Effects of Stitching on Delamination of Satin Weave Carbon-Epoxy Laminates Under Mode I, Mode II and Mixed-Mode I/II Loadings

被引:0
作者
Walid Trabelsi
Laurent Michel
Renaud Othomene
机构
[1] ICA (Institut Clément Ader),Université de Toulouse; INSA, UPS, Mines Albi, ISAE
[2] DMSM,undefined
[3] ISAE,undefined
[4] Composite Stress Engineering Department,undefined
[5] Latécoère,undefined
来源
Applied Composite Materials | 2010年 / 17卷
关键词
Delamination; Polymer matrix composites; Stitching; Mixed-mode fracture; Woven fabrics;
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中图分类号
学科分类号
摘要
The objective of the present study is to characterize the effect of modified chain stitching on the delamination growth under mixed-mode I/II loading conditions. Delamination toughness under mode I is experimentally determined, for unstitched and stitched laminates, by using untabbed and tabbed double cantilever beam (TDCB) tests. The effect of the reinforcing tabs on mode I toughness is investigated. Stitching improves the energy release rate (ERR) up to 4 times in mode I. Mode II delamination toughness is evaluated in end-notched flexure (ENF) tests. Different geometries of stitched specimens are tested. Crack propagation occurs without any failure of stitching yarns. The final crack length attains the mid-span or it stops before and the specimen breaks in bending. The ERR is initially low and gradually increases with crack length to very high values. The mixed-mode delamination behaviour is investigated using a mixed-mode bending (MMB) test. For unstitched specimens, a simple mixed-mode criterion is identified. For stitched specimens, stitching yarns do not break during 25% of mode I ratio tests and the ERR increase is relatively small compared to unstitched values. For 70% and 50% of mode I ratios, failures of yarns are observed during crack propagation and tests are able to capture correctly the effect of the stitching: it clearly improves the ERR for these two mixed modes, as much as threefold.
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页码:575 / 595
页数:20
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