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 for Production Management
- 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.
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Entwicklung eines Messstandes zur automatisierten Messung der radialen Lagerluft von Wälzlagern
Meier, N., 05.06.2018, 1 ed. Göttingen: Sierke Verlag. 90 p. (Schriftenreihe zur Produkt- und Prozessinnovation; vol. 13)Research output: Books and anthologies › Monographs › Research › peer-review
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Stability of phase transformation models for Ti-6Al-4V under cyclic thermal loading imposed during laser metal deposition
Klusemann, B. & Bambach, M., 02.05.2018, In: AIP Conference Proceedings. 1960, 1, 140012.Research output: Journal contributions › Conference article in journal › Research › peer-review
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Control oriented modeling of DCDC converters
Schmidt, S., Richter, M., Oberrath, J. M. & Mercorelli, P., 01.01.2018, In: IFAC-PapersOnLine. 51, 2, p. 331-336 6 p.Research output: Journal contributions › Journal articles › Research › peer-review
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Generation of 3D representative volume elements for heterogeneous materials: A review
Bargmann, S., Klusemann, B., Schneider, K., Soyarslan, C., Markmann, J., Schnabel, J. E. & Wilmers, J., 01.07.2018, In: Progress in Materials Science. 96, p. 322-384 63 p.Research output: Journal contributions › Scientific review articles › Research
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Finite element modeling of laser beam welding for residual stress calculation
Herrnring, J. & Klusemann, B., 2017, In: Proceedings in applied mathematics and mechanics. 17, 1, p. 415 - 416 2 p.Research output: Journal contributions › Conference article in journal › Research › peer-review
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Laser shock peening process modelling and experimental validation of AA2198-T3 and AA2198-T8
Keller, S., Kashaev, N. & Klusemann, B., 2017, In: Proceedings in applied mathematics and mechanics. 17, 1, p. 423 - 424 2 p.Research output: Journal contributions › Conference article in journal › Research › peer-review
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Fatigue Life Extension of AA2024 Specimens and Integral Structures by Laser Shock Peening
Kashaev, N., Chupakhin, S., Ventzke, V., Horstmann, M., Riekehr, S., Barbini, A., dos Santos, J., Keller, S., Klusemann, B. & Huber, N., 25.05.2018, MATEC Web of Conferences: 12th International Fatigue Congress (FATIGUE 2018) . G, H. (ed.). EDP Sciences, Vol. 165. 6 p. 18001. (MATEC Web of Conferences; vol. 165).Research output: Contributions to collected editions/works › Article in conference proceedings › Research › peer-review
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Microstructure and hardness evolution of laser metal deposited AA5087 wall-structures
Frönd, M., Ventzke, V., Riekehr, S., Kashaev, N., Klusemann, B. & Enz, J., 03.09.2018, In: Procedia CIRP. 74, p. 131-135 5 p.Research output: Journal contributions › Conference article in journal › Research › peer-review
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Experimental investigation of temperature distribution during wire-based laser metal deposition of the Al-Mg alloy 5087
Frönd, M., Bock, F. E., Riekehr, S., Kashaev, N., Klusemann, B. & Enz, J., 01.12.2018, In: Materials Science Forum. 941, p. 988-994 7 p.Research output: Journal contributions › Conference article in journal › Research › peer-review
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Process Development for Wire-based Laser Metal Deposition of 5087 Aluminium alloy by using Fibre Laser
Frönd, M., Riekehr, S., Kashaev, N., Klusemann, B. & Enz, J., 08.2018, In: Journal of Manufacturing Processes. 34, Part A, p. 721-732 12 p., 34.Research output: Journal contributions › Journal articles › Research › peer-review