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Post-buckling failure in multi-delaminated composite wind turbine blade materials

机译:多层复合风电叶片材料的屈曲后失效

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摘要

This study models the inter-laminar damage due to low velocity impacts on hybrid composite materials typical of those used in wind turbine blade structures. The effect of z-pinning using natural flax yarn on the critical buckling load and post-buckling behaviour of multi-delaminated composite beams was investigated. Laminated composite beams were pinned through their thickness using natural flax yarns to control delamination failure during the post-buckling process. A multiple delamination with a triangular shape was inserted into each of the beams to simulate the damage caused by a low velocity impact e.g. ice, on composite wind turbine blades. For a laminate design of [C9o/G9o]4, global collapse caused no delamination failure during the post-buckling test while delamination failure occurred for a laminate design of [C0/G0]4. In this case, z-pinning can significantly increase the failure resistance within a composite structure and it can then postpone the failure process. The buckling process of a multi-delaminated composite beam was also simulated by finite element software ANSYS and the results were substantially verified by relevant experimental results.
机译:这项研究模拟了层间损伤,这是由于低速冲击对混合复合材料造成的,而这种复合材料通常用于风力涡轮机叶片结构。研究了天然亚麻纱线z钉扎对多层复合梁的临界屈曲载荷和后屈曲行为的影响。使用天然亚麻纱线将层压复合梁固定在其厚度上,以控制后屈曲过程中的分层失败。将具有三角形形状的多重分层插入每个梁中,以模拟低速冲击(例如冲击)造成的损坏。复合风力涡轮机叶片上的冰。对于[C9o / G9o] 4的层压板设计,整体屈曲在后屈曲测试期间未发生分层失败,而对于[C0 / G0] 4的层压板设计则发生分层失败。在这种情况下,z钉扎可以显着增加复合结构内的抗故障能力,然后可以推迟故障过程。还通过有限元软件ANSYS模拟了多层组合梁的屈曲过程,并通过相关的实验结果对结果进行了实质性的验证。

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  • 来源
    《Materials & design》 |2011年第10期|p.5106-5112|共7页
  • 作者单位

    Faculty of Engineering, Kingston University, London SW15 3DW, UK;

    Faculty of Engineering, Kingston University, London SW15 3DW, UK;

    Faculty of Engineering, Kingston University, London SW15 3DW, UK;

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