Two analytical approaches are developed to determine the overall size-dependent response of composites embedding general interfaces. The first approach extends the composite sphere assemblage (CSA) approach and the generalized self-consistent method (GSCM) to account for the general interface model resulting in new bounds and estimates on the macroscopic properties of particulate composites. In the second approach, we develop an interface-enhanced Mori–Tanaka method that not only determines the effective properties but also provides the state of the stress and strain in each phase of the medium. The general interface model captures both elastic and cohesive interface models. Computational analysis is carried out using the finite element met...
The fundamental framework of micromechanical procedure is generalized to take into account the surfa...
AbstractThis paper proposes a procedure to deal with n-layered inclusion based composites with imper...
AbstractThis paper is devoted to the introduction of packing and size effects in micromechanical pre...
Two analytical approaches are developed to determine the overall size-dependent response of composit...
International audienceTwo analytical approaches are developed to determine the overall size-dependen...
International audienceThis manuscript provides novel bounds and estimates, for the first time, on si...
This manuscript provides novel bounds and estimates, for the first time, on size-dependent propertie...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
Computational homogenisation is a powerful strategy to predict the effective behaviour of heterogene...
Abstract Interphase regions that form in heterogeneous materials through various underlying mechanis...
Classical micromechanical methods for calculating the effective moduli of a heterogeneous material a...
The objective of this contribution is to establish a micro-to-macro transition framework to study th...
A well-established methodology to capture interphases in heterogeneous materials is to replace them ...
The fundamental framework of micromechanical procedure is generalized to take into account the surfa...
AbstractThis paper proposes a procedure to deal with n-layered inclusion based composites with imper...
AbstractThis paper is devoted to the introduction of packing and size effects in micromechanical pre...
Two analytical approaches are developed to determine the overall size-dependent response of composit...
International audienceTwo analytical approaches are developed to determine the overall size-dependen...
International audienceThis manuscript provides novel bounds and estimates, for the first time, on si...
This manuscript provides novel bounds and estimates, for the first time, on size-dependent propertie...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
The objective of this contribution is to explain the size effect in composites due to the interfacia...
Computational homogenisation is a powerful strategy to predict the effective behaviour of heterogene...
Abstract Interphase regions that form in heterogeneous materials through various underlying mechanis...
Classical micromechanical methods for calculating the effective moduli of a heterogeneous material a...
The objective of this contribution is to establish a micro-to-macro transition framework to study th...
A well-established methodology to capture interphases in heterogeneous materials is to replace them ...
The fundamental framework of micromechanical procedure is generalized to take into account the surfa...
AbstractThis paper proposes a procedure to deal with n-layered inclusion based composites with imper...
AbstractThis paper is devoted to the introduction of packing and size effects in micromechanical pre...