@inproceedings{17bddef40621429aa3fc69cb3f7accec,
title = "Reliability analysis of ceramic matrix composite laminates",
abstract = "At a macroscopic level, a composite lamina may be considered as a homogeneous orthotropic solid whose directional strengths are random variables. Incorporation of these random variable strengths into failure models, either interactive or noninteractive, allows for the evaluation of the lamina reliability under a given stress state. Using a non-interactive criterion for demonstration purposes, laminate reliabilities are calculated assuming previously established load sharing rules for the redistribution of load as the failure of laminae occur. The matrix cracking predicted by ACK theory is modelled to allow a loss of stiffness in the fiber direction. The subsequent failure in the fiber direction is controlled by a modified bundle theory. Results using this modified bundle model are compared with previous models which did not permit separate consideration of matrix cracking, as well as to results obtained from experimental data.",
author = "Thomas, \{David J.\} and Wetherhold, \{Robert C.\}",
note = "Publisher Copyright: Copyright {\textcopyright} 1991 by ASME.; ASME 1991 International Gas Turbine and Aeroengine Congress and Exposition, GT 1991 ; Conference date: 03-06-1991 Through 06-06-1991",
year = "1991",
doi = "10.1115/91-GT-211",
language = "English",
series = "Proceedings of the ASME Turbo Expo",
publisher = "American Society of Mechanical Engineers (ASME)",
booktitle = "Manufacturing Materials and Metallurgy; Ceramics; Structures and Dynamics; Controls, Diagnostics and Instrumentation; Education; IGTI Scholar Award; General",
address = "United States",
}