<p>This study investigated localized corrosion behavior of austenitic stainless steels under stressed and unstressed conditions, as well as corrosion of metallic thin films. While austenitic stainless steels are widely used in corrosive environments, they are vulnerable to pitting and stress corrosion cracking (SCC), particularly in chloride-containing environments. The corrosion resistance of austenitic stainless steels is closely tied to the alloying elements chromium, nickel, and molybdenum. Polarization curves were measured for five commercially available austenitic stainless steels of varying chromium, nickel, and molybdenum content in 3.5 wt.% and 25 wt.% NaCl solutions. The alloys were also tested in tension at slow strain rates in a...
application/pdfThe stress corrosion behaviours of austenitic stainless steels, Inconel and a 70Cu-30...
The temperatures and concentrated chloride environments involved in potash milling provide condition...
Stainless steels may be classified according to alloy microstructure – ferritic, austenitic, martens...
Found in homes, industries, and numerous other applications, stainless steel is favored for its resi...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
The mechanism of stress-corrosion cracking of an austenitic stainless steel in 42% MgCl_2 aqueous ae...
Some duplex grades are developed to replace the 300 series of austenitic stainless steels in harsh c...
An investigation has been performed to determine the pitting resistance of stainless steels and stre...
The corrosion resistance of type 304L and 316 austenitic stainless steels in 2M H2SO4 at 0-1.5%NaCl ...
Master's thesis in Mechanical engineeringSome duplex grades are developed to replace the 300 series ...
The passive films play an important role in corrosion and stress corrosion cracking of austenitic st...
The resistance of austenitic stainless steel type 304 to pitting corrosion was studied in solutions ...
A newly developed test environment based on NaCl, Na/sub 2/SO/sub 4/, and HCl has provided some insi...
application/pdfThe stress corrosion behaviours of austenitic stainless steels, Inconel and a 70Cu-30...
The temperatures and concentrated chloride environments involved in potash milling provide condition...
Stainless steels may be classified according to alloy microstructure – ferritic, austenitic, martens...
Found in homes, industries, and numerous other applications, stainless steel is favored for its resi...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
Potash brines are highly corrosive at the elevated temperatures found in potash processing. Cyclic p...
The mechanism of stress-corrosion cracking of an austenitic stainless steel in 42% MgCl_2 aqueous ae...
Some duplex grades are developed to replace the 300 series of austenitic stainless steels in harsh c...
An investigation has been performed to determine the pitting resistance of stainless steels and stre...
The corrosion resistance of type 304L and 316 austenitic stainless steels in 2M H2SO4 at 0-1.5%NaCl ...
Master's thesis in Mechanical engineeringSome duplex grades are developed to replace the 300 series ...
The passive films play an important role in corrosion and stress corrosion cracking of austenitic st...
The resistance of austenitic stainless steel type 304 to pitting corrosion was studied in solutions ...
A newly developed test environment based on NaCl, Na/sub 2/SO/sub 4/, and HCl has provided some insi...
application/pdfThe stress corrosion behaviours of austenitic stainless steels, Inconel and a 70Cu-30...
The temperatures and concentrated chloride environments involved in potash milling provide condition...
Stainless steels may be classified according to alloy microstructure – ferritic, austenitic, martens...