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Fachbereich Angewandte Ingenieurwissenschaften

Hochschule Kaiserslautern

Schoenstraße 11, 67659 Kaiserslautern
  • 0631/3724-2201
Publikationen
Ergebnisse pro Seite:  10

Aeran, Ashish; Acosta, Ruth; Siriwardane, Sudath C. et al.

A nonlinear fatigue damage model: Comparison with experimental damage evolution of S355 (SAE 1020) structural steel and application to offshore jacket structures

International Journal of Fatigue. Bd. 135. Elsevier Ltd. 2020 S. 105568


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

A unified fatigue life calculation based on intrinsic thermal dissipation and microplasticity evolution

International Journal of Fatigue. Bd. 131. Elsevier B.V. 2020 S. 105370



Starke, Peter; Acosta, Ruth; Bill, Tobias et al.

Evaluation of Influences of Materials Processing on the Fatigue Life of Quenched and Tempered SAE 4140

Fourth International Conference on Material and Component Performance under Variable Amplitude Loading (VAL4). Darmstadt. 2020



Lyamkin, Viktor; Starke, Peter; Boller, Christian

Magnetic force imaging for spatially resolved assessment of ferromagnetic phase fraction in austenitic stainless steel

Journal of Magnetism and Magnetic Materials. Bd. 497. Elsevier BV 2020 S. 165973


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


Starke, P.; Baak, N.; Nickel, J. et al.

Qualification of an inner surface Barkhausen noise sensor for residual stress measurements of single-lip deep drilled AISI 4140 by means of X-ray diffraction

13th International Conference on Barkhausen Noise and Micromagnetic Testing. Prag. 2020 S. 1 - 8


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