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    硅烷偶联剂改性纳米SiO2对拉挤用环氧树脂性能的影响

    Impact of Silane Coupling Agent Modified Nano-SiO2 on Properties of Epoxy Resin for Pultrusion

    • 摘要: 拉挤用环氧树脂因其优异的力学性能、短成型周期和低固化收缩率而被广泛应用于工业领域。然而,其固化后的韧性较差,在外力冲击下容易受损开裂。为实现拉挤用环氧树脂工艺适配性与力学性能的协同调控,采用KH550型硅烷偶联剂对纳米SiO2进行表面改性制得改性纳米SiO2(标记为KH550-SiO2),并将KH550-SiO2与拉挤用环氧树脂共混,研究了不同含量KH550-SiO2对拉挤用环氧树脂性能的影响。采用扫描电子显微镜(SEM)、热重分析(TGA)、动态热机械分析(DMA)和流变测试等手段,对复合体系的结构特征、热性能和流变行为进行了系统表征。SEM结果显示,KH550-SiO2在树脂基体中分散均匀。力学性能测试表明,当KH550-SiO2质量分数为2%时,拉挤用环氧树脂的拉伸强度、拉伸模量、断裂伸长率和断裂韧性分别提升了8.43%、7.80%、46.05%和25.00%。此外,TGA和流变测试结果表明,KH550-SiO2的加入并未对拉挤用环氧树脂的耐热性能和流变性能产生负面影响,说明KH550-SiO2是一种有效的增韧剂,可在保持拉挤用环氧树脂原有耐热性能和流变性能的同时,显著提升其力学性能。

       

      Abstract: Epoxy resins for pultrusion are widely used in industry due to their excellent mechanical properties, short molding cycles and low cure shrinkage. However, they have poor toughness after curing and are easily damaged and cracked under external impact. The silane coupling agent (KH550) was used to surface modify the nano-SiO2, and modified nano-SiO2 (KH550-SiO2) was blended with pultruded epoxy resin to investigate the effect of different contents of KH550-SiO2 on the properties of epoxy resins for pultrusion. A combination of scanning electron microscopy (SEM), thermogravimetric analysis (TGA), dynamic mechanical analysis (DMA), and rheological testing was employed to characterize the structural features, thermal stability, and rheological behavior of the modified systems. SEM results revealed that KH550-SiO2 was uniformly dispersed in the epoxy matrix. Mechanical testing showed that, at a loading of 2% (mass fraction) KH550-SiO2, the tensile strength, tensile modulus, elongation at break, and fracture toughness were increased by 8.43%, 7.80%, 46.05%, and 25.00%, respectively. Moreover, TGA and rheological analysis indicated that the incorporation of KH550-SiO2 did not negatively affect the thermal stability or processability of the pultrusion epoxy system. This study demonstrates that silane coupling agent KH550-SiO2 serves as an effective toughening method to significantly improve the mechanical properties of epoxy resins for pultrusion while maintaining their original heat resistance and rheological properties.

       

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