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超声波-电沉积Ni-Al_2O_3复合镀层的表面形貌及组织结构 被引量:7
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作者 常立民 刘伟 段小月 《电镀与环保》 CAS CSCD 北大核心 2009年第6期11-15,共5页
采用超声波-电沉积方法在金属基体上制备纳米Ni-Al2O3复合镀层。研究了超声波频率、功率对制备复合镀层的影响。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)对镀层微观组织、表面形貌进行观察和分析。结果表明:超声波的作用可有效... 采用超声波-电沉积方法在金属基体上制备纳米Ni-Al2O3复合镀层。研究了超声波频率、功率对制备复合镀层的影响。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)对镀层微观组织、表面形貌进行观察和分析。结果表明:超声波的作用可有效解决纳米Al2O3微粒在镀液中的分散问题,使纳米Al2O3微粒均匀分布在复合镀层中,促进纳米Al2O3微粒与镀层基质金属的共沉积,并细化基质金属Ni的晶粒,获得了由镍晶(20~40 nm)和纳米Al2O3微粒构成的纳米复合镀层。 展开更多
关键词 超声波-电沉积 Ni-Al2O3复合镀层 表面形貌 组织结构
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Electrodeposited Ni and Ni-Co alloys using cysteine and conventional ultrasound waves
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作者 EL-FEKY Hesham NEGEM Mosaad +2 位作者 ROY Sudipta HELAL Nadia BARAKA A. 《Science China Chemistry》 SCIE EI CAS 2013年第10期1446-1454,共9页
Ni-Co alloys were electroplated from sulphate electrolyte using addition agents including sodium gluconate, boric acid and eysteine on copper foil by the galvanostatic technique and ultrasound waves. The chemical comp... Ni-Co alloys were electroplated from sulphate electrolyte using addition agents including sodium gluconate, boric acid and eysteine on copper foil by the galvanostatic technique and ultrasound waves. The chemical composition, surface morphologies, crystalline structure and hardness of the Ni-Co alloys were studied using energy dispersive spectroscopy, scanning electron microscope, X-ray diffraction and Vickers testing method, respectively. The effect of current density and addition agents on the microstructure and morphology of Ni-Co alloys were examined. The appropriate concentration of additives and ultrasound waves were found to produce fine and smooth crystals leading to higher hardness of Ni-Co alloys. The microhardness of the Ni-Co alloys was varied between 4860-7530 HV. The surface morphology of coatings was changed from granular to fine due to using of gluconate, boric acid, cysteine and ultrasound waves. The mechanical properties of nanocrystalline Ni-Co alloys showed an increase of the hardness with the growing of Ni content in the alloy. The X-ray diffraction studies indicated that nanocrystalline structure was face-centred cubic for pure Ni and Ni-Co alloys with Co content in the range of 1-75 wt.%. A hexagonal closed-package structure was obtained for pure Co and Ni-Co alloys with the cobalt content with range of 75-99 wt.%. 展开更多
关键词 ELECTRODEPOSITION NANOCRYSTALLINE Ni alloys ULTRASOUND MICROHARDNESS
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