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Observations of microscale tensile fatigue damage mechanisms of composite materials for wind turbine blades

机译:风力涡轮机叶片复合材料微观拉伸疲劳机理的观察

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In the presented study, it has been studied how tensile/tensile fatigue damage will develop in quasi-unidirectional non-crimp fabric based glass fibre epoxy matrix composites. A material system conventionally used as the load carrying laminates in wind turbine blades. It will be demonstrated by stopping a tensile/tensile fatigue test before the final material failure, how 3D X-ray computer tomography (x-ray CT) can be used for determining fibre failure inside the composite material. Due to the rather coarse bundle-structure of the non-crimp fabrics investigated, a relative large cross section area of the test-sample is necessary in order for testing a representative material volume. Therefore, the x-ray CT technique is used in a scout and zoom test-setup where a scout scan of the 15 mm large cross-section is used for identifying the damage region, while the subsequently zoom scan of a 2-3 mm field of view region is used for determine the fibre failures. This scan-setup is non-destructive, and it is therefore possible to obtain a number of scans during the fatigue damage development. Thereby, it is found that the fibre failure are mainly occurring close to points where the load carrying uni-directional fibre bundles are in close contact with the crossing points of secondary oriented fibre bundles, the so-called backing bundles.
机译:在本研究中,已经研究了抗拉塞/拉伸疲劳损伤如何在基于准单向非卷曲织物的玻璃纤维环氧基质复合材料中发育。通常用作风力涡轮机叶片中的负载层压材料的材料系统。通过在最终材料故障之前停止拉伸/拉伸疲劳试验,如何使用3D X射线计算机断层扫描(X射线CT)来证明它可以用于确定复合材料内的纤维失效。由于所研究的非卷曲织物的相当粗束结构,需要测试样品的相对大的横截面区域,以便测试代表性的材料体积。因此,X射线CT技术用于侦察和缩放测试设置,其中15mm大横截面的侦察扫描用于识别损坏区域,而随后的扫描扫描2-3毫米字段视图区域用于确定光纤故障。该扫描设置是非破坏性的,因此可以在疲劳损伤开发期间获得许多扫描。由此,发现纤维失败主要发生在接近的点,其中承载单向纤维束的负载与次级取向纤维束的交叉点紧密接触,所谓的背束。

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