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It is shown that, if the moving dislocations in the iron-based austenite and ferrite are accompanied by the clouds of interstitial atoms, nitrogen and hydrogen increase the velocity of dislocations, whereas carbon decreases it.
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The ratio of dissolved hydrogen increased with increasing the velocity.
Removal of hydrogen increases the tendency to poisoning from H2S.
Hydrogen increases the hardness in low and medium hardness zones.
The conversion ratio from methane to hydrogen increased with temperature and was 0.92 at 1073 K.
Breath hydrogen increased (P <.05) at 4, 5, 6, 7, and 8 hours.
The concentration of hydrogen increases in the liquid phase with increase in hydrogen pressure and would drive the reaction equilibrium toward 1,2-PDO formation.
After 5.5 h, the amount of absorbed hydrogen increases weakly, reflecting a slower kinetic of the absorption mechanism.
The FCGR measured in hydrogen increases with increasing hydrogen pressure, and the FCGR in 92 MPa hydrogen gas is 30 50 times of the FCGR in air.
Moreover, the content of hydrogen can't be high, since the ordered structure deteriorates when amount of hydrogen increasing.
Slip steps around indentations have been imaged and have shown hydrogen increases slip planarity.
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CEO of Professional Science Editing for Scientists @ prosciediting.com