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In this work multilayer composites of Al2O3/LaPO4 were prepared using tape casting technique.
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This study showed that the DFT/B3LYP-D∗ approach represents a powerful route to investigate other layered structures of multilayer composites for tailoring of specific mechanical properties.
IR and cyclic voltammetry (CV) demonstrated the uniform formation of a polyethyleneimine/MWNT multilayer composite on the TP surface.
A procedure to predict the fracture toughness of a ceramic multilayer composite made of different phases is presented.
The performance of multilayer composites is compared to polymer blends and discussion of the most suitable configuration for different scenarios is presented.
A series of experiments were designed and conducted to investigate the influence of geometrical factors on mechanical properties of multilayer composites.
The maximum conductivity value of 104 S m-1 and the shielding effectiveness (SE) of 90 dB of the prepared multilayer composites have been detected over the frequency band of 8 to 18 GHz.
The TZ-3Y20A/Mo multilayer composites were mostly composed of Al2O3, ZrO2 and Mo phases.
The results highlight the benefit from structural design of multilayer composites towards high-performance pulsed power systems.
Appropriate settling parameters were chosen and green bodies of multilayer composites were obtained by settling TZ-3Y20A powder and Mo powder in turn according to the designed individual layer thickness.
In addition, multilayer composite coating of AlMgB14 and TiB2 outperformed single layer boride coating in minimizing the tool wear.
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