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Advanced Mechanics of Materials

By: Material type: TextSeries: Publication details: [S.l.] : WSE, 2009.Description: 1 v. (unpaged)ISBN:
  • 812652216X (paperback)
  • 9788126522163 (paperback)
Subject(s): Online resources: Summary: The sixth edition is updated and reorganized, each of the topics is thoroughly developed from fundamental principles. The assumptions, applicability and limitations of the methods are clearly discussed. Includes such advanced subjects as plasticity, creep, fracture, mechanics, flat plates, high cycle fatigue, contact stresses and finite elements. Due to the widespread use of the metric system, si units are used throughout. � introduction. � theories of stress and strain. � linear stress-strain-temperature relations. � inelastic material behavior. � applications of energy methods. � torsion. � bending of straight beams. � shear center for thin-wall beam cross sections. � curved beams. � beams of elastic foundations. � the thick-wall cylinder. � elastic and inelastic stability of columns. � flat plates. � stress concentrations. � fracture mechanics. � fatigue: progressive fracture. � contact stresses. � creep: time-dependent deformation.
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Cover image Item type Current library Home library Collection Shelving location Call number Materials specified Vol info URL Copy number Status Notes Date due Barcode Item holds Item hold queue priority Course reserves
Books Central Library, QUEST, Nawabshah 620.112BOR (Browse shelf(Opens below)) Available 53298
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The sixth edition is updated and reorganized, each of the topics is thoroughly developed from fundamental principles. The assumptions, applicability and limitations of the methods are clearly discussed. Includes such advanced subjects as plasticity, creep, fracture, mechanics, flat plates, high cycle fatigue, contact stresses and finite elements. Due to the widespread use of the metric system, si units are used throughout. � introduction. � theories of stress and strain. � linear stress-strain-temperature relations. � inelastic material behavior. � applications of energy methods. � torsion. � bending of straight beams. � shear center for thin-wall beam cross sections. � curved beams. � beams of elastic foundations. � the thick-wall cylinder. � elastic and inelastic stability of columns. � flat plates. � stress concentrations. � fracture mechanics. � fatigue: progressive fracture. � contact stresses. � creep: time-dependent deformation.

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