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生理裤穿着舒适性及其防渗透性能分析 被引量:1

Analysis of wearing comfort and permeation resistance of menstrual underwear
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摘要 针对女性生理期穿着生理裤、使用卫生巾时存在衣物可能被污染、穿着舒适性差的情况,文章对生理裤进行了性能测试和实际穿着的主观测评。测试分析3种常用于制作生理裤的聚氨酯(PU)膜、热塑性聚氨酯弹性体(TPU)膜和膨体聚四氟乙烯(ePTFE)纳米纤维微多孔膜防渗透材料的透湿透气性能,并设计透血实验;同时选择20名女性受试者穿着由这3种材料制成的生理裤进行5个生理周期的实际穿着主观测评;将性能测试结果与实际穿着的主观测评结果进行对比分析,发现ePTFE纳米纤维微多孔膜不仅在透湿、透气性能方面优于PU膜与TPU膜,用其制作的生理裤在实际穿着主观测评中也表现出了良好的舒适性和防血液渗透性。研究结果可为厂商开发和女性选购生理裤产品提供参考和指导。 When women wear menstrual underwear and sanitary napkins during their menstrual period,the clothes are polluted and the wearing comfort is poor.In this paper,the performance test and subjective evaluation of the actual wearing of menstrual underwear are carried out.The permeability to moisture and air properties of three kinds of polyurethane(PU)film,thermoplastic polyurethane elastomer(TPU)film and expanded polytetrafluoroethylene(ePTFE)nanofiber microporous film were tested and analyzed,and the blood permeability experiment was designed.20 female subjects were selected to wear the menstrual underwear made of these three materials for the subjective evaluation of the actual wearing of 5 physiological cycles.Comparing the performance test results with the subjective evaluation results of actual wearing,it was found that ePTFE nanofiber microporous membrane was not only superior to PU film and TPU film in terms of moisture permeability and air permeability,but also showed good comfort and anti-blood permeability in the subjective evaluation of actual wearing.The results provide reference and guidance for the development and purchase of menstrual underwear products.
作者 邬歆沅 李艳梅 田军 李梓蔚 张明慧 潘晶晶 WU Xinyuan;LI Yanmei;TIAN Jun;LI Ziwei;ZHANG Minghui;PAN Jingjing(Scbool of Textiles and Fashion,Shanghai University of Engineering Science,Shanghai 201620,China;Shanghai Yihui Environmental Protection Technology Co.,Ltd.,Shanghai 201107,China)
出处 《毛纺科技》 CAS 北大核心 2022年第10期107-112,共6页 Wool Textile Journal
基金 上海市大学生创新训练项目(CS2109006)。
关键词 生理裤 ePTFE纳米纤维微多孔膜 透湿性 防血液渗透性能 舒适性能 menstrual underwear expanded PTFE nanofibrous microporous membranes moisture permeability anti-blood permeability comfortability
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