Recent Developments in the Field of Thermal Barrier Coatings Solutions for Structural Repair

J. Joseva, D. S. Robinson Smart, C. Raja, M. Ramachandran
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引用次数: 2

Abstract

The aerospace industry relies heavily on the structural integrity and performance of aircraft to ensure safe and efficient operations. Over time, aircraft structures can experience wear, corrosion or damage due to various factors such as environmental conditions, fatigue or accidents. Structural repairs are necessary to maintain the airworthiness of aircraft and extend their operational life. These brief highlights the importance of coating solutions in structural repair for aerospace. Coatings play an important role in protecting aircraft structures from degradation, preventing further damage and restoring their mechanical properties. In addition, coatings can improve aerodynamic performance, improve fuel efficiency and reduce maintenance costs. The brief discusses the various types of coating solutions used in aeronautical structural repair. These include corrosion-resistant coatings, abrasion-resistant coatings, heat-resistant coatings, and composite bonding systems. Each type of coating serves a specific purpose in mitigating structural damage and restoring the structural integrity of aircraft components. Also, the brief explores the key properties and characteristics of effective coating solutions. These properties include adhesive strength, flexibility, durability, weight considerations, chemical resistance, and thermal stability. Understanding these properties is critical to selecting the appropriate coating solution for specific repair applications. Also summarizes the challenges and considerations associated with coating applications in aerospace structural repair. These challenges include surface preparation, application techniques, curing processes, compatibility with existing coatings and compliance with regulatory requirements. Overcoming these challenges is essential to ensure the successful implementation of coating solutions in structural repair operations. Finally, the abstract discusses emerging trends and developments in aeronautical structural repair coating technologies. These include eco-friendly coatings, self-healing coatings, nano-coatings and smart coatings with sensing capabilities. These developments hold promise for improving the effectiveness and efficiency of structural repair processes in the aerospace industry.
结构修复用热障涂层解决方案领域的最新进展
航空航天工业在很大程度上依赖于飞机的结构完整性和性能来确保安全和高效的运行。随着时间的推移,由于环境条件、疲劳或事故等各种因素,飞机结构可能会经历磨损、腐蚀或损坏。为了保持飞机的适航性和延长飞机的使用寿命,结构维修是必要的。这些简介强调了涂层解决方案在航空航天结构修复中的重要性。涂层在保护飞机结构免受退化、防止进一步损伤和恢复其机械性能方面发挥着重要作用。此外,涂层可以改善空气动力学性能,提高燃油效率,降低维护成本。简要讨论了航空结构修复中使用的各种涂层解决方案。这些包括耐腐蚀涂层、耐磨损涂层、耐热涂层和复合粘合系统。每种类型的涂层在减轻结构损伤和恢复飞机部件的结构完整性方面都有特定的用途。此外,简要探讨了有效的涂层解决方案的关键性能和特点。这些特性包括粘接强度、柔韧性、耐久性、重量考虑、耐化学性和热稳定性。了解这些特性对于为特定的修复应用选择合适的涂层解决方案至关重要。还总结了涂料在航空航天结构修复中的应用所面临的挑战和考虑因素。这些挑战包括表面处理、应用技术、固化工艺、与现有涂料的兼容性以及遵守法规要求。克服这些挑战对于确保在结构修复作业中成功实施涂层解决方案至关重要。最后,讨论了航空结构修补涂层技术的发展趋势。这些涂料包括环保涂料、自修复涂料、纳米涂料和具有传感能力的智能涂料。这些发展有望提高航空航天工业结构修复过程的有效性和效率。
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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