"Effect of Residual Stress on the Corrosion Behavior of Austenitic Stainless Steel"
written by Osamu Takakuwa, Hitoshi Soyama,
published by Advances in Chemical Engineering and Science, Vol.5 No.1, 2015
has been cited by the following article(s):
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[17] Investigation of the passivation process of plastically deformed 316L stainless steel using the high frequency capacitance obtained by EIS
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[18] Influence of the cold working induced martensite on the electrochemical behavior of AISI 304 stainless steel surfaces
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[19] Microstructures and Salt Spray Corrosion Behaviour of a Laser Thermal Sprayed Al Coating on a S355 Steel Substrate.
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[20] Effects of laser remelting on microstructures and immersion corrosion performance of arc sprayed Al coating in 3.5% NaCl solution
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[21] Atomic Layer-Deposited TiO2 Coatings on NiTi Surface
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[22] Study on the evolution of residual stress in successive machining process
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[23] Electrochemical behavior of AISI316L stainless steel parts produced by laser-based powder bed fusion process and the effect of post annealing process
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[24] Failure analysis of AISI 321 stainless steel welded pipes in solar thermal power plants
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[25] Fabrication of stainless steel 316L/TiB2 composite coating via friction surfacing
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[26] Effect of friction stir processing on the corrosion behavior of pure Mg
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[27] Laser shock peening enhanced corrosion properties in a nickel based Inconel 600 superalloy
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[28] Effect of pulsed magnetic treatment on the corrosion of titanium
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[29] Effect of laser peening on electrochemical properties of titanium stabilized 321 steel
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[30] Influence of the machining cooling strategies on the dental tribocorrosion behaviour of wrought and additive manufactured Ti6Al4V
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[31] On the enhanced corrosion resistance of a selective laser melted austenitic stainless steel
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[32] Effect of Ultrasonic Nano-Crystal Surface Modification (UNSM) on the Passivation Behavior of Aged 316L Stainless Steel
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[33] Fretting Corrosion Behavior of Additive Manufactured and Cryogenic‐Machined Ti6Al4V for Biomedical Applications
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[34] Using Cavitation Peening to Improve the Fatigue Life of Titanium Alloy Ti-6Al-4V Manufactured by Electron Beam Melting
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[35] Influence of Laser Peening on Phase Transformation and Corrosion Resistance of AISI 321 steel
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[36] Intergranular Corrosion Mechanism of Slightly-sensitized and UNSM-treated 316L Stainless Steel
[37] A Facile Method to Modify the Characteristics and Corrosion Behavior of 304 Stainless Steel by Surface Nanostructuring toward Biomedical Applications
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[38] Intergranular corrosion of 316L stainless steel by aging and UNSM (ultrasonic nano-crystal surface modification) treatment
[39] 시효열처리 및 UNSM 처리에 따른 316L 스테인리스강의 입계부식거동
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