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Static behaviours of carbon fibre composite strip with bifurcated type shape memory alloy pins

机译:分叉形状记忆合金销钉碳纤维复合材料带的静态性能

摘要

A numerical study of the static behaviours of composite strip with bifurcated type shape memory alloy pins has been conducted. The case of bifurcated type shape memory alloy pins inserted inside the composite strip around the hole to reinforce the laminate, which was subjected to the axial stress was simulated. The models for stress analysis were established by using ANSYS finite element programme. Two types of shape memory alloy pins were proposed to insert along the through thickness direction of the carbon fibre woven fabric composite strip to induce the clamping force. The pre-tensioned load was applied to the shape memory alloy pins in order to reduce occurrence of delamination in the laminate. Three-dimensional elements and contact elements were used to simulate the contact between the composite laminate and shape memory alloy pin to investigate the stress distribution around the hole in the composite strip. The effect of pre-strain of shape memory alloy on the stresses inside composite was studied. The results show that the stress characteristics of the button-shaped and bifurcated shape memory alloy pin models are similar; however, the stresses for the button-shaped pin model are lower. The tensile and compressive stresses, both in button-shaped and bifurcated pin models, are strongly dependent on the percentage of pre-strain of the shape memory alloy. It is therefore concluded that the shape memory alloy pin method was significantly reduced the stress concentration of the composite strip laminate.
机译:对带有分叉型形状记忆合金销的复合材料带的静态行为进行了数值研究。模拟了分叉型形状记忆合金销钉在孔周围的复合带内插入以加固层压板的情况,该层压板受到了轴向应力。利用ANSYS有限元程序建立了应力分析模型。提出了两种类型的形状记忆合金销钉沿着碳纤维织物复合材料条的整个厚度方向插入以引起夹紧力。将预拉伸的载荷施加到形状记忆合金销上,以减少层压板中分层的发生。使用三维元素和接触元素来模拟复合材料层压板和形状记忆合金销之间的接触,以研究复合材料带材中孔周围的应力分布。研究了形状记忆合金的预应变对复合材料内部应力的影响。结果表明,纽扣形和分叉形记忆合金销钉模型的应力特性相似;但是,纽扣形销钉模型的应力较低。在纽扣形和分叉销模型中,拉伸应力和压缩应力都强烈取决于形状记忆合金的预应变百分比。因此可以得出结论,形状记忆合金销钉法显着降低了复合带状层压板的应力集中。

著录项

  • 作者

    Chan KC; Zhou LM;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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