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作 者:Peng-Fei Dai Yang Zhang Sergey Rogozhkin Ji-Hong Han Shu-Wen Li Zhong-Wu Zhang
机构地区:[1]Key Laboratory of Superlight Materials and Surface Technology,Ministry of Education,College of Materials Science and Chemical Engineering,Harbin Engineering University,Harbin,150001,China [2]National Research Nuclear University“MEPhI”,Moscow,115409,Russia [3]National Research Center“Kurchatov Institute”,Moscow,123182,Russia
出 处:《Tungsten》2024年第4期778-793,共16页钨科技(英文)
基 金:supported by the National Natural Science Foundation of China(NSFC)(52001083,U2141207,52171111);Natural Science Foundation of Heilongjiang(YQ2023E026)。
摘 要:This study investigated the effect of Nb-content on the corrosion behavior of the Al_(7)Cr_(20)Fe_(35-x)Ni_(35)Mo_(3)Nb_(x)(x=0,1 and 2)high-entropy alloys in a Cl-environment.The results indicated that only the face centered cubic phase existed in the NbO and Nbl alloys,while the emergence of Laves phase was observed when Nb-content reached 2 at.%.The NbO and Nb1alloys exhibited pitting corrosion,while the NiAl-rich phase experienced localized preferential corrosion in the Nb2 alloy.The electrochemical results revealed that the corrosion current density of the Nbx(x=0,1 and 2)alloys fell within the range of 10^(-8)-10-7 A·cm^(-2),with a pitting corrosion potential exceeding 700 mVSCE.Notably,the Nb1 alloy exhibited the most impressive corrosion resistance,as its corrosion current density(7×10^(-8)A·cm^(-2))was merely half that of 316LN stainless steel.This is attributed to its rapid passivation process,resulting in the development of a protective film characterized by an increased Cr_(2)O_(3)/Al_(2)O_(3)+Cr(OH)_(3)ratio.This study highlighted that the addition of Nb contributed to gram refinement,decreased corrosion current density,and elevated pitting potential,favoring passivation and improving corrosion resistance.However,excessive Nb-content resulted in the emergence of the Laves phase,inducing galvanic corrosion and diminishing resistance to corrosion.
关 键 词:High entropy alloys Microstructure Corrosion Passive film NIOBIUM
分 类 号:TG139[一般工业技术—材料科学与工程] TG172[金属学及工艺—合金]
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