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Design for thermal stresses / Randall F. Barron; Brian R. Barron

By: Contributor(s): Resource type: Ressourcentyp: Buch (Online)Book (Online)Language: English Publisher: Hoboken, N.J : Wiley, c2012Edition: Online-AusgDescription: Online-Ressource (1 online resource (xviii, 510 p.)) : illISBN:
  • 9781283268158
  • 1283268159
  • 9781118094303
Subject(s): Additional physical formats: 0470627697 | 9781118094303 | 9780470627693 | 1283269139 | Erscheint auch als: 9780470627693 Druck-AusgabeDDC classification:
  • 620.11296
  • 620.1/1296 23
  • SCI065000
LOC classification:
  • TA654.8
Online resources: Summary: The tools engineers need for effective thermal stress design Thermal stress concerns arise in many engineering situations, from aerospace structures to nuclear fuel rods to concrete highway slabs on a hot summer day. Having the tools to understand and alleviate these potential stresses is key for engineers in effectively executing a wide range of modern design tasks. Design for Thermal Stresses provides an accessible and balanced resource geared towards real-world applications. Presenting both the analysis and synthesis needed for accurate design, the book emphasizes key principles, techniques, and approaches for solving thermal stress problems. Moving from basic to advanced topics, chapters cover: Bars, beams, and trusses from a "strength of materials" perspective Plates, shells, and thick-walled vessels from a "theory of elasticity" perspective Thermal buckling in columns, beams, plates, and shells Written for students and working engineers, this book features numerous sample problems demonstrating concepts at work. In addition, appendices include important SI units, relevant material properties, and mathematical functions such as Bessel and Kelvin functions, as well as characteristics of matrices and determinants required for designing plates and shells. Suitable as either a working reference or an upper-level academic text, Design for Thermal Stresses gives students and professional engineers the information they need to meet today's thermal stress design challenges.Summary: Intro -- Design for Thermalstresses -- Contents -- Preface -- Nomenclature -- 1 Introduction -- 1.1 Definition of Thermal Stress -- 1.2 Thermal-Mechanical Design -- 1.3 Factor of Safety in Design -- 1.4 Thermal Expansion Coefficient -- 1.5 Young's Modulus -- 1.6 Poisson's Ratio -- 1.7 Other Elastic Moduli -- 1.8 Thermal Diffusivity -- 1.9 Thermal Shock Parameters -- 1.10 Historical Note -- Problems -- References -- 2 Thermal Stresses in Bars -- 2.1 Stress and Strain -- 2.2 Bar between Two Supports -- 2.3 Bars in Parallel -- 2.4 Bars with Partial Removal of Constraints -- 2.5 Nonuniform Temperature Distribution -- 2.6 Historical Note -- Problems -- References -- 3 Thermal Bending -- 3.1 Limits on the Analysis -- 3.2 Stress Relationships -- 3.3 Displacement Relations -- 3.4 General Thermal Bending Relations -- 3.5 Shear Stresses -- 3.6 Beam Bending Examples -- 3.7 Thermal Bowing of Pipes -- 3.8 Historical Note -- Problems -- References -- 4 Thermal Stresses in Trusses and Frames -- 4.1 Elastic Energy Method -- 4.2 Unit-Load Method -- 4.3 Trusses with External Constraints -- 4.4 Trusses with Internal Constraints -- 4.5 The Finite Element Method -- 4.6 Elastic Energy in Bending -- 4.7 Pipe Thermal Expansion Loops -- 4.8 Pipe Bends -- 4.9 Elastic Energy in Torsion -- 4.10 Historical Note -- Problems -- References -- 5.1 Introduction -- 5.2 Strain Relationships -- 5.3 Stress Relationships -- 5.4 Stress-Strain Relations -- 5.5 Temperature Field Equation -- 5.6 Reduction of the Governing Equations -- 5.7 Historical Note -- Problems -- References -- 6 Plane Stress -- 6.1 Introduction -- 6.2 Stress Resultants -- 6.3 Circular Plate with a Hot Spot -- 6.4 Two-Dimensional Problems -- 6.5 Plate with a Circular Hole -- 6.6 Historical Note -- Problems -- References -- 7 Bending Thermal Stresses in Plates -- 7.1 Introduction.PPN: PPN: 809421585Package identifier: Produktsigel: ZDB-26-MYL | ZDB-30-PAD | ZDB-30-PQE
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