ADHESIVE PRESSURE AS FAILURE CRITERION IN MICROMECHANICAL TESTS

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Bibliographic Details
Main Authors: Serge Zhandarov, Elena Pisanova, Konrad Schneider
Format: Recurso digital
Published: Zenodo 1999
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author Serge Zhandarov
Elena Pisanova
Konrad Schneider
author_facet Serge Zhandarov
Elena Pisanova
Konrad Schneider
contents A new stress-based criterion of interfacial failure in micromechanical tests - critical interfacial normal stress, or adhesive pressure - is proposed. The new criterion has two important advantages: it follows the actual mechanism of crack initiation (in tensile Mode I) and allows to relate interfacial strength to such fundamental physical quantity as thermodynamic work of adhesion. The adhesive pressure values have been experimentally determined for several polymer/fiber model composites; it appeared to linearly depend on the work of adhesion measured independently. The model based on splitting the work of adhesion into the dispersion and acid-base contributions describes the observed relationships.
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15418372
institution Zenodo
language
publishDate 1999
publisher Zenodo
record_format zenodo
spellingShingle ADHESIVE PRESSURE AS FAILURE CRITERION IN MICROMECHANICAL TESTS
Serge Zhandarov
Elena Pisanova
Konrad Schneider
A new stress-based criterion of interfacial failure in micromechanical tests - critical interfacial normal stress, or adhesive pressure - is proposed. The new criterion has two important advantages: it follows the actual mechanism of crack initiation (in tensile Mode I) and allows to relate interfacial strength to such fundamental physical quantity as thermodynamic work of adhesion. The adhesive pressure values have been experimentally determined for several polymer/fiber model composites; it appeared to linearly depend on the work of adhesion measured independently. The model based on splitting the work of adhesion into the dispersion and acid-base contributions describes the observed relationships.
title ADHESIVE PRESSURE AS FAILURE CRITERION IN MICROMECHANICAL TESTS
url https://doi.org/10.5281/zenodo.15418372