Preparation and Characterization of Electroless Ni-P-W Coated NanoCenosphere /ABS composite for EMI shielding Application

Due to consistent development of various types of communication technologies and the unfavourable impacts of electromagnetic radiations on the human body and electronic gadgets, it is necessary to decrease the Electromagnetic Interference (EMI) and its effect on therapeutic instrumental assembly and...

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Published inMaterials today : proceedings Vol. 4; no. 11; pp. 12130 - 12137
Main Authors Vynatheya, S., Kumar, J.R. Naveen, Madhusudhana, R., Sagar, L. Chandra, Raju, V. Bheema
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 2017
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Abstract Due to consistent development of various types of communication technologies and the unfavourable impacts of electromagnetic radiations on the human body and electronic gadgets, it is necessary to decrease the Electromagnetic Interference (EMI) and its effect on therapeutic instrumental assembly and electronic equipment. In the present study, Electroless Ni-P-W Coated Nano Cenosphere (CNC)/Acrylonitrile butadiene styrene (ABS) polymer Composites have been proposed for their EMI shielding Effectiveness. The Process involves making the polymer composite conductive by uniformly dispersing Ni-P-W CNC in the polymer matrix and to increase wave absorption by incorporating sheet of the polymer-based composite in the device thereby increasing EMI shielding effectiveness. In the present study the EDX (Energy dispersive X-Ray) examination confirmed the presence of Ni-P-W on the coated NanoCenosphere. This was further, proved through Phase investigation by XRD (X-Ray Diffractometer).
AbstractList Due to consistent development of various types of communication technologies and the unfavourable impacts of electromagnetic radiations on the human body and electronic gadgets, it is necessary to decrease the Electromagnetic Interference (EMI) and its effect on therapeutic instrumental assembly and electronic equipment. In the present study, Electroless Ni-P-W Coated Nano Cenosphere (CNC)/Acrylonitrile butadiene styrene (ABS) polymer Composites have been proposed for their EMI shielding Effectiveness. The Process involves making the polymer composite conductive by uniformly dispersing Ni-P-W CNC in the polymer matrix and to increase wave absorption by incorporating sheet of the polymer-based composite in the device thereby increasing EMI shielding effectiveness. In the present study the EDX (Energy dispersive X-Ray) examination confirmed the presence of Ni-P-W on the coated NanoCenosphere. This was further, proved through Phase investigation by XRD (X-Ray Diffractometer).
Author Kumar, J.R. Naveen
Madhusudhana, R.
Vynatheya, S.
Sagar, L. Chandra
Raju, V. Bheema
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Keywords Electromagnetic Interference
NanoCenosphere
Eletroless coating
Shielding Effectiveness
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References Supriyo roy and Prasanta Sahoo, “Corrosion study of Electroless Ni-P-W coating using Electrochemical Impedance Spectroscopy”.
Elena v. Fomenko, Natalia N. Anshits, Marina V. Pankova, Leonid A. Solovyov and Alexander G. Anshits, “ Fly Ash Cenospheres: Composition, Morphology, Structure and Helium Permeability”, World of Coal-Ash Conference, May 9–11, 2011in Denver, USA.
Sadhana, “Electroless Alloy/Composite Coatings: A Review”, Vol. 28, Parts 3 & 4, June/August (2003) pp. 475–493.
John Noto, Gary Fenical and Colin Tong, “Automotive EMI Shielding-Controlling Automotive Electronic Emissions and Susceptibility with Proper EMI Suppression Methods”, April 1, 2010.
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SubjectTerms Electromagnetic Interference
Eletroless coating
NanoCenosphere
Shielding Effectiveness
Title Preparation and Characterization of Electroless Ni-P-W Coated NanoCenosphere /ABS composite for EMI shielding Application
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