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ZrB2SiCC ceramic and GH99 superalloy were brazed with the composite filler.
A kind of novel composite filler was designed using FeCoNiCrCu high entropy alloy and pure Ti foil.
The results show that the high entropy mixing effect of the Ti/FeCoNiCrCu composite filler keeps the activity of Ti and Cr.
To give the required overall dimensions to fit in the testing facility, preformed and machined glass resin composite filler pieces are assembled with the winding and is finally vacuum pressure impregnated (VPI) to create a single assembly unit.
A novel composite interlayer with a reinforced network was designed using a SiC ceramic with a network structure and Ti-Ni-Nb composite filler foils, to which the Nb and BN-SiO2 ceramic were successfully brazed under vacuum.
Because of the interest in further improving implant fixation, PEEK biomaterials research has also focused on compatibility of the polymer with bioactive materials, including hydroxyapatite, either as a composite filler or as a surface coating.
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The use of negative thermal expansivity (NTE) particles as composite fillers is relatively new and the particle matrix interface is not well studied.
Non-spherical particles are more favorable as composite fillers from the perspective of improving electrical conductivity of composite [5 7].
Some of the researchers successfully demonstrated the potential application of Ag Cu NA in the field of corrosion resistance [39], solar cells [40], electrochemical sensor, composite fillers [41], micro composite for their enhanced electrical properties and protective coating, etc.
In recent years, many researchers have noted to magnesium microstructures and nanostructures due to their novel properties to distinguish them from bulk materials and diverse applications in fields of propellant, battery, composite fillers, etc. Magnesium has several very promising properties for applications in plasmonics and specially in switchable plasmonic metamaterials [2].
A laser-spinning technique has been used to produce amorphous, dense and flexible glass nanofibers of two different compositions with potential utility as reinforcement materials in composites, fillers in bone defects or scaffolds (3D structures) for tissue engineering.
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