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QM³ - Quality, Modeling, Machining & Materials

Hochschule Kaiserslautern

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Publikationen


Hoffmann, Joachim E.; Schmitt, Martin-T.; Eifler, Dietmar et al.

Mechanical behavior of annealed electrochemically deposited nanocrystalline nickel-iron alloys

Materials Testing. Bd. 62. H. 3. Walter de Gruyter GmbH 2020 S. 225 - 241


Acosta, Ruth; Wu, Haoran; Sridaran Venkat, Ramanan et al.

SteBLife, a New Approach for the Accelerated Generation of Metallic Materials’ Fatigue Data

Metals. Bd. 10. H. 6. Basel: MDPI AG 2020 S. 798


Teng, Zhenjie; Wu, Haoran; Boller, Christian et al.

Thermodynamic entropy as a marker of high‐cycle fatigue damage accumulation: Example for normalized SAE 1045 steel

Fatigue & Fracture of Engineering Materials & Structures. Bd. 43. H. 12. John Wiley & Sons Ltd 2020 S. 2854 - 2866


Weber, Fabian; Acosta, Ruth; Eyrisch, Tina et al.

Influence of processing parameters on the fatigue life time of specimens made from quenched and tempered steel SAE 4140H

Materials Testing. Bd. 61. H. 9. Carl Hanser Verlag 2019 S. 842 - 850


Acosta, Ruth; Boller, Christian; Starke, Peter et al.

Non-destructive testing derived parameters for microstructure-based residual service life assessment of aging metallic materials in nuclear engineering

Materials Testing. Bd. 61. H. 11. Carl Hanser Verlag 2019 S. 1029 - 1038


Starke, Peter

StressLifetc – NDT-related assessment of the fatigue life of metallic materials

Materials Testing. Bd. 61. H. 4. Carl Hanser Verlag 2019 S. 297 - 303


Starke, Peter; Eifler, Dietmar; Walther, Frank

Model-based correlation between electrical resistance and the dislocation structure of fatigued ICE R7 wheel steel

Materials Testing. Bd. 60. H. 7-8. De Gruyter 2018 S. 669 - 676


Klein, Martin; Starke, Peter; Nowak, David et al.

Separation of surface, subsurface and volume fatigue damage effects in AISI 348 steel for power plant applications

Materials Testing. Bd. 58. H. 7-8. Carl Hanser Verlag 2016 S. 601 - 607


Starke, Peter; Walther, Frank

Modellbasierte Korrelation zwischen dem elektrischen Widerstand und der Versetzungsstruktur des ermüdungsbeanspruchten ICE-Radstahls R7

Materials Testing. Bd. 57. H. 1. Carl Hanser Verlag 2015 S. 9 - 16