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基于断裂韧性预报复合材料层合板的开孔拉伸强度

Translated title of the contribution: Tensile strength prediction of notched composite laminates using fracture toughness
  • Jiangbo Yang
  • , Zhengming Huang*
  • , Yuande Xue
  • , Yexin Zhou
  • *Corresponding author for this work
  • Tongji University
  • Jiangsu University

Research output: Contribution to journalArticlepeer-review

Abstract

Strength prediction of a laminate with a hole generally depends on a characteristic length of the hole which is not only related to the properties of its constituent materials but also depends on the laminate lay-up and the hole diameter. In this paper, a new method based on linear elastic fracture mechanics was proposed to predict the tensile strength of a symmetric laminate with hole, which only needs the fracture toughness of a cross-ply composite plate and the tensile strength of the un-notched laminate, and which can significantly reduce the requirement on composite data. In this method, the characteristic length was first expressed as a function of the fracture toughness and the un-notched tensile strength of the laminate. Then, the fracture toughness of a 0° ply (i.e. unidirectional laminate) was determined by a compact tension test on the cross-ply laminate [90/0]8s and the virtual crack closure technique. Further, the fracture toughness of laminates with arbitrary symmetric lay-up angles can be calculated from that of the 0° ply. Tensile tests on T300/7901 notched laminates with lay-ups of [0/±45/90]2s and [0/±30/±60/90]s have been done in this work. Three kinds of hole diameters, i.e. 3 mm, 6 mm and 9 mm, were assigned for each of the laminates. The theoretical predictions for the tensile strengths are in good agreement with the measured values. The maximum difference is 15.2%, which is acceptable in engineering applications.

Translated title of the contributionTensile strength prediction of notched composite laminates using fracture toughness
Original languageChinese (Traditional)
Pages (from-to)860-870
Number of pages11
JournalFuhe Cailiao Xuebao/Acta Materiae Compositae Sinica
Volume36
Issue number4
DOIs
StatePublished - 1 Apr 2019
Externally publishedYes

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