoCrFeMnNi0.8V/Cr3C2-Ni20Cr High-Entropy Alloy Composite Thermal Spray Coating: Comparison with Monolithic CoCrFeMnNi0.8V and Cr3C2-Ni20Cr Coatings

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-03-28 DOI:10.3390/coatings14040402
Stavros Kiape, Maria Glava, E. Georgatis, S. Kamnis, Theodore E. Matikas, Alexandros E. Karantzalis
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Abstract

High-entropy alloys (HEAs) are revolutionizing the field of surface engineering, challenging traditional alloy frameworks with their superior mechanical attributes and resistance to corrosion. This investigation delves into the properties of the CoCrFeMnNi0.8V HEAs, both as a standalone material and when blended with Cr3C2-Ni20Cr, to evaluate their efficacy as cutting-edge surface treatments. The addition of vanadium to the CoCrFeMnNi0.8V alloy results in a distinctive microstructure that improves hardness and resistance to abrasion. The incorporation of Cr3C2-Ni20Cr particles enhances the alloy’s toughness and longevity. Employing high-velocity oxy-fuel (HVOF) thermal spray methods, these coatings are deposited onto steel substrates and undergo detailed evaluations of their microstructural characteristics, abrasion, and corrosion resistance. Findings reveal the CoCrFeMnNi0.8V coating’s exceptional ability to withstand corrosion, especially in environments rich in chlorides. The hybrid coating benefits from the combination of the HEA’s inherent corrosion resistance and the enhanced wear and corrosion resistance provided by Cr3C2-Ni20Cr, delivering comprehensive performance for high-stress applications. Through the fine-tuning of the application process, the Cr3C2-Ni20Cr reinforced high-entropy alloy coating emerges as a significant advancement in protective surface technology, particularly for use in marine and corrosive settings. This study not only highlights the adaptability of HEAs in surface engineering but also prompts further investigation into innovative material pairings.
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CoCrFeMnNi0.8V/Cr3C2-Ni20Cr 高熵合金复合热喷涂涂层:与整体式 CoCrFeMnNi0.8V 和 Cr3C2-Ni20Cr 涂层的比较
高熵合金(HEAs)正在表面工程领域掀起一场革命,以其卓越的机械属性和耐腐蚀性挑战着传统的合金框架。本研究深入探讨了 CoCrFeMnNi0.8V 高熵合金作为独立材料以及与 Cr3C2-Ni20Cr 混合后的性能,以评估其作为尖端表面处理材料的功效。在 CoCrFeMnNi0.8V 合金中添加钒会产生独特的微观结构,从而提高硬度和耐磨性。Cr3C2-Ni20Cr 颗粒的加入提高了合金的韧性和使用寿命。这些涂层采用高速富氧燃料(HVOF)热喷涂方法沉积在钢基体上,并对其微观结构特征、耐磨性和耐腐蚀性进行了详细评估。研究结果表明,CoCrFeMnNi0.8V 涂层具有卓越的耐腐蚀能力,尤其是在富含氯化物的环境中。混合涂层得益于 HEA 固有的耐腐蚀性与 Cr3C2-Ni20Cr 增强的耐磨性和耐腐蚀性的结合,为高应力应用提供了全面的性能。通过对应用过程的微调,Cr3C2-Ni20Cr 增强高熵合金涂层成为保护性表面技术的一大进步,尤其适用于海洋和腐蚀性环境。这项研究不仅凸显了高熵合金在表面工程中的适应性,还促使人们进一步研究创新材料的搭配。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
期刊介绍: ACS Applied Bio Materials is an interdisciplinary journal publishing original research covering all aspects of biomaterials and biointerfaces including and beyond the traditional biosensing, biomedical and therapeutic applications. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important bio applications. The journal is specifically interested in work that addresses the relationship between structure and function and assesses the stability and degradation of materials under relevant environmental and biological conditions.
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