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Kinematics and Dynamics of Mechanical Systems: Implementation in MATLAB and SimMechanics > 기계설계

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Kinematics and Dynamics of Mechanical Systems: Implementation in MATLAB and SimMechanics
판매가격 49,000원
저자 Russell
도서종류 외국도서
출판사 CRC
발행언어 영어
발행일 2015-11
페이지수 461
ISBN 9781498724937
도서구매안내 온, 오프라인 서점에서 구매 하실 수 있습니다.

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  • 도서 정보

    도서 상세설명

    Introduction to Kinematics
    Kinematics
    Kinematic Chains and Mechanisms
    Mobility, Planar and Spatial Mechanisms
    Types of Mechanism Motion
    Kinematic Synthesis
    Units and Conversions
    Software Resources
    Summary
    References
    Additional Reading

    Mathematical Concepts in Kinematics
    Introduction
    Complex Numbers and Operations
    Vector and Point Representation
    Linear Simultaneous Equations, Matrices, and Matrix Operations
    Intermediate and Total Spatial Motion
    General Transformation Matrix
    Summary
    References
    Additional Reading

    Fundamental Concepts in Kinematics
    Types of Planar and Spatial Mechanisms
    Links, Joints, and Mechanism Mobility
    Number Synthesis
    Grashof’s Criteria and Transmission Angle
    Circuit Defect
    Mechanism Inversion
    Passive Degree of Freedom and Paradoxes
    Summary
    References

    Kinematic Analysis of Planar Mechanisms
    Introduction
    Numerical Solution Method for Two Simultaneous Equations
    Link Velocity and Acceleration Components in Planar Space
    Four-Bar Mechanism Analysis
    Slider-Crank Mechanism Analysis
    Geared Five-Bar Mechanism Analysis
    Watt II Mechanism Analysis
    Stephenson III Mechanism Analysis
    Time and Driver Angular Velocity
    Mechanism Configurations
    Constructing Cognates
    Planar Mechanism Kinematic Analysis and Modeling in SimMechanics®
    Summary
    References
    Additional Reading

    Dimensional Synthesis
    Introduction
    Branch and Order Defects
    Planar Four-Bar Motion Generation: Three Precision Positions
    Order- and Branch-Defect Elimination
    Path Generation versus Motion Generation
    Stephenson III Motion Generation: Three Precision Positions
    Planar Four-Bar Function Generation: Three Precision Points
    Planar Four-Bar Function Generation: FSPs and MSPs
    Mechanism Dimensions: From Dimensional Synthesis to Kinematic
    Summary
    References
    Additional Reading

    Static Force Analysis of Planar Mechanisms
    Introduction
    Static Loading in Planar Space
    Four-Bar Mechanism Analysis
    Slider-Crank Mechanism Analysis
    Geared Five-Bar Mechanism Analysis
    Watt II Mechanism Analysis
    Stephenson III Mechanism Analysis
    Planar Mechanism Static Force Analysis and Modeling in SimMechanics®
    Summary
    References
    Additional Reading

    Dynamic Force Analysis of Planar Mechanisms
    Introduction
    Dynamic Loading in Planar Space
    Four-Bar Mechanism Analysis
    Slider-Crank Mechanism Analysis
    Geared Five-Bar Mechanism Analysis
    Watt II Mechanism Analysis
    Stephenson III Mechanism Analysis
    Mass Moment of Inertia and Computer Aided Design Software
    Planar Mechanism Dynamic Force Analysis and Modeling in SimMechanics®
    References
    Additional Reading

    Design and Kinematic Analysis of Gears
    Introduction
    Gear Types
    Spur-Gear Nomenclature and Relationships of Mating Gears
    Helical-Gear Nomenclature
    Gear Kinematics
    Summary
    References
    Additional Reading

    Design and Kinematic Analysis of Disk Cams
    Introduction
    Follower Types
    Follower Motion
    Disk Cam Design and Pressure Angle
    Summary
    References
    Additional Reading

    Kinematic Analysis of Spatial Mechanisms
    Introduction
    RRSS Mechanism Analysis
    RSSR Mechanism Analysis
    Four-Revolute Spherical Mechanism Analysis
    Planar Four-Bar Kinematic Analysis Using RRSS and RSSR Kinematic Equations
    Spatial Mechanism Kinematic Analysis and Modeling in SimMechanics®
    Summary
    References

    Introduction to Robotic Manipulators
    Introduction
    Terminology and Nomenclature
    Robotic Manipulator Mobility and Types
    The General Transformation Matrix
    Forward Kinematics
    Inverse Kinematics
    Robotic Manipulator Kinematic Analysis and Modeling in SimMechanics®
    Summary
    References
    Additional Reading

    Appendices
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