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Alternative appointments10 Dec 2025 13:00 - 14:00 • Current10 Dec 2025 13:00 - 14:00 • CurrentCalPhaD Coffee Lecture – Augmented tracer-interdiffusion couple method: a high-throughput approach for consistent measurements of the tracer diffusion coefficients17 Sep 2026 15:00 - 15:30Metallographie to go16 Oct 2026 13:00 - 14:00Kupfer im Fokus: Verstehen, Verarbeiten, Anwenden06 Nov 2026 13:00 - 14:001000 °C? Blaues Licht statt heiße Luft
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CalPhaD Coffee Lecture – Augmented tracer-interdiffusion couple method: a high-throughput approach for consistent measurements of the tracer diffusion coefficients

When

10 Dec 2025 13:00 - 14:00

Where

Online

Language

English

The CalPhaD Coffee Lecture is a new discussion forum within the DGM Expert Committee on Thermodynamics. Invited speakers will present methods that may be unfamiliar to traditional CalPhaD experimentalists but hold potential for integration into established approaches.

In addition, the series will explore current challenges and emerging topics that provide fresh impulses for the CalPhaD community.

At this Coffee Lecture, Prof. Dr. Sergiy Divinski, Institute of Materials Physics, University of Münster, will give a presentation on: "Augmented tracer-interdiffusion couple method: a high-throughput approach for consistent measurements of the tracer diffusion coefficients".

Everyone interested is warmly invited to participate and contribute to the exchange.

Further information on the DGM Expert Committee on Thermodynamics.

Chair

  • Prof. Dr.-Ing. Stephanie Lippmann

    Prof. Dr.-Ing. Stephanie Lippmann

    Friedrich Schiller University Jena

Program

10 Dec 2025 (Wed)

13:00 lecture
Welcome
  • PD Dr.-Ing. habil. Stephanie Lippmann

    Friedrich Schiller University Jena

13:05 lecture
Augmented tracer-interdiffusion couple method: a high-throughput approach for consistent measurements of the tracer diffusion coefficients

The radiotracer method is used for decades for determination of tracer diffusion coefficients in homogeneous alloys under (quasi)equilibrium conditions. Alternatively, diffusion couples are commonly utilized to determine the interdiffusion coefficients in binary and ternary alloys under chemical gradients and related vacancy fluxes. Recently, we elaborated an augmented tracer-interdiffusion couple approach to measure the compositionally-dependent tracer diffusion coefficients along the whole diffusion paths in multi-component alloys of any complexity. First, the method will be introduced for the binary Fe-Ga and Ni-Fe and ternary Cu–Fe–Ni systems. The comparison of the tracer diffusion data from homogeneous alloys and those from diffusion couples elucidates the importance of accounting for non-equilibrium vacancies in the diffusion couples. Second, diffusion properties of single-phase multi-principal element (often called as “high-entropy”) alloys will be presented and discussed with respect to the interplay of crystalline structure, lattice distortions and point defect properties.

  • Sergiy V. Divinski

    University of Münster

13:35 lecture
Discussion
13:55 lecture
Wrap up and closing
  • PD Dr.-Ing. habil. Stephanie Lippmann

    Friedrich Schiller University Jena