Javascript must be enabled to continue!
Evaluation of the UV Protection Properties of Para-Aramid Woven Fabrics with Various Specialty Core Yarns
View through CrossRef
Para-aramid fibers, known for their remarkable strength and thermal stability, are frequently employed in protective textiles for military and aerospace applications. However, continuous exposure to ultraviolet (UV) radiation can damage their protective characteristics. This study analyzes the ultraviolet protection factor (UPF) and UV transmittance of woven fabrics produced from 30/2 Ne spun para-aramid yarns in the warp and 10 Ne core-spun yarns in the weft. The weft yarns consisted of three sheath fibers—para-aramid, meta-aramid, and polyester—in combination with different specialty core materials. The results show significant differences in UPF before and after UV exposure, with para-aramid sheaths giving the highest improvement. UV exposure caused structural changes in the fibers, resulting in increased UV protection, particularly in fabrics with para-aramid sheaths. This study concludes that the combination of para-aramid fibers with specific core materials significantly enhances UV protection, making them well-suited for applications in high UV exposure environments.
Title: Evaluation of the UV Protection Properties of Para-Aramid Woven Fabrics with Various Specialty Core Yarns
Description:
Para-aramid fibers, known for their remarkable strength and thermal stability, are frequently employed in protective textiles for military and aerospace applications.
However, continuous exposure to ultraviolet (UV) radiation can damage their protective characteristics.
This study analyzes the ultraviolet protection factor (UPF) and UV transmittance of woven fabrics produced from 30/2 Ne spun para-aramid yarns in the warp and 10 Ne core-spun yarns in the weft.
The weft yarns consisted of three sheath fibers—para-aramid, meta-aramid, and polyester—in combination with different specialty core materials.
The results show significant differences in UPF before and after UV exposure, with para-aramid sheaths giving the highest improvement.
UV exposure caused structural changes in the fibers, resulting in increased UV protection, particularly in fabrics with para-aramid sheaths.
This study concludes that the combination of para-aramid fibers with specific core materials significantly enhances UV protection, making them well-suited for applications in high UV exposure environments.
Related Results
Fancy Yarns in the Fabrics of Lithuanian Folk Skirts
Fancy Yarns in the Fabrics of Lithuanian Folk Skirts
When manufacturing a fabric, it is very important to obtain a fabric with decorative, aesthetical and also functional characteristics. All these requirements can be satisfied when ...
PREVENÇÃO DA TROMBOSE VENOSA PROFUNDA NA GRAVIDEZ PELA ENFERMAGEM NA APS
PREVENÇÃO DA TROMBOSE VENOSA PROFUNDA NA GRAVIDEZ PELA ENFERMAGEM NA APS
PREVENÇÃO DA TROMBOSE VENOSA PROFUNDA NA GRAVIDEZ PELA ENFERMAGEM NA APS
Danilo Hudson Vieira de Souza1
Priscilla Bárbara Campos
Daniel dos Santos Fernandes
RESUMO
A gravidez ...
Residual Strength Of Aramid Rope
Residual Strength Of Aramid Rope
ABSTRACT
Tensile fatigue test and residual strength test were carried out systematically on the strength reduction of braid-on-braid small size aramid rope in our...
Production of Natural Dyed Palm Yarns and Fabrics
Production of Natural Dyed Palm Yarns and Fabrics
Palm fibreis a waste product from the fruit crushing-extracting process in local communities. This study examined the characteristics of natural dyed palm yarns and fabr...
Effects of spinning process and core yarn contents on yarn shape retention
Effects of spinning process and core yarn contents on yarn shape retention
Purpose
In order to develop high shape retention yarn and investigate the effects of spinning process and core yarn contents on the shape retention of yarn, in this paper, three ki...
Physical Properties and Wear Comfort of Bio-Fiber-Embedded Yarns and their Knitted Fabrics According to Yarn Structures
Physical Properties and Wear Comfort of Bio-Fiber-Embedded Yarns and their Knitted Fabrics According to Yarn Structures
Abstract
This study examined the physical properties of polytrimethylene terephthalate (PTT)/Tencel/cotton air vortex yarns and the wear comfort of their knitted fab...
Laminasyon Tekniği İle Üretilen Sim İpliklerden Örülen Kumaşların Tekstil Terbiye İşlemlerine Karşı Dayanımının İncelenmesi
Laminasyon Tekniği İle Üretilen Sim İpliklerden Örülen Kumaşların Tekstil Terbiye İşlemlerine Karşı Dayanımının İncelenmesi
The pre-finishing, finishing, and dyeing processes applied to the fabrics are carried out at high temperatures, in acidic or alkaline environments. Conventional metalized yarns whi...
Multiaxis 3D Woven Preform and Properties of Multiaxis 3D Woven and 3D Orthogonal Woven Carbon/Epoxy Composites
Multiaxis 3D Woven Preform and Properties of Multiaxis 3D Woven and 3D Orthogonal Woven Carbon/Epoxy Composites
In this study, multiaxis 3D woven preform was developed with five yarn sets: + bias, -bias, warp, filling, and z-yarns. The orientation of the yarns on the five axis have improved ...

