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Numerical Prediction of the Strain State of Thermoset Matrix/Mineral Filler Composite Plates
Authors:V. Valeva  J. Hristova  J. Ivanova
Affiliation:(1) Institute of Mechanics, Bulgarian Academy of Sciences, Acad. G. Bonchev St., Bl. 4, 1113 Sofia, Bulgaria;(2) Central Laboratory of Physicochemical Mechanics, Bulgarian Academy of Sciences, Acad. G. Bonchev St., Bl. 1, 1113 Sofia, Bulgaria
Abstract:The numerical prediction of the fields of inelastic strains (the linear invariant of the tensor of inelastic strains) in thermoset polyester/marble filler composite plates is discussed. A uniformly distributed load is applied to the plates, which lie on a steel base. The strain fields are predicted by means of the boundary element method by using creep test data for the composites and the polyester matrix itself. Identical creep tests were performed for two ages of the materials (1 month and 13 years), which allowed evaluating the aging effect. The study is carried out in two stages. At the first stage, the application of the generalized Maxwell-Gurevich equation to the thermoset matrix/mineral filler composite is demonstrated. The model parameters determined from the experimental creep data is used for the second stage, where the state of inelastic strains in the plates is predicted by applying the boundary element method. The influence of composite formulation (filler content) and physical aging of the polyester matrix on the state of inelastic strains in the plates is shown.__________Russian translation published in Mekhanika Kompozitnykh Materialov, Vol. 41, No. 2, pp. 145–156, March–April, 2005.
Keywords:polymer composite  polymer composite plate  deformation  creep  boundary element method
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