王智勇, 张国光, 谢小林, 邵志松, 周韦, 李琴, 曹径倩, 史少欣. 不同电流密度对304不锈钢表面多孔铜层影响[J]. 南昌航空大学学报(自然科学版), 2020, 34(1): 64-69. DOI: 10.3969/j.issn.1001-4926.2020.01.010
引用本文: 王智勇, 张国光, 谢小林, 邵志松, 周韦, 李琴, 曹径倩, 史少欣. 不同电流密度对304不锈钢表面多孔铜层影响[J]. 南昌航空大学学报(自然科学版), 2020, 34(1): 64-69. DOI: 10.3969/j.issn.1001-4926.2020.01.010
Zhi-yong WANG, Guo-guang ZHANG, Xiao-lin XIE, Zhi-song SHAO, Wei ZHOU, Qin LI, Jing-qian CAO, Shao-xin SHI. Preparation and Characterization of Porous Structure on Surface of Stainless Steel[J]. Journal of nanchang hangkong university(Natural science edition), 2020, 34(1): 64-69. DOI: 10.3969/j.issn.1001-4926.2020.01.010
Citation: Zhi-yong WANG, Guo-guang ZHANG, Xiao-lin XIE, Zhi-song SHAO, Wei ZHOU, Qin LI, Jing-qian CAO, Shao-xin SHI. Preparation and Characterization of Porous Structure on Surface of Stainless Steel[J]. Journal of nanchang hangkong university(Natural science edition), 2020, 34(1): 64-69. DOI: 10.3969/j.issn.1001-4926.2020.01.010

不同电流密度对304不锈钢表面多孔铜层影响

Preparation and Characterization of Porous Structure on Surface of Stainless Steel

  • 摘要: 在304不锈钢表面采用电沉积方法制备了多孔结构铜层,研究了不同电流密度对镀层微观形貌、厚度、孔隙率以及比表面积的影响。结果表明通过控制沉积电流密度能在304不锈钢表面获得颗粒状、树枝状和针状形貌的不同镀层;随着电流密度的提高而镀层厚度增大,但彼此不是线性关系,随着电流增加,镀层厚度增速变缓;镀层孔隙率随电流密度增加而增加,当电流密度达到6 A/dm2后,镀层孔隙率维持在93%~96%之间;镀层比表面积随着电流密度的增加呈现先快速增加,然后缓慢增加趋势,10 A/dm2条件下的镀层比表面积是4 A/dm2的10倍。

     

    Abstract: In the present work, copper plating with porous structure was obtained on the surface of the 304 stainless steel via electrode position process. The impact of current density on the micro-morphology, thickness and the specific surface area of the porous Cu plating was investigated. The results show that different coatings with granular, dendritic and needle-like shapes can be obtained on the surface of 304 stainless steel by controlling the deposition current density. The coating thickness increases with the increase of the current density, but they are not linearly related to each other, as the current increases, the growth rate of the coating thickness becomes slower. The porosity of the coating increases with the increase of current density, after the current density reaches 6 A/dm2, the porosity of the coating is maintained between 93%~96%. The specific surface area of the coating increases rapidly with the increase of the current density, and then increases slowly. The specific surface area of the coating under condition 10 A/dm2 is 10 times that under condition 4 A/dm2.

     

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