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Deuterium permeation properties of Er2O3/Cr2O3 composite coating prepared by MOCVD on 316L stainless steel

机译:MOCVD在316L不锈钢上制备的Er2O3 / Cr2O3复合涂层的氘渗透性能。

摘要

In this work, an Er2O3/Cr2O3 composite coatings on 316L stainless steel were prepared by metalorganic chemical vapor deposition (MOCVD). Effect of Cr2O3 layer on the microstructure, mechanical properties and deuterium permeation properties of Er2O3 coating was investigated. It was found grain sizes of the coatings enlarged with increasing the thickness of Cr2O3 layer. The Er2O3/Cr2O3 (80 nm) composite coating showed larger adhesion force value 9.2 N than the Er2O3 coating. The Cr2O3 layer adding could significantly enhance the deuterium permeation inhibition property of the coatings. The single-layer Er2O3 coating exhibited the minimum reduction in deuterium permeability, and the permeation reduction factor (PRF) values were in the range of 95–146 at 823–973 K. The maximum reduction in deuterium permeability was obtained from the Er2O3/Cr2O3 (80 nm) composite coating, and the PRF values were in the range of 463–206 at 823–973 K. With further increasing thickness of the Cr2O3 layer to 120 nm, the hydrogen permeation inhibition performance of the composite coating lower instead. Furthermore, apparent delamination of coating was illustrated on the single-layer Er2O3 coating after the permeation measurement, and this might be the main reason for the transformation to diffusion limiting process.
机译:在这项工作中,通过金属有机化学气相沉积(MOCVD)在316L不锈钢上制备了Er2O3 / Cr2O3复合涂层。研究了Cr2O3层对Er2O3涂层的组织,力学性能和氘渗透性能的影响。发现随着Cr2O3层厚度的增加,涂层的晶粒尺寸增大。 Er2O3 / Cr2O3(80 nm)复合涂层比Er2O3涂层具有更大的9.2 N粘附力值。 Cr2O3层的添加可以显着增强涂层的氘渗透抑制性能。单层Er2O3涂层表现出最小的氘渗透率降低,渗透还原因子(PRF)值在823-973K时在95-146范围内。氘渗透率的最大降低是从Er2O3 / Cr2O3获得的(80 nm)复合涂层,PRF值在823-973 K时在463-206范围内。随着Cr2O3层厚度进一步增加到120nm,复合涂层的氢渗透抑制性能反而降低了。此外,在渗透率测量之后,在单层Er2O3涂层上显示出涂层的明显分层,这可能是转变为扩散限制工艺的主要原因。

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