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     <dc:title xml:lang="en">Contribution of quantitative imaging to the mechanical, thermal and caloriﬁc characterization of rubber</dc:title>
     <dcterms:alternative xml:lang="fr">Contribution de l’imagerie quantitative pour la caractérisation mécanique, thermique et caloriﬁque du caoutchouc</dcterms:alternative>
     <dc:subject xml:lang="fr">Cristallisation sous tension</dc:subject><dc:subject xml:lang="fr">Thermographie infrarouge</dc:subject><dc:subject xml:lang="fr">Corrélation d'images numériques</dc:subject><dc:subject xml:lang="fr">Élastomères</dc:subject>
     <dc:subject xml:lang="en">Strain-induced crystallization</dc:subject><dc:subject xml:lang="en">Infrared thermography</dc:subject><dc:subject xml:lang="en">Digital image correlation</dc:subject><dc:subject xml:lang="en">Elastomers</dc:subject><tef:sujetRameau><tef:vedetteRameauNomCommun>
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     <dcterms:abstract xml:lang="fr">La dépendance du comportement mécanique à la température, couplée aux nombreux couplages thermomécaniques présents dans les élastomères, implique que l'utilisation conjointe de méthodes de champs pour caractériser la thermomécanique des élastomères offre d'innombrables informations sur les phénomènes physiques apparaissant dans le matériau. L'objet de cet thèse est de développer une méthode utilisant à la fois la thermographie infrarouge et la corrélation d'images numériques pour tirer le maximum d'informations possible lors d'essai mécaniques hétérogènes sur des matériaux élastomères.</dcterms:abstract>
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