Life Cycle Design Engineering Of Lightweight Multi Material Automotive Body Parts

Life Cycle Design Engineering Of Lightweight Multi Material Automotive Body Parts Book in PDF, ePub and Kindle version is available to download in english. Read online anytime anywhere directly from your device. Click on the download button below to get a free pdf file of Life Cycle Design Engineering Of Lightweight Multi Material Automotive Body Parts book. This book definitely worth reading, it is an incredibly well-written.

Life Cycle Design & Engineering of Lightweight Multi-Material Automotive Body Parts

Author : Thomas Vietor
Publisher : Unknown
Page : 0 pages
File Size : 52,6 Mb
Release : 2023
Category : Electronic
ISBN : 3662652749

Get Book

Life Cycle Design & Engineering of Lightweight Multi-Material Automotive Body Parts by Thomas Vietor Pdf

This book presents the final report of the collaborative research project "MultiMaK2": MultiMaK2 contributed to the development of multi-material component concepts in large-scale automotive production. Whithin the project new methods in conceptual design of lightweight components were developed at the example of roof cross member and transmission tunnels. A concurrent Life Cycle Design & Engineering approach led to identifying eco- and cost efficient component alternatives. This includes evaluation tools for the concepts' full life cycle. Further, methods to integrate that knowledge into automotive engineering processes have been established based on principles of visual analytics. That brings forward a tight integration of data, engineering models and results visualization towards an informed knowledge building across disciplines. MultiMaK2 also compiled and structured design guidelines within a knowledge management system. All methods and tools have been embedded within the Life Cycle Design & Engineering Lab in the Open Hybrid LabFactory. The Content: Development of Automotive Body Parts in Multi-Material Design - Processes and Tools Knowledge Management Levers of Cyber Physical Production Systems for Multi-Material Body Parts Manufacturing Modeling and Simulation of New Manufacturing Processes for Multi-Material Lightweight Body Parts to Estimate Environmental Impacts Consideration of Environmental Impacts of Automotive Lightweight Body Parts during the Conceptual Design Stage Life Cycle Design & Engineering Lab in the Open Hybrid LabFactory Publications in Course of the MultiMaK2 Project. The Editor: Prof. Dr.-Ing. Thomas Vietor studied mechanical engineering at the University of Siegen and subsequently did his doctorate at the Institute of Mechanics and Control Engineering of the University of Siegen in the area of design and structural optimization of brittle material. From 1994 to 2009 he worked at Ford and, among other positions, headed the vehicle concepts department at Ford-Werke GmbH, Cologne, as well as the development department at Ford Motor Co. England. In 2009 he became Professor and director of the Institute for Engineering Design at the Technische Universität Braunschweig. Since 2013 Prof. Vietor is Board Member of the ForschungsCampus "Open Hybrid Lab Factory e.V." and since 2017 Chief Executive Officer of the Automotive Research Centre Niedersachsen (NFF).

Life Cycle Design & Engineering of Lightweight Multi-Material Automotive Body Parts

Author : Thomas Vietor
Publisher : Springer Nature
Page : 129 pages
File Size : 43,9 Mb
Release : 2022-10-19
Category : Technology & Engineering
ISBN : 9783662652732

Get Book

Life Cycle Design & Engineering of Lightweight Multi-Material Automotive Body Parts by Thomas Vietor Pdf

This book presents the final report of the collaborative research project "MultiMaK2": MultiMaK2 contributed to the development of multi-material component concepts in large-scale automotive production. Whithin the project new methods in conceptual design of lightweight components were developed at the example of roof cross member and transmission tunnels. A concurrent Life Cycle Design & Engineering approach led to identifying eco- and cost efficient component alternatives. This includes evaluation tools for the concepts' full life cycle. Further, methods to integrate that knowledge into automotive engineering processes have been established based on principles of visual analytics. That brings forward a tight integration of data, engineering models and results visualization towards an informed knowledge building across disciplines. MultiMaK2 also compiled and structured design guidelines within a knowledge management system. All methods and tools have been embedded within the Life Cycle Design & Engineering Lab in the Open Hybrid LabFactory.

The Multi Material Lightweight Vehicle (MMLV) Project

Author : David Wagner,Jeff L Conklin,Matthew Zaluzec,Timothy W Skszek
Publisher : SAE International
Page : 142 pages
File Size : 46,6 Mb
Release : 2015-06-05
Category : Technology & Engineering
ISBN : 9780768082241

Get Book

The Multi Material Lightweight Vehicle (MMLV) Project by David Wagner,Jeff L Conklin,Matthew Zaluzec,Timothy W Skszek Pdf

The desire for greater fuel efficiency and reduced emissions have accelerated a shift from traditional materials to design solutions that more closely match materials and their properties with key applications. The Multi-Material Lightweight Vehicle (MMLV) Project presents cutting edge engineering that meets future challenges in a concept vehicle with weight and life-cycle assessment savings. These results significantly contribute to achieving fuel reduction and to meeting future Corporate Average Fuel Economy (CAFÉ) regulations without compromising vehicle performance or occupant safety. The MMLV Project presents: • Lightweight materials applications. • Body in white design and computer aided engineering • Engine and transmission design and lightweighting. • Full vehicle test results that are specific to the MMLV subsystems including crash, corrosion, durability and Noise Vibration and Harshness (NVH). • The Life Cycle Analysis (LCA) for the MMLV The aluminum-intensive structure, combined with carbon fiber, magnesium, and titanium results in full vehicle mass reduction of a C/D class family sedan to that of a subcompact B-car (two vehicle segments lighter). The MMLV Project presents engineering solutions that frame materials selection and applications for the future.

Engineering Solutions for Sustainability

Author : Jeffrey Fergus,Brajendra Mishra,Dayan Anderson,Emily Allyn Sarver,Neale Neelameggham
Publisher : Springer
Page : 278 pages
File Size : 51,5 Mb
Release : 2016-12-01
Category : Technology & Engineering
ISBN : 9783319481388

Get Book

Engineering Solutions for Sustainability by Jeffrey Fergus,Brajendra Mishra,Dayan Anderson,Emily Allyn Sarver,Neale Neelameggham Pdf

With impending and burgeoning societal issues affecting both developed and emerging nations, the global engineering community has a responsibility and an opportunity to truly make a difference and contribute. The papers in this collection address what materials and resources are integral to meeting basic societal sustainability needs in critical areas of energy, transportation, housing, and recycling. Contributions focus on the engineering answers for cost-effective, sustainable pathways; the strategies for effective use of engineering solutions; and the role of the global engineering community. Authors share perspectives on the major engineering challenges that face our world today; identify, discuss, and prioritize engineering solution needs; and establish how these fit into developing global-demand pressures for materials and human resources.

Engineering Solutions for Sustainability

Author : Jeffrey W. Fergus,Brajendra Mishra,Dayan Anderson,Emily Allyn Sarver,Neale R. Neelameggham
Publisher : John Wiley & Sons
Page : 291 pages
File Size : 46,7 Mb
Release : 2015-07-29
Category : Technology & Engineering
ISBN : 9781119179870

Get Book

Engineering Solutions for Sustainability by Jeffrey W. Fergus,Brajendra Mishra,Dayan Anderson,Emily Allyn Sarver,Neale R. Neelameggham Pdf

This book contains a collection of papers presented at Engineering Solutions for Sustainability: Materials and Resources II, a special symposium organized as part of the TMS 2015 Annual Meeting & Exhibition and held in Orlando, Florida, March 15-19, 2015. With impending and burgeoning societal issues affecting both developed and emerging nations, the global engineering community has a responsibility and an opportunity to truly make a difference and contribute. The papers in this collection address what materials and resources are integral to meeting basic societal sustainability needs in critical areas of energy, transportation, housing, and recycling. Contributions focus on the engineering answers for cost-effective, sustainable pathways; the strategies for effective use of engineering solutions; and the role of the global engineering community. Authors share perspectives on the major engineering challenges that face our world today; identify, discuss, and prioritize engineering solution needs; and establish how these fit into developing global-demand pressures for materials and human resources.

The Multi Material Lightweight Vehicle (MMLV) Project

Author : David Wagner,Jeff L Conklin,Matthew Zaluzec,Timothy W Skszek
Publisher : SAE International
Page : 142 pages
File Size : 46,5 Mb
Release : 2015-06-05
Category : Technology & Engineering
ISBN : 9780768082234

Get Book

The Multi Material Lightweight Vehicle (MMLV) Project by David Wagner,Jeff L Conklin,Matthew Zaluzec,Timothy W Skszek Pdf

The desire for greater fuel efficiency and reduced emissions have accelerated a shift from traditional materials to design solutions that more closely match materials and their properties with key applications. The Multi-Material Lightweight Vehicle (MMLV) Project presents cutting edge engineering that meets future challenges in a concept vehicle with weight and life-cycle assessment savings. These results significantly contribute to achieving fuel reduction and to meeting future Corporate Average Fuel Economy (CAFÉ) regulations without compromising vehicle performance or occupant safety. The MMLV Project presents: • Lightweight materials applications. • Body in white design and computer aided engineering • Engine and transmission design and lightweighting. • Full vehicle test results that are specific to the MMLV subsystems including crash, corrosion, durability and Noise Vibration and Harshness (NVH). • The Life Cycle Analysis (LCA) for the MMLV The aluminum-intensive structure, combined with carbon fiber, magnesium, and titanium results in full vehicle mass reduction of a C/D class family sedan to that of a subcompact B-car (two vehicle segments lighter). The MMLV Project presents engineering solutions that frame materials selection and applications for the future.

The Multi-material Lightweight Vehicles (MMLV) Project

Author : Timothy W. Skszek,Jeff Conklin,Matthew Zaluzec,David Wagner
Publisher : Unknown
Page : 127 pages
File Size : 47,8 Mb
Release : 2015
Category : Automobiles
ISBN : 0768082269

Get Book

The Multi-material Lightweight Vehicles (MMLV) Project by Timothy W. Skszek,Jeff Conklin,Matthew Zaluzec,David Wagner Pdf

The desire for greater fuel efficiency and reduced emissions have accelerated a shift from traditional materials to design solutions that more closely match materials and their properties with key applications. The Multi Material Lightweight Vehicle (MMLV) Project presents cutting edge engineering that meets future challenges in a concept vehicle with weight and life-cycle assessment savings. These results significantly contribute to achieving fuel reduction and to meeting future Corporate Average Fuel Economy (CAFÉ) regulations without compromising vehicle performance or occupant safety. The MMLV Project presents: Lightweight materials applications; Body in white design and computer aided engineering; Engine and transmission design and lightweighting; Full vehicle test results that are specific to the MMLV subsystems including crash, corrosion, durability and Noise Vibration and Harshness (NVH); The Life Cycle Analysis (LCA) for the MMLV.

Re-engineering Manufacturing for Sustainability

Author : Andrew Y. C. Nee,Bin Song,Soh-Khim Ong
Publisher : Springer Science & Business Media
Page : 738 pages
File Size : 43,7 Mb
Release : 2013-04-08
Category : Technology & Engineering
ISBN : 9789814451482

Get Book

Re-engineering Manufacturing for Sustainability by Andrew Y. C. Nee,Bin Song,Soh-Khim Ong Pdf

This edited volume presents the proceedings of the 20th CIRP LCE Conference, which cover various areas in life cycle engineering such as life cycle design, end-of-life management, manufacturing processes, manufacturing systems, methods and tools for sustainability, social sustainability, supply chain management, remanufacturing, etc.

Innovative Design, Analysis and Development Practices in Aerospace and Automotive Engineering

Author : Ram P. Bajpai,U. Chandrasekhar,Avinash R. Arankalle
Publisher : Springer Science & Business
Page : 320 pages
File Size : 55,6 Mb
Release : 2014-05-02
Category : Technology & Engineering
ISBN : 9788132218715

Get Book

Innovative Design, Analysis and Development Practices in Aerospace and Automotive Engineering by Ram P. Bajpai,U. Chandrasekhar,Avinash R. Arankalle Pdf

The book presents the best articles presented by researchers, academicians and industrial experts in the International Conference on “Innovative Design, Analysis and Development Practices in Aerospace and Automotive Engineering”. The book discusses new concept designs, analysis and manufacturing technologies, where more swing is for improved performance through specific and/or multifunctional linguistic design aspects to downsize the system, improve weight to strength ratio, fuel efficiency, better operational capability at room and elevated temperatures, reduced wear and tear, NVH aspects while balancing the challenges of beyond Euro IV/Barat Stage IV emission norms, Greenhouse effects and recyclable materials. The innovative methods discussed in the book will serve as a reference material for educational and research organizations, as well as industry, to take up challenging projects of mutual interest.

Designing Sustainable Technologies, Products and Policies

Author : Enrico Benetto,Kilian Gericke,Mélanie Guiton
Publisher : Springer
Page : 498 pages
File Size : 40,7 Mb
Release : 2018-07-03
Category : Science
ISBN : 9783319669816

Get Book

Designing Sustainable Technologies, Products and Policies by Enrico Benetto,Kilian Gericke,Mélanie Guiton Pdf

This open access book provides insight into the implementation of Life Cycle approaches along the entire business value chain, supporting environmental, social and economic sustainability related to the development of industrial technologies, products, services and policies; and the development and management of smart agricultural systems, smart mobility systems, urban infrastructures and energy for the built environment. The book is based on papers presented at the 8th International Life Cycle Management Conference that took place from September 3-6, 2017 in Luxembourg, and which was organized by the Luxembourg Institute of Science and Technology (LIST) and the University of Luxembourg in the framework of the LCM Conference Series.

Enabling Manufacturing Competitiveness and Economic Sustainability

Author : Hoda A. ElMaraghy
Publisher : Springer Science & Business Media
Page : 665 pages
File Size : 50,9 Mb
Release : 2011-09-29
Category : Technology & Engineering
ISBN : 9783642238604

Get Book

Enabling Manufacturing Competitiveness and Economic Sustainability by Hoda A. ElMaraghy Pdf

The changing manufacturing environment requires more responsive and adaptable manufacturing systems. The theme of the 4th International Conference on Changeable, Agile, Reconfigurable and Virtual production (CARV2011) is “Enabling Manufacturing Competitiveness and Economic Sustainability”. Leading edge research and best implementation practices and experiences, which address these important issues and challenges, are presented. The proceedings include advances in manufacturing systems design, planning, evaluation, control and evolving paradigms such as mass customization, personalization, changeability, re-configurability and flexibility. New and important concepts such as the dynamic product families and platforms, co-evolution of products and systems, and methods for enhancing manufacturing systems’ economic sustainability and prolonging their life to produce more than one product generation are treated. Enablers of change in manufacturing systems, production volume and capability scalability and managing the volatility of markets, competition among global enterprises and the increasing complexity of products, manufacturing systems and management strategies are discussed. Industry challenges and future directions for research and development needed to help both practitioners and academicians are presented.

EcoDesign and Sustainability I

Author : Yusuke Kishita,Mitsutaka Matsumoto,Masato Inoue,Shinichi Fukushige
Publisher : Springer Nature
Page : 532 pages
File Size : 51,7 Mb
Release : 2020-11-02
Category : Science
ISBN : 9789811567797

Get Book

EcoDesign and Sustainability I by Yusuke Kishita,Mitsutaka Matsumoto,Masato Inoue,Shinichi Fukushige Pdf

This book highlights cutting-edge ecodesign research, covering product and service design, smart manufacturing, and social perspectives in ecodesign. Featuring selected papers presented at EcoDesign 2019: 11th International Symposium on Environmentally Conscious Design and Inverse Manufacturing, it also includes diverse, interdisciplinary approaches to foster ecodesign research and activities. In the context of Sustainable Development Goals (SDGs), it addresses the need for the manufacturing industry to design innovations for sustainable value creation, taking into account technological developments, legislation, and consumer lifestyles. Further, the book discusses the concept of circular economy, which originated in Europe and aims to increase resource efficiency by shifting away from the linear economy. Focusing on product life cycle design and management, smart manufacturing, circular economy, and business strategies, and providing useful approaches and solutions to these emerging concepts, this book is intended for both researchers and practitioners working in the broad field of ecodesign and sustainability.

Materials, Design and Manufacturing for Lightweight Vehicles

Author : P K Mallick
Publisher : Elsevier
Page : 384 pages
File Size : 49,6 Mb
Release : 2010-03-01
Category : Technology & Engineering
ISBN : 9781845697822

Get Book

Materials, Design and Manufacturing for Lightweight Vehicles by P K Mallick Pdf

Research into the manufacture of lightweight automobiles is driven by the need to reduce fuel consumption to preserve dwindling hydrocarbon resources without compromising other attributes such as safety, performance, recyclability and cost. Materials, design and manufacturing for lightweight vehicles will make it easier for engineers to not only learn about the materials being considered for lightweight automobiles, but also to compare their characteristics and properties. Part one discusses materials for lightweight automotive structures with chapters on advanced steels for lightweight automotive structures, aluminium alloys, magnesium alloys for lightweight powertrains and automotive structures, thermoplastics and thermoplastic matrix composites and thermoset matrix composites for lightweight automotive structures. Part two reviews manufacturing and design of lightweight automotive structures covering topics such as manufacturing processes for light alloys, joining for lightweight vehicles, recycling and lifecycle issues and crashworthiness design for lightweight vehicles. With its distinguished editor and renowned team of contributors, Materials, design and manufacturing for lightweight vehicles is a standard reference for practicing engineers involved in the design and material selection for motor vehicle bodies and components as well as material scientists, environmental scientists, policy makers, car companies and automotive component manufacturers. Provides a comprehensive analysis of the materials being used for the manufacture of lightweight vehicles whilst comparing characteristics and properties Examines crashworthiness design issues for lightweight vehicles and further emphasises the development of lightweight vehicles without compromising safety considerations and performance Explores the manufacturing process for light alloys including metal forming processes for automotive applications

The Multi Material Lightweight Vehicle (MMLV) Project

Author : David Wagner
Publisher : Unknown
Page : 142 pages
File Size : 41,8 Mb
Release : 2015
Category : Automobiles
ISBN : 0768087198

Get Book

The Multi Material Lightweight Vehicle (MMLV) Project by David Wagner Pdf

The desire for greater fuel efficiency and reduced emissions have accelerated a shift from traditional materials to design solutions that more closely match materials and their properties with key applications. The Multi Material Lightweight Vehicle (MMLV) Project presents cutting edge engineering that meets future challenges in a concept vehicle with weight and life-cycle assessment savings. These results significantly contribute to achieving fuel reduction and to meeting future Corporate Average Fuel Economy (CAF) regulations without compromising vehicle performance or occupant safety. The aluminum-intensive structure, combined with carbon fiber, magnesium, and titanium results in full vehicle mass reduction of a C/D class family sedan to that of a subcompact B-car (two vehicle segments lighter). The MMLV Project presents engineering solutions that frame materials selection and applications for the future.

Plastics Application Technology for Lightweight Automobiles

Author : Sudhakar Marur
Publisher : SAE International
Page : 374 pages
File Size : 43,6 Mb
Release : 2013-08-06
Category : Technology & Engineering
ISBN : 9780768080186

Get Book

Plastics Application Technology for Lightweight Automobiles by Sudhakar Marur Pdf

This book is focused on the use of plastics in automobiles for traditional applications, as well as for more advanced uses such as under-the-hood components. Engineering thermoplastics offer the ability to tailor-make components from polymers, and to design parts for enhanced performance, new functionality, part integration, and elimination of secondary operations. Parts made from engineering thermoplastics can be manufactured within specified cost constraints, and using manufacturing methods that offer a wide range of production flexibility. A decade of research and real-world applications is presented by the authors on application technology development for various aspects of automotive design – concept design, CAD modeling, predictive engineering methods through CAE, manufacturing method simulation, and prototype and tool making. Additional advantages of plastics are covered and include greater styling, improved energy absorption, and enhanced performance over traditional materials, all while fostering environmental sustainability and reducing overall vehicle weight for next generation automobiles.