Correlation model for composite elastic properties using only measurements from a single specimen

نویسنده

  • Benjamin P
چکیده

In probabilistic design, composite material properties are often treated as independent random variables since correlation coefficients are not widely available. This is due to the paucity of experiments where correlation is measured. However, high material correlations are expected from common physical characteristics, such as ∧ the variability in the fiber volume fraction. Therefore, the focus of this paper is to translate the known variability in composition into a correlation model for elastic constants. The dependence of the elastic constants on the fiber volume fractionwas estimated from simplemixture rules. The correlated material variability was applied to a glass/epoxy material system. The material variability was combined with the measurement error to obtain the total covariance of the elastic constants. The measurement error for the glass/epoxy laminate was from the correlated data from a single vibration testing experiment. In this case of a single test, the variability between specimens was not captured in the measurement error, and the proposed correlation model provides a physical basis for approximating the specimen variability. The uncertainty in elastic properties was propagated to strain under mechanical loading in a pressure vessel problem using ∧ the classical lamination theory. The results were interpreted as a failure probability according to the maximum strain criterion. It was found that neglecting correlations can lead to an inefficient or unsafe design. © 2011 Elsevier Ltd. All rights reserved.

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تاریخ انتشار 2011