Finite element (FE) analysis was performed on 3-point and 4-point bending test configurations of ninety degree oriented glass-epoxy and graphite-epoxy composite beams to identify deviations from beam theory predictions. Both linear and geometric non-linear analyses were performed using the ABAQUS finite element code. The 3-point and 4-point bending specimens were first modeled with two-dimensional elements. Three-dimensional finite element models were then performed for selected 4-point bending configurations to study the stress distribution across the width of the specimens and compare the results to the stresses computed from two-dimensional plane strain and plane stress analyses and the stresses from beam theory. Stresses for all configurations were analyzed at load levels corresponding to the measured transverse tensile strength of the material.OBrien, T. Kevin and Krueger, RonaldLangley Research CenterFINITE ELEMENT METHOD; GLASS FIBER REINFORCED PLASTICS; GRAPHITE-EPOXY COMPOSITES; STRESS DISTRIBUTION; PLANE STRESS; STRESS ANALYSIS; TENSILE STRENGTH; CRACKING (FRACTURING); THREE DIMENSIONAL MODELS; TWO DIMENSIONAL MODELS; BENDING
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