2001
DOI: 10.1002/app.2261
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Physical properties of twisted structures. II. Industrial yarns, cords, and ropes

Abstract: ABSTRACT:In this article, we review the progress made in the area of industrial twisted fibrous structures. First, we focus on the general geometrical description of the structures, and then move to issues including the tensile behavior and fracture process. The effects of fiber bending and torsion, strain rate, and viscoelasticity are also discussed. The influences of both dynamic and fatigue loadings are studied as well. Discussion on the fiber blending and on the behavior of blended hybrid structures is pro… Show more

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Cited by 39 publications
(34 citation statements)
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“…The complexity of cross-sectional packing in this archetypal material geometry has long been a subject of study, particularly from the viewpoint of the mechanical properties of manufactured textiles (14,17) and wire ropes (13). The problem is best visualized from the perspective of the planar cross-section of a twisted bundle, as shown in Fig.…”
mentioning
confidence: 99%
“…The complexity of cross-sectional packing in this archetypal material geometry has long been a subject of study, particularly from the viewpoint of the mechanical properties of manufactured textiles (14,17) and wire ropes (13). The problem is best visualized from the perspective of the planar cross-section of a twisted bundle, as shown in Fig.…”
mentioning
confidence: 99%
“…In other words, on the one hand there are variables such as inter-fiber friction and lateral contractions due to fiber twisting that reduce the tensile strength of the yarn, while on the other hand there are rope unwinding mechanisms that, similar to waviness release in natural tendon, amplify ductility [4,30,32,33]. Such a mechanism is bound to give rise to complications, with the yarn strength predicted to be smaller than the constituent fiber strength.…”
Section: Introductionmentioning
confidence: 88%
“…Although the effects of yarn twist remain debatable, its application does result in a more intimate interaction between fibers than in a loose yarn made of parallel fibers. This, of course (as well as the filament length which is not considered here) influences the strength and modulus of a yarn, as well as the strength variability [31][32][33]. Various theoretical models of Young's modulus and strength of twisted yarns have recently been reviewed by Sui et al [30].…”
Section: Introductionmentioning
confidence: 97%
“…Pre-twist of the yarn Helical strands are widely used in traditional engineering such as textiles [8,13] and wire ropes [3,4,15]. Because of their superior mechanical properties of both the relatively high tensile stiffness and low bending stiffness, they are used as fiber reinforcements in matrices and transmissible tension members.…”
Section: List Of Symbolsmentioning
confidence: 99%