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The rapid technological developments during the later half of the 20th century have demanded materials that are stronger, capable of use at much higher temperatures, more corrosion-resistant, and much less expensive than those currently used. These demands become even more significant on the threshold of the new century and the millennium. Significant improvements in properties can only be achieved by processing the materials under far-from-equilibrium (or non-equilibrium) conditions. Several new processing technologies have been developed during the past few decades including, rapid solidifi
Metals --- -Metals --- -Nonequilibrium thermodynamics --- Phase rule and equilibrium --- Chemistry, Physical and theoretical --- Critical phenomena (Physics) --- Equilibrium --- Chemical equilibrium --- Chemical systems --- Critical point --- Irreversible thermodynamics --- Non-equilibrium thermodynamics --- Thermodynamics of the steady state --- Irreversible processes --- Thermodynamics --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Rapid solidification processing --- Thermomechanical treatment --- Nonequilibrium thermodynamics. --- Phase rule and equilibrium. --- Rapid solidification processing. --- Thermomechanical treatment. --- Nonequilibrium thermodynamics --- Thermomechanical processing of metals --- Thermomechanical strengthening of metals --- Thermomechanical treatment of metals --- Strain hardening --- Rapid quenching processing of metals --- Rapid solidification processing of metals --- Founding --- Liquid metals --- Solidification --- Heat treatment --- Quenching
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The rapid technological developments during the later half of the 20th century have demanded materials that are stronger, capable of use at much higher temperatures, more corrosion-resistant, and much less expensive than those currently used. These demands become even more significant on the threshold of the new century and the millennium. Significant improvements in properties can only be achieved by processing the materials under far-from-equilibrium (or non-equilibrium) conditions. Several new processing technologies have been developed during the past few decades including, rapid solidific.
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Materials --- Materials --- Materials --- Experiments --- Mechanical properties --- Research --- Methodology --- Testing --- Technique
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In this, the only book available to combine both theoretical and practical aspects of x-ray diffraction, the authors emphasize a "hands on" approach through experiments and examples based on actual laboratory data. Part I presents the basics of x-ray diffraction and explains its use in obtaining structural and chemical information. In Part II, eight experimental modules enable the students to gain an appreciation for what information can be obtained by x-ray diffraction and how to interpret it. Examples from all classes of materials -- metals, ceramics, semiconductors, and polymers -- are included. Diffraction patterns and Bragg angles are provided for students without diffractometers. 192 illustrations.
535.42 --- 548.73 --- Diffraction --- X-ray analysis (Roentgen radiography) of crystals. X-ray investigation of properties. X-ray structure --- X-rays --- Experiments. --- Technique. --- 548.73 X-ray analysis (Roentgen radiography) of crystals. X-ray investigation of properties. X-ray structure --- 535.42 Diffraction --- Rays, Roentgen --- Roentgen rays --- Roentgenograms --- Electromagnetic waves --- Ionizing radiation --- Radiation --- Cathode rays --- Radiography --- Vacuum-tubes --- Diffraction&delete& --- Experiments --- Technique --- Materials science. --- Metals. --- Earth sciences. --- Characterization and Evaluation of Materials. --- Metallic Materials. --- Earth Sciences, general. --- Geosciences --- Environmental sciences --- Physical sciences --- Metallic elements --- Chemical elements --- Ores --- Metallurgy --- Material science
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