Metal Cutting Theory and Practice

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

A Complete Reference Covering the Latest Technology in Metal Cutting Tools, Processes, and Equipment

Metal Cutting Theory and Practice, Third Edition shapes the future of material removal in new and lasting ways. Centered on metallic work materials and traditional chip-forming cutting methods, the book provides a physical understanding of conventional and high-speed machining processes applied to metallic work pieces, and serves as a basis for effective process design and troubleshooting. This latest edition of a well-known reference highlights recent developments, covers the latest research results, and reflects current areas of emphasis in industrial practice. Based on the authors’ extensive automotive production experience, it covers several structural changes, and includes an extensive review of computer aided engineering (CAE) methods for process analysis and design. Providing updated material throughout, it offers insight and understanding to engineers looking to design, operate, troubleshoot, and improve high quality, cost effective metal cutting operations.

The book contains extensive up-to-date references to both scientific and trade literature, and provides a description of error mapping and compensation strategies for CNC machines based on recently issued international standards, and includes chapters on cutting fluids and gear machining. The authors also offer updated information on tooling grades and practices for machining compacted graphite iron, nickel alloys, and other hard-to-machine materials, as well as a full description of minimum quantity lubrication systems, tooling, and processing practices. In addition, updated topics include machine tool types and structures, cutting tool materials and coatings, cutting mechanics and temperatures, process simulation and analysis, and tool wear from both chemical and mechanical viewpoints.

Comprised of 17 chapters, this detailed study:



Describes the common machining operations used to produce specific shapes or surface characteristicsContains conventional and advanced cutting tool technologiesExplains the properties and characteristics of tools which influence tool design or selectionClarifies the physical mechanisms which lead to tool failure and identifies general strategies for reducing failure rates and increasing tool lifeIncludes common machinability criteria, tests, and indicesBreaks down the economics of machining operationsOffers an overview of the engineering aspects of MQL machiningSummarizes gear machining and finishing methods for common gear types, and more

Metal Cutting Theory and Practice, Third Edition

emphasizes the physical understanding and analysis for robust process design, troubleshooting, and improvement, and aids manufacturing engineering professionals, and engineering students in manufacturing engineering and machining processes programs.

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Detaljer
  • SprogEngelsk
  • Sidetal972
  • Udgivelsesdato24-03-2016
  • ISBN139781466587533
  • Forlag CRC Press Inc
  • FormatHardback
Størrelse og vægt
  • Vægt4100 g
  • coffee cup img
    10 cm
    book img
    17,8 cm
    25,4 cm

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    Boring Geometry Metal-cutting Milling Tapping Turning Finite element analysis Grinding wheels Cutting tools Vibration Control Broaching Filtering Cutting forces Thermal management Planing Orthogonal Cutting Deburring Grinding Shaping Finite Element Models Drilling Cutting speed Threading Tool-chip interface Cutting fluids Surface Finish Chip Formation Turning Tools Abrasive processes Pallets Cycle Time Thermal expansion Thermal cracking baseline data Axis Machining of Gears Bevel and Hypoid Gear Machining Built-up Edge Formation Chip Thickness Chisel Edge Axis Drives Boring Bar Boring Tools Burnishing Tools Burr Formation Chip Control BUE Formation CNC-Based Manufacturing Systems CNC machine tools Cutting Tool Clamping Systems Chatter Prediction Discontinuous Chip Formation CNC Machining Systems Empirical Force Models Force Equations Drilling Tools Face Milling Gear Machining Condition Monitoring and Waste Treatment Coolant Systems Cutting Temperatures fixtures Gear Tooth Finishing Methods Cutting Power Honing tools Drill Wear and Breakage Dimensional control Dry and Near-Dry Machining Methods Edge Chipping Machining Process Analysis Machine Tool Structure MQL Cutting Tools Minimum Quantity Lubrication Nose Radius Machine Tool Structures Oblique Cutting MQL System Types Manufacturing CAE Microsizing Tools Milling Tools Gear Types Primary Plastic Deformation Production Machine Tools Peripheral Milling Rake Face Reaming Roller Burnishing Slides and Guideways Rake Angle spindles Steady-State Temperatures Shear Plane Theory Tool Life Testing Tool Chip Interface Temperature Tool Fracture Transverse Rupture Strength Uncut Chip Thickness Vibration Analysis Methods Tool Chip Contact Length Tool-Chip Friction Tool Wear Rates Tooth Machining Methods for Parallel Axis Gears White Layer Formation Toolholding Systems Tool Life Surface Burning in Grinding WC Tool Vibration of Discrete (Lumped Mass) Systems MQL Machine MQL Oils Machine Tools for MQL Threading Tools Shear Plane Models Reamers Surface Flatness Tool Changing Systems Toolholder/Spindle Connections Tool Life Equation Shear Zone Models Slip Line Theory Spindle Nose Secondary Deformation Tool Coatings Tool Wear Tool Wear Monitoring Tool Life Equations

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