Characterization of Minerals, Metals, and Materials 2022 (The Minerals, Metals & Materials Series) (1st ed. 2022. 2022. XXII, 488 S. XXII, 488 p. 261 illus., 208 illus. i)

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English

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The collection focuses on the advancements of characterization of minerals, metals, and materials and the applications of characterization results on the processing of these materials. Advanced characterization methods, techniques, and new instruments are emphasized. Areas of interest include, but are not limited to: • Novel methods and techniques for characterizing materials across a spectrum of systems and processes. • Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials. • Characterization of structural, morphological, and topographical natures of materials at micro- and nano- scales. • Characterization of extraction and processing including process development and analysis. • Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM,FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques. • 2D and 3D modelling for materials characterization.

The collection focuses on the advancements of characterization of minerals, metals, and materials and the applications of characterization results on the processing of these materials. Advanced characterization methods, techniques, and new instruments are emphasized. Areas of interest include, but are not limited to:

- Novel methods and techniques for characterizing materials across a spectrum of systems and processes.

- Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials.

- Characterization of structural, morphological, and topographical natures of materials at micro- and nano- scales.

- Characterization of extraction and processing including process development and analysis.

- Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM,FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques.

- 2D and 3D modelling for materials characterization.

Challenges Concerning the Characterization of Cementite in Low Carbon Steel using Electron Backscatter Diffraction.- Strength and failure characterization of the Gibeon (IVA) iron meteorite.- Effect of Equal Channel Angular Pressing and Targeted Heat Treatment on Aluminum AA7075 Sheet Metal.- Application of flue gas desulfurization waste for the production of geopolymer tiles.- Lowering the Presence of Heavy Metals in Textured Coat using Recycled Post Consumer Glass.- Microstructural Characterisation of AA5083 in AA5083/SiC Co-Continuous Ceramic Composites (C4) Fabricated by Gravity and Gas Pressure Infiltration.- Study on the degradation behavior of organic humic acid from the wastewater by refractory high-titanium slag after metallurgical transformation.

Mingming Zhang, Wood Mackenzie; Jian Li, CanmetMATERIALS; Bowen Li, Michigan Technological University; Sergio N. Monteiro, Instituto Militar de Engenharia; Shadia Ikhmayies, Al Isra University; Yunus Eren Kalay, Middle East Technical University; Jiann-Yang Hwang, Michigan Technological University; Juan P. Escobedo-Diaz, University of New South Wales; John S. Carpenter, Los Alamos National Laboratory; Andrew D. Brown, DEVCOM U.S. Army Research Laboratory; Rajiv Soman, Eurofins EAG Materials Science LLC

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