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Mechanical behaviour of thick structural adhesives in wind turbine blades under multi-axial loading

机译:多轴载荷下风轮机叶片中厚结构粘合剂的力学行为

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摘要

Wind turbine blades are made of integrated composite parts bonded together using structural adhesives. The blades are among the most severely multi-axial fatigue loaded structures and the bonded joints play an important role in their structural integrity. For better understanding of the mechanical performance of the bonded joints, thorough knowledge is required on the multi-axial behaviour of the bulk adhesive. In this study, tubular specimens consisting of glass/epoxy bonding paste were subjected to uniaxial (tension, compression and torsion) and biaxial (tension-torsion and compression-torsion) static tests. Different biaxial ratios were used and the stress-strain responses were recorded using strain-gauges. The imposed biaxial stress ratios influenced the stress-strain behaviour of the material system, especially the compression and the shear stress-strain. A material model was developed based on the experimental observations taking into account the non-linear behaviour and the effects of the biaxial ratios and it was implemented together with a progressive damage scenario into a finite-element model. The experimental failure patterns were compared with the numerical simulations and a good match was found.
机译:风力涡轮机叶片由使用结构粘合剂粘合在一起的集成复合材料零件制成。叶片属于最严重的多轴疲劳载荷结构,而粘结接头在其结构完整性中起着重要作用。为了更好地理解粘合接头的机械性能,需要对块状粘合剂的多轴性能有透彻的了解。在这项研究中,对由玻璃/环氧树脂粘合膏组成的管状样品进行了单轴(拉伸,压缩和扭转)和双轴(拉伸-扭转和压缩-扭转)静态测试。使用不同的双轴比,并使用应变仪记录应力-应变响应。施加的双轴应力比影响材料系统的应力应变行为,尤其是压缩应力和剪切应力应变。在考虑到非线性行为和双轴比率的影响的基础上,根据实验观察结果开发了材料模型,并将其与渐进式损伤方案一起应用于有限元模型。将实验失败模式与数值模拟进行了比较,并找到了很好的匹配。

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