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The model integrates the volumetric composition of the composites with their mechanical properties.
The Rs strain curves of the composites with different compositions were well fitted.
Third, the scalable preparation procedures of the composites with homogeneous composition and controlled morphology need to be developed, and liquid process is recommended.
The composites with the ferrite composition x=0.2 are found to show higher reflection loss compared with the composites with other compositions.
Both approaches yield the composites with limited conductivity.
The composites with Ti-coated SiC particles outperformed the composites with uncoated SiC particles in both wear resistance and bending strength tests.
Also, the composites with micro-laminated structure showed significant improvement of strength.
The composites with either SLs or fibers did not show good tribo-potential.
The composites with pristine BFs present evidently increased strength and modulus relative to neat PLA.
The composites with high filler loading are suitable candidates for core of flexible dielectric waveguide and embedded capacitor applications and the composites with ST and CNT are suitable for cladding of flexible dielectric waveguide and also for microwave substrate applications.
Moreover, the microstructure and property evolution mechanisms of the composites with the addition of HA were discussed and analyzed.
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