Development of Car Coating Materials over the Past Decade for Paint Protection Applications—An Overview on the Different Types of Paint Protections

汽车工业 涂层 工作(物理) 持续性 陶瓷 建筑工程 制造工程 可持续发展 材料科学 工程类 新兴技术 纳米技术 热保护 建筑工程 航空航天 法律工程学 车辆安全 表面工程
作者
Umar Nirmal,M. A. Musa,M. Y. Yuhazri,M.M.H. Megat Ahmad
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:17 (23): 3114-3114 被引量:1
标识
DOI:10.3390/polym17233114
摘要

In recent years, the automotive industry has experienced increasing demand for advanced paint protection solutions aimed at improving vehicle durability, preserving aesthetic appeal, and promoting environmental sustainability. This paper critically examines the main categories of paint protection coatings on wax, ceramic, graphene, and hybrid formulations by focusing on their chemical composition, application methods, protective performance, and limitations. Wax coatings remain widely adopted due to their affordability and ease of use, though they offer limited longevity. Ceramic coatings, in contrast, provide superior hardness, hydrophobicity, and resistance to scratches, corrosion, and ultraviolet (UV) degradation, albeit with higher costs and complex application procedures. Emerging graphene-based coatings demonstrate exceptional hydrophobicity, thermal stability, and durability, positioning them as potential next-generation solutions, though their environmental and economic feasibility remains under exploration. Hybrid and self-healing coatings further highlight the trend toward multifunctional, intelligent protection systems. This work also emphasizes the critical role of surface preparation in determining coating performance. Future research directions are outlined, including the development of biodegradable, zero-VOC, and intelligent self-aligning coatings, which could significantly advance sustainable automotive surface protection. Overall, this work provides a comprehensive synthesis of current technologies and identifies pathways for innovation in automotive paint protection materials.
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