Intense, pulsed ion beams were used to melt and rapidly resolidify Types 316F, 316L and sensitized 304 stainless steel surfaces to eliminate the negative effects of microstructural heterogeneity on localized corrosion resistance. Anodic polarization curves determined for 316F and 316L showed that passive current densities were reduced and pitting potentials were increased due to ion beam treatment. Type 304 samples sensitized at 600 C for 100 h showed no evidence of grain boundary attack when surfaces were ion beam treated. Equivalent ion beam treatments were conducted with a 6061-T6 aluminum alloy. Electrochemical impedance experiments conducted with this alloy exposed to an aerated chloride solution showed that the onset of pitting was de...
A modified surface layers with high resistance were successfully prepared on corrosion stainless ste...
The enormous demands for metal implant have given rise to a search for cheap material with good bio-...
The stability of passive films of welded AISI 316L stainless steel, subjected to different surface f...
The emerging technology of pulsed intense ion beams has been shown to lead to improvements in surfac...
The emerging capability to produce high average power (10--300 kW) pulsed ion beams at 0.2{minus}2 M...
An aluminum or aluminum-magnesium vacuum deposited coating with a thickness of 120 nm on low carbon ...
Use of intense pulsed ion beams is providing a new capability for surface engineering based on rapid...
It is well known that aluminum and aluminum alloys are sensitive to pitting corrosion when exposed t...
Aluminum and aluminum alloys have become increasingly important due to their low density and good co...
In this study, the surfaces of AISI 321 stainless steel samples were irradiated with one shot of a h...
The initiation of localized corrosion of types 430 and 443J1 ferritic stainless steels was evaluated...
Pulsed high-energy ion beams have been used to thermally treat Ti and Ti alloy surfaces to alter the...
Alloy AISI 4140 steel was plasma-nitrided in a low-pressure abnormal glow discharge in 75% N-2+25% H...
The effect of multi-element ion implantation on the corrosion resistance to acid solution has been s...
Thin amorphous carbon films were deposited onto aluminum samples at ambient temperature by ion beam-...
A modified surface layers with high resistance were successfully prepared on corrosion stainless ste...
The enormous demands for metal implant have given rise to a search for cheap material with good bio-...
The stability of passive films of welded AISI 316L stainless steel, subjected to different surface f...
The emerging technology of pulsed intense ion beams has been shown to lead to improvements in surfac...
The emerging capability to produce high average power (10--300 kW) pulsed ion beams at 0.2{minus}2 M...
An aluminum or aluminum-magnesium vacuum deposited coating with a thickness of 120 nm on low carbon ...
Use of intense pulsed ion beams is providing a new capability for surface engineering based on rapid...
It is well known that aluminum and aluminum alloys are sensitive to pitting corrosion when exposed t...
Aluminum and aluminum alloys have become increasingly important due to their low density and good co...
In this study, the surfaces of AISI 321 stainless steel samples were irradiated with one shot of a h...
The initiation of localized corrosion of types 430 and 443J1 ferritic stainless steels was evaluated...
Pulsed high-energy ion beams have been used to thermally treat Ti and Ti alloy surfaces to alter the...
Alloy AISI 4140 steel was plasma-nitrided in a low-pressure abnormal glow discharge in 75% N-2+25% H...
The effect of multi-element ion implantation on the corrosion resistance to acid solution has been s...
Thin amorphous carbon films were deposited onto aluminum samples at ambient temperature by ion beam-...
A modified surface layers with high resistance were successfully prepared on corrosion stainless ste...
The enormous demands for metal implant have given rise to a search for cheap material with good bio-...
The stability of passive films of welded AISI 316L stainless steel, subjected to different surface f...