ISSN:
1056-7895
eISSN:
1530-7921
Disciplines
(Field of Science):
- 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)
- physical sciences (Natural sciences)
(Field of Science)
Ministry points: Help
Year | Points | List |
---|---|---|
Year 2024 | 100 | Ministry scored journals list 2024 |
Year | Points | List |
---|---|---|
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 | 25 | A |
2015 | 30 | A |
2014 | 30 | A |
2013 | 35 | A |
2012 | 35 | A |
2011 | 35 | A |
2010 | 32 | A |
Model:
Hybrid
Points CiteScore:
Year | Points |
---|---|
Year 2022 | 7.9 |
Year | Points |
---|---|
2022 | 7.9 |
2021 | 7.9 |
2020 | 6.5 |
2019 | 5.2 |
2018 | 3.7 |
2017 | 3.4 |
2016 | 3 |
2015 | 3 |
2014 | 3.3 |
2013 | 3.3 |
2012 | 3 |
2011 | 2.2 |
Impact Factor:
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Sherpa Romeo:
Papers published in journal
Filters
total: 4
Catalog Journals
Year 2018
-
Discrete element method simulations of fracture in concrete under uniaxial compression based on its real internal structure
PublicationThe paper describes experimental and numerical results of concrete fracture under quasi-static uniaxial compression. Experimental uniaxial compression tests were performed on concrete cubic specimens. Fracture in concrete was detected at the aggregate level by means of three non-destructive methods: three-dimensional X-ray microcomputed tomography, two-dimensional scanning electron microscope and manual two-dimensional digital...
Year 2023
-
Identification of the damage mechanism in orthopaedic implant. Case study including the biomechanical analysis
Publication -
Effect of printing direction on fatigue response and damage development in additive manufactured Haynes 282 nickel superalloy
Publication -
Characteristics of orthopaedic implants damage and mechanisms of its initiation
Publication
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