Ma. Nkansah et al., MODELING THE MECHANICAL-PROPERTIES OF AN AUXETIC MOLECULAR NETWORK, Modelling and simulation in materials science and engineering, 2(3), 1994, pp. 337-352
A novel molecular network structure that has the unusual property of a
negative Poisson's ratio has been modelled. This network is a combina
tion of acetylene bonds and benzene rings that can be designed to have
a range of different elastic constants and anisotropy. Molecular mode
lling techniques have been used to predict the elastic constants. The
Young's moduli range between 20 and 117 GPa and Poisson's ratios betwe
en - 0.94 and 1.4 are predicted, depending on the exact details of the
network geometry, These values are within die limits for an orthotrop
ic elastic material. Alternative analytical and finite-element models
have also been used to try to simplify the calculations needed to pred
ict the properties of the network. It is shown that considerable reduc
tions in computational complexity, without an undue loss of accuracy,
can be achieved. This method represents a new approach that is of use
where complex network structures are built up from relatively simple,
predictable sub-units.