Evaluation of interlaminar stresses in composite laminates with a bolt-filled hole using a linear elastic traction-separation description

Yong Cao, Yunwen Feng, Xiaofeng Xue, Wenzhi Wang, Liang Bai

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Determination of the local interlaminar stress distribution in a laminate with a bolt-filled hole is helpful for optimal bolted joint design, due to the three-dimensional (3D) nature of the stress field near the bolt hole. A new interlaminar stress distribution phenomenon induced by the bolt-head and clamp-up load, which occurs in a filled-hole composite laminate, is investigated. In order to efficiently evaluate interlaminar stresses under the complex boundary condition, a calculation strategy that using zero-thickness cohesive interface element is presented and validated. The interface element is based on a linear elastic traction-separation description. It is found that the interlaminar stress concentrations occur at the hole edge, as well as the interior of the laminate near the periphery of the bolt head. In addition, the interlaminar stresses near the periphery of the bolt head increased with an increase in the clamp-up load, and the interlaminar normal and shear stresses are not at the same circular position. Therefore, the clamp-up load cannot improve the interlaminar stress distribution in the laminate near the periphery of the bolt head, although it can reduce the magnitude of the interlaminar shear stress at the hole edge. Thus, the interlaminar stress distribution phenomena may lead to delamination initiation in the laminate near the periphery of the bolt head, and should be considered in composite bolted joint design.

Original languageEnglish
Article number93
JournalApplied Sciences (Switzerland)
Volume7
Issue number1
DOIs
StatePublished - 2017

Keywords

  • Bolted joints
  • Cohesive element
  • Filled-hole compression testing
  • Interlaminar stresses
  • Traction-separation laws

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