A differentiable JAX-based topology-optimization framework minimizes accumulated creep deformation under thermo-mechanical loading using Norton's power law with Arrhenius temperature dependence, demonstrated on 2D benchmarks and a 3D compositionally graded turbine blade.
Co-design of geometry and thermal-elastic gradient alloy distribution with temperature-dependent material properties , volume =
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Thermo-Structural Topology Optimization Considering Nonlinear Creep
A differentiable JAX-based topology-optimization framework minimizes accumulated creep deformation under thermo-mechanical loading using Norton's power law with Arrhenius temperature dependence, demonstrated on 2D benchmarks and a 3D compositionally graded turbine blade.