In this paper, the results of an experimental study on textile thermal drying after wet processing pre-treatments are presented. The mass variation of the studied samples as a function of drying time was determined using the gravimetric method at three different temperatures: 100°C, 110°C and 120°C. A polynomial model was found and established to follow the drying phenomenon of wet textile fabric.
References
1.
PourovaM.; VrbaJ.Analytical solutions to the applicators for microwave textile drying by means of zigzag method. PIERS Online, 2007, Vol 3, No. 8.
2.
HaghiA. K.Simultaneous moisture and heat transfer in porous systems. Journal of computational and applied mechanics, 2001, Vol 2, No. 2.
3.
SkansiD.; LarsonG.Experimental evaluation of the microwave drying of leather. Journal of the society of leather technologists and chemists, 1993, Vol 79.
FohrJ. P.; CoutonD.; TreguierG.Dynamic heat and water transfer through layred fabrics. Textile Research journal, 2002, 72(1).
6.
Sounny SlitineM. D.; ThérienN.; BroadbentA. D.Real-time parameter identification for a control-oriented model of continuous infrared drying of a wet fabric. Textile research journal, 2001, 71(1).
7.
IvanovM. S.; KozyrevI. V.; VinichenkoS. N.; KozlovA. B.Dynamics of drying of textile materials after treatment with foam solutions. Fiber Chemistry, 2010, Vol 42, No. 3.
8.
SousaL. H. C. D.; MonteiroA. S.; PerriV. R.; LimaO. C. M.; PereiraN. C.; MendesE. S.Generalization of the drying curves in convective and conductive/ convective textile fabric drying. Proceedings of 14 IDS2004 Vol A, August 2004.
9.
Page, G. Factors influencing the maximum rates of air-drying shelled corn in thin lays. M.S. Thesis. Purdue University, Lafayette, IN, 1949 as cited by GoyaldeN. A., de Castro MeloE., RochaR. P., GoneliA. L. D., AraujoF. L.Mathematical modeling of the drying kinetics of sugarcane slices. Revista Brasileira de Produtos Agroindustriais, ampina Grande, 2009, V11, 2, 117–121.
10.
DoymazI.Effect of dipping treatment on air drying of plums. Journal of food engineering, 2004, 64, 465–470.
11.
PutrantoA., ChenX. D, XiaoZ., WebleyP. A.Mathematical modelling of intermittent and convective drying of rice and coffee using the reaction engineering approach (REA). Journal of food engineering, 2011, 105, 638–646.
12.
EvinD.Thin layer drying kinetics of Gundelia tournefortii L. Food and Bioproducts Processing, 2012, 90, 323–332.
13.
LangrishT. A. G., KockelT. K.The assessment of a characteristics drying curve for milk powder for use in computational fluid dynamics modelling. Chemical Engineering Journal, 2001, 84, 69–74.
14.
WangJ., ShengK., Far-infrared and microwave drying of peach. LWT, 2006, 39, 247–255.
15.
ZhangM., TangJ., MujumdarA. S., WangS.Trends in microwave-related drying of fruits and vegetables. Trends in Food Science and Technology, 2006, 17, 524–534.