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Investigation of Thermal Behavior of 3D PET Knits with Different Bioceramic Additives

机译:不同生物陶瓷添加剂的3D PET编织物的热行为研究

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摘要

The purpose of this study is to investigate the thermoregulatory properties of polyethylene terephthalate (PET) 3D knitted materials with bioceramic additives which are highly absorbing far-infrared (FIR) radiation. Ceramic materials are well-known and useful for thermal insulation applications. In order to compare different types of ceramic additives and coating methods for their incorporation into textile, several types of ceramic compounds with heat-retaining function were selected: germanium (Ge), aluminum (Al) and silicon (Si) additives were applied by impregnation in squeezing padder and titanium (Ti) by the screen printing method. The thermoregulatory properties (thermal resistance, heat-retaining effectiveness and air permeability) of 3D PET knits with bioceramic additives were estimated. In this study scanning electron microscopy (SEM) images were used to analyze the morphology of coated fabrics, X-ray fluorescence spectroscopy (XRF) analysis was applied to evaluate the number of minerals with high heat capacity in each formulation used for treatment. The knits coated with a formulation containing Ti ceramic additives demonstrated the most effective thermal behavior. Furthermore, better heat accumulation effectiveness of Ti ceramics containing knits was confirmed by Fourier transform infrared spectroscopy (FTIR) analysis. It was also determined that 3D knitted fabric with Ti ceramic additives showed the highest emissivity among tested samples and the implication is that this sample radiates its energy more efficiently than others.
机译:这项研究的目的是研究具有高吸收远红外(FIR)辐射的生物陶瓷添加剂的聚对苯二甲酸乙二醇酯(PET)3D针织材料的温度调节性能。陶瓷材料是众所周知的,可用于绝热应用。为了比较不同类型的陶瓷助剂和将其掺入纺织品的涂覆方法,选择了几种具有保温功能的陶瓷化合物:锗(Ge),铝(Al)和硅(Si)浸渍浸渍通过丝网印刷法压榨填充剂和钛(Ti)。估计了带有生物陶瓷添加剂的3D PET编织物的温度调节特性(耐热性,保热效果和透气性)。在这项研究中,使用扫描电子显微镜(SEM)图像分析涂层织物的形态,使用X射线荧光光谱(XRF)分析评估每种用于处理的配方中具有高热容的矿物质的数量。涂有含钛陶瓷添加剂的配方的针织物表现出最有效的热行为。此外,通过傅立叶变换红外光谱(FTIR)分析证实了含有编织物的Ti陶瓷具有更好的蓄热效果。还确定了带有Ti陶瓷添加剂的3D针织物在测试样品中显示出最高的发射率,这意味着该样品比其他样品更有效地辐射能量。

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