Analyzing Decision-making in Automotive Design towards Life Cycle Engineering for Hybrid Lightweight Components

Author:

Kaluza Alexander,Kleemann Sebastian,Broch Florian,Herrmann Christoph,Vietor Thomas

Publisher

Elsevier BV

Subject

General Medicine

Reference15 articles.

1. Nehuis, F., Kleemann, S., Egede, P., Vietor, T., Herrmann, C. Future trends in the development of vehicle bodies regarding lightweight and cost. In: Bajpai, R.P., editor. Proceedings I-DAD 2014. New Delhi: Springer India; 2014, p. 13-21. doi:10.1007/978-81-322-1871-5_3.

2. Fischer, F., Große, T., Kleemann, S., Dröder, K., Dilger, K., Vietor, T. Smart Production of Hybrid Material Automotive Structures at ForschungsCampus Wolfsburg in the “Open Hybrid LabFactory”. In: Borgmann, H., editor. ITHEC 2014. Bremen. ISBN 3933339251; 2014, p. 33-36.

3. Broch, F., Warsen, J., Krinke, S. Implementing Life Cycle Engineering in Automotive Development as a Helpful Management Tool to Support Design for Environment. In: Sonnemann, G., editor. Life Cycle Management. Springer Verlag. ISBN 9789401772204; 2015, p. 319-329.

4. Leichtbau in Mobilität und Fertigung - Ö kologische Aspekte. 2012. URL: http://www.e-mobilbw.de/de/service/publikationen.html.

5. Do fiber-reinforced polymer composites provide environmentally benign alternatives? a life-cycle-assessment-based study;Duflou;MRS Bulletin,2012

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