The Experts below are selected from a list of 2169 Experts worldwide ranked by ideXlab platform

Chaosheng Yu - One of the best experts on this subject based on the ideXlab platform.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

Wei Lin - One of the best experts on this subject based on the ideXlab platform.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

Xiangrong Xi - One of the best experts on this subject based on the ideXlab platform.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

  • research of Silver Plating nano graphite filled conductive adhesive
    Synthetic Metals, 2009
    Co-Authors: Wei Lin, Xiangrong Xi, Chaosheng Yu
    Abstract:

    Abstract In this paper, Silver Plating nano-graphite (Ag Plating nano-G) was developed by electroless Plating method using nano-graphite prepared from expanded graphite. The Silver Plating nano-graphite filled conductive adhesive prepared was composed of 66 wt% of epoxy resin E-51, 20 wt% of Ag Plating nano-graphite as conductive filler, 9 wt% of triethanolamine as curing agent and 5 wt% of other additives. It took 180 min for the adhesive to be cured completely at 120 °C. The electrically conductive adhesives exhibited two percolation threshold values which were 7 wt% and 17 wt%, respectively. The electrical resistivity of the conductive adhesive decreased to 1.50 × 10−3 Ω cm and the tensile lap strength remained at a high level (about 13.2 MPa) when the content of the conductive filler was 20 wt%. TGA indicated that the conductive adhesive exhibited good thermal stability.

Chi-wai Kan - One of the best experts on this subject based on the ideXlab platform.

  • Polyester metallisation with electroless Silver Plating process
    Fibers and Polymers, 2013
    Co-Authors: Cwm Yuen, S. K. A. Ku, P. S. R. Choi, S. X. Jiang, Chi-wai Kan, Ka-po Maggie Tang, S.y. Cheng
    Abstract:

    In this paper, electroless Silver Plating process for polyester was reported. The electroless Silver Plating is basically divided into four stages including pre-cleaning, sensitisation, electroless Silver deposition and post-treatment. As the electroless Silver Plating stage is the key stage in affecting the brilliant appearance and various functional properties such as conductivity and ultra-violet protection, we will study the effect of process variables, i.e. amount of Silver nitrate (AgNO3), concentration of ammonium hydroxide (NH4OH), concentration of sodium hydroxide (NaOH) and process temperature, using increased amount of Silver in fabric surface as an indicator, for optimising the electroless Silver Plating process for possible industrial application. Experimental results revealed that amount of Silver nitrate (AgNO3)=1.77×10−3 mole; concentration of ammonium hydroxide (NH4OH)=6.25 %; concentration of sodium hydroxide (NaOH)=0.008 g/ml and process temperature=25 °C can give the best electroless Silver Plating for polyester fabric. The surface characteristics of the electroless Silver-plated polyester fabric were evaluated by scanning electron microscope, X-ray photoelectron spectroscopy and X-ray diffraction analysis. Meanwhile, the performance properties of the electroless Silver-plated polyester fabric were measured by CIE L*, a* and b* values, conductivity as well as ultraviolet protection. The experimental results would be discussed thoroughly in this paper.

  • chemical Silver Plating on polyester cotton blended fabric
    Journal of Applied Polymer Science, 2006
    Co-Authors: S. Q. Jiang, E. Newton, Chunwah Marcus Yuen, Chi-wai Kan
    Abstract:

    Chemical Plating is a metallizing process that can impart unique properties to textile fabrics. It has great potential for use in textile production, especially in the functional and decorative aspects. The present study examined the feasibility of applying chemical Silver Plating to a polyester/cotton blended fabric (T/C fabric) as well as investigating the properties of the Silver-plated T/C fabric. It was found that chemical Silver Plating helped to produce T/C fabric with a novel appearance and to improve its performance. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 4383–4387, 2006

  • Chemical Silver Plating on polyester/cotton blended fabric
    Journal of Applied Polymer Science, 2006
    Co-Authors: S. Q. Jiang, E. Newton, Chunwah Marcus Yuen, Chi-wai Kan
    Abstract:

    Chemical Plating is a metallizing process that can impart unique properties to textile fabrics. It has great potential for use in textile production, especially in the functional and decorative aspects. The present study examined the feasibility of applying chemical Silver Plating to a polyester/cotton blended fabric (T/C fabric) as well as investigating the properties of the Silver-plated T/C fabric. It was found that chemical Silver Plating helped to produce T/C fabric with a novel appearance and to improve its performance. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 4383–4387, 2006

S. Q. Jiang - One of the best experts on this subject based on the ideXlab platform.

  • chemical Silver Plating on polyester cotton blended fabric
    Journal of Applied Polymer Science, 2006
    Co-Authors: S. Q. Jiang, E. Newton, Chunwah Marcus Yuen, Chi-wai Kan
    Abstract:

    Chemical Plating is a metallizing process that can impart unique properties to textile fabrics. It has great potential for use in textile production, especially in the functional and decorative aspects. The present study examined the feasibility of applying chemical Silver Plating to a polyester/cotton blended fabric (T/C fabric) as well as investigating the properties of the Silver-plated T/C fabric. It was found that chemical Silver Plating helped to produce T/C fabric with a novel appearance and to improve its performance. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 4383–4387, 2006

  • Chemical Silver Plating on polyester/cotton blended fabric
    Journal of Applied Polymer Science, 2006
    Co-Authors: S. Q. Jiang, E. Newton, Chunwah Marcus Yuen, Chi-wai Kan
    Abstract:

    Chemical Plating is a metallizing process that can impart unique properties to textile fabrics. It has great potential for use in textile production, especially in the functional and decorative aspects. The present study examined the feasibility of applying chemical Silver Plating to a polyester/cotton blended fabric (T/C fabric) as well as investigating the properties of the Silver-plated T/C fabric. It was found that chemical Silver Plating helped to produce T/C fabric with a novel appearance and to improve its performance. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 100: 4383–4387, 2006