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Textiles and Nonwovens Development Centerat The University of Tennessee
Textiles and Nonwovens Development Centerat The University of Tennessee TANDEC
2014/7/15
TANDEC will be recognized worldwide as a leading applications development facility for melt processing nonwovens. TANDEC will encourage relationships between academics and industry to provide leadersh...
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Determination of Radiative Thermal Conductivity in Needlepunched Nonwovens
Radiative Thermal Conductivity Needlepunched Nonwovens
2009/7/21
Radiation heat transfer is found to be the dominant mode of heat transfer at temperatures higher than 400-500K [11]. Convection heat transfer being negligible in nonwovens, effective thermal conductiv...
In this research, polypropylene fibers and nonwoven samples were produced with the commercial samples of nanoclay additives in semi-commercial processing machinery. Influence of two different types of...
Comments on the Paper Entitled “Splitting of Islands-in-the-Sea Fibers (PA6/COPET) During Hydroentangling of Nonwovens”
Islands-in-the-Sea Fibers Hydroentangling
2009/3/6
The Journal of Engineered Fibers and Fabrics (JEFF) is gaining wide recognition in the global R&D community. However, this paper appears to fall short of your normal publishing standards. The data pre...
Splitting of Islands-in-the-Sea Fibers (PA6/COPET)During Hydroentangling of Nonwovens
Islands-in-the-Sea Fibers PA6/COPET
2009/3/6
This paper summarizes the investigations of hydroentangled islands-in-the-sea (PA6/COPET) fiber webs. An increase in water jet pressure improved the tensile strength and fiber splitting while elongati...
Strength Optimization of Thermally Bonded Spunbond Nonwovens
Strength Optimization Spunbond Nonwovens
2009/3/4
Recent research on all aspects of thermally point bonded nonwovens has led to considerable improvements in the understanding of material requirements for these nonwovens, the changes that occur during...
Electrospinning and Porosity Measurements of Nylon-6/Poly(ethylene oxide) Blended Nonwovens
Porosity Measurements Nylon-6/Poly(ethylene oxide)
2009/3/4
A simple method was used to prepare a nonwoven fabric of intimately co-mingled Nylon-6 and Polyethylene oxide (PEO) electrospun fibers by spinning fibers onto a rotating collector. Electrospinning par...
New nonwovens applications in areas such as filtration require a media designed to particular pore size specifications in the 3 to 20 micron range. The purpose of this work was to develop a basis by w...
Polyether Based Thermoplastic Polyurethane Melt Blown Nonwovens
Thermoplastic Polyurethane Melt Blown Nonwovens
2009/2/26
A series of melt blown samples were produced from three hardness grades of ether based thermoplastic polyurethane elastomers (TPU). The fabrics were tested to investigate their structure-property rela...
Device for Measuring Sliding Friction on Highloft Nonwovens
Measuring Sliding Friction Highloft Nonwovens
2009/2/26
When measuring the sliding friction on highly compliant materials such as fabric batting and foam rubber, a substantial portion of the apparent friction is due to the deformation of the substrate. A n...
A Nonwovens Coated by Chitosan with Potential Anti-microbial Behaviour – Preliminary Results
nonwoven chitosan forms medical application devices
2009/2/16
The aim of the research was to elaborate the manufacturing method of modified non-woven materials for medical use as absorbent material in consumers’ plasters. The modified non-woven materials obtaine...
The Nonwovens Formation in the Melt-blown Process
melt-blown process mathematical modeling supersonic airflow nonwoven formation
2009/2/16
Melt-blowing is an industrial method for the rapid production of nonwoven fibres. In melt-blowing a polymer is melted and extruded through a capillary while heated air is blown through an air nozzle. ...