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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Nanoparticle reinforced epoxy gelcoats for fiber-plastic composites under multiple load
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Nanoparticle reinforced epoxy gelcoats for fiber-plastic composites under multiple load

机译:纳米粒子增强环氧胶衣用于纤维-塑料复合材料在多种载荷下

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摘要

Novel surface coatings that are load-adapted and suitable for economical manufacturing are required for fiber-plastic composites subjected to complex loads. They must have good wear and chemical resistance compared to conventional thermoset coatings (paints, gelcoats), and high failure strain and adhesive strength compared to metallic or ceramic protection layers. Polymeric nanocomposites offer particular advantages in this respect. Given this background, the main aim of this work is to characterize and evaluate surface-protection layers made of metal oxide nanoparticle reinforced epoxy gelcoats for mechanical, tribological and media loaded fiber-reinforced plastics (FRP). The focus is set on the property characterization of the heterogeneous gelcoat as a function of particle material and filler content, as well as the adjustment of the required rheological properties of the liquid particle-resin dispersion so that nanoparticle reinforced gelcoats can be applied to the anisotropic FRP substrate by spray processing in an economical and variable-geometry manner.
机译:对于承受复杂载荷的纤维塑料复合材料,需要新型的表面涂层以适应负荷并适合经济生产。与传统的热固性涂料(油漆,胶衣)相比,它们必须具有良好的耐磨性和耐化学性,与金属或陶瓷保护层相比,它们必须具有高的破坏应变和粘合强度。聚合物纳米复合材料在这方面具有特别的优势。在这种背景下,这项工作的主要目的是表征和评估由金属氧化物纳米颗粒增强的环氧凝胶涂料制成的表面保护层,用于机械,摩擦学和介质负载的纤维增强塑料(FRP)。重点放在作为颗粒材料和填料含量的函数的非均相胶衣的特性表征,以及调整液体颗粒-树脂分散体所需的流变性能,以便可以将纳米颗粒增强的胶衣应用于各向异性通过经济和可变几何形状的喷涂工艺对玻璃钢基材进行喷涂。

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