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Machining Dynamics: Frequency Response to Improved Productivity

Autor Tony L. Schmitz, K. Scott Smith
en Limba Engleză Paperback – 3 ian 2019
This book trains engineers and students in the practical application of machining dynamics, with a particular focus on milling. The book walks readers through the steps required to improve machining productivity through chatter avoidance and reduced surface location error, and covers in detail topics such as modal analysis (including experimental methods) to obtain the tool point frequency response function, descriptions of turning and milling, force modeling, time domain simulation, stability lobe diagram algorithms, surface location error calculation for milling, beam theory, and more. 
This new edition includes updates throughout the entire text, new exercises and examples, and a new chapter on machining tribology. It is a valuable resource for practicing manufacturing engineers and graduate students interested in learning how to improve machining productivity through consideration of the process dynamics.

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Specificații

ISBN-13: 9783030067083
ISBN-10: 3030067084
Pagini: 382
Ilustrații: X, 382 p. 354 illus., 231 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.6 kg
Ediția:Softcover reprint of the original 2nd ed. 2019
Editura: Springer International Publishing
Colecția Springer
Locul publicării:Cham, Switzerland

Cuprins

Introduction.- Modal Analysis.- Turning Dynamics.- Milling Dynamics.- Surface Location Error in Milling.- Special Topics in Milling.- Tool Point Dynamics Prediction.- Machining Tribology.

Notă biografică

Tony L. Schmitz is Professor of Mechanical Engineering and Engineering Science at The University of North Carolina at Charlotte.
K. Scott Smith is Professor and Department Chair of Mechanical Engineering and Engineering Science at The University of North Carolina at Charlotte.



Textul de pe ultima copertă

This book trains engineers and students in the practical application of machining dynamics, with a particular focus on milling. The book walks readers through the steps required to improve machining productivity through chatter avoidance and reduced surface location error, and covers in detail topics such as modal analysis (including experimental methods) to obtain the tool point frequency response function, descriptions of turning and milling, force modeling, time domain simulation, stability lobe diagram algorithms, surface location error calculation for milling, beam theory, and more. 

This new edition includes updates to the whole text, new exercises and problems, and a new chapter on machining tribology. It is a valuable resource for practicing manufacturing engineers and graduate students interested in learning how to improve machining productivity through consideration of the process dynamics.

Caracteristici

Provides comprehensive coverage of the fundamentals and machining dynamics with numerous examples Includes functional MATLAB code for process predictions Provides clear descriptions of predictive algorithms for machining process performance Includes supplementary material: sn.pub/extras Request lecturer material: sn.pub/lecturer-material