Optimization of electroless nickel plating on polyester fabric

被引:0
作者
R. H. Guo
S. X. Jiang
C. W. M. Yuen
M. C. F. Ng
J. W. Lan
机构
[1] Sichuan University,College of Light Industry, Textile and Food Engineering
[2] The Hong Kong Polytechnic University,Institute of Textiles and Clothing
来源
Fibers and Polymers | 2013年 / 14卷
关键词
Electroless nickel plating; Polyester fabric; Optimization; Statistical experimental design; Surface resistance;
D O I
暂无
中图分类号
学科分类号
摘要
Electrical conductivity is an important property of electroless nickel plated fabric. The optimized electroless nickel plating method can provide useful information for textile industries to obtain optimum surface resistance and stable plating. In this study, a screening experiment with factorial design and response surface method (RSM) with central composite design (CCD) was used to optimize the electroless nickel plating on polyester fabric. A two-level full factorial design (FFD) was used to determine the effects of five factors, i.e. the concentrations of nickel sulfate, sodium hypophosphite and sodium citrate, pH and temperature of the plating solution on surface resistance of the electroless nickel plated fabric. It is found that the nickel sulfate concentration and temperature of the plating solution are the most significant variables affecting the surface resistance of electroless nickel plated fabric. The optimum operating condition is finally obtained by using a desirability function. The test for reliability for predicting response surface equations shows that these equations give an excellent fitting to the observed values. In addition, the deposit composition, surface morphology, crystal structure and electromagnetic interference (EMI) shielding effectiveness (SE) were studied. The EMI SE of the nickel plated polyester fabric obtained under the optimal condition is about 60 dB at the frequency ranging from 2 to 18 GHz.
引用
收藏
页码:459 / 464
页数:5
相关论文
共 50 条
[41]   Initial deposition mechanism of electroless nickel plating on magnesium alloys [J].
Xiang, YH ;
Hu, WB ;
Liu, XK ;
Zhao, CZ ;
Ding, WJ .
TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 2001, 79 (01) :30-32
[42]   Preparation of tungsten base composite powder by electroless nickel plating [J].
Amirjan, M. ;
Zangeneh-Madar, K. ;
Parvin, N. .
POWDER METALLURGY, 2010, 53 (03) :218-222
[43]   Development of metallised polyester fabric by electroless copper for aircraft application using glyoxylic acid as reductant [J].
Qin, W. F. .
TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 2016, 94 (05) :246-249
[44]   ELECTROLESS NICKEL PLATING ON CHITOSAN-MODIFIED WOOD VENEER [J].
Wang, Lijuan ;
Liu, Haibing .
BIORESOURCES, 2011, 6 (02) :2035-2044
[45]   Preparation of conductive particles by electroless nickel plating on polystyrene microsphere [J].
Wang Jia ;
An Bing ;
He Jing-qiang ;
Wu Feng-shun .
ICEPT: 2006 7TH INTERNATIONAL CONFERENCE ON ELECTRONICS PACKAGING TECHNOLOGY, PROCEEDINGS, 2006, :288-+
[46]   Preparation of anisotropic conductive fine particles by electroless nickel plating [J].
Motizuki, I ;
Izawa, K ;
Watanabe, J ;
Honma, H .
TRANSACTIONS OF THE INSTITUTE OF METAL FINISHING, 1999, 77 :41-43
[47]   A Simple Nickel Activation Process for Electroless Nickel-Phosphorus Plating on Carbon Fiber [J].
Yan, Tingguo ;
Li, Leihong ;
Wang, Lijuan .
BIORESOURCES, 2013, 8 (01) :340-349
[48]   Artificial neural network modelling of plating rate and phosphorus content in the coatings of electroless nickel plating [J].
Wu Yating ;
Shen Bin ;
Lui Lei ;
Hu Wenbin .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 205 (1-3) :207-213
[49]   Nickel Recycling from Spent Electroless Nickel Plating Baths Using Solvent Extraction [J].
Tanaka, Mikiya ;
Narita, Hirokazu ;
Saiki, Yukinori .
KAGAKU KOGAKU RONBUNSHU, 2010, 36 (04) :201-206
[50]   Preparation of Composite Particles via Electroless Nickel Plating on Polystyrene Microspheres and Effect of Plating Conditions [J].
Kim, Byung Chul ;
Park, Jin Hong ;
Lee, Seong Jae .
POLYMER-KOREA, 2010, 34 (01) :25-31