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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.
The morphologies, sizes, compositions and volume fractions of dendritic phases in in situ Ti-based metallic glass matrix composites (MGMCs) containing beryllium (Be) with the nominal composition of Ti47Zr19Cu5V12Be17 (mole fraction, %) were investigated using XRD, SEM, EBSD, TEM, EDS and three-dimensional reconstruction method.
The nominal composition of TiO2/terpineol/ethylcellulose/lauric acid was 1/6/0.3/0.1.
The monophase Ca-Eu-α-sialon was obtained with the nominal composition of Eu0.048Ca0.702Si7.75Al2.25O0.75N15.25.
The best compromise of properties occurs furthest from stoichiometry in the ternary phase field at the nominal composition of Nb19Ti19Cr62.
Alloys with nominal composition of NiW and even NiW2 have been formed for the first time by electroplating.
Estimation of m,n values from the lattice constant and EDS results showed a small deviation from the nominal composition of designed α-sialon.
Materials with a nominal composition of SrCo0.6(Fe0.4−xSnx)O3−δ (x = 0 0.15) are designed, and the solubility of Sn in SrCoO3−δ can reach x = 0.1.
Alloys with nominal composition of V-50Ti and V-40Ti-20Cr V-40Ti-20Cr V-40Ti-20Crughavecuum arc melting and detailed microstructural and microchemical studies have been carried out.
A maximum power factor of 2.35 × 10−3 W m−1 K−2 was obtained at 312 K in the sample with a nominal composition of Bi2Te3.30.
Experimental observations revealed that such recrystallization is achieved when the nominal composition of the films is close to a 1 1 2 stoichiometry.
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