Published June 2006 | Version v1
Journal article

Effects of stacking sequence on fracture mechanisms in quasi-isotropic Carbon/epoxy laminates under tensile loading

  • 1. Amir Kabir University of Technology, Department of Mining and Metallurgy, Tehran (Iran, Islamic Republic of)

Description

The progress of damage in quasi-isotropic carbon/epoxy laminates under tensile loading has been Investigated microscopically. One significant mode of failure in laminated composites is delamination initiating at free edges. The interlaminar stress in the boundary ply along the free edges of a laminated composite is the main factor to cause delamination. The laminate stacking sequence affects the interlaminar stress distribution and consequently may change the mode of failure. It is of design importance to determine a suitable criterion based on stress analysis to obtain the best stacking sequence. In the present work, tensile properties of six samples with different stacking sequences have been examined. Results showed that stress analysis at distance very close to the free edges is a suitable criterion to predict the initiation of delamination and the stacking sequence of [90/45/0/-45]s, has the highest strength among the others. Furthermore finite element analysis showed that the adjacent ±45 plies cause premature delamination during tensile loading

Availability note (English)

Available from Atomic Energy Organization of Iran

Additional details

Publishing Information

Journal Title
Iranian Polymer Journal
Journal Volume
14
Journal Issue
no.6
Journal Page Range
p. 531-538
ISSN
1026-1265

INIS

Country of Publication
Iran, Islamic Republic of
Country of Input or Organization
Iran, Islamic Republic of
INIS RN
37059536
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Numerical Data
Descriptors DEI
EXPERIMENTAL DATA; FAILURES; FRACTURES; POLYMERS; STRAINS; TENSILE PROPERTIES
Descriptors DEC
DATA; FAILURES; INFORMATION; MECHANICAL PROPERTIES; NUMERICAL DATA
Proposed descriptors and Free-text terms
Stacking sequence; Quasi-isotropic; Tensile loading; Delamination; DELAMINATION; QUASI-ISOTROPIC; STACKING SEQUENCE; TENSILE LOADING