In order to investigate the susceptibility of steels to hydrogen embrittlement as a function of their microstructure X70 steel was chosen in different conditions: normalized transfer bar, as-received hot rolled strip and heat affected zone (HAZ). Notched and fatigue pre-cracked samples were subjected to electrochemical hydrogen charging to achieve 2 ppm hydrogen content. Three point bend tests were conducted on as-received and hydrogen charged samples. The results showed that HAZ samples are more susceptible to hydrogen embrittlement than the others. This was supported by fracture surface observations
The service environment of oil and gas pipelines often subject them to harsh conditions, such as, ve...
The effect of phases and steel processing on hydrogen uptake (diffusible and residual), surface and ...
With fossil fuels being phased out and growing global interest in a hydrogen economy, there is deman...
A wide range of ferrite-based microstructures were produced for high strength pipeline steels with s...
When pipeline steels are exposed to hydrogen-rich environments during service, this can lead to a de...
When pipeline steels are exposed to hydrogen-rich environments during service, this can lead to a de...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
The hydrogen effect on a X65 carbon steel was investigated by tensile tests under both ex-situ and i...
ABSTRACT: In this work, two microalloyed steels, one used for oil&gas pipelines and the other one fo...
The tensile properties of two X70 steels with high (1.14 wt-%) and medium (0.5 wt-%) Mn contents hav...
Hydrogen-induced cold cracking and blistering in hydrogen-charged X70 steel was found to be highly d...
Recently, with the depletion of high-quality oil and gas, there has been significant increase in the...
The service environment of oil and gas pipelines often subject them to harsh conditions, such as, ve...
The service environment of oil and gas pipelines often subject them to harsh conditions, such as, ve...
The effect of phases and steel processing on hydrogen uptake (diffusible and residual), surface and ...
With fossil fuels being phased out and growing global interest in a hydrogen economy, there is deman...
A wide range of ferrite-based microstructures were produced for high strength pipeline steels with s...
When pipeline steels are exposed to hydrogen-rich environments during service, this can lead to a de...
When pipeline steels are exposed to hydrogen-rich environments during service, this can lead to a de...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
Hydrogen gas has gathered much interest as an energy carrier for present and future clean energy nee...
The hydrogen effect on a X65 carbon steel was investigated by tensile tests under both ex-situ and i...
ABSTRACT: In this work, two microalloyed steels, one used for oil&gas pipelines and the other one fo...
The tensile properties of two X70 steels with high (1.14 wt-%) and medium (0.5 wt-%) Mn contents hav...
Hydrogen-induced cold cracking and blistering in hydrogen-charged X70 steel was found to be highly d...
Recently, with the depletion of high-quality oil and gas, there has been significant increase in the...
The service environment of oil and gas pipelines often subject them to harsh conditions, such as, ve...
The service environment of oil and gas pipelines often subject them to harsh conditions, such as, ve...
The effect of phases and steel processing on hydrogen uptake (diffusible and residual), surface and ...
With fossil fuels being phased out and growing global interest in a hydrogen economy, there is deman...