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한빛아카데미
원서
판매중
책소개
Fundamentals of Machine Component Design presents a thorough introduction to the concepts and methods essential to mechanical engineering design, analysis, and application. In-depth coverage of major topics, including free body diagrams, force flow concepts, failure theories, and fatigue design, are coupled with specific applications to bearings, springs, brakes, clutches, fasteners, and more for a real-world functional body of knowledge. Critical thinking and problem-solving skills are strengthened through a graphical procedural framework, enabling the effective identification of problems and clear presentation of solutions.
Solidly focused on practical applications of fundamental theory, this text helps students develop the ability to conceptualize designs, interpret test results, and facilitate improvement. Clear presentation reinforces central ideas with multiple case studies, in-class exercises, homework problems, computer software data sets, and access to supplemental internet resources, while appendices provide extensive reference material on processing methods, joinability, failure modes, and material properties to aid student comprehension and encourage self-study.
저자소개
Robert C. Juvinall
Professor of Mechanical Engineering
University of Michigan
최근작
Kurt M. Marshek
Professor of Mechanical EngineeringUniversity of Texas at Austin
목차
Part 1 Fundamentals1 Mechanical Engineering Design in Broad Perspective2 Load Analysis3 Materials4 Static Body Stresses5 Elastic Strain, Deflection, and Stability6 Failure Theories, Safety Factors, and Reliability7 Impact8 Fatigue9 Surface DamagePart 2 Applications10 Threaded Fasteners and Power Screws11 Rivets, Welding, and Bonding12 Springs13 Lubrication and Sliding Bearings14 Rolling-Element Bearings15 Spur Gears16 Helical, Bevel, and Worm Gears17 Shafts and Associated Parts18 Clutches and Brakes19 Belts, Chains, and Other Components20 Micro/Nanoscale Machine Elements21 Machine Component Interrelationships?A Case Study22 Design and Fabrication of the Mechanical Systems for a Remote Control Car?A Design Project Case StudyA UnitsB Properties of Sections and SolidsC Material Properties and UsesD Shear, Moment, and Deflection Equations for BeamsE Fits and TolerancesF MIL-HDBK-5J, Department of Defense Handbook: Metallic Materials and Elements for Aerospace Vehicle StructuresG Force Equilibrium: A Vectorial ApproachH Normal DistributionsI S-N FormulaJ Gear Terminology and Contact-Ratio Analysis
Part 1 Fundamentals1 Mechanical Engineering Design in Broad Perspective2 Load Analysis3 Materials4 Static Body Stresses5 Elastic Strain, Deflection, and Stability6 Failure Theories, Safety Factors, and Reliability7 Impact8 Fatigue9 Surface Damage
Part 2 Applications10 Threaded Fasteners and Power Screws11 Rivets, Welding, and Bonding12 Springs13 Lubrication and Sliding Bearings14 Rolling-Element Bearings15 Spur Gears16 Helical, Bevel, and Worm Gears17 Shafts and Associated Parts18 Clutches and Brakes19 Belts, Chains, and Other Components20 Micro/Nanoscale Machine Elements21 Machine Component Interrelationships?A Case Study22 Design and Fabrication of the Mechanical Systems for a Remote Control Car?A Design Project Case Study
A UnitsB Properties of Sections and SolidsC Material Properties and UsesD Shear, Moment, and Deflection Equations for BeamsE Fits and TolerancesF MIL-HDBK-5J, Department of Defense Handbook: Metallic Materials and Elements for Aerospace Vehicle StructuresG Force Equilibrium: A Vectorial ApproachH Normal DistributionsI S-N FormulaJ Gear Terminology and Contact-Ratio Analysis
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