Three-dimensional Simulation of the Dynamic Yarn Behavior on Air-jet Looms

Author:

De Meulemeester Simon1,Puissant Patrick2,Van Langenhove Lieva3

Affiliation:

1. Ghent University, Department of Textiles, Technologiepark 907, B-9052 Ghent, Belgium,

2. Picanol NV, Ter Waarde 50, B-8900 Ieper, Belgium

3. Ghent University, Department of Textiles, Technologiepark 907, B-9052 Ghent, Belgium

Abstract

This paper deals with the three-dimensional computer simulation of the weft insertion process as a possible solution to avoid costly weaving trials when researching this process. A three-dimensional mathematical model of the yarn was developed, in which the behavior of the yarn was described by the Second Law of Newton. For this mathematical model, a second order differential equation needed to be solved. To this end, an explicit integration using Euler’s method was chosen. In order to validate the model, high-speed camera recordings were performed on a test stand and compared with simulations of the same test stand. A very good resemblance was found between simulation and camera recordings. This is the first time that a three-dimensional model for the weft insertion on air-jet looms has been successfully tested.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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