Institute for production technology and systems
Organisational unit: Institute
- Junior professorship for Measurement and Sensor Technology in Production Engineering
- Professorship for Manufacturing – Innovative Manufacturing
- Professorship for materials mechanics
- Professorship for Materials Technology, in particular of Magnesium Materials
- Professorship for Modelling and Simulation of Technical Systems and Processes
- Professorship for Product Development and Design
- Professorship of Control and Drive Systems
- Professorship of Production Management
Organisation profile
The members of the Institute for Production Technology and Systems (IPTS) carry out work on a wide range of engineering-related research questions.
When it comes to subjects, the members of the Institute concentrate on the topics of supply chain management and production management, as well as on measurement, control, plasma, production and material technology. Within these fields, we aim to answer current research questions through both experimental work and the use of digital modelling. Our overarching goal here is to provide better solution strategies for complex problems within the field of engineering.
Main research areas
The members of the department investigate this field from both a production management and a technical perspective.
Cooperations with companies and external research institutes play an important role in the IPTS work. We collaborate with our industry partners to create practically-oriented solutions to problems within industrial practice. This allows us to transfer our research findings directly into industrial companies, thus helping to improve our partners' competitiveness. A particular highlight of our work is the strong partnership which exists between the IPTS and the Helmholtz-Zentrum Geesthacht Centre for Materials and Coastal Research, which is formally expressed in the form of two shared professorships at the IPTS.
- Journal articles › Research › Not peer-reviewed
- Published
Designing Mg alloys with high strength and ductility by reducing the strength difference between the basal and non-basal slips
Zhou, S., Liu, T., Tang, A., Huang, Y., Peng, P., Zhang, J., Hort, N., Willumeit-Römer, R. & Pan, F., 01.01.2023, In: Materials and Design. 225, 14 p., 111476.Research output: Journal contributions › Journal articles › Research
- Published
Eine bibliometrische Analyse: Produktionsplanung und -steuerung und maschinelles Lernen
Schmidt, M., Maier, J. T. & Grothkopp, M., 14.05.2020, In: wt Werkstattstechnik online. 110, 4, p. 220-225 6 p.Research output: Journal contributions › Journal articles › Research
- Published
Friction Riveting of FR4 substrates for printed circuit boards: Influence of process parameters on process temperature development and joint properties
Rodrigues, C. F., Blaga, L. & Klusemann, B., 01.05.2023, In: Journal of Materials Research and Technology. 24, p. 4639-4649 11 p.Research output: Journal contributions › Journal articles › Research
- Published
Gespannt überwacht - sicheres Innengewinden
Linß, M., Lange, D. & Watzke, R., 2005, In: Werkstatt + Betrieb. 138, 6, p. 38-42 5 p.Research output: Journal contributions › Journal articles › Research
- Published
Gewindebohren goes Hi Tec
Zeus, T., Kugler, W. & Linß, M., 2003, In: Werkstatt + Betrieb. 136, 10, p. 92-95 4 p.Research output: Journal contributions › Journal articles › Research
- Published
Gewindefurchen - die Alternative
Linß, M., 2001, In: Werkstatt + Betrieb. 134, 7/8, p. 39-42 4 p.Research output: Journal contributions › Journal articles › Research
- Published
Hochleistungsprozesse in der Zerspanung: Einsparpotenziale bei der Innengewindebearbeitung
Linß, M., 2000, In: Schweizer Maschinenmarkt. 34, p. 10-16 7 p.Research output: Journal contributions › Journal articles › Research
- Published
Hochleistungsverfahren Gewindebohren
Linß, M., 2001, In: Werkstatt + Betrieb. 134, 5, p. 30-33 4 p.Research output: Journal contributions › Journal articles › Research
- Published
Influence of laser shock peening on the residual stresses in additively manufactured 316L by Laser Powder Bed Fusion: A combined experimental-numerical study
Sandmann, P., Keller, S., Kashaev, N., Ghouse, S., Hooper, P. A., Klusemann, B. & Davies, C. M., 01.12.2022, In: Additive Manufacturing. 60, Part A, 14 p., 103204.Research output: Journal contributions › Journal articles › Research
- Published
Kundenintegration durch Additive Fertigung
Wagner, C. & Georgiadis, A., 05.2017, In: ZWF Zeitschrift für wirtschaftlichen Fabrikbetrieb. 112, 5, p. 317-321 5 p.Research output: Journal contributions › Journal articles › Research