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Fachbereich Angewandte Ingenieurwissenschaften

Hochschule Kaiserslautern

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

Hoffmann, Joachim E.; Pawar, Vrushali; Eifler, Dietmar et al.

Surface states by grinding thin strips of electrochemically deposited nanocrystalline nickel-iron

Materials Testing. Bd. 64. H. 7. Walter de Gruyter GmbH 2022 S. 903 - 931


Bill, Tobias; Acosta, Ruth; Boller, Christian et al.

A Short-Time Approach for Fatigue Life Evaluation of AISI 347 Steel for Nuclear Power Energy Applications

Applied Sciences. Bd. 11. H. 23. MDPI AG 2021 11405


Heckmann, Klaus; Sievers, Jürgen; Schopf, Tim et al.

Correlation of load drop and crack initiation criteria in fatigue life experiments of metallic materials

Engineering Fracture Mechanics. Bd. 251. Elsevier B.V. 2021 107785


Teng, Zhenjie; Wu, Haoran; Huang, Zhiyong et al.

Effect of mean stress in very high cycle fretting fatigue of a bearing steel

International Journal of Fatigue. Bd. 149. Elsevier B.V. 2021 106262


Lyamkin, Viktor; Pauly, Christoph; Starke, Peter et al.

Impact of cyclic strain on deformation-induced martensite morphology and magnetic properties of type 347 austenitic stainless steel

Materials Today Communications. Bd. 26. Elsevier B.V. 2021 101803


Heß, Heiko

Mehr Fahrkomfort beim Rennradfahren

Rundschau der Hochschule Kaiserslautern. Bd. 1. Kaiserslautern. 2021 S. 54


Acosta, Ruth; Heckmann, Klaus; Sievers, Jürgen et al.

Microstructure-Based Lifetime Assessment of Austenitic Steel AISI 347 in View of Fatigue, Environmental Conditions and NDT

Applied Sciences. Bd. 11. H. 23. MDPI AG 2021 11214


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