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Steel --- -669 --- Iron --- Hardenability --- -Congresses --- Metallurgy --- Congresses. --- 669 Metallurgy --- 669 --- Hardenability&delete& --- Congresses --- Acier --- Durcissage
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Metals --- Steel --- Acier. --- Acier --- Hardenability. --- Heat treatment. --- Trempabilité --- Traitement thermique.
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Steel alloys --- Metals --- Aciers alliés. --- Trempabilité. --- Hardenability --- Aciers alliés. --- Trempabilité.
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Metals --- Alloys --- Hardenability of metals --- Hardness --- Strengthening mechanisms in solids --- Heat treatment of metals --- Metallurgy --- Metallic alloys --- Metallic composites --- Phase rule and equilibrium --- Amalgamation --- Microalloying --- Quenching of metals --- Cooling --- Quenching. --- Heat treatment. --- Hardenability. --- Quenching --- Heat treatment
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Precipitation hardening --- Age hardening --- Dispersion strengthening --- Hardness --- Metals --- Strengthening mechanisms in solids --- Hardenability --- Heat treatment --- Precipitation hardening.
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A comprehensive overview of the knowledge of surfaces, their treatment and their analyses, this title represents a useful tool for work and postsecondary studies for students, junior researchers, engineers and those in the industrial field.
Surfaces (Technology) --- Materials --- Surface hardening. --- Hardening, Surface --- Metals --- Strengthening mechanisms in solids --- Deterioration of materials --- Weathering --- Surface phenomena --- Friction --- Surfaces (Physics) --- Tribology --- Deterioration. --- Finishing --- Hardenability --- Heat treatment --- Disintegration --- Surfaces
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Mechanical properties of solids --- Monograph --- Alloys --- Physical metallurgy --- Precipitation hardening --- 669 --- 669 Metallurgy --- Metallurgy --- Age hardening --- Dispersion strengthening --- Hardness --- Metals --- Strengthening mechanisms in solids --- Physics --- Metallic alloys --- Metallic composites --- Phase rule and equilibrium --- Amalgamation --- Microalloying --- Hardenability --- Heat treatment --- Alloys. --- Physical metallurgy. --- Precipitation hardening. --- Alliages --- Durcissage --- Haute temperature --- Surface treatments
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This book presents studies on the surface modification of aluminum and titanium alloys by electric explosive alloying and electron-beam processing. It also describes and analyzes the physical mechanism of energy actions of these technologies on physical and mechanical properties and discusses their potential use in industry to improve the characteristics of finished products. The book is intended for specialists in the field of condensed matter physics, metallurgy and heat treatment and materials science, as well as graduate and senior students in relevant fields. .
Structural materials. --- Materials science. --- Chemical engineering. --- Structural Materials. --- Materials Science, general. --- Industrial Chemistry/Chemical Engineering. --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Material science --- Physical sciences --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials --- Aluminum alloys. --- Titanium alloys. --- Surface hardening. --- Hardening, Surface --- Metals --- Strengthening mechanisms in solids --- Alloys --- Light metal alloys --- Finishing --- Hardenability --- Heat treatment
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This book captures the state of the art of the durability of fibre-reinforced strain-hardening cement-based composites (SHCC) and the durability of structures or structural elements manufactured in full or in part with this class of modern construction materials. Highlights include: - Reflection on durability performance of existing applications in patch repair, a water reservoir and highway bridges. - Guidelines for tensile testing towards durability assessment of cracked SHCC. - New crack pattern related ingress rate indices for water and chloride into cracked SHCC. - The influence of low and high temperatures on SHCC durability performance. - The mechanism of crack control reducing ASR and corrosion rate, and results on chloride-induced corrosion of embedded steel reinforcement. - Self-healing of cracks in SHCC. - A conceptual durability design framework for SHCC and R/SHCC structures and members. .
Strain hardening. --- Cement composites --- Cementitious composites --- Hardening, Strain --- Work hardening --- Service life. --- Engineering. --- Mechanics. --- Mechanics, Applied. --- Building materials. --- Materials science. --- Building Materials. --- Theoretical and Applied Mechanics. --- Characterization and Evaluation of Materials. --- Metals --- Plasticity --- Stored energy of cold work --- Strains and stresses --- Strengthening mechanisms in solids --- Cement --- Composite materials --- Cold working --- Hardenability --- Plastic properties --- Building construction. --- Mechanics, applied. --- Surfaces (Physics). --- Physics --- Surface chemistry --- Surfaces (Technology) --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Material science --- Physical sciences --- Classical mechanics --- Newtonian mechanics --- Dynamics --- Quantum theory --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials
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This is the proceedings of the 4th International Conference on Strain-Hardening Cement-Based Composites (SHCC4), that was held at the Technische Universität Dresden, Germany from 18 to 20 September 2017. The conference focused on advanced fiber-reinforced concrete materials such as strain-hardening cement-based composites (SHCC), textile-reinforced concrete (TRC) and high-performance fiber-reinforced cement-based composites (HPFRCC). All these new materials exhibit pseudo-ductile behavior resulting from the formation of multiple, fine cracks when subject to tensile loading. The use of such types of fiber-reinforced concrete could revolutionize the planning, development, dimensioning, structural and architectural design, construction of new and strengthening and repair of existing buildings and structures in many areas of application. The SHCC4 Conference was the follow-up of three previous successful international events in Stellenbosch, South Africa in 2009, Rio de Janeiro, Brazil in 2011, and Dordrecht, The Netherlands in 2014.
Strain hardening. --- Engineering. --- Continuum mechanics. --- Building materials. --- Materials science. --- Building Materials. --- Characterization and Evaluation of Materials. --- Continuum Mechanics and Mechanics of Materials. --- Hardening, Strain --- Work hardening --- Metals --- Plasticity --- Stored energy of cold work --- Strains and stresses --- Strengthening mechanisms in solids --- Cold working --- Hardenability --- Plastic properties --- Building construction. --- Surfaces (Physics). --- Mechanics. --- Mechanics, Applied. --- Solid Mechanics. --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics --- Classical mechanics --- Newtonian mechanics --- Physics --- Dynamics --- Quantum theory --- Surface chemistry --- Surfaces (Technology) --- Material science --- Physical sciences --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Materials
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