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Biochemical engineering. --- Iron ores. --- Ores --- Bio-process engineering --- Bioprocess engineering --- Biochemistry --- Biotechnology --- Chemical engineering
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Machine learning. --- Ores --- Sampling and estimation. --- Sampling of ores --- Assaying --- Mineralogy, Determinative --- Mines and mineral resources --- Prospecting --- Learning, Machine --- Artificial intelligence --- Machine theory --- Analysis
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Mineral Processing: Beneficiation Operations and Process Optimization through Modeling is written for both individuals working in industry as well as students. Processing techniques for the recovery or extraction of a particular mineral are largely dictated by the physical, chemical, and mineral characteristics of that particular mineral. The design of the process flow sheet and the configuration of the circuit can vary from situation to situation, as well, and this book guides readers in formulating those flow sheets for various minerals in order to assist in selecting the right equipment for the process. The book serves as a guide to mineral processing plant engineers for flow sheet development of various minerals, including coal and steel plant waste. It additionally includes alternative flow sheets and process routes for plant design.
Ore-dressing. --- Beneficiation of ores --- Dressing of ores --- Jigging --- Milling (Metallurgy) --- Mineral dressing --- Mineral processing --- Ore treatment --- Smelting --- Benefici de minerals --- Ore-dressing --- Mathematical models.
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Fluid dynamics. --- Metallurgy. --- Oxygen --- Chemical engineering --- Metals --- Ores --- Smelting --- Dynamics --- Fluid mechanics --- Industrial applications
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Quality Analysis of Additively Manufactured Metals: Simulation Approaches, Processes, and Microstructure Properties provides readers with a firm understanding of the failure and fatigue processes of additively manufactured metals. With a focus on computational methods, the book analyzes the process-microstructure-property relationship of these metals and how it affects their quality while also providing numerical, analytical, and experimental data for material design and investigation optimization. It outlines basic additive manufacturing processes for metals, strategies for modeling the microstructural features of metals and how these features differ based on the manufacturing process, and more. Improvement of additively manufactured metals through predictive simulation methods and microdamage and micro-failure in quasi-static and cyclic loading scenarios are covered, as are topology optimization methods and residual stress analysis techniques. The book concludes with a section featuring case studies looking at additively manufactured metals in automotive, biomedical and aerospace settings.
Metals. --- Additive manufacturing. --- AM (Additive manufacturing) --- Manufacturing processes --- Metallic elements --- Chemical elements --- Ores --- Metallurgy
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Gold mines and mining. --- Mines d'or. --- Gold ores. --- Or --- Minerais. --- Virginie (États-Unis)
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Welding of Metallic Materials: Methods, Metallurgy and Performance looks at technical welding methods used based on different principles and sources, such as heat, with or without pressure, electrical, plasma, laser and cold-based welding. The metallurgical aspects associated with the welding processes, specifically those associated with metallic alloys, are explained, alongside the advantages and welding features that are associated with specific welding processes. In addition, the performance of metallic weldments under specific conditions and environments such as offshore, oil industry, radiation and high-temperature services are discussed. This book will a vital resource for researchers, practicing engineers and undergraduate and graduate students in the field of materials science and engineering.
Welding. --- Forging --- Manufacturing processes --- Metal-work --- Sealing (Technology) --- Metallurgy. --- Oxygen --- Chemical engineering --- Metals --- Ores --- Smelting --- Industrial applications
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This book introduces the most inspiring progress in the production of ferronickel from laterite ores, from both theoretical and technological perspectives. Based on a detailed overview of nickel utilization from laterite ores, it provides the advances of four main methods for laterite ore processing, including the solid-sate reduction-magnetic separation process, the rotary kiln reduction-electric arc furnace smelting process, the Krupp-Renn process, and the sintering-blast furnace smelting process. Moreover, for mediating the adverse impacts of the byproducts in ferronickel and subsequent stainless-steel making, it presents pioneering technologies of utilization of ferronickel slag for producing value-added functional materials and recycling of stainless-steel pickling sludge for ferronickel making. This book is expected to offer the audiences a fascinating new insight into ferronickel making and related by-products valorization.
Mining engineering. --- Metals. --- Mining and Exploration. --- Metals and Alloys. --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Engineering, Mining --- Mines and mining --- Mining --- Engineering
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This book introduces the results that the authors have achieved on the study of functional principle of electroslag remelting for production of high-quality clean steel. The dependence of oxygen, sulfur, and non-metallic inclusions on the processing parameters of electroslag remelting is assessed. The fundamentals and technologies of clean steel production by electroslag remelting have been applied in the round to discuss oxygen, sulfur, and non-metallic inclusions evolution and control. A general concluding remark and a perspective for future work are present. The book is likely to be of interest to university teachers, researchers, R&D engineers, and graduate students in material processing and pyrometallurgy who wish to explore innovative technologies that lead to more energy-efficient and environmentally sustainable clean steel production.
Materials. --- Metals. --- Materials Engineering. --- Metals and Alloys. --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Materials
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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: · Extraction and processing of various types of minerals, process-structure-property relationship of metal alloys, glasses, ceramics, polymers, composites, semiconductors, and carbon using as functional and structural materials. · 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.
Materials --- Analysis. --- Testing. --- Testing --- Metals. --- Mineralogy. --- Materials science. --- Materials Characterization Technique. --- Metals and Alloys. --- Materials Science. --- Material science --- Physical sciences --- Physical geology --- Crystallography --- Minerals --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Metals --- Analysis --- Congresses.
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