Moon Sung Wook, Seo Jiae, Seo Ji-Hun, Choi Byoung-Ho
School of Mechanical Engineering, College of Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Korea.
Department of Materials Science and Engineering, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Korea.
Polymers (Basel). 2021 Nov 14;13(22):3933. doi: 10.3390/polym13223933.
Automotive coatings, which comprise multiple layers, i.e., primer, base coating, and clear coat layers, are exposed to various environmental conditions that pose various types of damages to them. In particular, the outer layer of the automotive coating, i.e., the clear coat, is affected significantly by such damages. Therefore, a reliable and durable clear coat must be developed to improve the appearance of automobiles. In this study, a new clear coat based on an acrylic-based clear coat modified using polyrotaxane crosslinkers, which are necklace-shaped supramolecules composed of ring-shaped host molecules, is developed and characterized. The effects of polyrotaxane and silane on the scratch properties and mechanisms of the clear coating are analyzed. It is observed that the critical loads of the clear coat from scratch tests can be improved by adding optimal molecular necklace crosslinkers comprising silane functional groups. The improvement in the scratch properties of the modified acrylic-based clear coat may be attributed to the crosslinking characteristics and dynamic molecular movements of the polyrotaxane. In addition, the effects of environmental factors on the scratch characteristics of the modified acrylic-based clear coat are investigated by addressing the scratch durability of the clear coat.
汽车涂料由多层组成,即底漆、面漆和清漆层,它们会暴露在各种环境条件下,这些条件会对其造成各种类型的损害。特别是汽车涂料的外层,即清漆,会受到此类损害的显著影响。因此,必须开发一种可靠且耐用的清漆,以改善汽车的外观。在本研究中,开发并表征了一种基于使用聚轮烷交联剂改性的丙烯酸基清漆的新型清漆,聚轮烷交联剂是由环状主体分子组成的项链状超分子。分析了聚轮烷和硅烷对清漆涂层划痕性能及机理的影响。观察到通过添加包含硅烷官能团的最佳分子项链交联剂,可以提高划痕试验中清漆的临界载荷。改性丙烯酸基清漆划痕性能的改善可能归因于聚轮烷的交联特性和动态分子运动。此外,通过研究清漆的划痕耐久性,探讨了环境因素对改性丙烯酸基清漆划痕特性的影响。