HearleJWSSultanMAI.A study of needled fabrics. Part I: Experimental methods and properties. J Text Inst1967;
58: 251–265.
2.
HearleJWSSultanMAIChoudhariTN.A study of needled fabrics. Part II: Effects of the needling process. J Text Inst1968;
59: 103–116.
3.
PurdyAT.Several Aspects of Needled Fabric Technology.
The University of Manchester (UK), 1970.
4.
HearleJWSSultanMAI.A study of needled fabrics. Part V: The approach to theoretical understanding. J Text Inst1968;
59: 183–201.
5.
XiaoBHuangQChenH, et al.
A fractal model for capillary flow through a single tortuous capillary with roughened surfaces in fibrous porous media. Fractals2021;
29: 2150017.
6.
XiaoBZhuHChenF, et al.
A fractal analytical model for Kozeny–Carman constant and permeability of roughened porous media composed of particles and converging-diverging capillaries. Powder Technol2023;
420: 118256.
7.
HearleJWSSultanMAI.A study of needled fabrics. Part III: The influence of fibre type and dimensions. J Text Inst1968;
59: 137–147.
WatanabeAMiwaMYokoiT, et al.
Predicting the penetrating force and number of fibers caught by a needle barb in needle punching. Text Res J2004;
74: 417–425.
10.
AnandSCBrunnschweilerDSwarbrickG, et al. Mechanical bonding. In: Handbook of nonwovens. Cambridge, USA: Woodhead Publishing, 2022, pp. 201–297.
11.
RawalASayeedMMA.Mechanical properties and damage analysis of jute/polypropylene hybrid nonwoven geotextiles. Geotext Geomembr2013;
37: 54–60.
12.
LeshchenkoTAChernousovaNVDedovAV, et al.
Mechanical properties of needle-punched polymer nonwoven fabrics under constant load. Fibre Chem2023;
54: 380–383.
13.
AsriBEskandarnejadSBameni MoghadamM.Comparison of tensile properties of needle punched nonwoven fabric produced by bi-directional and unidirectional barb needles employing response surface methodology. J Text Inst2023;
114: 1403–1416.
14.
LomovSVVerpoestIPeetersT, et al.
Nesting in textile laminates: geometrical modelling of the laminate. Compos Sci Technol2003;
63: 993–1007.