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Manufacturing effects on the hydraulic properties of needlepunched nonwoven geotextiles
Authors:Gin-Shing Hwang  Bao-Lin Hwu  Wen-Hao Hsing  Chiu-Kuang Lu
Affiliation:

a Graduate Institute of Textile Engineering, Feng Chia University, 100 Wen-Hwa Road, Seatwen District Taichung, Taiwan ROC

b Department of Civil Engineering, Chung Cheng Institute of Technology, Ta-Shi Tao-Yuan, Taiwan ROC

c Department of Textile Engineering, Chinese Culture University, No.55, Hwa Kang Road, Yang Ming Shan Taipei, Taiwan ROC

Abstract:Needlepunched nonwoven geotextiles are entangled to form a complex three-dimensional structure by random fibers, accounting for its bulky nature, wide range of pore size distribution, and good drainage. With needlepunched nonwoven geotextiles, water can move in both the vertical and horizontal directions. This paper examines two types of needlepunched nonwovens: one produced from polyester staple fiber and the other made from polyester spunbond continuous filaments. Experimental results indicate that the permittivity of staple needlepunched nonwoven geotextiles varies from 1.77-4.51 s−1; the permeability coefficient varies from 0.63-2.87 × 10−2 m/s. The permittivity of spunbond needlepunched nonwoven geotextiles varies from 1.13-1.97 s−1; the permeability coefficient varies from 0.48-1.09 × 10−2 m/s. In addition, the transmissivity of needlepunched nonwoven geotextiles decrease to an essentially constant value as the normal stress is increases. The transmissivity of needlepunched nonwoven geotextiles examined varies from 155-2.75 × 10−6 m2/s over the normal stress range examined (5-200 kN/m2). The AOS value of 3 denier staple fiber needlepunched nonwovens is less than 0.074 mm, the AOS value of spunbonded 7 denier and, 15 d and 20 d needlepunched nonwovens are 0.21 mm, 0.25 mm and 0.30 mm, respectively.
Keywords:Geotextiles   Hydraulics   Porosity   Stresses   Polyesters   Fibers   Drainage   Manufacturing effects   Needlepunched nonwoven geotextiles
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