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1863 results:
  • 381. Experimental setup and material
    Date: 27.10.2023
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  • 382. Experimental setup and material
    Date: 27.10.2023
    During heat treatment, the unalloyed C45E was austenitized at T = 850°C and then cooled to RT in a controlled manner, resulting in a predominantly ferritic-pearlitic microstructure with a Vickers hardness of HV10 = 216 [4,5]. In the tensile test, the material reached a maximum strength of  Rm = 710 MPa and exhibited a yield strength of Rp0.2
  • 383. Experimental setup and material
    Date: 27.10.2023
  • 384. Experimental setup and material
    Date: 27.10.2023
    A normalized unalloyed steel of grade C45E was used as the test material. The specimens were machined from round material with a length of 5,000 mm and a diameter of 20 mm and subsequently polished to a roughness value of Rz < 6 µm. The chemical composition according to the manufacturer's specifications corresponds to the specified limit value
  • Experimental setup and material The stress-controlled single-stage tests were carried out on a Shimadzu type EHF-U servo-hydraulic test system with a maximum load of 50 kN, a frequency of f = 5 Hz, a sinusoidal load-time function, and a load ratio of R = -1 at room temperature with RT = 25°C. The specimens were stressed to failure or to reach th
  • 386. Research News: SteBLife
    Date: 27.10.2023
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  • 387. Einleitung
    Date: 27.10.2023
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  • 388. Einleitung - Introduction
    Date: 27.10.2023
    Introduction Weight-optimized component design and the resulting estimation of the service life or service life of metallic materials require a comprehensive understanding of fatigue processes and the systematic investigation of fatigue behavior. For reasons of time and cost alone, many components can usually neither be built as prototypes nor tes
  • 389. Research News: SteBLife
    Date: 27.10.2023
    Introduction Experimental setup and material Service life calculation and material testing Summary Acknowledgement and literature
  • SteBLife – A new method for the time- and cost-efficient provision of fatigue data for the safe design of cyclically stressed components and parts for plant and machine engineering Abstract – The service life of materials and components is limited when they are subjected to repeated mechanical stresses, which is why an understanding of the damage
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