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GRK 1896

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  • Research
    • Project areas
      • Project area A „Functional Nanostructures and Networks“
        • A1: Structure-property relations of nanowire networks
        • A2: Degradation and corrosion at nanostructures and metal surfaces
        • A3: Growth, stabilization and ripening of nanoparticles in suspensions
        • A4: Growth and characterization of thin single crystalline layers for molecular electronics
        • A5: Degradation and corrosion of metalic nanostructures and nanostructured metals
        • A6: Hybride semiconductors – metal nanowire composites for opto-electronic devices
      • Project area B „Mechanical Properties of Interfaces“
        • B1: Mechanical switching of molecules on surfaces
        • B2: Structural changes in nanoparticles under pressure loading
        • B3: Mechanical properties and fracture behavior of thin layers
        • B4: 3D-deformation behavior of nanoporous metals and nanocomposites
        • B5: 3D-structure-property relations at grain boundaries
        • B6: Influence of topology, interfaces and local chemical compositions on the deformations behavior of nanostructures
      • Postdoc project Z: NanoCT – Developing and establishing of novel in situ approaches
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  1. Home
  2. Research
  3. Project areas
  4. Project area B „Mechanical Properties of Interfaces“
  5. B4: 3D-deformation behavior of nanoporous metals and nanocomposites

B4: 3D-deformation behavior of nanoporous metals and nanocomposites

In page navigation: Research
  • Project areas
    • Project area A „Functional Nanostructures and Networks“
    • Project area B „Mechanical Properties of Interfaces“
      • B1: Mechanical switching of molecules on surfaces
      • B2: Structural changes in nanoparticles under pressure loading
      • B3: Mechanical properties and fracture behavior of thin layers
      • B4: 3D-deformation behavior of nanoporous metals and nanocomposites
      • B5: 3D-structure-property relations at grain boundaries
      • B6: Influence of topology, interfaces and local chemical compositions on the deformations behavior of nanostructures
    • Postdoc project Z: NanoCT - Developing and establishing of novel in situ approaches
  • Publications

B4: 3D-deformation behavior of nanoporous metals and nanocomposites

3D-deformation behavior of nanoporous metals and nanocomposites

Project B4 will be realigned during the second funding phase to introduce the possibilities of the high-resolution X-ray microscope and to use it for a cross-scale investigation of mechanical size effects. The project focuses on the new X-ray microscope Zeiss Xradia Ultra 810, which complements the already established tomography techniques in CENEM (360 ° ET, 3D-FIB, APT) across scales. The device currently has the highest spatial resolution of a laboratory device (<50 nm) and is equipped with a micromechanical in situ loading unit. This allows correlated mechanical and structural 3D analyzes, which are established in cooperation with Project Z. D The 3D data obtained from X-ray tomography are used to elucidate the deformation behavior for cross-scale correlative simulations (FEM / MD). In addition to the tomographic examinations, further methods of electron microscopy and X-ray scattering are used to elucidate the structure.

Members

Simon Carl

Simon Carl, M. Sc.

Chair of Micro- and Nanostructure Research

  • Email: sim.carl@fau.de
More › Details for Simon Carl
Silvan Englisch

Silvan Englisch

More › Details for Silvan Englisch
Janis Wirth

Janis Wirth, M.Sc.

Institute of Micro- and Nanostructure Research and Center for Nanoanalysis and Electron Microscopy (CENEM)

  • Email: janis.wirth@fau.de
  • Website: http://www.em.techfak.uni-erlangen.de
More › Details for Janis Wirth

Supervisors

Erdmann Spiecker

Prof. Dr. rer. nat. habil. Erdmann Spiecker

Chair of Micro- and Nanostructure Research

  • Email: erdmann.spiecker@fau.de
  • Website: http://www.em.techfak.uni-erlangen.de/
More › Details for Erdmann Spiecker

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