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Elastic-plastic analysis and strength evaluation of adhesive joints in wind turbine blades

机译:风力发电机叶片中胶接点的弹塑性分析和强度评估

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摘要

The objective of this paper is to investigate the performance of adhesive joints of carbon/epoxy wind turbine blade subjected to combined bending and tension loadings through finite element method. The influence of adhesive material properties and geometrical details including fillet and imperfections was examined in terms of interlaminar stresses in the adhesive layer. The variation of stress intensity with change in adhesive shear modulus has also been investigated, while contour integral method was used for evaluating the stress intensity factors (SIF) at the imperfection tip. Furthermore, the strength of the joint was assessed through the crack initiation and propagation analysis. Results suggested that either adding a fillet or considering the plasticity led to the reduced peak stresses at the edge of the adhesive layer and redistributed the load to low stress regions. Inclusion of imperfections has resulted in high stress concentrations in the adhesive layer and reduction in the strength of the joint. Compared to the filleted adhesive, the strength of the joint reduced 2.4% and 4.8% considering a flat adhesive and filleted adhesive with through-thickness imperfection, respectively. Large shear modulus of the adhesive diminishes the fracture strength with the increased SIF.
机译:本文的目的是通过有限元方法研究碳/环氧风力涡轮机叶片在弯曲和拉力共同作用下的粘接性能。根据粘合剂层中的层间应力,检查了粘合剂材料性能和几何细节(包括圆角和缺陷)的影响。还研究了应力强度随粘合剪切模量变化的变化,而轮廓积分法则用于评估缺陷尖端的应力强度因子(SIF)。此外,通过裂纹萌生和扩展分析评估了接头的强度。结果表明,添加圆角或考虑可塑性会导致粘合剂层边缘的峰值应力降低,并将载荷重新分配到低应力区域。包含缺陷会导致粘合剂层中的应力集中较高,并降低接头强度。与圆角胶相比,考虑到厚度不均匀的平面胶和圆角胶,接头的强度分别降低了2.4%和4.8%。粘合剂的大剪切模量会随着SIF的增加而降低断裂强度。

著录项

  • 来源
    《Composites》 |2013年第1期|650-656|共7页
  • 作者单位

    Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588-0656, United States;

    Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588-0656, United States;

    Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588-0656, United States,Nebraska Center for Materials and Nanoscience, Lincoln, NE 68588-0656, United States;

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

    A. Laminates; B. Adhesion; B. Fracture; C. Finite element analysis (FEA); wind turbine blade;

    机译:A.层压板;B.附着力;B.骨折;C.有限元分析(FEA);风力涡轮机叶片;

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