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Viscoplastic analysis of an experimental cylindrical thrust chamber liner
38
Citations
7
References
1992
Year
EngineeringFluid MechanicsMechanical EngineeringGas-liquid FlowMechanicsStressstrain AnalysisLoading CycleViscoplastic AnalysisMechanical BehaviorMechanical ModelingSolid MechanicsPropulsionThrust ChamberViscoplastic FluidDynamic Constitutive BehaviorAerospace EngineeringExtended Loading CycleConstitutive ModelingStructural MechanicsMechanics Of Materials
A viscoplastic stress-strain analysis of an experimental cylindrical thrust chamber is presented. A viscoelastic constitutive model incorporating a single internal state variable that represents kinematic hardening was employed to investigate whether such a viscoplastic model could predict the experimentally observed behavior of the thrust chamber. Two types of loading cycles were considered: a short cycle of 3.5 sec. duration that corresponded to the experiments, and an extended loading cycle of 485.1 sec. duration that is typical of the Space Shuttle Main Engine (SSME) operating cycle. The analysis qualitatively replicated the deformation behavior of the component as observed in experiments designed to simulate SSME operating conditions. The analysis also showed that the mode and location in the component may depend on the loading cycle. The results indicate that using viscoplastic models for structural analysis can lead to a more realistic life assessment of thrust chambers.
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