Title of article :
Derivation of 3D masonry properties using numerical homogenization technique
Author/Authors :
Chengqing Wu، نويسنده , , Hong Hao، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
Lots of research work has been conducted on homogenization technique, which derives global homogenized
properties of masonry from the behaviour of the constitutive materials (brick and mortar).
Such a technique mainly focused on two-dimensional media in the previous studies with the out-ofplane
properties of masonry material neglected. In this paper, homogenization technique and damage
mechanics theory are used to model a three-dimensional masonry basic cell to numerically derive the
equivalent elastic properties, strength envelope, and failure characteristics of masonry material. The
basic cell is modelled with distinctive consideration of non-linear material properties of mortar and
brick. Various displacement boundaries are applied on the basic cell surfaces in the numerical simulation.
The detailed material properties of mortar and brick are modelled in a finite element program
in the numerical analysis. The stress–strain relations of masonry material under various conditions
are obtained from the simulation. The homogenized elastic properties and failure characteristics of
masonry material are derived from the simulation results. The homogenized 3D model is then utilized
to analyse the response of a masonry panel to airblast loads. The same panel is also analysed with
distinctive material modelling. The efficiency and accuracy of the homogenized model are demonstrated.
The homogenized material properties and failure model can be used to model large-scale
masonry structure response.
Keywords :
Masonry , homogenization technique , basic cell , numerical analysis
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering