Professorship for materials mechanics

Organisational unit: Section

Organisation profile

The professorship "materials mechanics“ focuses on the development of suitable models for different classes of materials based on the physical deformation mechanisms as well as on the modeling and simulation of local production processes. The development of these material models is crucial for the application of new materials, since these models are able to describe the deformation behavior in industrial production processes which allows for their optimization. In particular, local engineering in the context of production processes is of high technological relevance in adjusting local properties. For example, laser material processing and friction stir welding are relevant processes which are investigated. A targeted heat input into the material can be used to control and adjust the properties near the surface. As a result, improved properties, particularly in terms of damage tolerance can be achieved. The complexity of the interaction between the process parameters and material properties leads to high experimental effort, with sophisticated experimental techniques required to determine the influence of the process on the component. Therefore, reliable models are required to reduce the experimental effort. The developed material and process models are used to identify optimal process parameters that produce the desired properties inside the material and structure. The main objective of the professorship is to develop realistic and efficient numerical models which are formulated on basis of the underlying physical mechanisms. The identification of these mechanisms requires interdisciplinary collaborations with scientists from materials science, mechanics and production.The cooperation between the University of Lüneburg and the Helmholtz-Zentrum Geesthacht provides an ideal opportunity to accomplish the goals of this shared professorship.

Topics

modeling of microstructures

process modeling ans simulation of laser shock peening

process modeling and simulation of laser welding

modeling of metallic glasses

modeling of residual stresses

modeling of nano materials

development of homogenization approaches for heterogeneous materials

  1. Scientific review articles › Research
  2. Published

    A Review of the Application of Machine Learning and Data Mining Approaches in Continuum Materials Mechanics

    Bock, F. E., Aydin, R. C., Cyron, C. C., Huber, N., Kalidindi, S. R. & Klusemann, B., 15.05.2019, In: Frontiers in Materials. 6, 23 p., 110.

    Research output: Journal contributionsScientific review articlesResearch

  3. Published

    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 contributionsScientific review articlesResearch

  4. Conference abstract in journal › Research › Not peer-reviewed
  5. Published

    Simulation of fatigue crack growth in residual‐stress‐afflicted specimen with a phase‐field model

    Seiler, M., Keller, S., Kashaev, N., Klusemann, B. & Kästner, M., 01.12.2021, In: PAMM. 21, 1, 2 p., e202100210.

    Research output: Journal contributionsConference abstract in journalResearch

  6. Conference article in journal › Research › Not peer-reviewed
  7. Published

    Analysis of a phase‐field finite element implementation for precipitation

    Safi, A. R., Chafle, R. & Klusemann, B., 01.03.2023, In: PAMM. 22, 1, 6 p., e202200238.

    Research output: Journal contributionsConference article in journalResearch

  8. Published

    Numerical investigation of laser beam-welded AA2198 joints under different artificial ageing conditions

    Examilioti, T., Germanou, A., Papanikos, P., Kashaev, N., Klusemann, B. & Alexopoulos, N. D., 01.01.2022, In: Procedia Structural Integrity. 42, p. 244-250 7 p.

    Research output: Journal contributionsConference article in journalResearch

  9. Conference article in journal › Research › Peer-reviewed
  10. Published

    Application of Adaptive Element-Free Galerkin Method to Simulate Friction Stir Welding of Aluminum

    Talebi, H., Froend, M. & Klusemann, B., 01.01.2017, In: Procedia Engineering. 207, p. 580-585 6 p., 137838.

    Research output: Journal contributionsConference article in journalResearchpeer-review

  11. Published

    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 contributionsConference article in journalResearchpeer-review

  12. Published

    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 contributionsConference article in journalResearchpeer-review

  13. Published

    Friction riveting of 3D printed polyamide 6 with AA 6056-T6

    dos Santos Mallmann, P. H., Blaga, L. A., dos Santos, J. F. & Klusemann, B., 05.2020, In: Procedia Manufacturing. 47, p. 406-412 7 p.

    Research output: Journal contributionsConference article in journalResearchpeer-review

  14. Published

    Fundamental study on additive manufacturing of aluminum alloys by friction surfacing layer deposition

    Shen, J., Hanke, S., Roos, A., Santos, J. F. D. & Klusemann, B., 02.07.2019, In: AIP Conference Proceedings. 2113, 1, 6 p., 150015.

    Research output: Journal contributionsConference article in journalResearchpeer-review