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ceramic matrix. This work should make it possible to generate ceramic matrices whose pore network is adapted to subsequent CVI infiltration, resulting in dense PIP-CVI matrices and, consequently, CMCs with
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scale-up - Physicochemical characterization of the encapsulation matrices - Evaluation of the method on the vaccines' biophysical attributes - Interaction with national and international partners - Data
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demonstration. Specifically: • Composite demonstrators will be manufactured by embedding lignin fibers into bio-based matrices, replacing glass fibers with lighter, more sustainable reinforcements. • Filtration
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DMA and compression tests) and variations in glass transition temperature (via DSC and DMA) during repeated hydrogen cycling. As fatigue and mechanical failure in composites are mainly attributed
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tool to be developed during the project; - Experimentally characterize the performance of the membrane-based reciprocating expander coupled to the linear alternator, using compressed air at various