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Analysis of scratch characteristics of automotive clearcoats containing silane modified blocked isocyanates via carwash and nano-scratch tests

机译:通过洗车和纳米划痕测试分析含有硅烷改性的封端异氰酸酯的汽车清漆的划痕特性

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The aim of this study was to investigate the scratch characteristics of automotive clearcoats based on an acrylic polyol resin, with butylated melamine and silane modified blocked isocyanates, using car-wash and nano-scratch tests.To scrutinize the effect of silane modified blocked isocyanate on the chemical and mechanical properties of clearcoats, with respect to changes in the crosslinking networks inside the clearcoats due to the curing reaction, dynamic mechanical analysis (DMA) and FT-IR analysis were performed. The scratch behaviors were analyzed via Amtec-Kistler car-wash and nano-scratch tests, accompanied with scratch images simultaneously visualized using atomic force microscopy (AFM) and scanning electron microscopy (SEM). The basic properties of various automotive clearcoats such as impact resistance, pencil hardness, solvent resistance, and stone-chip resistance, were also compared. The results showed that a close correlation existed between the scratch resistance data obtained from the car-wash and nano-scratch tests for clearcoats made from acrylic polyol resin, with melamine and silane modified blocked isocyanates. Also, all the mechanical properties, including scratch resistance, noticeably improved due to the increased crosslinking networks via the formation of urethane bonds, when the portion of silane modified blocked isocyanates was increased. This was verified from the surface profiles and images of the scratched clearcoats captured using AFM and SEM.
机译:这项研究的目的是通过洗车和纳米划痕试验研究基于丙烯酸多元醇树脂,丁基化三聚氰胺和硅烷改性的封端异氰酸酯的汽车透明涂料的划痕特性。针对由于固化反应导致的清漆内部的交联网络变化,对清漆的化学和机械性能进行了动态力学分析(DMA)和FT-IR分析。通过Amtec-Kistler洗车和纳米划痕试验分析了划痕行为,并同时使用原子力显微镜(AFM)和扫描电子显微镜(SEM)可视化了划痕图像。还比较了各种汽车清漆的基本性能,如耐冲击性,铅笔硬度,耐溶剂性和耐碎石性。结果表明,由丙烯酸多元醇树脂,三聚氰胺和硅烷改性的封端异氰酸酯制成的清漆的洗车和纳米刮擦测试获得的耐刮擦性数据之间存在密切相关性。同样,当增加硅烷改性的封端异氰酸酯的比例时,由于通过形成氨基甲酸酯键增加了交联网络,所有机械性能(包括耐刮擦性)也得到了显着改善。这由使用AFM和SEM捕获的划痕透明涂层的表面轮廓和图像进行了验证。

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