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首页> 外文期刊>Applied Surface Science >Surface modification of MMT and its effect on fatigue and fracture behavior of basalt/epoxy based composites in a seawater environment
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Surface modification of MMT and its effect on fatigue and fracture behavior of basalt/epoxy based composites in a seawater environment

机译:MMT的表面改性及其对海水环境中玄武岩/环氧树脂基复合材料疲劳和断裂行为的影响

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摘要

In this study, silanized-montmorillonite (Si-MMT) reinforced basalt fiber/epoxy composites were prepared and the effect of silanization of MMT on the fatigue and fracture behavior of the composites in seawater condition were analyzed. To compare the properties of Si-MMT/basalt/epoxy (Si-MMT BFRP), Pure basalt/epoxy (pure BFRP) composites were scrutinized in both dry and seawater conditions. The structural changes after silanetreatment were confirmed using TEM, XRD, and FTIR. Further, tensile strength, cyclic loading (fatigue) and fracture properties were studied through the universal testing machine (UTM) and FE-SEM of the fractured surface. It was found that the properties were improved after silanization of MMT due to the better compatibility and dispersion of MMT layers in the matrix. After seawater absorption, debonding occurred due to swelling of the polymer. Hence, deterioration in the properties was observed. However, the composites with Si-MMT still showed better performance among all.
机译:本研究制备了硅烷化蒙脱土(Si-MMT)增强玄武岩纤维/环氧树脂复合材料,并分析了MMT硅烷化对海水条件下复合材料疲劳和断裂行为的影响。为了比较Si-MMT /玄武岩/环氧树脂(Si-MMT BFRP)的性能,在干燥和海水条件下都对纯玄武岩/环氧树脂(纯BFRP)复合材料进行了仔细检查。使用TEM,XRD和FTIR确认硅烷处理后的结构变化。此外,通过万能试验机(UTM)和断裂表面的FE-SEM研究了抗张强度,循环载荷(疲劳)和断裂性能。发现由于在基质中MMT层的更好的相容性和分散性,MMT硅烷化后性能得到改善。吸收海水后,由于聚合物溶胀而发生脱胶。因此,观察到性能下降。然而,具有Si-MMT的复合材料仍然表现出更好的性能。

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