Experimental study on the spinning geometry of multi-thread fancy yarn on hollow-spindle spinning machines

Author:

Alshukur Malek,Yurchenko Daniil

Abstract

Purpose The purpose of this paper is to define the relationships between the structure of multi-thread fancy yarns and the combination of the rotational speed of the hollow-spindle spinning system and thickness and stiffness of the effect component. Design/methodology/approach To do so, two groups of fancy yarns were made using stiff and soft effect threads and at six different machine settings. Findings It was found that the stiff effect thread was suitable to make fancy yarns at low rotational speeds, while the thickness of the effect threads was more important than its stiffness at low number of wraps. Additionally, even when using the same number of wraps and the overfeed ratio, a bouclé yarn, a gimp yarn, a wavy yarn or a loop yarn may results if the thickness and stiffness of the effect thread and the rotational speed were all controlled properly. Originality/value This study helps fancy yarn spinners to determine the type of final fancy yarns by controlling the spinning geometry in the first spinning zone.

Publisher

Emerald

Subject

Polymers and Plastics,General Business, Management and Accounting,Materials Science (miscellaneous),Business, Management and Accounting (miscellaneous)

Reference19 articles.

1. The quality of fancy yarn: Part I: methods and concepts;International Journal of Textile and Fashion Technology,2013

2. The quality of fancy yarn: Part II: practical experiments and application;International Journal of Textile and Fashion Technology,2013

3. Role of false twist in the manufacturing process of multi-thread fancy yarn on hollow spindle spinning machines;Journal of The Textile Institute,2014

4. Quality and structural properties of gimp fancy yarns using the design of experiments;Journal of The Textile Institute,2015

5. Measuring the bending rigidity of yarns using the beam method on a two-support configuration;Indian Journal of Fibre & Textile Research,2018

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