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Cast iron, one of the oldest alloys known to the human race is still finding new applications in spite of fierce competition from lighter alloys as well as from the most recently discovered new materials. From its earliest beginnings in around 500BC, cast iron underwent little change until the revolutionary development of spheroidal-graphite (ductile) iron in 1949. This discovery was the spark that ignited a series of unexpected transmogrifications of that ancient alloy.After three centuries cast iron is still, surprisingly, widening its scope of application; thanks to the dedicated research w
Cast-iron --- Metallurgy
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L'élaboration et la mise en œuvre des aciers et des fontes continuent de poser des défis à la métallurgie. Grâce à l'apport technologique de la microscopie électronique, elle peut être explorée dans ses moindres détails. L'interprétation d'une micrographie requiert une large culture métallurgique car souvent de nombreuses transformations ont laissé des traces à différentes échelles d'observation. Ce livre propose une présentation des notions fondamentales nécessaires à cet effet. Sa partie principale est consacrée aux notions fondamentales de métallurgie structurale de façon à fournir toutes les bases de raisonnement. La dernière partie est un guide pour comprendre et discuter l'optimisation des familles d'aciers et de fontes, définir leurs caractéristiques micrographiques en fonction de leurs propriétés d'emploi. Cette nouvelle édition révisée permettra aux spécialistes de l'expertise et du contrôle de s'appuyer sur une compréhension scientifique rigoureuse. Le livre assistera les ingénieurs de l'industrie pour le développement de nouveaux aciers, les enseignants en leur fournissant une large base d'exemples illustrant la métallurgie. Il ouvrira aux étudiants le monde des aciers et des fontes en leur faisant parcourir de façon pédagogique un vaste domaine de connaissances métallurgiques.
Cast-iron -- Metallography. --- Steel -- Metallography. --- Steel --- Cast-iron --- Metallography.
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The Foseco Ferrous Foundryman's Handbook is a practical reference book for all those concerned with making castings in any of the commonly used alloys, by any of the usual moulding methods.International SI units are used throughout, but in almost all cases conversions to the more familiar Metric and Imperial units are given. Wherever possible, Casting Alloy Specifications include equivalent specifications for several countries as well as international specifications. Individual chapters cover the casting of light alloys, copper-based alloys, all types of cast-iron and steel. For each
Cast-iron. --- Founding. --- Founding--Handbooks, manuals, etc. Iron founding--Handbooks, manuals, etc. Cast-iron--Handbooks, manuals, etc. --- Handbooks, manuals, etc. --- Iron founding. --- Founding --- Iron founding --- Cast iron --- Mechanical Engineering --- Engineering & Applied Sciences --- Industrial & Management Engineering --- Casting of iron --- Iron casting --- Casting --- Foundry practice --- Cast-iron --- Metal-work --- Patternmaking --- Engineering --- General and Others
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Cast-iron --- Pig-iron --- Iron --- Decorative cast-ironwork --- Iron founding --- Metallurgy. --- Metallurgy
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669.13 --- 669.14 --- gietijzer --- metalen --- staal --- 669.1 --- ferrometalen --- materialen --- metallurgie --- staalbereiding --- Cast iron --- Alloys of iron with carbon (other than cast iron). Steel in general --- ferrometallurgie. ijzer en staal --- 669.14 Alloys of iron with carbon (other than cast iron). Steel in general --- 669.13 Cast iron --- 669 --- 544 --- fysische chemie --- legeringen --- 669 Metallurgy --- Metallurgy --- mechanisch materiaalonderzoek --- thermodynamica --- metal --- Organic chemistry --- Materials sciences --- organische chemie --- steel [alloy] --- organic chemistry
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This work is the first and remains the only source of information on all blast furnaces built and operated in Alabama, from the first known charcoal furnace of 1815 (Cedar Creek Furnace in Franklin County) to the coke-fired giants built before the onset of the Great Depression. Woodward surveys the iron industry from the early, small local market furnaces through the rise of the iron industry in support of the Confederate war effort, to the giant internationally important industry that developed in the 1890's. The bulk of the book consists of individual illustrated histories
Blast furnaces --- Cast-iron --- Iron industry and trade --- Ferrous metal industries --- Pig-iron --- Metal trade --- Steel industry and trade --- Iron --- Decorative cast-ironwork --- Iron founding --- Smelting furnaces
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This German doctoral thesis challenges the orthodox view that the South-Caucasian culture of the Late Bronze Age played a decisive role in early iron production. The region is characterized, on the contrary, as a traditionally-bound aristocratic society with an impressive bronze industry. It was the underestimated nomad population of South-Eastern Turkey that first made use of the new metal and discovered the art of steel making. Climatic changes forced a southward migration, which not only brought the two cultures into contact, but also into conflict, with each other. A process of successful
Iron age --- Iron founding --- Industries, Primitive --- Civilization --- Primitive technology --- Technology, Primitive --- Archaeology --- Ethnology --- Industrial arts --- Material culture --- Casting of iron --- Iron casting --- Founding --- Cast-iron --- Age du fer --- Fer --- Industries primitives --- Fonderie --- Industries --- Industries, Prehistoric
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The Special Issue of the journal Materials, entitled “Novel Material and Technological Solutions in Foundry Engineering”, contains very interesting papers from the field of material science concerning topics such as cast composites, layered castings, selected aspects of the crystallisation of alloys and the technology of cast and heat treatment of Al alloys and cast iron, the properties of moulding sands, properties of Ni-base superalloys, the technology of repairing castings using welding.
nanocomposite --- nanoparticle --- microstructure --- mechanical --- Babbitt --- alumina --- high-chromium cast iron --- austenitizing conditions --- cooling conditions --- martensite transformation --- hardness --- cylinder heads --- heat treatment --- Brinell hardness --- automotive industry --- superalloy --- HRSTEM --- STEM-EDX --- M23C6 --- nano-borides --- Al-Si-Cu secondary aluminum alloy --- returnable material --- natural and artificial aging --- Cu precipitate --- transmission electron microscopy --- mechanical properties --- crystallization --- thermal and derivative analysis --- bimetallic --- interfacial --- compound casting --- laser surface alloying --- ductile cast iron --- in situ composite --- titanium carbide --- high-tin bronzes --- welding of bell --- bell’s sound --- aluminosilicate --- perlite --- vermiculite --- dehydroxylation --- thermal analysis --- FTIR --- XRD --- XRF --- SEM --- moulding sand --- inorganic binder --- magnetron sputtering --- HIPIMs method --- TiAlN layer --- XRD analysis --- EDS analysis --- surface morphology --- coating thickness --- AFM microscopy --- supergravity crystallization --- gravitational segregation --- texture --- hexagonal alloys --- monotectic transformation --- high-aluminum cast iron --- Al4C3 carbide --- spontaneous disintegration of the casting structure --- casting composite --- silicon carbide --- gray cast iron --- graphite --- pearlite --- reinforcement particles --- metallic matrix --- Inconel 740 --- phase transformation --- investment casting --- solidification
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The demand for cast iron components, with weights ranging from a few kilograms to several tons, has increased significantly in recent years, both for technical and economic reasons. In fact, the lower cost compared to other alloys, and the good castability, which allow one to obtain near-net shape components in as-cast conditions, and the mechanical properties that can be obtained, are just some of the motivations that attract mechanical designers. However, correct design requires a good knowledge of the intrinsic correlation among alloy chemical composition, process parameters, microstructure (with casting defects) and mechanical properties. This book is aimed at collecting excellent and recent research experimental and theoretical works in this filed. Technological (say, wear resistance and weldability) and mechanical properties (say, Young modulus, static and fatigue strength) of different grades of cast irons, ranging from solution strengthened ferritic ductile iron to compacted graphite iron as well as white and nodular cast irons, are correlated with the alloy chemical composition, process parameters and casting dimension.
boundary element method (BEM) --- periodic boundary conditions --- representative volume elements (RVEs) --- effective elastic properties --- homogenization --- lamellar graphite iron --- ultimate tensile strength --- primary austenite --- gravity casting process simulation --- nodular cast iron --- effective Young’s modulus --- computational homogenization --- multiscale numerical methods --- micro-CT --- finite elements --- n/a --- silicon solution strengthened ferritic ductile iron --- thickness --- solidification time --- microstructure --- mechanical properties --- fatigue --- thermal analysis --- weldability --- pre-heating --- spheroidal graphite cast iron --- ductile cast irons --- tensile tests --- plasticity modelling --- compacted graphite iron --- minimum quantity lubrication (MQL) --- drilling machinability --- dry machining --- ductile iron --- cooling rate --- segregation --- cast iron --- high-chromium --- abrasive wear --- niobium alloying --- high chromium cast irons --- eutectic carbide --- carbide volume fraction --- chemical composition --- image analysis --- simulation --- MatCalc --- hardness --- effective Young's modulus
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Very recently, a great deal of attention has been paid by researchers and technologists to trying to eliminate metal materials in the design of products and processes in favor of plastics and composites. After a few years, it is possible to state that metal materials are even more present in our lives and this is especially thanks to their ability to evolve. This Special Issue is focused on the recent evolution of metals and alloys with the scope of presenting the state of the art of solutions where metallic materials have become established, without a doubt, as a successful design solution thanks to their unique properties.
material properties prediction --- experimental data analysis --- ductile/spheroidal cast iron (SGI) --- compact graphite cast iron (CGI) --- Machine Learning (RF) --- pattern recognition --- Random Forest (RF) --- Artificial Neural Network (NN) --- k-nearest neighbours (kNN) --- tribology --- wear --- slurry erosion --- coating --- cermet --- spheroidal graphite cast iron --- pack aluminizing --- microstructure --- high-temperature oxidation resistance --- hybrid composite --- wear performance --- ZA27 alloy --- deflection --- plates --- stiffeners --- numerical simulation --- Constructal Design --- austenitic stainless steel --- tensile properties --- artificial neural network --- MIV analysis --- pallet rack --- moment-rotation curve --- connection --- experiment --- numerical analysis --- thermomechanical processing --- grain growth --- forging --- retained austenite --- bainitic microstructure --- extended finite element method (xFEM) --- polarization curve --- long-term operated metals --- hybrid materials --- fatigue crack growth --- stress intensity factors (SIF) --- linear regression --- micromagnetic testing --- hardness --- case hardening depth --- phase-field modeling --- modified damage model --- large-strain plasticity --- S355J2+N steel --- ductile fracture --- two-stage yield function --- copper coatings --- pulsating current (PC) --- composite hardness models --- creep resistance --- n/a
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