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A PREDICTIVE APPROACH TO THE IN-PLANE MECHANICAL PROPERTIES OF STITCHED COMPOSITE LAMINATES 被引量:5

A PREDICTIVE APPROACH TO THE IN-PLANE MECHANICAL PROPERTIES OF STITCHED COMPOSITE LAMINATES
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摘要 This contribution attempts to model the alteration of the in-plane elastic properties in laminates caused by stitching, and to predict the in-plane effective tensile strength of the stitched composite laminates. The distortion of in-plane fibers is considered to be the main cause that affects the in-plane mechanical properties. A fiber distortion model is proposed to characterize the fiber misalignment and the fiber content concentration due to stitching. The undistorted region, the fiber distortion region, the resin-rich pocket and the through-thickness reinforcement section are taken into account. The fiber misalignment and inhomogeneous fiber content due to stitching have been formulated by introducing two parameters, the distortion width and maximum misalignment. It has been found that the ply stress concentration in stitched laminates is influenced by the two concurrent factors, the stitch hole and inhomogeneous fiber content. The stitch hole brings about the stress concentration whereas the higher fiber content at the local region induced by stitching restrains the local deformation of the composite. The model is used to predict the tensile strength of the [0/45/0/-45/90/45/0/-45]58 T300/QY9512 composite laminate stitched by Kevlar 29 yarn with different stitching configurations, showing an acceptable agreement with experimental data. This contribution attempts to model the alteration of the in-plane elastic properties in laminates caused by stitching, and to predict the in-plane effective tensile strength of the stitched composite laminates. The distortion of in-plane fibers is considered to be the main cause that affects the in-plane mechanical properties. A fiber distortion model is proposed to characterize the fiber misalignment and the fiber content concentration due to stitching. The undistorted region, the fiber distortion region, the resin-rich pocket and the through-thickness reinforcement section are taken into account. The fiber misalignment and inhomogeneous fiber content due to stitching have been formulated by introducing two parameters, the distortion width and maximum misalignment. It has been found that the ply stress concentration in stitched laminates is influenced by the two concurrent factors, the stitch hole and inhomogeneous fiber content. The stitch hole brings about the stress concentration whereas the higher fiber content at the local region induced by stitching restrains the local deformation of the composite. The model is used to predict the tensile strength of the [0/45/0/-45/90/45/0/-45]58 T300/QY9512 composite laminate stitched by Kevlar 29 yarn with different stitching configurations, showing an acceptable agreement with experimental data.
出处 《Acta Mechanica Solida Sinica》 SCIE EI 2007年第2期130-140,共11页 固体力学学报(英文版)
基金 Project supported by the Excellent Young Teachers Program of the Ministry of Education of China the Shu-Guang Program of the City of Shanghai the National Natural Sciences Foundation of China(No.10372120) Shanghai Leading Academic Discipline Project(No.Y0103).
关键词 stitched composites fiber distortion in-plane elastic properties in-plane tensile strength and micromechanics stitched composites, fiber distortion, in-plane elastic properties, in-plane tensile strength and micromechanics
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参考文献5

  • 1Mouritz,A.P.and Cox,B.N.A mechanistic approach to the properties of stitched laminates[].Composites Part A Applied Science and Manufacturing.2000 被引量:1
  • 2Wang,H.Study on expanding application of strength criterion of composite structures and effects of stitch- ing parameters on mechanical properties[]..2004 被引量:1
  • 3Reed,J.R.Stitching vs.a toughened matrix:compression strength effects[].Journal of Comparative Neurology.1995 被引量:1
  • 4Tan,S.C.Stress Concentrations in Laminated Composites[]..1994 被引量:1
  • 5Shah,M.Z.and Mouritz,A.P.Fatigue behavior of stitched GRP laminates[].Combustion Science and Technology.1996 被引量:1

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