Microscopy Society of America 2019. Small additions of boron can remarkably improve the long-term creep resistance of 9-12% Cr steels. The improvement has been attributed to boron segregation to grain boundaries during quenching, and subsequent boron incorporation into certain families of precipitates during tempering. However, the detailed mechanisms are not yet fully understood. Atom probe tomography (APT) is an excellent technique for gaining insights into boron distribution, however, in order to acquire accurate analysis of boron in 9-12% Cr steels using APT, there are several key challenges. In order to better understand and address these challenges, we developed a novel method for site-specific APT specimen preparation, which enables ...
The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease the...
Development of modern steels consisting of complex or nano-scale microstructures with advanced prope...
Boron (B) is the most effective alloying element for increasing the hardenability of steel. It achie...
The addition of only 20-150 ppm of boron to martensitic 9-12%Cr steels has a strong enhancing effect...
The medium carbon (0.5 wt% C) steels containing various boron contents were studied to observe the d...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
Energy filtered transmission electron microscopy has been used to study two similar steels after lon...
Energy filtered transmission electron microscopy has been used to study two similar steels after lon...
The old Japanese high-boron 10.5% Cr martensitic test steel TAF, has still unsurpassed long-term cre...
The microstructure of a trial martensitic chromium steel containing a high content of boron (250 ppm...
The microstructure of a trial martensitic chromium steel containing a high content of boron (250 ppm...
The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease the...
The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease the...
Development of modern steels consisting of complex or nano-scale microstructures with advanced prope...
Boron (B) is the most effective alloying element for increasing the hardenability of steel. It achie...
The addition of only 20-150 ppm of boron to martensitic 9-12%Cr steels has a strong enhancing effect...
The medium carbon (0.5 wt% C) steels containing various boron contents were studied to observe the d...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
International audienceHigh resolution imaging by secondary ion mass spectrometry and atom probe tomo...
Energy filtered transmission electron microscopy has been used to study two similar steels after lon...
Energy filtered transmission electron microscopy has been used to study two similar steels after lon...
The old Japanese high-boron 10.5% Cr martensitic test steel TAF, has still unsurpassed long-term cre...
The microstructure of a trial martensitic chromium steel containing a high content of boron (250 ppm...
The microstructure of a trial martensitic chromium steel containing a high content of boron (250 ppm...
The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease the...
The addition of small amounts of boron to 9 to 12 pct chromium steels has been found to decrease the...
Development of modern steels consisting of complex or nano-scale microstructures with advanced prope...
Boron (B) is the most effective alloying element for increasing the hardenability of steel. It achie...