ENGINEERING FAILURE ANALYSIS - Journal - Bridge of Knowledge

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ENGINEERING FAILURE ANALYSIS

ISSN:

1350-6307

eISSN:

1873-1961

Disciplines
(Field of Science):

  • Information and communication technology (Engineering and Technology)
  • Biomedical engineering (Engineering and Technology)
  • Civil engineering, geodesy and transport (Engineering and Technology)
  • Materials engineering (Engineering and Technology)
  • Mechanical engineering (Engineering and Technology)
  • Medical biology (Medical and Health Sciences )
  • Biotechnology (Natural sciences)

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2024 100 Ministry scored journals list 2024
2023 100 Ministry Scored Journals List
2022 100 Ministry Scored Journals List 2019-2022
2021 100 Ministry Scored Journals List 2019-2022
2020 100 Ministry Scored Journals List 2019-2022
2019 100 Ministry Scored Journals List 2019-2022
2018 35 A
2017 35 A
2016 30 A
2015 30 A
2014 35 A
2013 30 A
2012 30 A
2011 30 A
2010 27 A

Model:

Hybrid

Points CiteScore:

Points CiteScore - current year
Year Points
Year 2022 6.3
Points CiteScore - previous years
Year Points
2022 6.3
2021 5.3
2020 4.6
2019 4.2
2018 4.2
2017 3.6
2016 3.4
2015 2.5
2014 2.3
2013 2
2012 2.4
2011 2

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total: 25

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Catalog Journals

Year 2011
Year 2013
  • Pitting corrosion and stress-corrosion cracking of buffer tanks in a brewery

    W pracy przedstawiono wyniki ekspertyzy zbiornika magazynowego na ciepłą wodę do produkcji piwa w browarze. Zbiornik uległ przyśpieszonym procesom korozyjnym, które doprowadziły do jego perforacji. Podczas eksploatacji zbiornika wystąpił proces korozji wżerowej oraz pękania korozyjnego. Przyśpieszone procesy korozyjne zbiornika związane były z wysoką zawartością jonów chlorkowych w wodzie oraz statycznymi naprężeniami mechanicznymi....

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Year 2024
  • The effect of elevated temperature on LCF damage growth in 2024AA – Experiment and modeling
    Publication

    - ENGINEERING FAILURE ANALYSIS - Year 2024

    This paper presents the results of experimental low-cycle fatigue (LCF) tests conducted on EN-AW 2024 alloy in T3511 temper at 100 ◦C, 200 ◦C and 300 ◦C. The material’s basic fatigue characteristics were determined, such as fatigue life curve and cyclic strain curve. Both the hysteresis loop and nature of fracture surfaces obtained in macro- and microscopic observations (scanning electron microscope, SEM) were accounted for. The...

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