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冷凝式洗干一体机中单件纯棉衬衫"类熨烫"技术OA

Ironing-like technology for a single cotton shirt in condensing washer-dryer

中文摘要英文摘要

针对纯棉织物烘干后易起皱的问题,文章搭建了"温湿度-含水率-织物运动"综合烘干监测平台,设计机械力(转速、转停比)、分阶段变温度、机内高温蒸汽护理 3 类实验,分析了烘干过程中纯棉衬衫起皱因素与机理,并探究出了 3 种相应的除皱方法及最佳参数.结果表明:转速与转停比通过调控织物运动状态、筒内空间分布及停留堆积特征,直接影响织物起皱;温度与湿度通过改变纤维水分蒸发与收缩速率,使纤维内部应力释放不均而起皱;高温蒸汽则通过水热增塑释放织物内部应力,使纱线和纤维滑移并重组,进而消除褶皱.织物平整度优化方法及参数为转速 55 r/min、转停比27 s/3 s、织物含水率降至30%后降低烘干温度至 60℃,且在烘干结束前 20 min 时通入 10 min(48 g/min)的蒸汽并持续烘干 10 min.通过上述 3 种方法可将单件纯棉衬衫烘后平整度从 1.1 级提升至 3.5 级.研究得出的有效除皱技术可为消费者提供"洗-烘-熨一站式洗护"方案.

Washer-dryers are suitable for modern family living scenarios featuring a fast pace and limited space.However,cotton fabrics are prone to wrinkling after being washed and dried in such appliances,which seriously impairs consumers'wearing experience.To realize the integrated"washing-drying-ironing"care of fabrics in washer-dryers,this study explores the influencing factors and rules of wrinkling of pure cotton shirts in washer-dryers through systematic experiments,and proposes three methods including mechanical force(rotation speed and rotating frequency),staged variable temperature,and high-temperature steam care to improve the smoothness appearance of fabrics after drying. A comprehensive drying monitoring platform integrating"temperature-humidity-moisture content-fabric movement"was established,and full-factor experiments on rotation speed and rotating frequency,staged variable temperature experiments,and in-machine high-temperature steam care experiments were designed to analyze the wrinkling factors of pure cotton shirts during the drying process and explore the optimal wrinkle removal parameters.The fabric wrinkling rules show that rotation speed and rotating frequency directly affect the post-drying smoothness of fabrics by regulating the fabric movement state,spatial distribution characteristics inside the drum,and residence accumulation time;temperature and humidity cause uneven release of internal stress in fibers by changing the fiber moisture evaporation rate and shrinkage behavior,which further leads to fabric wrinkling;high-temperature steam can release internal stress through hydrothermal plasticization,promote the sliding of yarns and fibers,and reorganize a stable hydrogen bond network to eliminate wrinkles. The results of fabric wrinkle removal show that the optimal rotation speed for fabric smoothness optimization is 55 r/min,which can improve the smoothness by 1.2 grades;the optimal rotating frequency is 27 s/3 s,which can increase the smoothness by 0.3 grades;reducing the drying temperature to 60℃when the fabric moisture content drops to 30%can improve the smoothness by 0.5 grades;introducing 10 min of steam(the ironing speed is 48 g/min)20 min before the end of drying and continuing drying for another 10 min can enhance the smoothness by 0.5 grades.Through the above three schemes,the smoothness of a single pure cotton shirt after drying can be increased from 1.1 grades to 3.5 grades,achieving an ironing-like effect.The efficient wrinkle removal technology developed in this study is applicable to washer-dryers,realizes the integrated"washing-drying-ironing"care of shirts in household small-load scenarios,and provides theoretical support and process references for the functional development of household appliances.

朱博林;王忠卿;刘立田;于昕辰;吴雄英;丁雪梅

东华大学,服装与艺术设计学院,上海 200051TCL 家用电器(合肥)有限公司,安徽 合肥 230022TCL 家用电器(合肥)有限公司,安徽 合肥 230022西安工程大学服装与艺术设计学院,陕西 西安 710048上海海关,上海 200135东华大学,服装与艺术设计学院,上海 200051||东华大学,现代服装设计与技术教育部重点实验室,上海 200051

轻工纺织

洗干一体机纯棉衬衫外观平整度织物运动蒸汽熨烫

washer-dryercotton shirtsmoothness appearancefabric movementsteam ironing

《现代纺织技术》 2026 (6)

74-82,9

中央高校基本科研业务费专项基金项目(2232025G-08)

10.12477∕j.att.202511020

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