Critical Component Wear in Heavy Duty Engines (eBook)
448 Seiten
John Wiley & Sons (Verlag)
978-0-470-82883-0 (ISBN)
designed for infinite life without mechanical fatigue failure. Yet
the life of an engine is in reality determined by wear of the
critical parts. Even if an engine is designed and built to have
normal wear life, abnormal wear takes place either due to special
working conditions or increased loading. Understanding
abnormal and normal wear enables the engineer to control the
external conditions leading to premature wear, or to design the
critical parts that have longer wear life and hence lower costs.
The literature on wear phenomenon related to engines is scattered
in numerous periodicals and books. For the first time,
Lakshminarayanan and Nayak bring the tribological aspects of
different critical engine components together in one volume,
covering key components like the liner, piston, rings, valve, valve
train and bearings, with methods to identify and quantify wear.
* The first book to combine solutions to critical component wear
in one volume
* Presents real world case studies with suitable mathematical
models for earth movers, power generators, and sea going
vessels
* Includes material from researchers at Schaeffer Manufacturing
(USA), Tekniker (Spain), Fuchs (Germany), BAM (Germany), Kirloskar
Oil Engines Ltd (India) and Tarabusi (Spain)
* Wear simulations and calculations included in the
appendices
* Instructor presentations slides with book figures available
from the companion site
Critical Component Wear in Heavy Duty Engines is aimed at
postgraduates in automotive engineering, engine design, tribology,
combustion and practitioners involved in engine R&D for
applications such as commercial vehicles, cars, stationary engines
(for generators, pumps, etc.), boats and ships. This book is also a
key reference for senior undergraduates looking to move onto
advanced study in the above topics, consultants and product mangers
in industry, as well as engineers involved in design of furnaces,
gas turbines, and rocket combustion.
Companion website for the book: href="http://www.wiley.com/go/lakshmi">www.wiley.com/go/lakshmi
P.A. Lakshminarayanan is the Head of R&D at Ashok Leyland in India. He has been the team leader or lead designer of about 10 diesel and CNG engines for different applications. He has guided 2 PhDs at IIT Delhi and 4 M.Techs at IIT Madras, and has published 40 papers in ASME, SAE, IMechE, and AVL journals and conferences. Previous appointments include 20 years from Manger to Senior General Manger of R&D at Kirloskar Oil Engines Ltd, over 15 years as a Visiting Lecturer at IIT Madras, and 5 years as a Research Associate to J.C. Dent at Loughborough University of Technology. He is a Fellow of SAE-International. Lakshminarayanan holds a B.Tech, and M.S. and a PhD from IIT Madras. Nagaaraj S. Nayak is a Professor of Mechanical Engineering based at Sahyadri College of Engg. & Management. Previously, he was a Senior Manager at the R&D department of Kirloskar Oil Engines Ltd for 9 years, and was a Postdoctoral Fellow at University of Wisconsin Madison for 2 years. He has been a team leader for emission upgrades on 3 engines platforms, and performance development of 2 new engine platforms.
| Erscheint lt. Verlag | 7.9.2011 |
|---|---|
| Sprache | englisch |
| Themenwelt | Technik ► Maschinenbau |
| Schlagworte | automotive engineering • Fahrzeugtechnik • Maschinenbau • mechanical engineering • Motor |
| ISBN-10 | 0-470-82883-8 / 0470828838 |
| ISBN-13 | 978-0-470-82883-0 / 9780470828830 |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
| Haben Sie eine Frage zum Produkt? |
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