Preparation and properties of α-Al2O3 diffusion barrier on stainless steel 316

Changxuan Wang, Jinning Huang, Yanli Wang
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Abstract

A compact and adherent Al2O3 diffusion barrier was obtained between a Ni coating and stainless steel 316 (316SS) through double-pulse composite plating coupled with in-situ thermal growth. To promote the formation of α-Al2O3 at low temperature, a Cr2O3 film was firstly prepared by pre-oxidation of 316SS. Then a Ni-Al/NiO composite coating was deposited on 316SS in a modified Watts’ bath with a Zeta potential of about +21.89 mV, a favorable condition for the co-deposition of double particles and nickel, followed by heat treatment in Ar at 800 ℃ for 12 h. Results of diffusion resistance tests at 750 and 800 ℃ for 100 h in Ar suggest that the Ni/α-Al2O3 composite coating changes slightly during the annealing treatment and significantly prevents the diffusion of Fe and Cr from 316SS substrate to the upper Ni layer. Furthermore, corrosion resistance of the composite coating is higher than that of the 316SS/Ni sample.

316不锈钢α-Al2O3扩散阻挡层的制备及性能
通过原位热生长双脉冲复合镀,在Ni涂层和316 (316SS)不锈钢之间形成了致密的Al2O3扩散屏障。为了促进α-Al2O3在低温下的形成,首先采用316SS预氧化法制备了Cr2O3薄膜。然后在改进的Watts '浴中在316SS上沉积了Ni-Al/NiO复合镀层,Zeta电位约为+21.89 mV,这是双粒子与镍共沉积的有利条件;750℃和800℃氩气热处理100 h的抗扩散性能测试结果表明,Ni/α-Al2O3复合涂层在退火处理过程中变化不大,明显阻止了Fe和Cr从316SS基体向Ni上层扩散。此外,复合涂层的耐蚀性高于316SS/Ni样品。
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CiteScore
7.30
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