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دسته بندی: مکانیک ویرایش: 3 نویسندگان: Robert R. Archer, Nathan H. Cook, Stephen H. Crandall, Norman C. Dahl, Thomas J. Lardner, Frank A. McClintock, Ernest Rabinowicz, George S. Reichenbach سری: ISBN (شابک) : 9780071070034, 0071070036 ناشر: Tata McGraw Hill Education Private Limited سال نشر: 2012 تعداد صفحات: 584 زبان: English فرمت فایل : PDF (درصورت درخواست کاربر به PDF، EPUB یا AZW3 تبدیل می شود) حجم فایل: 9 مگابایت
در صورت تبدیل فایل کتاب An Introduction to the Mechanics of Solids (In SI Units) به فرمت های PDF، EPUB، AZW3، MOBI و یا DJVU می توانید به پشتیبان اطلاع دهید تا فایل مورد نظر را تبدیل نمایند.
توجه داشته باشید کتاب مقدمه ای بر مکانیک جامدات (در واحدهای SI) نسخه زبان اصلی می باشد و کتاب ترجمه شده به فارسی نمی باشد. وبسایت اینترنشنال لایبرری ارائه دهنده کتاب های زبان اصلی می باشد و هیچ گونه کتاب ترجمه شده یا نوشته شده به فارسی را ارائه نمی دهد.
Cover Contents 1. Fundamental Principles of Mechanics 1.1 Introduction 1.2 Generalized Procedure 1.3 The Fundamental Principles of Mechanics 1.4 The Concept of Force 1.5 The Moment of a Force 1.6 Conditions for Equilibrium 1.7 Engineering Applications 1.8 Friction 1.9 Examples 1.10 Hooke’s Joint 1.11 Final Remarks Summary Problems 2. Introduction to Mechanics of Deformable Bodies 2.1 Introduction 2.2 Analysis of Deformable Bodies 2.3 Uniaxial Loading and Deformation 2.4 Statically Determinate Situations 2.5 Statically Indeterminate Situations 2.6 Computer Analysis of Trusses 2.7 Elastic Energy; Castigliano’s Theorem Summary Problems Additional Problems 3. Forces and Moments Transmitted by Slender Members 3.1 Introduction 3.2 General Method 3.3 Distributed Loads 3.4 Resultants of Distributed Loads 3.5 Differential Equilibrium Relationships 3.6 Singularity Functions 3.7 Fluid Forces 3.8 Three-dimensional Problems Summary Problems 4. Stress and Strain 4.1 Introduction 4.2 Stress 4.3 Plane Stress 4.4 Equilibrium of a Differential Element in Plane Stress 4.5 Stress Components Associated with Arbitrarily Oriented Faces in Plane Stress 4.6 Mohr’s Circle Representation of Plane Stress 4.7 Mohr’s Circle Representation of a General State of Stress 4.8 Analysis of Deformation 4.9 Defi nition of Strain Components 4.10 Relation between Strain and Displacement in Plane Strain 4.11 Strain Components Associated with Arbitrary Sets of Axes 4.12 Mohr’s Circle Representation of Plane Strain 4.13 Mohr’s Circle Representation of a General State of Strain 4.14 Measurement of Strains 4.15 Indicial Notation Summary Problems 5. Stress-strain Temperature Relations 5.1 Introduction 5.2 The Tensile Test 5.3 Idealizations of Stress-strain Curves 5.4 Elastic Stress-strain Relations 5.5 Thermal Strain 5.6 Complete Equations of Elasticity 5.7 Complete Elastic Solution for a Thick-walled Cylinder 5.8 Strain Energy in an Elastic Body 5.9 Stress Concentration 5.10 Composite Materials and Anisotropic Elasticity 5.11 Criteria for Initial Yielding 5.12 Behavior beyond Initial Yielding in the Tensile Test 5.13 Fracture of Ductile Specimens and Structures 5.14 Fracture of Brittle Specimens and Structures 5.15 Fatigue 5.16 Criteria for Continued Yielding 5.17 Plastic Stress-strain Relations 5.18 Viscoelasticity Summary Problems 6. Torsion 6.1 Introduction 6.2 Geometry of Deformation of a Twisted Circular Shaft 6.3 Stresses Obtained from Stress-strain Relations 6.4 Equilibrium Requirements 6.5 Stress and Deformation in a Twisted Elastic Circular Shaft 6.6 Torsion of Elastic Hollow Circular Shafts 6.7 Stress Analysis in Torsion; Combined Stresses 6.8 Strain Energy due to Torsion 6.9 The Onset of Yielding in Torsion 6.10 Plastic Deformations 6.11 Residual Stresses 6.12 Limit Analysis 6.13 Torsion of Rectangular Shafts 6.14 Torsion of Hollow, Thin-walled Shafts Summary Problems 7. Stresses due to Bending 7.1 Introduction 7.2 Geometry of Deformation of a Symmetrical Beam Subjected to Pure Bending 7.3 Stresses Obtained from Stress-strain Relations 7.4 Equilibrium Requirements 7.5 Stress and Deformation in Symmetrical Elastic Beams Subjected to Pure Bending 7.6 Stresses in Symmetrical Elastic Beams Transmitting both Shear Force and Bending Moment 7.7 Stress Analysis in Bending; Combined Stresses 7.8 Strain Energy due to Bending 7.9 The Onset of Yielding in Bending 7.10 Plastic Deformations 7.11 Bending of Unsymmetrical Beams 7.12 Shear Flow in Thin-walled Open Sections; Shear Center Summary Problems 8. Defl ections due to Bending 8.1 Introduction 8.2 The Moment-curvature Relation 8.3 Integration of the Moment-curvature Relation 8.4 Superposition 8.5 The Load-defl ection Differential Equation 8.6 Energy Methods 8.7 Limit Analysis Summary Problems 9. Stability of Equilibrium: Buckling 9.1 Introduction 9.2 Elastic Stability 9.3 Examples of Instability 9.4 Elastic Stability of Flexible Columns 9.5 Elastic Postbuckling Behavior 9.6 Instability as a Mode of Failure 9.7 Necking of Tension Members 9.8 Plastic Buckling Summary Problems Answers to Selected Problems Index