Integrating Phase Change Materials Into Cotton Ring Spun Yarn Structure for Thermoregulating Function

Energy Storage Pub Date : 2024-11-10 DOI:10.1002/est2.70089
Demet Yılmaz, Sennur Alay Aksoy
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Abstract

Phase change materials (PCMs) have been incorporated into textiles to provide thermoregulation and temperature buffering effects on the human body. From this point of view, the aim of this study was to develop the phase change material (PCM) incorporated into the yarns for the production of textiles with a thermo-regulating function. In the study, two types of capsules poly(methyl methacrylate-co-methacrylic acid) (P(MMA-co-MAA)) walled and 1-tetradecanol core, and gelatin-gum Arabic walled and n-octadecane core were synthesized and applied to cotton textile fibers using an alternative application method developed by the authors. PCM dispersion with 6% concentration was incorporated into cotton ring spun yarns at 62.5 and 80 mL/h feeding rates. Morphological and thermal properties of the capsules and spun yarns were investigated. Thermoregulation properties of fabricated yarns were detailed evaluated by segmenting thermal history (T-history) curves into four phases and logarithmic and linear trendlines were applied to the temperature change data for unloaded and PCM incorporated yarns. Data including temperature range (°C), R2 (coefficient of determination or regression factor), rate coefficient (a) and duration of phase (s) were analyzed for both capsule types and feeding rate values. The results indicated that PCM capsules with ideal spherical morphology and enough energy storage capacity were successfully applied into the cotton fibers. All cotton yarns with PCM additives exhibited lower surface temperature values greater than 2°C which is considered sufficient for the thermoregulation effect although with some distinct variations in their temperature profiles and rate coefficients. Compared to untreated cotton ring spun yarn, the temperature difference for 1-tetradecanol core@P(MMA-co-MAA) walled capsules was found to be around 4.29°C–4.56°C, whereas it was around 8.2°C–9°C for n-octadecane core@gelatin-gum Arabic walled capsules. With respect to all the results, obtained novel heat storage cotton yarn is a promising material for thermal energy storage and desirable thermal comfort applications.

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将相变材料融入棉纤维环锭纺纱结构以实现热调节功能
在纺织品中加入相变材料(PCM),可为人体提供体温调节和温度缓冲作用。从这一角度出发,本研究的目的是开发将相变材料(PCM)融入纱线中,用于生产具有体温调节功能的纺织品。研究采用作者开发的另一种应用方法,合成了聚甲基丙烯酸甲酯-甲基丙烯酸共聚物(P(MMA-co-MAA))壁和 1-十四烷醇芯以及明胶-阿拉伯胶壁和正十八烷芯两种胶囊,并将其应用于棉纺织纤维。以 62.5 mL/h 和 80 mL/h 的喂料速率将浓度为 6% 的 PCM 分散液加入棉环锭纺纱中。研究了胶囊和纱线的形态和热性能。通过将热历史(T-历史)曲线划分为四个阶段,并对未加载和加入 PCM 的纱线的温度变化数据应用对数和线性趋势线,详细评估了制成纱线的热调节特性。分析了两种胶囊类型和喂料速率值的数据,包括温度范围(℃)、R2(决定系数或回归系数)、速率系数(a)和阶段持续时间(秒)。结果表明,具有理想球形形态和足够储能能力的 PCM 胶囊成功地应用到了棉纤维中。所有添加了 PCM 添加剂的棉纱的表面温度值都低于 2°C,这足以达到恒温效果,尽管它们的温度曲线和速率系数存在一些明显的差异。与未经处理的棉环锭纱线相比,1-十四醇芯@P(MMA-co-MAA)壁胶囊的温差约为 4.29°C-4.56°C ,而正十八烷芯@明胶-阿拉伯胶壁胶囊的温差约为 8.2°C-9°C 。从所有结果来看,所获得的新型蓄热棉纱是一种很有前途的材料,可用于热能储存和理想的热舒适应用。
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