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Applied Machining Technology
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036aXA-DE‡XA-DE-BE
037beng
077a306470527 Buchausg. u.d.T.: ‡Tschätsch, Heinz, 1924 - 2010: Applied machining technology
087q978-3-642-01006-4
100 Tschätsch, Heinz
331 Applied Machining Technology
410 Berlin, Heidelberg
412 Springer Berlin Heidelberg
425 2009
425a2009
433 Online-Ressource (XVII, 398p, digital)
451bSpringerLink. Bücher
501 Includes bibliographical references and index
501 Translation of: Praxis der Zerspantechnik : Verfahren, Werkzeuge, Berechnung, 8th ed
517 CONTENTS; 1 Introduction; 1.1 The methods of metal cutting; 1.2 Characteristics of metal cutting; 1.3 Formation of the cutting edges; 1.4 Cutting conditions (depth of cut ap, feed f and cutting speed vc); 1.5 Cutting force; 1.6 Chips; 1.7 Chip shapes; 1.8 Cutting edge materials; 2 Fundamentals of machining explained for turning; 2.1 Surfaces, cutting edges, and corners on wedges according to DIN 6581; 2.2 Reference planes; 2.3 Angles for the wedge; 2.4 Angle types and their influence on the cutting procedure; 2.5 Cutting parameters; 2.6 Cutting forces and their origin. 2.7 Calculation of power3 Tool life T; 3.1 Definition; 3.2 Characteristics of dulling; 3.3 Influence on tool life; 3.4 Calculation and representation of tool life; 3.5 Length of tool life and allocation of the cutting speed; 3.6 Cost-optimal tool life; 4 Tool- and machine curves; 4.1 Tool curve; 4.2 Machine curve; 4.3 Optimum cutting range; 5 Metal removal rate and chip volume ratio; 5.1 Metal removal rate; 5.2 Chip shapes; 5.3 Chip volume ratios; 6 Cutting materials; 6.1 Unalloyed tool steels; 6.2 High speed steels; 6.3 Cemented carbides; 6.4 Ceramics; 6.5 Diamond tools; 7 Turning. 7.1 Definition7.2 Turning technology; 7.3 Achievable accuracy values using turning; 7.4 Chucking devices; 7.5 Calculation of power and forces; 7.6 Determination of machining time; 7.7 Determination of the cycle time; 7.8 Turning tools; 7.9 Failures in turning; 7.10 Reference tables; 7.11 Examples of calculation:; 8 Planing and slotting; 8.1 Definition; 8.2 Planing- and slotting methods; 8.3 Application of the techniques; 8.4 Accuracy values achievable with planing; 8.5 Determination of force- and power; 8.6 Calculation of the machining time; 8.7 Reference table; 8.8 Example of calculation. 9 Drilling9.1 Definition; 9.2 Drilling methods; 9.3 Generation and purpose of holes; 9.4 Accuracies feasible with drilling; 9.5 Calculation of forces, torque and power; 9.6 Calculation of machining time (machine time); 9.7 Drilling tools; 9.8 Failures in drilling; 9.9 Reference values for drilling methods; 9.10 Examples; 10 Sawing; 10.1 Definition; 10.2 Sawing methods; 10.3 Sawing methods - tasks and ranges of application; 10.4 Accuracy values achievable with sawing; 10.5 Calculation of forces and power; 10.6 Calculation of machining time; 10.7 Sawing tools; 10.8 Failures in sawing. 10.9 Reference tables10.10 Examples; 11 Milling; 11.1 Definition; 11.2 Milling techniques; 11.3 Application of the milling techniques; 11.4 Accuracies achievable with milling; 11.5 Calculation of force and power; 11.6 Machining times during milling; 11.7 Milling cutters; 11.8 Failures during milling; 11.9 Reference tables; 11.10 Examples; 11.11 Gear machining techniques; 12 Broaching; 12.1 Definition; 12.2 Broaching methods; 12.3 Application of the broaching techniques; 12.4 Achievable accuracy values; 12.5 Calculation of force and power; 12.6 Calculation of the machining time. 12.7 Broaching tools
527 Buchausg. u.d.T.: ‡Tschätsch, Heinz, 1924 - 2010: Applied machining technology
540aISBN 978-3-642-01007-1
700 |TGXW
700 |TEC040000
700 |TEC020000
700b|670
700b|671.35
700c|T55.4-60.8
700g1272123863 ZM 8315
750 Machining and cutting technologies are still crucial for many manufacturing processes. This reference presents all important machining processes in a comprehensive and coherent way. It provides the practising engineer with many technical information of the manufacturing processes and collects essential aspects such as maximum obtainable precision, errors or reference values. Many examples of concrete calculations, problems and their solutions illustrate the material and support the learning reader. The internet addresses given in the appendix provide with a fast link to more information sources. TOC:Introduction.- Fundamentals of Machining Explained for Turning.- Tool Life T.- Tool- and Machine Curves.- Metal Removal Rate and Chip Volume Ratio.- Cutting Materials.- Turning.- Planning and Slotting.- Drilling.- Sawing.- Milling.- Broaching.- Grinding.- Abrasive Cutting.- Abrasive Belt Grinding.- Honing.- Superfinishing (Shortstroke Honing).- Lapping.- Further Refinement of the Cutting Materials.- High Speed Cutting (HSC).- Cutting Fluids (Coolants and Lubricants).- Cutting Force Measurement in Machining.
902s 209116056 Spanende Bearbeitung
902f 00000171 Lehrbuch
907s 209116056 Spanende Bearbeitung
012 327010649
081 Tschätsch, Heinz <P>: Applied Machining Technology
100 Springer E-Book
125aElektronischer Volltext - Campuslizenz
655e$uhttp://dx.doi.org/10.1007/978-3-642-01007-1
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