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Study of infrared spectroscopy and elastic properties of fine and coarse grained nickel–cadmium ferrites
by
Rangolia, M. K.
, Chhantbar, M. C.
, Modi, K. B.
, Joshi, H. H.
in
Applied sciences
/ Building materials. Ceramics. Glasses
/ Ceramic industries
/ Chemical industry and chemicals
/ Chemical synthesis
/ Condensed matter: structure, mechanical and thermal properties
/ Constants
/ Crystallites
/ Data analysis
/ Density
/ Diffraction patterns
/ Elastic constants
/ Elastic properties
/ Elasticity, elastic constants
/ Electrotechnical and electronic ceramics
/ Exact sciences and technology
/ Ferrites
/ Grain size
/ Heat treating
/ High temperature
/ Infrared analysis
/ Lattice parameters
/ Materials science
/ Mathematical analysis
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Modulus of elasticity
/ Organic chemistry
/ Particle size
/ Pattern analysis
/ Physics
/ Size reduction
/ Spectroscopic analysis
/ Spectrum analysis
/ Technical ceramics
/ X-ray diffraction
/ X-rays
2006
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Study of infrared spectroscopy and elastic properties of fine and coarse grained nickel–cadmium ferrites
by
Rangolia, M. K.
, Chhantbar, M. C.
, Modi, K. B.
, Joshi, H. H.
in
Applied sciences
/ Building materials. Ceramics. Glasses
/ Ceramic industries
/ Chemical industry and chemicals
/ Chemical synthesis
/ Condensed matter: structure, mechanical and thermal properties
/ Constants
/ Crystallites
/ Data analysis
/ Density
/ Diffraction patterns
/ Elastic constants
/ Elastic properties
/ Elasticity, elastic constants
/ Electrotechnical and electronic ceramics
/ Exact sciences and technology
/ Ferrites
/ Grain size
/ Heat treating
/ High temperature
/ Infrared analysis
/ Lattice parameters
/ Materials science
/ Mathematical analysis
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Modulus of elasticity
/ Organic chemistry
/ Particle size
/ Pattern analysis
/ Physics
/ Size reduction
/ Spectroscopic analysis
/ Spectrum analysis
/ Technical ceramics
/ X-ray diffraction
/ X-rays
2006
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Study of infrared spectroscopy and elastic properties of fine and coarse grained nickel–cadmium ferrites
by
Rangolia, M. K.
, Chhantbar, M. C.
, Modi, K. B.
, Joshi, H. H.
in
Applied sciences
/ Building materials. Ceramics. Glasses
/ Ceramic industries
/ Chemical industry and chemicals
/ Chemical synthesis
/ Condensed matter: structure, mechanical and thermal properties
/ Constants
/ Crystallites
/ Data analysis
/ Density
/ Diffraction patterns
/ Elastic constants
/ Elastic properties
/ Elasticity, elastic constants
/ Electrotechnical and electronic ceramics
/ Exact sciences and technology
/ Ferrites
/ Grain size
/ Heat treating
/ High temperature
/ Infrared analysis
/ Lattice parameters
/ Materials science
/ Mathematical analysis
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Modulus of elasticity
/ Organic chemistry
/ Particle size
/ Pattern analysis
/ Physics
/ Size reduction
/ Spectroscopic analysis
/ Spectrum analysis
/ Technical ceramics
/ X-ray diffraction
/ X-rays
2006
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Study of infrared spectroscopy and elastic properties of fine and coarse grained nickel–cadmium ferrites
Journal Article
Study of infrared spectroscopy and elastic properties of fine and coarse grained nickel–cadmium ferrites
2006
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Overview
The elastic properties of CdxNi1−xFe2O4 (x = 0.2, 0.4, 0.6 and 0.8) spinel ferrite system synthesized by wet-chemical technique, have been studied by infra-red spectroscopy and X-ray diffraction pattern analysis before (W) and after high temperature annealing (AW). The average particle size for wet-samples was within the range 4–5 nm, which is much lower than the average particle size found for AW samples (≈85 nm). The force constants for tetrahedral and octahedral sites determined by infrared spectral analysis, lattice constant and X-ray density values by X-ray diffraction pattern analysis; have been used to calculate elastic constants. The elastic moduli for W-samples are found to be larger as compared to AW samples, which are explained on the basis of grain size reduction effect. The average crystallite size calculated from elastic data is in agreement to that determined from X-ray diffraction data analysis.
Publisher
Springer,Springer Nature B.V
Subject
/ Building materials. Ceramics. Glasses
/ Chemical industry and chemicals
/ Condensed matter: structure, mechanical and thermal properties
/ Density
/ Elasticity, elastic constants
/ Electrotechnical and electronic ceramics
/ Exact sciences and technology
/ Ferrites
/ Mechanical and acoustical properties of condensed matter
/ Mechanical properties of solids
/ Physics
/ X-rays
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