Integration of a Physical Model into the Realization of Engineering Changes in Manufacturing Systems

Article Preview

Abstract:

Manufacturing companies have to implement engineering changes in manufacturing systems to remain competitive in changing conditions. Physical influences like collisions or load capacities have to be considered for a proper planning of these changes by modeling and simulating the influences. To consider these physical influences, a concept is presented for the integration of physical model into realization of engineering changes. The concept provides information for the feasibility of the work steps for the execution and enables an efficient planning. Hence, planning mistakes can be detected before changes are executed and the negative impact on ongoing manufacturing can be avoided.

You have full access to the following eBook

Info:

Periodical:

Pages:

159-166

Citation:

Online since:

August 2017

Export:

Share:

Citation:

* - Corresponding Author

[1] F. Kühn, Digitale Fabrik – Fabriksimulation für Produktionsplaner, Hanser-Verlag, München, (2006).

DOI: 10.3139/9783446408661.fm

Google Scholar

[2] C. Kunz, Strategisches Multiprojektmanagement – Konzeption, Methoden und Strukturen, 2. Aufl., Dissertation, Universität Bamberg, Bamberg, (2007).

Google Scholar

[3] J. Seidel, T. Ziegler, Management von Projektabhängigkeiten, in: C. Steinle, F. Ahlers, M. Barnert (Eds. ), Handbuch Multiprojektmanagement und -controlling. Projekte erfolgreich strukturieren und steuern. 2., neu bearb. und erw. Aufl., Schmidt, Berlin, 2010, pp.115-129.

DOI: 10.37307/b.978-3-503-15685-6

Google Scholar

[4] M. F. Zaeh, L. Papadakis, M. Langhorst, Simulation of the manufacturing process chain of welded frame structures, Production Engineering 2 (2008) 4: pp.385-393.

DOI: 10.1007/s11740-008-0122-4

Google Scholar

[5] M. Rößing, Technische Änderungen in der Produktion – Vorgehensweise zur systematischen Initialisierung, Durchführung und Nachbereitung, in: J. C. Aurich (Ed. ): Produktionstechnische Berichte aus dem FBK, Bd. 02-07 (2007).

Google Scholar

[6] R.C. Malak, Methode zur softwarebasierten Planung technischer Änderungen in der Produktion, in: J. C. Aurich (Ed. ): Produktionstechnische Berichte aus dem FBK, Bd. 05-13 (2013).

Google Scholar

[7] D. Cichos, J.C. Aurich, Planning and controlling of multiple, parallel engineering changes in manufacturing systems, Procedia CIRP 33 - Proceedings of the 9th CIRP Conference on Intelligent Computation in Manufacturing (2015) 81-86.

DOI: 10.1016/j.procir.2015.06.016

Google Scholar

[8] D. Cichos, J.C. Aurich, Technische Änderungen in der Produktion - Implementierung eines physikalischen Modells, wt Werkstattstechnik online 9 (2016) 671-675.

DOI: 10.37544/1436-4980-2016-09-97

Google Scholar