FUNCTIONALIZATION OF TEXTILE MATERIALS BY PLASMA TECHNOLOGY FOR METALLIC MICROPARTICLES DEPOSITION

Abstract

In this paper we propose a method based on plasma technology, which does not cause damage of the fabric. In our work are described aspects regarding textile functionatization by plasma activation treatment for metallic deposition in order to obtain flexible electronics. By plasma activation the textile surface can be modified and can be obtained the optimal surface energy for additional treatments such as metallization by microparticles deposition for developing the electroconductive surfaces with great potential for use in sensors/actuators devices, EM shielding and with antistatic properties. Our work presents comparative aspects of the hydrophobic/hydrophilic surface obtained by plasma coating and used for metallization. The most used treatment for optimal surface energy preparate the textile surface for metallic deposition (print, lamination or padding) are based on the surface treatment such as plasma, inluding corona treatment and chemical treatment using classical techniques (padding). The massive development of wireless communication systems and the miniaturization trend in electronics has generated a need for flexible wearable electronics based on conductive lightweight surfaces. The classical technology for metal deposition for electronics involves high temperature fabrication processes. Generally, the metal depossition in microfabrication processes, in semiconductors industry, is performed by chemical vapor deposition (CVD), electrodeposition and epitaxy.

Authors and Affiliations

Raluca Maria AILENI, Razvan Ion RADULESCU, Laura CHIRIAC

Keywords

Related Articles

THE INFLUENCE OF THE NUMBER OF RIPPLE OF POLYACRYLONITRILIC FIBERS COTTON TYPE ON YARN PROPERTIES

In this study we aimed the influence of the number of undulations of polyacrylonitrile fibers, cotton type, on the properties of yarns with Nm50/1 fineness, made on BD 200 the rotor spinning machine. Rotor spinning of th...

AN ANALYSIS OF THE INFLUENCE OF THE TEXTILE MATERIAL DOUBLING PROCESS BY THERMOFUSING ON VAPOR PERMEABILITY

To confer shape and volume parameters, to ensure dimensional stability of surfaces and contours, some parts of clothing are doubled using the process of thermofusion with certain woven or nonwoven chemicalized materials....

STUDY OF THE INFLUENCE OF SYNTHETIC COMPONENT IN MIXTURES WITH WOOL ON THE PHYSICAL-MECHANICAL PROPRIETIES

The main physical-mechanical properties of the yarns are: linear density (Tex), tensile strength, tenacity, elongation at break, twisting and mechanical work of fracture, there is a strong correlation between them. The t...

ANALYZING CORPORATE SOCIAL RESPONSIBILITY REPORTING IN THE EUROPEAN UNION

In the context of national and international developments, Corporate Social Responsibility is becoming an increasingly important element on national and transnational policy agenĀ¬das. An ever more diverse range of busine...

SAVE ENERGY IN TEXTILE SMES

Efficiency and competitiveness in textile and clothing manufacturing sector must take into account the current and future energy challenges. Energy efficiency is a subject of critical importance for the Textile & Clothin...

Download PDF file
  • EP ID EP432397
  • DOI -
  • Views 90
  • Downloads 0

How To Cite

Raluca Maria AILENI, Razvan Ion RADULESCU, Laura CHIRIAC (2018). FUNCTIONALIZATION OF TEXTILE MATERIALS BY PLASMA TECHNOLOGY FOR METALLIC MICROPARTICLES DEPOSITION. Annals of the University of Oradea. Fascicle of Textiles, Leatherwork, 0(2), 9-12. https://europub.co.uk/articles/-A-432397