Iron-based amorphous alloys possess enhanced hardness and are highly resistant to corrosion, which make them desirable for wear applications in corrosive environments. It was of interest to examine the behavior of amorphous alloys during anodic polarization in concentrated salt solutions and in the salt-fog testing. Results from the testing of one amorphous material (SAM2X5) both in ribbon form and as an applied coating are reported here. Cyclic polarization tests were performed on SAM2X5 ribbon as well as on other nuclear engineering materials. SAM2X5 showed the highest resistance to localized corrosion in 5 M CaCl{sub 2} solution at 105 C. Salt fog tests of 316L SS and Alloy 22 coupons coated with amorphous SAM2X5 powder showed resistance...
Iron-based amorphous alloys are produced by rapid solidification from the melt. These alloys may pos...
Iron-based amorphous alloys are desirable for many industrial applications due to their dual capacit...
Amorphous alloys identified as SAM2X5 (Fe{sub 49.7}Cr{sub 17.7}Mn{sub 1.9}Mo{sub 7.4}W{sub 1.6}B{sub...
Iron-based amorphous alloys are desirable industrial materials since they are highly resistant to co...
New corrosion-resistant, iron-based amorphous metals have been identified from published data or dev...
Corrosion costs the Department of Defense billions of dollars every year, with an immense quantity o...
Several Fe-based amorphous metals were developed with good corrosion resistance. These materials hav...
An overview of the High-Performance Corrosion-Resistant Materials (HPCRM) Program, which was co-spon...
Iron-based amorphous alloys can be more resistant to corrosion than polycrystalline materials of sim...
Metallic amorphous alloys or metallic glasses have been studied extensively for the last three decad...
Corrosion costs the Department of Defense billions of dollars every year, with an immense quantity o...
An overview of the High-Performance Corrosion-Resistant Materials (HPCRM) Program, which was co-spon...
Several Fe-based amorphous metal formulations have been identified that appear to have corrosion res...
Novel iron-based amorphous metals, including SAM2X5 Fe(49.7)Cr(17.7)Mn(1.9)Mo(7.4)W(1.6)B(15.2)C(3.8...
New corrosion-resistant, iron-based amorphous metals have been identified from published data or dev...
Iron-based amorphous alloys are produced by rapid solidification from the melt. These alloys may pos...
Iron-based amorphous alloys are desirable for many industrial applications due to their dual capacit...
Amorphous alloys identified as SAM2X5 (Fe{sub 49.7}Cr{sub 17.7}Mn{sub 1.9}Mo{sub 7.4}W{sub 1.6}B{sub...
Iron-based amorphous alloys are desirable industrial materials since they are highly resistant to co...
New corrosion-resistant, iron-based amorphous metals have been identified from published data or dev...
Corrosion costs the Department of Defense billions of dollars every year, with an immense quantity o...
Several Fe-based amorphous metals were developed with good corrosion resistance. These materials hav...
An overview of the High-Performance Corrosion-Resistant Materials (HPCRM) Program, which was co-spon...
Iron-based amorphous alloys can be more resistant to corrosion than polycrystalline materials of sim...
Metallic amorphous alloys or metallic glasses have been studied extensively for the last three decad...
Corrosion costs the Department of Defense billions of dollars every year, with an immense quantity o...
An overview of the High-Performance Corrosion-Resistant Materials (HPCRM) Program, which was co-spon...
Several Fe-based amorphous metal formulations have been identified that appear to have corrosion res...
Novel iron-based amorphous metals, including SAM2X5 Fe(49.7)Cr(17.7)Mn(1.9)Mo(7.4)W(1.6)B(15.2)C(3.8...
New corrosion-resistant, iron-based amorphous metals have been identified from published data or dev...
Iron-based amorphous alloys are produced by rapid solidification from the melt. These alloys may pos...
Iron-based amorphous alloys are desirable for many industrial applications due to their dual capacit...
Amorphous alloys identified as SAM2X5 (Fe{sub 49.7}Cr{sub 17.7}Mn{sub 1.9}Mo{sub 7.4}W{sub 1.6}B{sub...