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- W2016067188 abstract "The effect of hydrogen on the deformation and fracture behavior of a porous iron has been investigated by means of smooth and notched specimen tension tests in conjunction with quantitative metallography analyses to characterize void growth during deformation. It was found in the smooth specimen tests that hydrogen did not substantially affect the deformation and fracture properties. In the notched specimen tests, hydrogen induced hardening and caused a reduction in ductility. The quantitative metallography analyses clearly demonstrated that, while voids were substantially elongated in the longitudinal tensile direction in the smooth specimens, voids grew more spherically in the notched specimens. The void morphologies on the fracture surface and in the near-fracture-surface region were the same in the notched specimen without and with hydrogen. Therefore, it is evident that hydrogen gives rise to an acceleration of void growth which results in a reduction in ductility in the notched specimens. The mechanisms of hydrogen-induced hardening and ductility loss are briefly discussed." @default.
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- W2016067188 date "1987-12-01" @default.
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- W2016067188 title "Effect of hydrogen on ductile fracture in a porous iron" @default.
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- W2016067188 doi "https://doi.org/10.1016/0025-5416(87)90565-9" @default.
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