Jr. Willis, UPPER AND LOWER BOUNDS FOR NONLINEAR COMPOSITE BEHAVIOR, Materials science & engineering. A, Structural materials: properties, microstructure and processing, 175(1-2), 1994, pp. 7-14
Existing theory for bounding the non-linear behaviour of composites is
reviewed and extended. In particular, some new bounds for the overall
creep behaviour of textured polycrystals are presented, for illustrat
ion. A deficiency of the established machinery for bounding non-linear
properties is that it usually generates only one bound, either a lowe
r or an upper bound, that improves on the corresponding ''classical''
bound, and for some composites it may produce no new bound at all. The
ory is at present being developed to rectify this situation: improved
bounds are now in prospect for all composites to which the ''classical
'' bounds may be applied. It involves some relatively sophisticated an
alysis more appropriate for presentation elsewhere. The essential idea
s are described, however, and a formula which encapsulates the new rea
soning and reproduces automatically the already-established non-linear
results is displayed.