Compact spinning: a comprehensive review of the revolution in yarn manufacturing

Author:

Saty Malik Yonis Hassan12ORCID,Sarkodie Bismark1,Abdalla Ibrahim3,Farooq Amjad1,Elhassan Ahmed4,Wang Yong156,Xu Zhenzhen1

Affiliation:

1. College of Textiles and Garments, Anhui Polytechnic University, China

2. College of Engineering Technology of Industries, Sudan University of Science and Technology, Sudan

3. School of Materials Science & Engineering, Tongji University, China

4. College of Materials Science and Engineering, Donghua University, China

5. Advanced Fiber Materials Engineering Research Center of Anhui Province, Anhui Polytechnic University, China

6. Anhui Province College Key Laboratory of Textile Fabrics, Anhui Polytechnic University, China

Abstract

Compact spinning has emerged as a contemporary spinning technology that has garnered significant attention due to its capacity to produce yarns with excellent properties. The strategy is a variation of conventional ring spinning that seeks to get rid of the spinning triangle while improving the uniformity, strength, and hairiness of the yarn. In compact spinning, fiber condensation is achieved by negative pressure airflow, which compresses the fibers and reduces their thickness. This results in a higher packing density of the fibers, leading to stronger and more uniform yarns. In this article, we provide a comprehensive overview of compact spinning technology, covering its principle, fiber condensation method, and the types of machines used. The quality of the yarn is greatly influenced by various systems and parameters such as lattice apron, air suction slot geometry, airflow fields, and twist mechanism employed in compact spinning. We present a compendium of the various developments established in studies on compact spinning, which could serve as a platform for developing new techniques in compact spinning for the production of high-quality yarns with low economic burdens. This review discusses compact spinning, two main systems, machines, influential parameters/peripherals, disadvantages, and the future prospects of compact spinning. Additionally, we provide a summary of previous research on compact spinning, highlighting its benefits and advantages over traditional ring spinning. Furthermore, we discuss the impact of guiding devices and lattice apron type on yarn quality. We also explore the potential of three-dimensional (3D) printing technology in enhancing the performance and design of compact spinning machines.

Funder

Advanced Fiber Materials Engineering Research Center of Anhui Province

The Science and Technology Project of Wuhu city

preparation of yarns based on different spinning systems

Open Project Program of Anhui Engineering and Technology Research Center of Textile, Anhui Province College Key Laboratory of Textile Fabrics

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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