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化学复合镀镍在齿轮行业中的应用 被引量:1
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作者 张颖 夏莉 《郑州工业高等专科学校学报》 2002年第3期4-5,共2页
化学复合镀镍是一种广泛应用镀镍方法。与普通镀镍相比,化学复合镀镍具有耐磨性强,硬度高,润滑能力强三个优点,为达到这些目的,可以添加不同的粒子。本文还简要介绍了化学复合镀镍在齿轮行业中的应用。
关键词 齿轮 化学复合镀镍 粒子 耐磨性 磨擦系数
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Ni-P-SiC(纳米)化学复合镀工艺试验研究 被引量:2
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作者 刘慧平 黄珍媛 《机械制造》 2012年第10期71-73,共3页
在传统的镍磷化学复合镀液中加入纳米SiC粒子,即Ni-P-SiC(纳米)化学复合镀工艺是一项新型的、很有前景的模具表面处理技术。这种方法能进一步提高镀层表面的硬度和耐磨性。采用正交试验方案对45号钢板进行Ni-P-SiC(纳米)化学复合镀工艺... 在传统的镍磷化学复合镀液中加入纳米SiC粒子,即Ni-P-SiC(纳米)化学复合镀工艺是一项新型的、很有前景的模具表面处理技术。这种方法能进一步提高镀层表面的硬度和耐磨性。采用正交试验方案对45号钢板进行Ni-P-SiC(纳米)化学复合镀工艺试验,归纳和分析了纳米SiC粒子浓度、施镀温度、搅拌速度、镀液PH值4个工艺参数对镀层硬度的影响规律,由正交工艺试验结果推导出最优工艺参数组合。工艺试验得到的镀层硬度值表明优化结果正确。 展开更多
关键词 化学复合 纳米SiC粒子 硬度 工艺试验
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Microstructure and properties of Al/Cu bimetal in liquid-solid compound casting process 被引量:8
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作者 胡媛 陈翌庆 +2 位作者 李立 胡焕冬 朱子昂 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第6期1555-1563,共9页
A Ni-P coating was deposited on Cu substrate by electroless plating and the Al/Cu bimetal was produced by solid?liquid compound casting technology. The microstructure, mechanical properties and conductivity of Al/Cu ... A Ni-P coating was deposited on Cu substrate by electroless plating and the Al/Cu bimetal was produced by solid?liquid compound casting technology. The microstructure, mechanical properties and conductivity of Al/Cu joints with different process parameters (bonding temperature and preheating time) were investigated. The results showed that intermetallics formed at the interface and the thickness and variety increased with the increase of bonding temperature and preheating time. The Ni?P interlayer functioned as a diffusion barrier and protective film which effectively reduced the formation of intermetallics. The shear strength and conductivity of Al/Cu bimetal were reduced by increasing the thickness of intermetallics. In particular, the detrimental effect of Al2Cu phase was more obvious compared with the others. The sample preheated at 780 ℃ for 150 s exhibited the maximum shear strength and conductivity of 49.8 MPa and 5.29×10^5 S/cm, respectively. 展开更多
关键词 Al/Cu bimetal solid-liquid compound casting electroless Ni plating Al2Cu phase microstructure mechanical properties conductivity
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Influence of pH values on electroless Ni-P-SiC plating on AZ91D magnesium alloy 被引量:5
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作者 沟引宁 黄伟九 +1 位作者 曾荣昌 朱翊 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第B07期674-678,共5页
A novel Ni-P-SiC composite coating was prepared by electroless plating in order to improve the corrosion capacity and wear resistance of AZ91D magnesium alloy.The influence of pH values on deposition rates and propert... A novel Ni-P-SiC composite coating was prepared by electroless plating in order to improve the corrosion capacity and wear resistance of AZ91D magnesium alloy.The influence of pH values on deposition rates and properties of the coatings was studied.The microstructure and phase structure of the Ni-P-SiC coatings were analyzed by scanning electron microscopy(SEM)and X-ray diffractometry(XRD).The corrosion and wear resistance performances of the coatings were also investigated through electrochemical technique and pin-on-disk tribometer,respectively.The results indicate that the composite coating is composed of Ni, P and SiC.It exhibits an amorphous structure and good adhesion to the substrate.The coatings have higher open circuit potential than that of the substrate.The composite coating obtained at pH value of 5.2 possesses optimal integrated properties,which shows similar corrosion resistance and ascendant wear resistance properties to the substrate. 展开更多
关键词 electroless plating Ni-P-SiC composite coating magnesium alloy CORROSION wear resistance
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Formation mechanism of electroless plating nickel-based composite coating on highly active rare earth magnesium alloys and its corrosion resistance and adhesion performance
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作者 WANG Bo LI Jia-wei +3 位作者 XIE Zhi-hui LIU Kang XU Tao YU Gang 《Journal of Central South University》 SCIE EI CAS 2024年第10期3517-3531,共15页
The process of preparing anodic oxide film containing active sites and electroless nickel plating on highly active rare earth magnesium alloy was developed.The formation mechanism of electroless nickel plating on acti... The process of preparing anodic oxide film containing active sites and electroless nickel plating on highly active rare earth magnesium alloy was developed.The formation mechanism of electroless nickel plating on active anodic oxide film and the structure and properties of the composite coating were studied by several surface and electrochemical techniques.The results showed that Ag nanograins with an average size of 10 nm were embedded into the anodic oxide film with pores of 0.1−2μm.Ag nanoparticles provided a catalytic site for the deposition of Ni-B alloy,and the Ni crystal nucleus was first grown in horizontal mode and then in cylindrical mode.The corrosion potential of the composite coating increased by 1.37 V and the corrosion current reduced two orders of magnitude due to the subsequent deposition of Ni-P alloy.The high corrosion resistance was attributed to the misaligning of these micro defects in the three different layers and the amorphous structure of the Ni-P alloy in the outer layer.These findings provide a new idea for electroless nickel plating on anodic oxide film. 展开更多
关键词 rare earth magnesium alloy electroless nickel plating composite coating Ag+activation active anodic oxidation film growth mechanism
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