Steel Heat Treatment: Metallurgy and TechnologiesGeorge E. Totten CRC Press, 28.09.2006 г. - 848 страници One of two self-contained volumes belonging to the newly revised Steel Heat Treatment Handbook, Second Edition, this book examines the behavior and processes involved in modern steel heat treatment applications. Steel Heat Treatment: Metallurgy and Technologies presents the principles that form the basis of heat treatment processes while incorporating detailed descriptions of advances emerging since the 1997 publication of the first edition. Revised, updated, and expanded, this book ensures up-to-date and thorough discussions of how specific heat treatment processes and different alloy elements affect the structure and the classification and mechanisms of steel transformation, distortion of properties of steel alloys. The book includes entirely new chapters on heat-treated components, and the treatment of tool steels, stainless steels, and powder metallurgy steel components. Steel Heat Treatment: Metallurgy and Technologies provides a focused resource for everyday use by advanced students and practitioners in metallurgy, process design, heat treatment, and mechanical and materials engineering. |
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AISI alloy steels alloying elements annealing ASM International atoms austenite grain austenitizing temperature bainite calculated carbides carbon content carbon steels carburizing CCT diagram cementite chromium components compound layer cooling curves cooling rate core corrosion cross section cylinder decarburization decrease deformation density depends diameter diffusion distortion effect eutectoid ferrite forgings formation formed furnace grain boundaries hardening and tempering hardness values Härterei Techn heat transfer coefficient Heat Treat increase iron isothermal Jominy Jominy distance lattice low-alloy steels lower martensite transformation Materials Park Medium metal Metallurgy and Technologies method microstructure molybdenum nitriding nitriding process Nitrocarburizing nitrogen nucleation oxide pearlite phase plasma plates Powder precipitation produced quenchant quenched end recrystallization residual stresses retained austenite shown in Figure sintering specimen stainless steels steel grade Steel Heat Treatment steels containing structure surface tempering temperature tensile thermal tool steels wetting workpiece yield strength