Tribology and Fundamentals of Abrasive Machining Processes

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

This new edition draws upon the fundamentals of abrasive machining processes and the science of tribology to understand, predict, and improve abrasive machining processes. Each of the main elements of the abrasive machining system is looked at alongside the tribological factors that control the efficiency and quality of the processes described. The new edition has been updated to include a variety of industrial applications. Grinding and conditioning of grinding tools are dealt with in particular detail, and solutions are proposed for many of the most commonly experienced industrial problems, such as poor accuracy, poor surface quality, rapid tool wear, vibrations, workpiece burn, and high process costs. The entire book has been rewritten and restructured, with ten completely new chapters. Other new features include:

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Detaljer
Størrelse og vægt
  • Vægt1270 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Diamond Ploughing Oxidation Cleaning Residual stresses Surface roughness Finishing Silicon carbide Kinematics Acoustic emission Aluminum oxide Machinability Polishing Abrasives Rubbing Sharpening Abrasive machining processes Elastic deformation Sliding Bonded Film boiling Size-effect Cutting forces Dressing High efficiency deep grinding Profiling Nozzle Functional Surfaces Depth of cut Surface quality Grinding Thermal Softening Structuring Cutting speed Material Removal Mechanism Chip Formation Honing Crack formation Abrasive wear Grindability Lapping Abrasive material abrasive blasting Abrasive flow machining Abrasive pastes Abrasive tool loading or clogging Adhesive wear Air barrier Bond wear Chemomechanical polishing Chip Thickness Conditioning of grinding tools Coolant burnout Coated abrasives Bonded abrasive machining processes Cutting temperature Contact length Conventional and superabrasive grinding tools Cooling and lubrication techniques contact area Conventional abrasives Cubic boron nitride External cylindrical centerless grinding Electro-discharge dressing Clamping Forces Fluid dynamics simulation External cylindrical grinding between centers Grain penetration depth Grain spacing Corundum Contact surface Contact wheels Cutting edge density Grind-hardening Grinding wheel shape Grain protrusion Honing tools G-ratio Grinding burn Ductile grinding Hybrid bonds Hydrodynamic Pressure Indentation mechanics Energy partition Equivalent grinding tool diameter Effective porosity ratio material removal mechanisms Loose Abrasives Metal bonds Mass finishing Feed speed Measurement of tool wear and loading Microhardness microtopography Loose abrasive machining processes Natural and synthetic abrasives Modeling tribosystems Heat generation and dissipation Heat partitioning Grain fracture or breakage Grain shapes Grinding wheel body Resin bonds Rough surface analysis Rehardening Smooth body analysis Structural aspects of metals Specific energy Spheroidal swarf Magnetorheological finishing Thermal damage Jet Velocity Tool loading or clogging Secondary grits Tribochemical processes Tribosystem structure Trueing Tribosorption layer Superfinishing Internal cylindrical grinding Laser conditioning Smeared material Tribochemical Monitoring and estimating temperature Useful flow Surface roughness affecting factors Surface roughness measurement Workpiece Temperature Microtopography of grinding tools Process fluid supply process kinematics Tribological implications superabrasives Two-body and three-body abrasive processes Roughness factor Wheel balancing Tribomechanical processing Surface Grinding Surface roughness parameters Tool Wear Structural aspects of nonmetals Triboreactions Vitrified bonds

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