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Archive entry:
9789811040825 - Dennis Wee Keong Neo: Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) - Book

Dennis Wee Keong Neo (?):

Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) (2017) (?)

Delivery from: United Kingdom of Great Britain and Northern IrelandBook is in english languageThis book is a hardcover book not a paperbackNew bookFirst edition of this book
ISBN:

9789811040825 (?) or 9811040826

, in english, 109 pages, Springer, hardcover, New, first edition
Not yet published
hardcover, Edition: 1st Ed. 2017, Label: Springer, Springer, Product group: Book, Published: 2017-05-18, Release date: 2017-05-18, Studio: Springer
Keywords: Electric Motors, Electrical Engineering, Electrician Skills, Electromagnetic Theory, Energy, Nanotechnology, Power Generation & Distribution, Books, Science & Nature, Engineering & Technology, Engineering Skills & Design, Welding, Mechanical & Materials Engineering, Engines & Power Transmission, Production, Manufacturing & Operational, Computer Aided Manufacture, Materials & Industries, Scientific, Technical & Medical, Mechanical & Material Engineering
Data from 03/03/2017 06:17h
ISBN (alternative notations): 981-10-4082-6, 978-981-10-4082-5
Archive entry:
9789811040825 - Dennis Wee Keong Neo: Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) - Book

Dennis Wee Keong Neo (?):

Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) (2017) (?)

Delivery from: United States of AmericaBook is in english languageThis book is a hardcover book not a paperbackNew bookFirst edition of this book
ISBN:

9789811040825 (?) or 9811040826

, in english, 115 pages, Springer, hardcover, New, first edition
Not yet published, plus shipping (if shipped)
This thesis focuses on producing hybrid freeform surfaces using an advanced diamond-turning process, understanding the generation of surface accuracies (form errors) and how the choice of cutting strategies affects these, as well as simplifying the complications of generating cutting paths for such freeform surfaces. The breakthroughs behind this thesis are the development of novel, multiple-axis, diamond turning techniques to overcome the limitations of conventional diamond turning processes, an analytical model to optimize the generation of ultraprecise freeform surfaces, and an add-on tool path processor for CAD/CAM software solutions. It appeals to researchers and scholars with a strong machining background who are interested in the field of manufacturing ultraprecise freeform surfaces or in the field of optimizing ultraprecision machining processes., hardcover, Edition: 1st Ed. 2017, Label: Springer, Springer, Product group: Book, Published: 2017-04-28, Studio: Springer
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Keywords: Alternative & Renewable, Drilling Procedures, Electric, Fossil Fuels, Mining, Nuclear, Power Systems, Books, Engineering & Transportation, Energy Production & Extraction, Industrial, Manufacturing & Operational Systems, Mechanical, Machinery, Welding, Business & Finance, Communication & Journalism, Computer Science, Education, Humanities, Law, Medicine & Health Sciences, Reference, Science & Mathematics, Social Sciences, Test Prep & Study Guides, Specialty Boutique, New, Used & Rental Textbooks
Data from 03/03/2017 06:17h
ISBN (alternative notations): 981-10-4082-6, 978-981-10-4082-5
Archive entry:
9789811040825 - DENNIS WEE KEONG NEO: Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning 2017 - Book

DENNIS WEE KEONG NEO (?):

Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning 2017 (2017) (?)

Delivery from: United Kingdom of Great Britain and Northern IrelandThis book is a hardcover book not a paperbackNew book
ISBN:

9789811040825 (?) or 9811040826

, unknown language, Springer Verlag, Singapore, hardcover, New
This thesis focuses on producing hybrid freeform surfaces using an advanced diamond-turning process, understanding the generation of surface accuracies (form errors) and how the choice of cutting strategies affects these, as well as simplifying the complications of generating cutting paths for such freeform surfaces. The breakthroughs behind this thesis are the development of novel, multiple-axis, diamond turning techniques to overcome the limitations of conventional diamond turning processes, an analytical model to optimize the generation of ultraprecise freeform surfaces, and an add-on tool path processor for CAD/CAM software solutions. It appeals to researchers and scholars with a strong machining background who are interested in the field of manufacturing ultraprecise freeform surfaces or in the field of optimizing ultraprecision machining processes.
Keywords: Industrial Chemistry & Manufacturing Technologies, Mechanical Engineering, Engines & Power Transmission, Engineering Skills & Trades, Tool Making, Welding
Data from 04/23/2017 08:41h
ISBN (alternative notations): 981-10-4082-6, 978-981-10-4082-5
Archive entry:
9789811040825 - Dennis Wee Keong Neo: Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) - Book

Dennis Wee Keong Neo (?):

Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (Springer Theses) (2017) (?)

Delivery from: United States of AmericaBook is in english languageThis book is a hardcover book not a paperbackNew bookFirst edition of this book
ISBN:

9789811040825 (?) or 9811040826

, in english, 115 pages, Springer, hardcover, New, first edition
Not yet published
This thesis focuses on producing hybrid freeform surfaces using an advanced diamond-turning process, understanding the generation of surface accuracies (form errors) and how the choice of cutting strategies affects these, as well as simplifying the complications of generating cutting paths for such freeform surfaces. The breakthroughs behind this thesis are the development of novel, multiple-axis, diamond turning techniques to overcome the limitations of conventional diamond turning processes, an analytical model to optimize the generation of ultraprecise freeform surfaces, and an add-on tool path processor for CAD/CAM software solutions. It appeals to researchers and scholars with a strong machining background who are interested in the field of manufacturing ultraprecise freeform surfaces or in the field of optimizing ultraprecision machining processes., hardcover, Ausgabe: 1st Ed. 2017, Label: Springer, Springer, Produktgruppe: Book, Publiziert: 2017-05-23, Studio: Springer
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Keywords: Books, Engineering & Transportation, Industrial, Manufacturing & Operational Systems, Mechanical, Machinery, Welding, Business & Finance, Communication & Journalism, Computer Science, Education, Humanities, Law, Medicine & Health Sciences, Reference, Science & Mathematics, Social Sciences, Test Prep & Study Guides, Specialty Boutique, New, Used & Rental Textbooks
Data from 04/23/2017 08:41h
ISBN (alternative notations): 981-10-4082-6, 978-981-10-4082-5
Archive entry:
9789811040825 - NEO, DENNIS WEE KEONG: Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning - Book

NEO, DENNIS WEE KEONG (?):

Ultraprecision Machining of Hybrid Freeform Surfaces Using Multiple-Axis Diamond Turning (?)

Delivery from: GermanyGerman bookThis book is a hardcover book not a paperbackNew book
ISBN:

9789811040825 (?) or 9811040826

, in german, Springer Singapore / Springer-Verlag GmbH, hardcover, New
This thesis focuses on producing hybrid freeform surfaces using an advanced diamond-turning process, understanding the generation of surface accuracies (form errors) and how the choice of cutting strategies affects these, as well as simplifying the complications of generating cutting paths for such freeform surfaces. The breakthroughs behind this thesis are the development of novel, multiple-axis, diamond turning techniques to overcome the limitations of conventional diamond turning processes, This thesis focuses on producing hybrid freeform surfaces using an advanced diamond-turning process, understanding the generation of surface accuracies (form errors) and how the choice of cutting strategies affects these, as well as simplifying the complications of generating cutting paths for such freeform surfaces. The breakthroughs behind this thesis are the development of novel, multiple-axis, diamond turning techniques to overcome the limitations of conventional diamond turning processes, an analytical model to optimize the generation of ultraprecise freeform surfaces, and an add-on tool path processor for CAD/CAM software solutions. It appeals to researchers and scholars with a strong machining background who are interested in the field of manufacturing ultraprecise freeform surfaces or in the field of optimizing ultraprecision machining processes. Lieferzeit 1-2 Werktage
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Category: Buch > Mathematik, Naturwissenschaft & Technik > Technik > Maschinenbau & Fertigungstechnik
Data from 04/23/2017 08:41h
ISBN (alternative notations): 981-10-4082-6, 978-981-10-4082-5

9789811040825

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