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Coating Technology for Vehicle Applications
Taschenbuch von Ali Erdemir (u. a.)
Sprache: Englisch

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Beschreibung
This book describes current, competitive coating technologies for vehicles. The authors detail how these technologies impact energy efficiency in engines and with increased use of lightweight materials and by varying coatings applications can resolve wear problems, resulting in the increased lifecycle of dies and other vehicle components.
This book describes current, competitive coating technologies for vehicles. The authors detail how these technologies impact energy efficiency in engines and with increased use of lightweight materials and by varying coatings applications can resolve wear problems, resulting in the increased lifecycle of dies and other vehicle components.
Über den Autor
Sung Chul Cha is a Senior Research Engineer at the Hyundai Motor Group, Automotive, Research and Development Division, in Hwaseong, Korea. He received his Diploma of Engineering (1998) and a Doctor of Engineering degree (2001) in Georesources and Materials Engineering from RWTH Aachen, Germany. In 2002 he became a research associate and postdoc at the Department of Interface Chemistry and Surface Engineering at the Max Planck Institute for Iron Research (MPIE), Düsseldorf, Germany, and continued his research in the field of high temperature materials and reactions including coating technology. In 2005 he began work in the area of materials engineering and material properties at Siemens Power Generation, Mülheim a.d. Ruhr, Germany. Since 2007 he has been employed at the Hyundai Motor Group and responsible for the development of automotive materials. Dr. Cha has published over 20 scientific papers and holds more than 30 international patents. He was a keynote speaker, chair, and reviewer of the session on ¿Coated Materials¿ (2014) and a reviewer and chair of the session ¿Automotive Tribology¿ (2013) at the SAE World Congress & Exhibition and he was an invited keynote speaker for the SVC 2014 Conference. Ali Erdemir is an Argonne Distinguished Fellow and Senior Scientist with international recognition and significant accomplishments in the fields of materials science, surface engineering and tribology. He received his B.S. degree from Istanbul Technical University in 1977 and M.S. and Ph.D. degrees in Materials Science and Engineering from the Georgia Institute of Technology in 1982 and 1986, respectively. His discoveries of nearly frictionless carbon and superhard nanocomposite coatings, as well as a range of novel nanolubricants and lubrication additives, have been hailed as major breakthroughs in the field. Erdemir¿s research is directed toward nanoscale design and large-scale manufacturing of new materials, coatings and green lubricants for a broad range of applications in manufacturing, transportation and other energy conversion and utilization systems where further increases in efficiency, reliability and environmental compatibility are the primary objectives. Erdemir has received numerous awards, including five R&D 100 Awards; holds 16 U.S. patents; and has published more than 290 papers, 18 invited book and handbook chapters, and two edited books. He is a Fellow of ASME, STLE, AVS, and ASM-International.
Zusammenfassung

Describes in detail the thermal spray process and low friction and hard coating applications for vehicles including DLC coatings, PTFE coatings, and coatings for parts, dies, tools, and glass

Illustrates new advances in surface engineering technologies including PVD coating, surface texturing, and patterning

Explains how the use of low friction coating applications effects fuel economy and emissions in vehicles

Inhaltsverzeichnis
Preface

Energy consumption due to friction in motored vehicles and low-friction coatings to reduce it
Ali Erdemir, Kenneth Holmberg

Diverse Coatings for Engine Parts
Sung Chul Cha

Overview of DLC-coated engine components
Makoto Kano

Coating Technologies for Automotive Engine Applications
Arup Gangopadhyay

customized coating systems for products with added value from development to high volume production
Tim Hosenfeldt, Yashar Musayev, Edgar Schulz

Surface Treatments for Automotive Applications
Joerg Vetter

Hard Coatings and Coating Processes for the Automotive Industry
Andre Hieke, Val Lieberman, G.J. van der Kolk

Surface texturing for engine parts
Gerhard Flores, Andreas Wiens, Manuel Waiblinger

Coatings for Aluminum Die-casting Dies
Sung Chul Cha

Coatings for Forming Dies of Advanced High-Strength Steel
Sung Chul Cha

Diamond-like carbon coatings with special wettability for automotive applications
So Nagashima, MyungWoon Moon

Smart surfaces for lubrication ¿ solid lubricants and adaptive texture
Tomas Polcar, Albano Cavaleiro

Decorative PVD coatings on Automotive Plastics
Thomas Krug, Roel Tietema

Index
Details
Erscheinungsjahr: 2016
Fachbereich: Fertigungstechnik
Genre: Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: xii
240 S.
25 s/w Illustr.
164 farbige Illustr.
240 p. 189 illus.
164 illus. in color.
ISBN-13: 9783319352985
ISBN-10: 3319352989
Sprache: Englisch
Ausstattung / Beilage: Paperback
Einband: Kartoniert / Broschiert
Redaktion: Erdemir, Ali
Cha, Sung Chul
Herausgeber: Sung Chul Cha/Ali Erdemir
Auflage: Softcover reprint of the original 1st ed. 2015
Hersteller: Springer International Publishing
Springer International Publishing AG
Maße: 235 x 155 x 13 mm
Von/Mit: Ali Erdemir (u. a.)
Erscheinungsdatum: 13.10.2016
Gewicht: 0,434 kg
Artikel-ID: 111861507
Über den Autor
Sung Chul Cha is a Senior Research Engineer at the Hyundai Motor Group, Automotive, Research and Development Division, in Hwaseong, Korea. He received his Diploma of Engineering (1998) and a Doctor of Engineering degree (2001) in Georesources and Materials Engineering from RWTH Aachen, Germany. In 2002 he became a research associate and postdoc at the Department of Interface Chemistry and Surface Engineering at the Max Planck Institute for Iron Research (MPIE), Düsseldorf, Germany, and continued his research in the field of high temperature materials and reactions including coating technology. In 2005 he began work in the area of materials engineering and material properties at Siemens Power Generation, Mülheim a.d. Ruhr, Germany. Since 2007 he has been employed at the Hyundai Motor Group and responsible for the development of automotive materials. Dr. Cha has published over 20 scientific papers and holds more than 30 international patents. He was a keynote speaker, chair, and reviewer of the session on ¿Coated Materials¿ (2014) and a reviewer and chair of the session ¿Automotive Tribology¿ (2013) at the SAE World Congress & Exhibition and he was an invited keynote speaker for the SVC 2014 Conference. Ali Erdemir is an Argonne Distinguished Fellow and Senior Scientist with international recognition and significant accomplishments in the fields of materials science, surface engineering and tribology. He received his B.S. degree from Istanbul Technical University in 1977 and M.S. and Ph.D. degrees in Materials Science and Engineering from the Georgia Institute of Technology in 1982 and 1986, respectively. His discoveries of nearly frictionless carbon and superhard nanocomposite coatings, as well as a range of novel nanolubricants and lubrication additives, have been hailed as major breakthroughs in the field. Erdemir¿s research is directed toward nanoscale design and large-scale manufacturing of new materials, coatings and green lubricants for a broad range of applications in manufacturing, transportation and other energy conversion and utilization systems where further increases in efficiency, reliability and environmental compatibility are the primary objectives. Erdemir has received numerous awards, including five R&D 100 Awards; holds 16 U.S. patents; and has published more than 290 papers, 18 invited book and handbook chapters, and two edited books. He is a Fellow of ASME, STLE, AVS, and ASM-International.
Zusammenfassung

Describes in detail the thermal spray process and low friction and hard coating applications for vehicles including DLC coatings, PTFE coatings, and coatings for parts, dies, tools, and glass

Illustrates new advances in surface engineering technologies including PVD coating, surface texturing, and patterning

Explains how the use of low friction coating applications effects fuel economy and emissions in vehicles

Inhaltsverzeichnis
Preface

Energy consumption due to friction in motored vehicles and low-friction coatings to reduce it
Ali Erdemir, Kenneth Holmberg

Diverse Coatings for Engine Parts
Sung Chul Cha

Overview of DLC-coated engine components
Makoto Kano

Coating Technologies for Automotive Engine Applications
Arup Gangopadhyay

customized coating systems for products with added value from development to high volume production
Tim Hosenfeldt, Yashar Musayev, Edgar Schulz

Surface Treatments for Automotive Applications
Joerg Vetter

Hard Coatings and Coating Processes for the Automotive Industry
Andre Hieke, Val Lieberman, G.J. van der Kolk

Surface texturing for engine parts
Gerhard Flores, Andreas Wiens, Manuel Waiblinger

Coatings for Aluminum Die-casting Dies
Sung Chul Cha

Coatings for Forming Dies of Advanced High-Strength Steel
Sung Chul Cha

Diamond-like carbon coatings with special wettability for automotive applications
So Nagashima, MyungWoon Moon

Smart surfaces for lubrication ¿ solid lubricants and adaptive texture
Tomas Polcar, Albano Cavaleiro

Decorative PVD coatings on Automotive Plastics
Thomas Krug, Roel Tietema

Index
Details
Erscheinungsjahr: 2016
Fachbereich: Fertigungstechnik
Genre: Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: xii
240 S.
25 s/w Illustr.
164 farbige Illustr.
240 p. 189 illus.
164 illus. in color.
ISBN-13: 9783319352985
ISBN-10: 3319352989
Sprache: Englisch
Ausstattung / Beilage: Paperback
Einband: Kartoniert / Broschiert
Redaktion: Erdemir, Ali
Cha, Sung Chul
Herausgeber: Sung Chul Cha/Ali Erdemir
Auflage: Softcover reprint of the original 1st ed. 2015
Hersteller: Springer International Publishing
Springer International Publishing AG
Maße: 235 x 155 x 13 mm
Von/Mit: Ali Erdemir (u. a.)
Erscheinungsdatum: 13.10.2016
Gewicht: 0,434 kg
Artikel-ID: 111861507
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