2018
DOI: 10.1007/s12289-018-1401-z
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Ductility prediction of substrate-supported metal layers based on rate-independent crystal plasticity theory

Abstract: Abstract. In this paper, both the bifurcation theory and the initial imperfection approach are used to predict localized necking in substrate-supported metal layers. The self-consistent scale-transition scheme is used to derive the mechanical behavior of a representative volume element of the metal layer from the behavior of its microscopic constituents (the single crystals). The mechanical behavior of the elastomer substrate follows the neo-Hookean hyperelastic model. The adherence between the two layers is a… Show more

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Cited by 1 publication
(3 citation statements)
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“…Subsequently, the more effective substratesupported structure is presented at YD-NBA and it is validated with the flow theory in Bettaieb and Abed-Meraim. 47 in LHS and in the equi-biaxial with the deformation theory of bifurcation analysis by Ben Bettaieb and Abed-Meraim. 53 v = 0:066: Therefore, as shown in Figure 6, by YD-NBA, the effect of reinforcements on the vertex localization will be more than the Hill-NBA.…”
Section: Resultsmentioning
confidence: 99%
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“…Subsequently, the more effective substratesupported structure is presented at YD-NBA and it is validated with the flow theory in Bettaieb and Abed-Meraim. 47 in LHS and in the equi-biaxial with the deformation theory of bifurcation analysis by Ben Bettaieb and Abed-Meraim. 53 v = 0:066: Therefore, as shown in Figure 6, by YD-NBA, the effect of reinforcements on the vertex localization will be more than the Hill-NBA.…”
Section: Resultsmentioning
confidence: 99%
“…Subsequently, the more effective substrate-supported structure is presented at YD-NBA and it is validated with the flow theory in Bettaieb and Abed-Meraim. 47 in LHS and in the equi-biaxial with the deformation theory of bifurcation analysis by Ben Bettaieb and Abed-Meraim. 53…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation