The Stress and Strength Evaluations of Single-lap Adhesive Joints of Bamboo Plate Adherends under Static Bending Moments

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Other Title
  • 静的曲げモーメントを受ける被着体が竹板である単純重ね合わせ接着継手の応力と強度
  • セイテキ マゲ モーメント オ ウケル ヒチャクタイ ガ タケバン デ アル タンジュン カサネアワセ セッチャク ツギテ ノ オウリョク ト キョウド

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Abstract

This paper deals with testing the stress distributions and strength in single-lap adhesive joints of bamboo plate adherends after being subjected to static bending moments. Stress and strain were calculated using an elastic and orthotropic finite-element method (FEM). In addition, the surface strain distributions of single-lap adhesive joints under static bending moments were measured using strain gauges. Reasonable correlation was found between the numerical and the experimental results. It was found that the maximum value of the maximum principal stress, σ1, appears at the interface between the adhesive layer and the adherend. The normal stress in the direction perpendicular to the fiber was greatest near the singular points. Bending strength tests were performed. In the case where the width of the joints and the lapped length were equal, it was found that the bending strength was maximal. Furthermore, the joint strength was predicted using two singularity parameters from the calculation results. Fairly good agreement was found between the predictions and the experimental results.

Journal

  • Mokuzai Gakkaishi

    Mokuzai Gakkaishi 59 (6), 383-390, 2013

    The Japan Wood Research Society

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