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Carbon fibres (CFs) can work as lightweight structural electrodes in CF-reinforced composites able to store energy as lithium (Li -ion batteries.
The cooperative effect of nylon and PVP fibers allowed to obtain composites able to degrade more quickly than the matrix or than the samples containing either of the two fibers, while retaining a remarkable dimensional stability even after 20% of the total mass had degraded.
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To this end, in the present work we propose a negative electrode based on a SiO2/C interconnected composite able to charge/discharge at high current regimes while maintaining a very good capacity.
These composites are able to combine high strength and toughness.
It is found that the composites were able to repeatedly heal macroscopic cracks.
Hybrid composites are able to minimize aforementioned problems with a low cost solution to meet the requirements.
The adsorption desorption studies indicated that the magnetic Fe3O4/Au composites were able to conveniently regenerated and reused.
This type of glasses and glass matrix composites are able to achieve high strength together with pronounced work-hardening.
Analysis of the database shows that FRCM composites are able to increase the shear strength of RC beams.
The results show that C/C composites were able to be densified by EC-CVI rapidly and efficiently.
This work proves that magnetoelectric Terfenol-D/poly vinylidene fluoride-co-Terfenol-D/poly vinylidenetes are able to provide mechanical and electrical stimuli to MC3T3-E1 pre-osteoblast cells and that those stimuli can be remotely triggered by an applied magnetic field.
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