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Observation of hydrogen trapping at dislocations, grain boundaries, and precipitates
by
Lu, Hongzhou
, McCarroll, Ingrid
, Liu, Hongwei
, Rosenthal, Alexander
, Sneddon, Glenn
, Cairney, Julie M.
, Li, Wei
, Liang, Jiangtao
, Chen, Yi-Sheng
, Zhao, Zhengzhi
, Guo, Aimin
in
Atomic properties
/ Balances (scales)
/ Boundaries
/ Fuel cells
/ Grain boundaries
/ Heat treating
/ High strength steels
/ Hydrogen
/ Hydrogen atoms
/ Hydrogen embrittlement
/ Hydrogen-based energy
/ Interfaces
/ Niobium
/ Niobium carbide
/ Observation
/ Precipitates
/ Spectroscopy
/ Steel
/ Sustainable energy
/ Thermal desorption spectroscopy
/ Tomography
/ Trapping
/ Weight reduction
2020
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Observation of hydrogen trapping at dislocations, grain boundaries, and precipitates
by
Lu, Hongzhou
, McCarroll, Ingrid
, Liu, Hongwei
, Rosenthal, Alexander
, Sneddon, Glenn
, Cairney, Julie M.
, Li, Wei
, Liang, Jiangtao
, Chen, Yi-Sheng
, Zhao, Zhengzhi
, Guo, Aimin
in
Atomic properties
/ Balances (scales)
/ Boundaries
/ Fuel cells
/ Grain boundaries
/ Heat treating
/ High strength steels
/ Hydrogen
/ Hydrogen atoms
/ Hydrogen embrittlement
/ Hydrogen-based energy
/ Interfaces
/ Niobium
/ Niobium carbide
/ Observation
/ Precipitates
/ Spectroscopy
/ Steel
/ Sustainable energy
/ Thermal desorption spectroscopy
/ Tomography
/ Trapping
/ Weight reduction
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Observation of hydrogen trapping at dislocations, grain boundaries, and precipitates
by
Lu, Hongzhou
, McCarroll, Ingrid
, Liu, Hongwei
, Rosenthal, Alexander
, Sneddon, Glenn
, Cairney, Julie M.
, Li, Wei
, Liang, Jiangtao
, Chen, Yi-Sheng
, Zhao, Zhengzhi
, Guo, Aimin
in
Atomic properties
/ Balances (scales)
/ Boundaries
/ Fuel cells
/ Grain boundaries
/ Heat treating
/ High strength steels
/ Hydrogen
/ Hydrogen atoms
/ Hydrogen embrittlement
/ Hydrogen-based energy
/ Interfaces
/ Niobium
/ Niobium carbide
/ Observation
/ Precipitates
/ Spectroscopy
/ Steel
/ Sustainable energy
/ Thermal desorption spectroscopy
/ Tomography
/ Trapping
/ Weight reduction
2020
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Observation of hydrogen trapping at dislocations, grain boundaries, and precipitates
Journal Article
Observation of hydrogen trapping at dislocations, grain boundaries, and precipitates
2020
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Overview
Hydrogen embrittlement of high-strength steel is an obstacle for using these steels in sustainable energy production. Hydrogen embrittlement involves hydrogen-defect interactions at multiple-length scales. However, the challenge of measuring the precise location of hydrogen atoms limits our understanding. Thermal desorption spectroscopy can identify hydrogen retention or trapping, but data cannot be easily linked to the relative contributions of different microstructural features. We used cryo-transfer atom probe tomography to observe hydrogen at specific microstructural features in steels. Direct observation of hydrogen at carbon-rich dislocations and grain boundaries provides validation for embrittlement models. Hydrogen observed at an incoherent interface between niobium carbides and the surrounding steel provides direct evidence that these incoherent boundaries can act as trapping sites. This information is vital for designing embrittlement-resistant steels.
Publisher
American Association for the Advancement of Science,The American Association for the Advancement of Science
Subject
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