DEPENDENCE OF THERMAL CONDUCTIVITY AND HEAT RETENTION ABILITY OF FABRICS FROM DIGITAL PRINT PARAMETERS

Mladen Stančić, Branka Ružičić, Đorđe Vujčić, D. Grujić
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引用次数: 2

Abstract

The human body transforms the chemical energy of the food into the work and the heat through the process of metabolism. The produced heat through the skin is transferred to the environment. In this case, in the state of thermal equilibrium, the amount of heat produced is equal to the amount of heat lost by conduction, convection, radiation, evaporation and breathing. The process of conduction of heat is transferred from the body to the environment, through layers of clothing and air, with the person standing still. Conductivity of heat in clothes depends on the thermal conductivity of the fibers from which the clothes are made, the conductivity of the air trapped in the pores of the clothes and the air on the surface of the clothing, the surface of the clothing layer through which the heat and the thickness of the clothes pass. The amount of heat transferred by conduction is usually negligible because the clothing, by its characteristics, slows down heat transfer in this way. Additionally, ink layers made in printing process significantly affect the properties of textile materials and clothes made from these materials. And today textile materials are increasingly being subjected to the process of printing due to aesthetic requirements of the people. This paper investigates the influence of digital printing parameters on the thermo-physiological features of textile materials. The essential print parameter was a different number of passes. In this research were used textile fabric materials of 100% cotton fibers. With printing process parameters, such as number of passes in the print, it is possible to influence the amount of ink that is applied on and in printed material, and thus the achievement of desired values of thermal parameters of printed materials. The influence of print parameters to thermo-physiological properties of the material is evaluated through a thermal conductivity and heat retention ability. Results of the research demonstrated that, in addition to material composition, the printing process with its parameters have a significant influence on the thermo-physiological characteristics of textile materials. The values of the thermal conductivity of the printed samples show that the increase in the number of application of ink in the printing results in a rise in the value of thermal conductivity coefficient, and decrease in heat retention ability value.
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数码印花参数对织物热导率和保温性能的影响
人体通过代谢过程将食物中的化学能转化为功和热。通过皮肤产生的热量被传递到环境中。在这种情况下,在热平衡状态下,产生的热量等于通过传导、对流、辐射、蒸发和呼吸散失的热量。在人静止不动的情况下,热量的传导过程通过层层的衣服和空气从身体传递到环境中。衣服的导热性取决于制作衣服的纤维的导热性,衣服毛孔中截留的空气的导热性和衣服表面的空气的导热性,热量通过的衣服层的表面和衣服的厚度。通过传导传递的热量通常可以忽略不计,因为衣服根据其特性,以这种方式减缓了热量的传递。此外,在印刷过程中产生的油墨层对纺织材料和由这些材料制成的衣服的性能有很大影响。而今天由于人们的审美要求,纺织材料也越来越多地受到印刷工艺的影响。研究了数码印花参数对纺织材料热生理特性的影响。基本的打印参数是不同的传递次数。本研究采用的纺织面料材料为100%棉纤维。有了印刷工艺参数,如印刷中的通道数,就有可能影响印刷材料上和印刷材料中的油墨量,从而影响印刷材料热参数的理想值。打印参数对材料热生理性能的影响通过热导率和保温能力来评估。研究结果表明,除材料成分外,印刷工艺及其参数对纺织材料的热生理特性有显著影响。印刷样品的热导率值表明,油墨在印刷中使用次数的增加导致热导系数值升高,热保持能力值降低。
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