Modeling of Hydrostatic Pressure Effect on Progressive Damage in Particulate Composites
Y. W. Kwon, C. T. Liu
Abstract
Y. W. Kwon, C. T. Liu
Abstract
Abstract Hydrostatic pressure affects the damage growth in a particulate composite. As a result, an analytical model was presented to represent the damage growth in a particulate composite under various hydrostatic pressures. The model was based on a multi-level approach with damage description at the micro-level. A damage theory was presented to describe the material behavior under hydrostatic pressure. The predicted stress-strain curves compared well with the experimental measurements. Furthermore, the initial crack size at a notch tip was studied with and without hydrostatic pressure.
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Abstract Hydrostatic pressure affects the damage growth in a particulate composite. As a result, an analytical model was presented to represent the damage growth in a particulate composite under various hydrostatic pressures. The model was based on a multi-level approach with damage description at the micro-level. A damage theory was presented to describe the material behavior under hydrostatic pressure. The predicted stress-strain curves compared well with the experimental measurements. Furthermore, the initial crack size at a notch tip was studied with and without hydrostatic pressure.
Key concepts: Hydrostatic pressure, Particulates, Hydrostatic equilibrium, Materials science, Composite material, Hydrostatic stress, Composite number, Stress (linguistics)