2020
DOI: 10.1016/j.matchar.2020.110422
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Corrigendum to “Effect of microstructure on the passive behavior of selective laser melting-fabricated Hastelloy X in NaNO3 solution” [Mater. Charact. 165, July (2020), 110370]

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Cited by 2 publications
(2 citation statements)
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“…Kazemipour et al [ 15 ] compared the pitting resistance of SLM 316L SS with wrought 316L SS, and the researchers found that the SLM 316L SS had a higher pitting resistance. Yin et al [ 16 ] found a much thicker passive film on the XOY plane of SLM Hastelloy X alloy than that on the YOZ and XOZ planes; the finer grain sizes and higher densities of subgrain boundaries and dislocations in the XOY plane are the important driving factors. Likewise, the structure of the passive film had a significant influence on the corrosion resistance of the material.…”
Section: Introductionmentioning
confidence: 99%
“…Kazemipour et al [ 15 ] compared the pitting resistance of SLM 316L SS with wrought 316L SS, and the researchers found that the SLM 316L SS had a higher pitting resistance. Yin et al [ 16 ] found a much thicker passive film on the XOY plane of SLM Hastelloy X alloy than that on the YOZ and XOZ planes; the finer grain sizes and higher densities of subgrain boundaries and dislocations in the XOY plane are the important driving factors. Likewise, the structure of the passive film had a significant influence on the corrosion resistance of the material.…”
Section: Introductionmentioning
confidence: 99%
“…[30,32,33] The most important factor for the protection was found to be the thickness of the coating; however, the mixed-type ceramics also had a great influence. [34] For special applications of ferritic steel, with higher requirements for protection, more sophisticated thermal spray techniques, like high-velocity oxy fuel, have been used. [35] The present study aimed to evaluate the effect of heat treatment and an alumina/titania coating on the corrosion resistance of 1.4713 steel in sulfuric acid of 0.1 mol dm −3 concentration.…”
mentioning
confidence: 99%