In-situ electrochemical nanoindentation was applied to study the effect of hydrogen on the mechanical properties of Fe-22Mn-0.6C TWIP steel at nanoscale. Distinctive behaviors in three defined grain orientations: (001), (101), and (111) were investigated in a sequence of air, hydrogen ingress, and hydrogen egress processes. The obvious pop-in load drop caused by introducing hydrogen was analyzed using the classical dislocation theory in combination with the “Defactant” model, wherein hydrogen-enhanced homogeneous dislocation nucleation through the reduction of dislocation line energy and stacking fault energy were proposed as the reasons. The dependence of pop-in behaviors on crystallographic orientations was also discussed. Tabor relation-...
The effect of hydrogen on the nanomechanical properties of CoCrFeMnNi high-entropy alloy was investi...
We explored the influences of hydrogen on small-scale strength of a linepipe steel through nanoinden...
High-manganese twinning-induced plasticity (TWIP) steels exhibit mechanical properties making them a...
In-situ electrochemical nanoindentation was applied to study the effect of hydrogen on the mechanica...
The hydrogen effect on a X65 carbon steel was investigated using in-situ electrochemical nanoindenta...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
This thesis demonstrates a comprehensive study on the interaction between hydrogen and plasticity by...
© 2017 Hydrogen Energy Publications LLC In situ electrochemical nanoindentation has been used to stu...
We have designed a new method for electrochemical hydrogen charging which allows us to charge very t...
This paper aims to investigate the effect of hydrogen-induced mechanical degradation of low carbon s...
Environment sensitive failure, such as hydrogen embrittlement, of metallic alloys and particularly s...
Medium-Mn steel is the newly developed steel acting as a promising candidate of the 3rd-generation a...
The variations in the pop-in behavior of an equiatomic CoCrFeMnNi high-entropy alloy under different...
The effect of hydrogen on the nanomechanical properties of CoCrFeMnNi high-entropy alloy was investi...
We explored the influences of hydrogen on small-scale strength of a linepipe steel through nanoinden...
High-manganese twinning-induced plasticity (TWIP) steels exhibit mechanical properties making them a...
In-situ electrochemical nanoindentation was applied to study the effect of hydrogen on the mechanica...
The hydrogen effect on a X65 carbon steel was investigated using in-situ electrochemical nanoindenta...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
In-situ electrochemical nanoindentation (ECNI) has been used to study the effect of hydrogen on the ...
The interaction between hydrogen and structural materials has been intensively studied for many year...
This thesis demonstrates a comprehensive study on the interaction between hydrogen and plasticity by...
© 2017 Hydrogen Energy Publications LLC In situ electrochemical nanoindentation has been used to stu...
We have designed a new method for electrochemical hydrogen charging which allows us to charge very t...
This paper aims to investigate the effect of hydrogen-induced mechanical degradation of low carbon s...
Environment sensitive failure, such as hydrogen embrittlement, of metallic alloys and particularly s...
Medium-Mn steel is the newly developed steel acting as a promising candidate of the 3rd-generation a...
The variations in the pop-in behavior of an equiatomic CoCrFeMnNi high-entropy alloy under different...
The effect of hydrogen on the nanomechanical properties of CoCrFeMnNi high-entropy alloy was investi...
We explored the influences of hydrogen on small-scale strength of a linepipe steel through nanoinden...
High-manganese twinning-induced plasticity (TWIP) steels exhibit mechanical properties making them a...