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Dive into the research topics where Lorelei Commin is active.

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Featured researches published by Lorelei Commin.


Fusion Science and Technology | 2014

Creep-Fatigue Interaction in Eurofer 3 Electron Beam Welds

Lorelei Commin; Siegfried Baumgärtner; Bernhard Dafferner; Silvia Heger; Michael Rieth; A. Möslang

Abstract In future nuclear fusion reactors, structural materials will undergo a large thermal cycling due to pulsed operation and the occurrence of several maintenance periods. Therefore, the investigation of the combined role of creep and fatigue loading is of major importance. In this study, we focused on Eurofer 3 electron beam welds. Two different post-welding heat treatments were carried out: a two-step heat treatment (30 minutes at 980°C followed by 2 hours at 750°C) and a one-step heat treatment (2 hours at 750°C). Fatigue, creep and creep-fatigue tests were performed. A 550°C test temperature was chosen, corresponding to the upper operation temperature currently foreseen for this material. Creep-fatigue experiments were achieved by interrupting a fatigue test and then applying a creep loading until the fracture of the specimen. Several fatigue pre-stress conditions were studied. The post-weld heat treatment influence was analyzed. The damage contributions of fatigue and creep were studied using electron microscopy. The results were compared to previous results obtained on base material.


ieee symposium on fusion engineering | 2013

Assessment of copper based materials for the Water-Cooled Divertor concept of the DEMO European Fusion reactor

Lorelei Commin; Steffen Antusch; Siegfried Baumgärtner; Daniel Bolich; Bernhard Dafferner; Wilfried Goldacker; Mirjam Hoffmann; Petra Lukits; Michael Rieth; Horst Zimmermann

High Heat Flux component fabrication for the DEMO European Fusion reactor requires the development of structural materials that exhibit high thermal conductivity, strength and radiation resistance. Depending on the cooling concept used (Water or Helium), several different materials are typical candidates for the divertor structural application, such as Tungsten alloys, Copper alloys, or Reduced Activation Ferritic Martensitic (RAFM) steels. This paper focuses on the use of Copper materials for Water-Cooled Divertor concepts. In this work, several possible solutions based on alternative copper material development were investigated. Reinforcement routes based on alloying, dispersion strengthening and composite material were studied. Material production was performed by several conventional melting processes on a laboratory scale. The produced materials were then characterized and compared using metallography, mechanical and thermal properties.


Nuclear materials and energy | 2015

Mechanical and microstructural investigations of tungsten and doped tungsten materials produced via powder injection molding

Steffen Antusch; David E.J. Armstrong; T. Ben Britton; Lorelei Commin; James L. Gibson; H. Greuner; Jan Hoffmann; Wolfram Knabl; G. Pintsuk; Michael Rieth; S.G. Roberts; Tobias Weingaertner


Journal of Nuclear Materials | 2013

Characterization of ODS (Oxide Dispersion Strengthened) Eurofer/Eurofer dissimilar electron beam welds

Lorelei Commin; Michael Rieth; Verena Widak; Bernhard Dafferner; S. Heger; Horst Zimmermann; E. Materna-Morris; R. Lindau


Materials Characterization | 2014

Chemical composition of nano-phases studied by anomalous small-angle X-ray scattering: Application to oxide nano-particles in ODS steels

Myriam Dumont; Lorelei Commin; Isabelle Morfin; Frédéric DeGeuser; Fabrice Legendre; Philippe Maugis


Journal of Nuclear Materials | 2014

Two component tungsten powder injection molding - an effective mass production process

Steffen Antusch; Lorelei Commin; Marcus Mueller; Volker Piotter; Tobias Weingaertner


Nuclear materials and energy | 2016

Improvement of reduced activation 9%Cr steels by ausforming

Jan Hoffmann; Michael Rieth; Lorelei Commin; P. Fernández; M. Roldán


Fusion Engineering and Design | 2015

Microstructural anisotropy of ferritic ODS alloys after different production routes

Jan Hoffmann; Michael Rieth; Lorelei Commin; Steffen Antusch


Fusion Engineering and Design | 2013

A new fully automatic PIM tool to replicate two component tungsten DEMO divertor parts

Steffen Antusch; Lorelei Commin; Jochen Heneka; Volker Piotter; Klaus Plewa; Heinz Walter


Fusion Engineering and Design | 2013

Effect of warm pre-stressing on fracture toughness of Eurofer97 steel

N. Ilchuk; Lorelei Commin; P. Spätig; G.R. Odette

Collaboration


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Michael Rieth

Karlsruhe Institute of Technology

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Steffen Antusch

Karlsruhe Institute of Technology

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Bernhard Dafferner

Karlsruhe Institute of Technology

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Horst Zimmermann

Karlsruhe Institute of Technology

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Jan Hoffmann

Karlsruhe Institute of Technology

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Siegfried Baumgärtner

Karlsruhe Institute of Technology

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Volker Piotter

Karlsruhe Institute of Technology

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Heinz Walter

Karlsruhe Institute of Technology

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Tobias Weingaertner

Karlsruhe Institute of Technology

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Myriam Dumont

Aix-Marseille University

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