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Analysis of taper-taper adhesive-bonded joints in composite plates under tension and cylindrical bending.

机译:拉伸和圆柱弯曲作用下复合板锥度粘结点的分析。

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摘要

A taper-taper adhesive-bonded joint between two composite plates has been analyzed under tension and cylindrical bending.;Two tension models were derived. The first model was based on mechanics of materials and the second model used laminated plate theory and shear correction factors. For the mechanics of materials model the condition of plane strain was assumed for the adherends and adhesive. Average stresses were used in the adherends and point-wise stresses were used in the adhesive. The model derived consisted of four second-order ordinary differential equations with variable coefficients. The adherends were characterized by the extensional Young's modulus. The equations were solved numerically using the Linear Shooting Method and the solutions were compared with finite element models developed using the COSMOS/M commercial software package. The model was accurate in the area away from the sharp end of the taper and predicted strains within about 5-10% of the finite element models. The second analytical model was developed to improve prediction near the sharp end of the taper. The model was derived using first-order, laminated plate theory and included transverse shear deformation effects. The assembly was divided into three areas to facilitate the analysis, the two sections of laminate away from the joint and the joint itself. The first two sections were modeled by three first-order differential equations each. The joint was modeled by six second-order, ordinary differential equations with variable coefficients. The six equations were reduced to a set of twelve first-order differential equations, which were solved numerically with the six first-order equations from the areas away from the joint. Finite element models were developed using the COSMOS/M commercial software package for verification of the model. The model was accurate and predicted the peak stresses within about 5-8% of the values calculated with finite element analysis.;A laminated plate model of the taper-taper joint was also derived for the case of cylindrical bending. The FORTRAN program was modified to numerically solve the resulting system of twelve first-order differential equations with variable coefficients. The adhesive stresses predicted were within about 2% of the results from the finite element models.
机译:分析了在拉力和圆柱弯曲作用下两个复合板之间的锥度胶接点。推导了两个拉力模型。第一个模型基于材料力学,第二个模型使用层压板理论和剪切校正因子。对于材料力学模型,假定被粘物和粘合剂的平面应变条件。在被粘物中使用平均应力,在粘合剂中使用逐点应力。推导的模型由四个具有可变系数的二阶常微分方程组成。被粘物的特征在于拉伸杨氏模量。使用线性射击法对方程进行数值求解,并将解与使用COSMOS / M商业软件包开发的有限元模型进行比较。该模型在远离锥尖的区域内准确,并且预测的应变在有限元模型的约5-10%之内。开发了第二种分析模型,以改善锥度尖端附近的预测。该模型是使用一阶叠层板理论导出的,其中包括横向剪切变形效应。为了便于分析,将装配体分为三个区域:层压板的两个部分远离接缝和接缝本身。前两个部分分别由三个一阶微分方程建模。通过六个具有可变系数的二阶常微分方程对关节进行建模。将这六个方程简化为一组十二个一阶微分方程,并用六个一阶方程从远离关节的区域进行数值求解。使用COSMOS / M商业软件包开发了有限元模型,以验证模型。该模型是准确的,并预测了峰值应力在有限元分析计算值的约5-8%范围内。;对于圆柱弯曲的情况,还导出了锥度锥形接头的叠层板模型。修改了FORTRAN程序,以数值方式求解十二个具有可变系数的一阶微分方程组。预测的粘合应力在有限元模型结果的2%之内。

著录项

  • 作者

    Helms, Jack Elwin, Jr.;

  • 作者单位

    Louisiana State University and Agricultural & Mechanical College.;

  • 授予单位 Louisiana State University and Agricultural & Mechanical College.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1998
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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