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Enhanced Surface Properties of Carbon Fiber Reinforced Plastic by Epoxy Modified Primer with Plasma for Automotive Applications

机译:等离子体改性环氧树脂底漆增强碳纤维增强塑料的表面性能

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摘要

Carbon fiber reinforced plastic (CFRP) is currently used as a lightweight material in various parts of automobiles. However, fiber reinforced plastic (FRP) material may be damaged at the time of joining via mechanical bonding; therefore, adhesion is important. When bonding is conducted without surface CFRP treatment, interfacial destruction occurs during which the adhesive falls off along with the CFRP. Mechanical strength and fracture shape were investigated depending on the surface treatment (pristine, plasma treatment times, and plasma treatment times plus epoxy modified primer coating). The plasma treatment effect was verified using the contact angle and X-ray photoelectron spectroscopy. The wettability of the epoxy modified primer (EMP) coating was confirmed through surface morphology analysis, followed by observation of mechanical properties and fracture shape. Based on test data collected from 10 instances of plasma treatment, the EMP coating showed 115% higher strength than that of pristine CFRP. The adhesive failure shape also changed from interfacial failure to mixed-mode failure. Thus, applying an EMP coating during the automotive parts stage enhances the effect of CFRP surface treatment.
机译:碳纤维增强塑料(CFRP)当前在汽车的各个部件中用作轻质材料。但是,在通过机械粘合进行连接时,纤维增强塑料(FRP)材料可能会损坏;因此,附着力很重要。如果在未进行表面CFRP处理的情况下进行粘合,则会发生界面破坏,在此期间粘合剂会与CFRP一起脱落。根据表面处理(原始,等离子处理时间和等离子处理时间加上环氧改性底漆涂层)来研究机械强度和断裂形状。使用接触角和X射线光电子能谱验证了等离子体处理效果。通过表面形态分析确认了环氧改性底漆(EMP)涂层的润湿性,然后观察了机械性能和断裂形状。根据从10次等离子处理获得的测试数据,EMP涂层的强度比原始CFRP高出115%。粘合破坏的形状也从界面破坏变为混合模式破坏。因此,在汽车零件阶段施加EMP涂层可增强CFRP表面处理的效果。

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