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It is found that the composites were able to repeatedly heal macroscopic cracks.
The adsorption desorption studies indicated that the magnetic Fe3O4/Au composites were able to conveniently regenerated and reused.
The results show that C/C composites were able to be densified by EC-CVI rapidly and efficiently.
The experimental results to investigate the influence of impactor geometry suggest that HFRUP composites were able to withstand higher loads when tested with hemispherical impactor and also absorbed more energy than that for 90° and 30° shaped tup geometry.
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These composites are able to combine high strength and toughness.
Hybrid composites are able to minimize aforementioned problems with a low cost solution to meet the requirements.
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.
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.
The composite is able to exploit tunneling conduction mechanism when subjected to a compressive load.
Moreover, the TiN NWA@NiCo2O4 composite is able to maintain stable electrochemical performance at wide temperature range of 25 65 °C.
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CEO of Professional Science Editing for Scientists @ prosciediting.com