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Effect of water absorption on the dynamic mechanical properties of composites used for windmill blades

机译:吸水率对风车叶片复合材料动态力学性能的影响

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摘要

Glass fiber/unsaturated polyester composites (with and without nanofiller) were produced by using the VARI (vacuum assisted resin infusion) technique. These materials will be used in windmill blades and, therefore, they are expected to be exposure to high humidity environments. The fabricated specimens were immersed in water at 80 ℃ for different periods of time. DMA (dynamic mechanical analysis) technique was employed to investigate the matrix degradation and interfacial debonding of the aged specimens. The gradually decreased T_g (glass transition temperature), E' (storage modulus), and the increased tan S (energy dissipation) with extended exposure time indicated that both the matrix and the interface had been deteriorated by the water. While matrix degradation occurs in a short period of time, composites degradation takes place gradually, showing that the degradation of the interphase in composites is the limiting step for the whole degradation process. Nanoclays were incorporated to the UP (unsaturated polyester) matrix showing a detrimental effect in degradation resistance, probably because of the degree of hydrophilicity of the selected clay, which produces a weak interphase with the polymeric matrix.
机译:玻璃纤维/不饱和聚酯复合材料(有和没有纳米填料)是通过使用VARI(真空辅助树脂灌注)技术生产的。这些材料将用在风车叶片中,因此,预计它们会暴露在高湿度的环境中。将制成的标本浸入80℃的水中不同的时间。 DMA(动态力学分析)技术用于研究老化试样的基体降解和界面剥离。随着暴露时间的延长,T_g(玻璃化转变温度),E'(储能模量)和tan S(能量耗散)逐渐降低,这表明基质和界面都被水破坏了。当基体降解在短时间内发生时,复合材料逐渐发生降解,这表明复合材料中相间的降解是整个降解过程的限制步骤。将纳米粘土掺入到UP(不饱和聚酯)基体中,显示出抗降解性的不利影响,这可能是由于所选粘土的亲水性程度所致,该亲水性与聚合物基体产生了弱的相间相。

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  • 来源
    《Materials & design 》 |2012年第4期| p.609-616| 共8页
  • 作者单位

    Research Institute of Material Science and Technology, INTEMA-CONICET, Engineering Faculty, National University of Mar del Plata, J.B. Justo 4302,B7608FDQ Mar del Plata, Argentina;

    Research Institute of Material Science and Technology, INTEMA-CONICET, Engineering Faculty, National University of Mar del Plata, J.B. Justo 4302,B7608FDQ Mar del Plata, Argentina;

    QDAUT, Foundation for Research and Development in Transport and Energy, Parque Tecnologico de Boecillo P. 209, 47151 Boecillo, Valladolid, Spain;

    Research Institute of Material Science and Technology, INTEMA-CONICET, Engineering Faculty, National University of Mar del Plata, J.B. Justo 4302,B7608FDQ Mar del Plata, Argentina;

    Research Institute of Material Science and Technology, INTEMA-CONICET, Engineering Faculty, National University of Mar del Plata, J.B. Justo 4302,B7608FDQ Mar del Plata, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    composites polymer matrix; nano materials; environmental performance;

    机译:复合材料聚合物基体纳米材料环保性能;

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