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- W2084036845 abstract "The effects of two aqueous environments, namely chloride and sulphide have been investigated using fracture mechanics approaches in a Ni-Cr-Mo alloy, tempered between 200–600°C temperatures after quenching. The experimental investigation included tensile and fracture toughness tests in the ambient condition, environmental tests to determine the threshold, KISCC and the crack growth rate values dadt and fracture surface studies. An attempt has been made to substantiate the role of microstructure and the source of hydrogen on the susceptibility to failure by computing CcCo ratios for the hydrogen induced cracking process. A crack growth rate expression of the type, dadt = c'(K)n is proposed for Stages I and II to account for the discrepancy between the theoretically calculated and the experimental dadt data. The experimental values of the constants c' and n are determined. For all the tempering conditions investigated, the H2S environment appears to be more hostile than the NaCl medium. However, the susceptibility to both the environments is more pronounced for yield strength values greater than 1500 MPa. The KIfKIC ratio is bound to be less than 1 under the H2S, and greater than 1 under the NaCl solution." @default.
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- W2084036845 date "1984-01-01" @default.
- W2084036845 modified "2023-10-18" @default.
- W2084036845 title "Kinetics of subcritical cracking under the chloride and sulphide environments in a low alloy steel" @default.
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- W2084036845 doi "https://doi.org/10.1016/0013-7944(84)90134-6" @default.
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