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Composites with high HAP content displayed high compressive strength and a fast rate of degradation.
Moreover, infiltrating the scaffolds with tough polymers leads to composites with high crack initiation toughness KIC.
Micromechanics serves as a rational methodology for developing cementitious composites with high tensile ductility combined with special attributes or functions.
The investigated processing methods and materials are cost effective and demonstrate to be able to produce composites with high homogeneity.
In the present work, we investigate polymer/matrix composites with high dielectric constants using multiwalled carbon nanotubes [MWNTs] as fillers.
Enzyme/metal-organic framework composites with high stability in protein denaturing solvents were reported in this study.
It was found that the composites with high content of WF had higher degradation rate.
Modified lignin was incorporated into vegetable oil-based polyurethanes to produce composites with high bio-content.
The problem under discussion is developing composites with high microwave permeability that are needed in many applications.
In the case of composites with high density of shallow trapping states, enhanced photocatalytic activity was observed.
The highest diffusion coefficients and thickness swelling were found in composites with high wood contents and large particles.
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