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  • 摩擦材料的表征 无 著 专业科技 文轩网
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    • 出版社: 哈尔滨工业大学出版社
    • 出版时间:2014-01-01 00:00:00
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    商品参数
    • 作者: 无著
    • 出版社:哈尔滨工业大学出版社
    • 出版时间:2014-01-01 00:00:00
    • 版次:1
    • 印次:1
    • 印刷时间:2014-01-01
    • 页数:180
    • 开本:16开
    • 装帧:平装
    • ISBN:9787560342856
    • 国别/地区:中国
    • 版权提供:哈尔滨工业大学出版社

    摩擦材料的表征

    作  者:无 著
    定  价:58
    出 版 社:哈尔滨工业大学出版社
    出版日期:2014年01月01日
    页  数:180
    装  帧:平装
    ISBN:9787560342856
    主编推荐

    内容简介

    摩擦材料的表征一书讨论了优选表面科学表征技术在摩擦磨损、粘附磨损、磨蚀、边界润滑、接触疲劳等方面的应用。尽管轴承、齿轮、密封圈及其他制动与滑动表面的表面表征在工业中并不常见,但它在磁记录表面已经普遍应用,并且在不久的将来,它将在优选质量加工的控制及大量精密零件的加工制造中更普遍。这本《摩擦材料的表征》(作者布伦德尔、埃文斯、格拉瑟)对在摩擦学领域中使用或考虑使用优选表征技术的科学家与工程师来说将会非常有用。同时它也告知表面科学家摩擦学是一个激动人心的新领域,表面科学可以在此发挥一定作用。

    作者简介

    精彩内容

    目录
    Preface to the Second Edition
    Preface to the Reissue of the Materials Characterhation Series
    Preface to Series
    Preface to the Reissue of Characterimtion of Tribological Materrals
    Preface
    Acronyms
    Contributors
    INTRODUCTION
    THE ROLE OF ADHESION IN WEAR
    2.1 Introduction
    2.2 ConsiderationsforExperiments
    Background
    MacroscopicExperiments
    AtomicLevel Experiments
    MicroscopicContacts
    2.3 Theoretical Considerationsatthe Atomic Level
    Background for Theory
    Universal Binding Energy Relation
    SemiempiricalMethods
    2.4 Conclusions
    References
    FRICTION
    3.1 Introduction
    3.2 Sliding Friction
    Basic Concepts
    The Dual Nature of Frictional Process
    Phenomenology of Friction Process
    Real Areaof Contact
    Adhesion Component ofFriction 38,Thelnterface Shear Stress
    Deformation Component of Friction 40,Viscoelastic
    Component of Friction 43 Friction Under Boundary Lubrication
    Conditions 45,Phenomena Associated with Friction
    3.3 Rolling Friction
    Review of Rolling Friction Hypotheses
    Free Rolling
    3.4 Exceptional Friction Processes
    3.5 Conclusions
    References
    ADHESIVE WEAR
    4.1 Introduction
    4.2 Surface Analysis
    4.3 AugerAnalysis ofWorn Surfaces After "Unlubricated Wear"
    4.4 In Situ Systems
    4.5 Conclusions
    References
    ABRASIVE WEAR
    5.1 AbrasiveAsperitiesandGrooves
    5.2 Yield Criterion ofan Abrasive Asperity Abrasive Wear Mode Diagram
    5.3 Degree ofWear at OneAbrasive Groove
    5.4 MacroscopicWearinMultipleAbrasiveSlidingContacts
    References
    BOUNDARY LUBRICATION
    6.1 Introduction
    6.2 MechanicaI Effectsin Lubrication
    6.3 Adequacy of Hydrodynamic Fluid Films
    6.4 Chemical Effectsin Liquid Lubrication—Boundary Lubrication
    6.5 Wear and Failure
    6.6 Researchin Boundary Lubrication
    6.7 Laboratory Research
    6.8 Composition of Films
    6.9 Further Mechanical Effects ofthe Boundary Lubricant Layer
    6.10 Surface Analysis of Boundary Lubricated Metals
    6.11 Ellipsometry and Its Use in Measuring Film Thickness
    References
    MAGNETIC RECORDING SURFACES
    7.1 Introduction
    7.2 Magnetic Storage Systems
    7.3 Wear Mechanisms
    Head—(Particulate)Tape Interface
    Head—(Particulate)Rigid Disklnterface
    Head—(Thin—Film)Rigid Disklnterface
    7.4Lubrication Mechanisms
    Measurement of Localized Lubricant Film Thickness
    Lubricant—Disk Surface Interactions
    Lubricant Degradation
    References
    SURFACE ANALYSIS OF PRECISION BALL BEARINGS
    8.1 Introduction
    8.2 Disassembly
    Examination,Optical Microscopy,and Photography
    Gas Analysis by Mass Spectrometry
    Lubricant Analysis and Removal
    8.3 Microexamination
    Scanning Electron Microscopy
    Profilometry
    8.4 Surface Analysis
    Auger Electron Spectroscopy
    Photoelectron Spectroscopy
    SIMS
    Vibrational Spectroscopy
    8.5Future Directions
    Acknowledgments
    References
    ATOMIC FORCE MICROSCOPE NANOFRICTION
    9.1 Introduction
    9.2 Description
    9.3Friction Measurements
    9.4 Uses
    9.5 Kelvin Probe Application
    References
    APPENDICES:TECHNIQUE SUMMARIES
    1 Light Microscopy
    2 Scanning Electron Microscopy(SEM)
    3In Situ Wear Device for the Scanning Electron Microscope
    4Scanning Tunneling Microscopy and Scanning Force Microscopy(STM and SFM)
    5 Transmission Electron Microscopy(TEM)
    6 Energy—Dispersive X—Ray Spectroscopy(EDS)
    7 ScanningTransmission Electron Microscopy(STEM)
    8 Electron Probe X—Ray Microanalysis(EPMA)
    9 X—RayDiffraction(XRD)
    10 Low—Energy Electron Diffraction(LEED)
    11 X—Ray Photoelectron Spectroscopy(XPS)
    12 Auger Electron Spectroscopy(AES)
    13 FourierTransform Infrared Spectroscopy(FTIR)
    14 Raman Spectroscopy
    15 Rutherford BackscatteringSpectrometry(RBS)
    16 Static Secondarylon Mass Spectrometry(Static SIMS)
    17 Surface Roughness: Measurement,Formation by Sputtering,Impact on Depth Profiling
    Index

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