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首页> 外文期刊>Polymers & Polymer Composites >Materials Selection Strategy and Surface Treatment of Polymer Composites For Wind Turbine Blades Fabrication
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Materials Selection Strategy and Surface Treatment of Polymer Composites For Wind Turbine Blades Fabrication

机译:风力涡轮机叶片制造用聚合物复合材料的材料选择策略和表面处理

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In the present work the optimal materials selection for wind turbine blades using the Cambridge Engineering Selector (CES) program was carried out. Materials indices were derived, based on the mechanical, physical properties and environmental circumstances. Glass and carbon fibre reinforced plastics (epoxy matrix) showed high materials indices based on combined analysis of power and efficiency, fracture toughness, fatigue and thermal stability. Epoxy-glass fibre (EGF) and epoxy-carbon fibre (ECF) composites were manufactured and investigated. Surface of glass and carbon fibre was chemically modified using gamma-aminopropyltriethoxysilane (Silane A1100) coupling agent. The fibre content was varied between 12 to 70% w/w. It is found that the addition of (Silane A1100) as a compatibilizer caused further amelioration of the fibre/ matrix bonding resulting in improved mechanical behaviour, which was also, assessed using scanning electron microscopy. Mechanical properties of treated and untreated epoxy composites were illustrated using CES program. Tensile strength of EGF composites was varied based on fibres surface treatment and loadings. Tensile strength of silane treated EGF (70% wt/wt) increased to 1.46 GPa comparing with 1.38 GPa of untreated EGF. The potential and applications of this class of composite materials promise a significant opportunity for improving structural properties of wind turbine blades.
机译:在当前工作中,使用剑桥工程选择器(CES)程序对风力涡轮机叶片进行了最佳材料选择。根据机械,物理性能和环境条件得出材料指数。通过对功率和效率,断裂韧性,疲劳和热稳定性进行综合分析,玻璃和碳纤维增强塑料(环氧树脂基体)显示出较高的材料指数。制造并研究了环氧玻璃纤维(EGF)和环氧碳纤维(ECF)复合材料。使用γ-氨基丙基三乙氧基硅烷(Silane A1100)偶联剂对玻璃和碳纤维的表面进行化学改性。纤维含量在12至70%w / w之间变化。发现添加(Silane A1100)作为增容剂进一步改善了纤维/基体结合,从而改善了机械性能,这也可以使用扫描电子显微镜进行评估。使用CES程序说明了已处理和未处理的环氧复合材料的机械性能。 EGF复合材料的拉伸强度根据纤维的表面处理和载荷而变化。硅烷处理过的EGF(70%wt / wt)的拉伸强度提高到1.46 GPa,而未处理过的EGF的拉伸强度为1.38 GPa。这类复合材料的潜力和应用为改善风力涡轮机叶片的结构性能提供了重大机遇。

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