2015
DOI: 10.1177/0040517514553876
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Numerical simulation of the three-dimensional flow field in four pneumatic compact spinning using the Finite Element Method

Abstract: Pneumatic compact spinning is one of the most widely used compact spinning systems, which is achieved by utilizing airflow condensing equipment to condense fibers in bundle and improve yarn properties. Therefore, research on flow field in the condensing zone is always the emphasis and difficulty for pneumatic compact spinning. In this paper, the threedimensional flow field of four different kinds of pneumatic compact spinning systems, including two types of roller-type compact spinning, namely compact spinning… Show more

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Cited by 17 publications
(20 citation statements)
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“…Based on the proposed model, an algorithm was constructed [24,25], which was implemented in the program for the calculation of textile material. An additional advantage of the algorithm is the possibility to determine the geometry of the wetted boundary in the material, which was quite difficult to do in other models.…”
Section: Materials and Methods Of Exploring Moisture Distribution In mentioning
confidence: 99%
See 1 more Smart Citation
“…Based on the proposed model, an algorithm was constructed [24,25], which was implemented in the program for the calculation of textile material. An additional advantage of the algorithm is the possibility to determine the geometry of the wetted boundary in the material, which was quite difficult to do in other models.…”
Section: Materials and Methods Of Exploring Moisture Distribution In mentioning
confidence: 99%
“…In papers [24,25], discrete methods of modeling moisture passing through the material were proposed. The material is presented in the form of the system of pores and of the bonds between them with the defined discrete characteristics.…”
Section: Development and Application Of The Discrete Model Of Multi-lmentioning
confidence: 99%
“…A clear understanding of the compact spinning mechanism is conducive to produce higher quality yarn. At present, research on compact spinning mainly focuses on the additional twist mechanism, 1,2 the airflow field, [3][4][5] and the structure and performance of the compact spun yarn compared with the conventional spun yarns. [6][7][8][9][10][11] In perforated-lattice negative-pressure type compact spinning, the twist of the compact yarn is about 3-10% higher than that of ring-spun yarn under the same spinning conditions.…”
mentioning
confidence: 99%
“…Research on compact spinning is mainly focused on mechanism, 1 structure and performance of the yarn, 25 material and production of lattice apron, 6 and analysis of airflow field. 7–10 Many detailed studies have been published on the structure and performance of compact-spun yarns. Especially when compared with the traditional ring-spun yarns, the compact-spun yarns are superior in strength and hairiness, among others.…”
mentioning
confidence: 99%