Published 1997 | Version v1
Book

Fatigue damage characterization in plain-wave carbon-carbon fabric reinforced plastic composites

  • 1. University of Petroleum and Minerals, Dhahran (Saudi Arabia). Dept. of Mechanical Engineering

Description

In this paper fatigue damage mechanisms in 8 ply Carbon-Carbon Fabric reinforced Plastic Laminates obtained from polyester resin-prepreg plain weave carbon-carbon fabric layers have been investigated. Enhanced dye penetrant, X-ray radiography, optical microscopy, edge replication, and scanning electron fractography have been employed to examine the fatigue damage in three classes of laminates having the unidirectional (O)/sub delta/, the angle-plied (0,0,45,-45)/sub s/ fiber orientations. It is shown the laminates that have off axis plies, i.e.,0,0,45,-45), and (45,-45,0,0) /sub s/, the fatigue damage is initiated through matrix cracking. This matrix cracking induces fiber fracture in adjacent plies near the matrix crack tip. This event is followed by the man damage event of delamination of the stacked plies. It is shown that the delamination was the major damage mode, which caused the eventual fatigue failure in the angle-plied composites. The unidirectional composite (O)/sub delta/ laminates failed predominantly by lateral fracture instead of delamination. Fiber fracture was observed in the prime damage mode in unidirectional (O)/sub delta/ composite laminates. (author)

Part of:
Advanced Materials-97

Additional details

Publishing Information

Publisher
Doctor A.Q. Khan Research Laboratories Kahuta Rawalpindi Pakistan
Imprint Place
Islamabad (Pakistan)
Imprint Title
Advanced Materials-97
Imprint Pagination
758 p.
Journal Page Range
p. 512-518

Conference

Title
5. International Symposium on Advanced Materials
Dates
17-21 Sep 1997
Place
Islamabad (Pakistan)

INIS

Country of Publication
Pakistan
Country of Input or Organization
Pakistan
INIS RN
29062514
Subject category
S36: MATERIALS SCIENCE;
Resource subtype / Literary indicator
Conference
Descriptors DEI
CARBON FIBERS; COMPOSITE MATERIALS; CRACKS; FATIGUE; REINFORCED PLASTICS; THERMAL FRACTURES
Descriptors DEC
FAILURES; FIBERS; FRACTURES; MATERIALS; MECHANICAL PROPERTIES; ORGANIC COMPOUNDS; ORGANIC POLYMERS; PETROLEUM PRODUCTS; PLASTICS; POLYMERS; REINFORCED MATERIALS

Optional Information