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A biocompatible bulk metallic glass composite (BMGC) alloy with a nominal composition of Ti56Zr6Cu19.8Pd8.4Sn1.8Nb8 was designed to obtain microstructure consisting of β-Ti dendrites and glassy matrix.
A novel strategy to design bulk metallic glass composite is proposed.
The results demonstrate that ply-overlap joints are capable of approaching the un-notched strength of the glass composite material.
Ti-based bulk metallic glass composite alloys Ti56Zr6Cu19.8Pd8.4Sn1.8Nb8, Ti64Zr4Cu13.2Pd5.6Sn1.2Nb12 and Ti68Cu13.2Pd5.6Sn1.2Nb12 were designed to obtain the microstructure composing of β-Ti dendrites and glassy matrix.
45S5 bioactive glass composite scaffolds reinforced with reduced graphene oxide (rGO) were fabricated for the first time by robocasting (direct-writing) technique.
Furthermore, a cell proliferation study using MG-63 cells demonstrated the good biocompatibility of both types of P 3HB /bioactive glass composite systems.
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The project aimed at designing innovative smart windows with polymer-glass composite glazing and framing.
Size-controlled silver-glass composite powders with nanometer sizes were directly prepared by high-temperature flame spray pyrolysis.
A metallic silver-glass composite (SGC) is considered a promising alternative to ceramic IC materials in SIS-SOFCs.
Three-dimensionally ordered macroporous (3DOM) KTiOPO4-based inverse opal powders have been synthesized by designing a nanocrystals-glass composite.
From these studies the optimum model parameters were chosen for final models of timber-glass composite beams.
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