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Titlebook: Mechanical Behavior of Materials; Fundamentals, Analys Zainul Huda Textbook 2022 The Editor(s) (if applicable) and The Author(s), under exc

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Introduction adequate knowledge of materials in engineering, including the influence of microstructure on mechanical properties and behavior. It is also important to study the response of a material to applied load through stress-strain relationships. The main topics in this chapter cover deformation behaviors
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Strengthening Mechanisms in Metals/Alloysations. These challenging technological environments demand controlled strengthening of alloys by using appropriate strengthening mechanisms. This chapter first introduces the significance of dislocation motions in strengthening of a metal/alloy. Then various strengthening mechanisms have been discu
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Materials in Engineering into four basic categories: (1) metals/alloys, (2) polymers/plastics, (3) glasses and ceramics, and (4) composites. Both ferrous metals and non-ferrous metals are discussed with reference to their characteristics, mechanical behaviors, and applications. Cast irons and their types are explained both
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Elasticity and Viscoelasticityships between ., ., and .. A distinction between isotropic and anisotropic materials is made. The elastic properties . and . are explained and mathematically modeled. The Hook’s law is generalized to take into consideration stresses and strains in three dimensions. A workable expression for the bulk
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Complex/Principal Stresses and Strainshnological significance is emphasized. Then the state of plane stress (both in 2D and 3D) is introduced with reference to principal stresses. The direct and shear stresses have been analyzed so as to derive mathematical models to calculate the stresses. Additionally, mathematical relationships for t
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Plasticity and Superplasticity – by discussing stress-strain curve for mild steel. The main topics include: plastic instability and the mathematical analysis of the condition of plastic instability; the .; bending of beam, its applications, and engineering analysis; the application of plasticity to sheet metal forming; hydrostatic
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