The Experts below are selected from a list of 312 Experts worldwide ranked by ideXlab platform
Yujin Chen - One of the best experts on this subject based on the ideXlab platform.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface & Coatings Technology, 2003Co-Authors: Yujin Chen, Qiang XuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface and Coatings Technology, 2003Co-Authors: Yujin Chen, Maosheng Cao, Qiang Xu, Jing ZhuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly. © 2003 Elsevier Science B.V. All rights reserved.
-
A new low-temperature electroless Nickel Plating process
Plating and Surface Finishing, 1997Co-Authors: K. Chen, Yujin ChenAbstract:A new low-temperature electroless Nickel Plating process was developed by adding some inorganic agents to the Plating solution, in which citrate acted as complexing agent. With the optimum process determined, high deposition rate was obtained, resulting in a bright deposit with excellent adhesion.
Jing Zhu - One of the best experts on this subject based on the ideXlab platform.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface and Coatings Technology, 2003Co-Authors: Yujin Chen, Maosheng Cao, Qiang Xu, Jing ZhuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly. © 2003 Elsevier Science B.V. All rights reserved.
Qiang Xu - One of the best experts on this subject based on the ideXlab platform.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface & Coatings Technology, 2003Co-Authors: Yujin Chen, Qiang XuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface and Coatings Technology, 2003Co-Authors: Yujin Chen, Maosheng Cao, Qiang Xu, Jing ZhuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly. © 2003 Elsevier Science B.V. All rights reserved.
Maosheng Cao - One of the best experts on this subject based on the ideXlab platform.
-
Electroless Nickel Plating on silicon carbide nanoparticles
Surface and Coatings Technology, 2003Co-Authors: Yujin Chen, Maosheng Cao, Qiang Xu, Jing ZhuAbstract:By a simple and controlled method, that is, by electroless Plating, Nickel has been deposited on the surfaces of silicon carbon nanoparticles. Energy dispersive spectrometry (EDS) spectra show that pre-treatments of the silicon carbide nanoparticles have an important influence on the effect of electroless Nickel Plating. Transmission electron microscopy images and EDS spectra of silicon carbide nanoparticles before and after electroless Nickel Plating reveal that Nickel has been deposited on the surface of silicon carbide nanoparticles and the deposited Nickel and silicon carbide nanoparticles are bound tightly. © 2003 Elsevier Science B.V. All rights reserved.
C. A. Loto - One of the best experts on this subject based on the ideXlab platform.
-
Electroless Nickel Plating – A Review
Silicon, 2016Co-Authors: C. A. LotoAbstract:The operating process, versatility and the increasing research interest in optimising the process and products technology in the electroless Plating method of metal coating, particularly, the electroless Nickel Plating of metallic substrates such as mild steel, necessitates the writing of this review. It is also aimed at providing more literature information, both of the past and the present published research in this field. In this paper, electroless Nickel Plating is introduced. The various Nickel Plating solutions and baths’ operating parameters; main types of electroless Nickel Plating; the mechanism involved in the Plating process; application of the Nickel Plating process to iron powders; advantages and disadvantages and the process’s other applications are reviewed. Electroless Nickel Plating produces an amorphous deposit in the as-plated condition. The deposit is not dependent on current distribution and hence it is almost uniform in thickness. Electroless Nickel Plating is far more difficult to remove chemically than conventional Nickel deposits due to its superior corrosion resistance. The deposit has a good wettability and is generally hard. However, its bath control is more complex than with electroPlating. The bath also has lower efficiency and higher operating costs, even without the use of electricity.
-
electroless Nickel Plating a review
Silicon, 2016Co-Authors: C. A. LotoAbstract:The operating process, versatility and the increasing research interest in optimising the process and products technology in the electroless Plating method of metal coating, particularly, the electroless Nickel Plating of metallic substrates such as mild steel, necessitates the writing of this review. It is also aimed at providing more literature information, both of the past and the present published research in this field. In this paper, electroless Nickel Plating is introduced. The various Nickel Plating solutions and baths’ operating parameters; main types of electroless Nickel Plating; the mechanism involved in the Plating process; application of the Nickel Plating process to iron powders; advantages and disadvantages and the process’s other applications are reviewed. Electroless Nickel Plating produces an amorphous deposit in the as-plated condition. The deposit is not dependent on current distribution and hence it is almost uniform in thickness. Electroless Nickel Plating is far more difficult to remove chemically than conventional Nickel deposits due to its superior corrosion resistance. The deposit has a good wettability and is generally hard. However, its bath control is more complex than with electroPlating. The bath also has lower efficiency and higher operating costs, even without the use of electricity.