Evaluation of Production Processes with Focus on Sustainability (ILV)

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Specialization AreaFertigungstechnik
Course numberB2.00000.50.440
Course codeBewFV
Curriculum2023
Semester of degree program Semester 5
Mode of delivery Presencecourse
Units per week2,0
ECTS credits2,5
Language of instruction German

Students understand

  • the technical and economic influencing parameters and interrelationships in the analysis and evaluation of manufacturing processes with special consideration of sustainability aspects.
They can
  • apply relevant methods for the evaluation of production processes.
  • use modelling systems to model, simulate and evaluate manufacturing processes from an economic point of view.
  • systematically implement sustainability in the design of production systems and their modelling.

B2.00000.30.100 - Production Machinery
B2.00000.40.450 - Additive Manufacturing
B2.00000.20.360 - Casting and Separation
B2.00000.20.370 - Recasting and Joining
B2.00000.20.080 - Mathematical modelling and parametrization

Introduction to the topic:

  • Production processes
  • Work plan
  • Analysis and evaluation of production processes
Business assessment of different manufacturing processes:
  • Qualitative assessment
  • Quantitative assessment
Evaluation Criteria:
  • Qualitative criteria
  • Quantitative criteria
Fundamentals for a holistic assessment of manufacturing processes:
  • Product requirements
  • Production technology
  • Production organisation
  • Flexibility of the manufacturing system
  • Set structure
  • Work plan
Practical calculation exercises based on concrete examples:
  • Methods of modelling
    • with witness
    • with selected computer algebra programs (e.g. statistical modelling, cost accounting, energy flow calculation, etc.)
Methods for the qualitative and quantitative assessment of manufacturing processes:
  • Overhead calculation
  • Single cost calculation method
  • Technological, direct costs per piece
  • Hourly costs calculation method
Optimisation of manufacturing processes:
  • Increase in quality
  • Increase in productivity
  • Increase in flexibility
  • Maintenance strategies
  • Sustainability optimisation
Sustainability:
  • Formulation of sustainability criteria
  • Systematic application and methods for implementing sustainability in production systems
  • Integration of sustainability into production systems and related assessments
  • Resource efficiency, social aspects and those concerning the associated social, operational and production transformations
  • Integration and importance of Artificial Intelligence (AI) systems in the context of sustainability

  • REFA (Hrsg.): Ausgewählte Methoden zur Prozessorganisation; Arbeitssysteme- und Prozessmanagement, Darmstadt, 1998
  • REFA (Hrsg.): Methodenlehre der Betriebsorganisation - Planung und Steuerung, Teil 1,2,3, München, 1991
  • Awiszus, B., et. Al. (Hrsg.): Grundlagen der Fertigungstechnik, 4. Aktualisierte Auflage, München, 2009
  • Erlach, K., Wertstromdesign, Der Weg zur schlanken Fabrik, 2010
  • Witness Dokumentation (Im Programm)
  • Benker, H., Statistik mit MATHCAD und MATLAB, Einführung in die Wahrscheinlichkeitsrechnung und mathematische Statistik für Ingenieure und Naturwissenschaftler, 2001
  • Benker, H., Mathematik mit Mathcad, Arbeitsbuch für Studierende, Ingenieure und Naturwissenschaftler, Springer, 2004
  • Lorenzen, K., Einführung in Mathematica, mitb Verlag, 2014
  • Wolfram, S., A New Kind of Science, Stephen Wolfram, 2002
  • Faust, K., Rogler, E., and J. D. Hergenröder, Logistiksimulation mit WITNESS Manufacturing - Grundlagen, Anwendungen, Beispiele. Hanser Verlag, 2021
  • Erlach, K., Energiewertstrom : der Weg zur energieeffizienten Fabrik. Stuttgart: Fraunhofer-Verlag, 2009
  • Reinhart. G., HANDBUCH INDUSTRIE 4. 0 GESCHÄFTSMODELLE, PROZESSE, TECHNIK. Hanser Verlag, 2017
  • Lochmahr, A. and J. Boppert, Handbuch grüne Logistik : Hintergründe und Handlungsempfehlungen. München: Huss, 2014
  • Neugebauer, R., Handbuch ressourcenorientierte Produktion. München, Wien: Carl Hanser Verlag, 2014
  • Hopf, H., Methodik zur Fabriksystemmodellierung im Kontext von Energie- und Ressourceneffizienz. Wiesbaden: Springer Fachmedien, 2016
  • Japan-Institute-of-Plant-Maintenance, Die TPM-Fibel : Das ganzheitliche Produktionssystem für die Prozessindustrie. Adept-Media GmbH, 2013

Integrated course (ILV)