Laia Farràs Tasias
- ORCID iD
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0000-0003-2578-0333
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Induced viscous fingering as a potential mechanism for creating ultra-tough interfaces in multimaterial 3D printing
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- Journal Article
- A2
- open access
Printing orientation and interfacial mechanical design enable superior bonding in multimaterial additive manufacturing
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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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3D-FLOR : an innovative framework for tuning lattice structures via rheological optimization
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Optimizing printing and mechanical properties through rheology
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- Journal Article
- A1
- open access
Optimising 3D-printed flexible lattice structures for morphing applications by linking rheology to mechanical behaviour
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Enhancing interfacial toughness of 3D printed bi-material polymers via mechanical interlocking and engineered fiber bridging
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A rheology-based strategy for designing 3D printing processes
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Investigating local nonlinearities in 3D printed thermoplastic lattice structures : the role of thermomechanical characterization of polymers
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- Conference Paper
- C1
- open access
Enhancing interfacial toughness of 3D printed bi-material thermoplastic polymers through tailored fiber bridging-like composite designs