Research on the motion law of fiber in the vortex field inside the nozzle based on ADINA fluid–structure coupling model
-
Published:2021-09-28
Issue:ahead-of-print
Volume:ahead-of-print
Page:
-
ISSN:0955-6222
-
Container-title:International Journal of Clothing Science and Technology
-
language:en
-
Short-container-title:IJCST
Author:
Han ChenchenORCID,
Gao Weidong
Abstract
PurposeThe purpose of the paper is researching on the motion law of fiber in the vortex field inside the nozzle.Design/methodology/approachA three-dimensional calculation model was established using the MVS861 (Muratec Vortex Spinning) air-jet vortex-spinning nozzle as the prototype, and the fluid–solid coupling calculation module in the finite element calculation software ADINA (Adina System) was used to numerically analyze the fiber-air flow two-phase coupling. At the same time, the effect of the air pressure at the nozzle on the two-phase flow is studied.FindingsThe results show that after the air flow ejected through the nozzle, a vortex field will be generated in the flow field to push the internal fiber to move toward the nozzle outlet in a wave motion; as the air pressure at the nozzle increases, the fiber movement period becomes shorter and the oscillation frequency becomes higher; increasing the air pressure at the spray hole can improve the working efficiency of fiber twisting and wrapping.Originality/valueThe research present an effective and feasible theoretical model and method for the motion law of fiber in the vortex field inside the nozzle based on ADINA fluid–structure coupling model.
Subject
Polymers and Plastics,General Business, Management and Accounting,Materials Science (miscellaneous),Business, Management and Accounting (miscellaneous)
Reference15 articles.
1. Numerical simulation of the fiber trajectories in vortex spinning under different process parameters based on the finite element model;Textile Research Journal,2019
2. Numerical simulation and analysis of the dynamic finite element model of the fiber motion in the air spinning process;Textile Research Journal,2019
3. Numerical simulation of fiber and airflow coupling;Journal of Textile Research,2015