prof. dr. Francisco A. Gilabert
- ORCID iD
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0000-0001-9020-782X
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Predicting temperature and strain-rate effects in recycled polymer blends using an efficient hybrid FEM-NN constitutive model
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Synergistic effects of microwave curing regimes on early, mid, and long-term strengths and microstructural performance of fly ash-slag based 3D-printed geopolymers
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Full-field experimental characterization and 3D-to-shell model transformation of plastic films for packaging applications
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Robust optimization of formulation ratios for the mechanical, microstructural and printing performance of cost-effective 3D printing geopolymer
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Hybrid FEM-NN modeling of rate-dependent polymer mechanics across glass transition
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Integrating neural networks and constitutive material modeling for recycled polymer blend mechanics
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- Conference Paper
- C3
- open access
Rheology-driven optimization of 3D printing parameters for complex and flexible structures
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Numerical investigation of polymeric hollow extrudate for optimized 3D printing of complex structures
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Effect of microwave heating under varying exposure conditions on rheological properties, interlayer bond and buildability performance of 3D-printed geopolymer
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3D-FLOR : an innovative framework for tuning lattice structures via rheological optimization