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Materials at high temperatures --- Testing --- Congresses --- Materials at low temperatures. --- Low temperature materials --- Low temperature engineering --- Materials --- Strength of materials
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High Temperature Mechanical Behavior of Ceramic Composites provides an up-to-date comprehensive coverage of the mechanical behavior of ceramic matrix composites at elevated temperatures. Topics include both short-term behavior (strength, fracture toughness and R-curve behavior) and long-term behavior (creep, creep-fatigue, delayed failure and lifetime). Emphasis is on a review of fundamentals and on the mechanics and mechanisms underlying properties.This is the first time that complete information of elevated temperature behavior of ceramic composites has ever been compacted together
Ceramic-matrix composites --- Materials at high temperatures. --- Mechanical properties. --- High temperatures --- Materials --- Strength of materials --- Ceramic materials --- Composite materials
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Metric Units in Engineering provides guidance for practicing engineers, students, and educators who are adopting and using the International System of Units in their engineering work. Wandmacher and Johnson examine how to use SI units to solve standard engineering problems. Chapters reflect a combination of views on engineering practice in the United States, the United Kingdom, and other countries. This revised edition of a classic work includes a bibliography of the resources on the metric system and a new appendix on the history and progress of metrication since the 1960 adoption of SI units by the General Conference on Weights and Measures. Numerous worked examples on dynamics, strength of materials, fluid mechanisms, thermodynamics, electricity, and magnetism, among other topics, are provided throughout the text. Metric Units in Engineering is an essential guide for understanding the implications of metric conversion in the everyday work of practicing engineers. It is also an excellent instructional book, ideal for independent study or classroom use.
Engineering mathematics. --- Metric system. --- Metric systems --- Systems engineering --- Strength of materials --- Fluid dynamics --- Fluid mechanics --- Thermodynamics --- Electric power --- Magnetic fields --- United States --- United Kingdom --- Europe
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Welded joints --- Residual stresses. --- Fasteners. --- Fatigue. --- Testing. --- Joints (Engineering) --- Fastenings --- Deformations (Mechanics) --- Metals --- Stored energy of cold work --- Strains and stresses --- Strength of materials --- Cooling stresses --- Mechanical prestressing --- Welding stresses --- Welding --- Fatigue --- Heat treatment --- Residual stresses --- Testing
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Science --- Strength of materials --- Mechanics --- Mathematical physics --- Dynamics --- Sciences --- Résistance des matériaux --- Mécanique --- Physique mathématique --- Dynamique --- Philosophy --- Early works to 1800 --- Philosophie --- Ouvrages avant 1800 --- 094.4 GALILEI, GALILEO --- Résistance des matériaux --- Mécanique --- Physique mathématique --- Early works to 1800.
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Fracture mechanics is an interdisciplinary subject that predicts the conditions under which materials fail due to crack growth. It spans several fields of interest including: mechanical, civil, and materials engineering, applied mathematics and physics. This book provides detailed coverage of the subject not commonly found in other texts.Analytical Fracture Mechanics contains the first analytical continuation of both stress and displacement across a finite-dimensional, elastic-plastic boundary of a mode I crack problem. The book provides a transition model of crack tip plasticitytha
Fracture mechanics. --- Fracture mechanics. Mechanics, Analytic. --- Mechanics, Analytic. --- Fracture mechanics --- Mechanics, Analytic --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Analytical mechanics --- Kinetics --- Failure of solids --- Fracture of materials --- Fracture of solids --- Materials --- Mechanics, Fracture --- Solids --- Fracture --- Deformations (Mechanics) --- Strength of materials --- Brittleness --- Penetration mechanics --- Structural failures --- Fatigue
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Rock mechanics. --- Brittleness. --- Fracture mechanics. --- Brittleness --- Fracture mechanics --- Rock mechanics --- #KVIV:BB --- Geotechnical engineering --- Mechanics --- Failure of solids --- Fracture of materials --- Fracture of solids --- Materials --- Mechanics, Fracture --- Solids --- Deformations (Mechanics) --- Strength of materials --- Penetration mechanics --- Structural failures --- Plasticity --- Fracture --- Fatigue --- Testing
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Engineering services marketing. --- Fracture mechanics. --- High technology industries --- High technology --- Service industries --- Marketing. --- 539.42 --- Engineering services marketing --- -Service industries --- -539.42 --- Design services --- Breakage. Structural fracture. Tensile strength. Breaking strength --- 539.42 Breakage. Structural fracture. Tensile strength. Breaking strength --- Sales promotion --- Industries --- Marketing --- HANDBOOKS --- FRACTURE MECHANICS --- Monograph --- Failure of solids --- Fracture of materials --- Fracture of solids --- Materials --- Mechanics, Fracture --- Solids --- Deformations (Mechanics) --- Strength of materials --- Brittleness --- Penetration mechanics --- Structural failures --- Fracture --- Fatigue --- Enseignement --- Teaching --- Rupture, Mécanique de la --- High technology - Marketing. --- High technology industries - Marketing. --- Service industries - Marketing. --- -Marketing --- Application --- Rupture, Mécanique de la
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