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- 01HCYCJW00E2GXDD687GH6M0JR classification C1.
- 01HCYCJW00E2GXDD687GH6M0JR date "2023".
- 01HCYCJW00E2GXDD687GH6M0JR language "eng".
- 01HCYCJW00E2GXDD687GH6M0JR type conference.
- 01HCYCJW00E2GXDD687GH6M0JR hasPart 01HCYCMBAH6W6NFVVV2RK5YABN.pdf.
- 01HCYCJW00E2GXDD687GH6M0JR subject "Technology and Engineering".
- 01HCYCJW00E2GXDD687GH6M0JR presentedAt urn:uuid:d7ff0a12-6125-4177-9119-1fbebf3c0295.
- 01HCYCJW00E2GXDD687GH6M0JR abstract "Fractography evaluates surface features of failed materials to understand causes of failure and subsequently enhance material performance. This work discusses different features identified on quasistatic tensile tested, electrochemically hydrogen charged X70 pipeline steel. Ex-situ quasi-static tensile testing is performed on smooth round bars at two conditions: in air as the reference condition and after electrochemical hydrogen charging in 0.5M H2SO4 electrolyte with 1g/l thiourea at a constant current density of 0.8 mA/cm2 . Scanning electron microscopy is used to characterize the fracture surfaces of the samples. A database quantifying hydrogen embrittlement indices is developed. This reveals trends in fracture behaviour with respect to microstructure and hydrogen condition applied. The macroscale features manifest as splits, delaminations, and fisheyes, whereas on the microscale dimples and quasicleavage areas are observed. The findings emphasize the correlation of microstructure to hydrogenaffected fractographic pattern recognition for the identification of possible failure mechanisms.".
- 01HCYCJW00E2GXDD687GH6M0JR author 178FFD84-F0EE-11E1-A9DE-61C894A0A6B4.
- 01HCYCJW00E2GXDD687GH6M0JR author 33B858F8-F0EE-11E1-A9DE-61C894A0A6B4.
- 01HCYCJW00E2GXDD687GH6M0JR author 35FAD3EE-1CC0-11E3-A8AA-4B8E10BDE39D.
- 01HCYCJW00E2GXDD687GH6M0JR author F52E8652-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HCYCJW00E2GXDD687GH6M0JR author F5C5C8A0-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HCYCJW00E2GXDD687GH6M0JR author FAEFEAD6-F0ED-11E1-A9DE-61C894A0A6B4.
- 01HCYCJW00E2GXDD687GH6M0JR author df10d76a-4f0c-11ec-9d76-d44f0e10823e.
- 01HCYCJW00E2GXDD687GH6M0JR dateCreated "2023-10-17T08:38:36Z".
- 01HCYCJW00E2GXDD687GH6M0JR dateModified "2024-10-29T18:33:20Z".
- 01HCYCJW00E2GXDD687GH6M0JR name "Fractographic study of quasi-static tensile tested, electrochemically hydrogen charged X70 pipeline steels".
- 01HCYCJW00E2GXDD687GH6M0JR pagination urn:uuid:792347ba-e558-4705-992b-9c748d9aa983.
- 01HCYCJW00E2GXDD687GH6M0JR sameAs LU-01HCYCJW00E2GXDD687GH6M0JR.
- 01HCYCJW00E2GXDD687GH6M0JR sourceOrganization urn:uuid:b440a19b-5559-494f-8063-996b6406808b.
- 01HCYCJW00E2GXDD687GH6M0JR sourceOrganization urn:uuid:d8ec058f-fcc2-49bc-8f59-dcd46fe4bf9f.
- 01HCYCJW00E2GXDD687GH6M0JR type C1.