Experimental Study and Mathematical Model to Follow the Spreading Diameter on Coated Woven Cotton Fabric 


Vol. 18,  No. 12, pp. 2454-2461, Dec.  2017


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  Abstract

This paper presents an experimental study of the liquid drop spreading in porous media. The spreading phenomenon is being investigated for various applications including the textile ink jet printing. In this study, drop-spreading experiments were carried out with ink solution on virgin glass plate, film of coating paste and on coated woven fabric with different emport rate and two drying temperature. The drop-spreading behavior was examined by measuring the contact diameter, the height and the volume of the drop along the time. Then, mathematical model was has been put in to evaluate and quantify the spreading phenomenon. It was concluded that the drop shape has two phases where the spreading governs the drop profile in first time and the evaporation controls it at long times. Thus, the drop-spreading was deeply affected by the drying temperature of coating paste and the woven fabric structure where the mentioned phases have been influenced. Moreover, to evaluate the spreading phenomenon, a mathematical model was put in. It presents high conformity with the experimental results, so it could constitute a prototype of the industry of ink jet printing.

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  Cite this article

[IEEE Style]

Z. Romdhani, A. Baffoun, M. Hamdaoui, S. Roudesli, "Experimental Study and Mathematical Model to Follow the Spreading Diameter on Coated Woven Cotton Fabric," Fibers and Polymers, vol. 18, no. 12, pp. 2454-2461, 2017. DOI: fipo-2017-18-12-2454.

[ACM Style]

Zouhaier Romdhani, Ayda Baffoun, Mohamed Hamdaoui, and Sadok Roudesli. 2017. Experimental Study and Mathematical Model to Follow the Spreading Diameter on Coated Woven Cotton Fabric. Fibers and Polymers, 18, 12, (2017), 2454-2461. DOI: fipo-2017-18-12-2454.