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The special layered structure and composition design brought a residual compressive stress in the layered composites and correspondingly restricted the tetragonal-monoclinic (t m) phase transform of ZrO2 after sintering.
It suggests that the investigation will lead practically to actual applications of the findings in the composition design and the microstructural design of the particulate reinforced ceramic composites.
A suitable interlayer composition design route is proposed.
A suite of composition design features are conceptualized and implemented.
Composition design and morphology control can lead to high performance electrode materials for energy storage devices.
The results may provide significant insight into the composition design of biomedical β-type titanium alloys.
The microstructure, phase transition and the hardness were investigated for the composition design.
Optimised mechanical properties can be realized through both alloy composition design and well-controlled solidification processing.
The representations underlying the composition design features are analytic in nature and therefore concise.
The hydrogen generation rate and amount could be regulated by changing composition design, hydrolytic conditions, etc.
Via this specific example, detailed steps towards composition design of BMGs are established.
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