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作 者:刘迪 伍丽丽 房磊 李田田 朱子玉 房宽峻 张国清[3] 刘曰兴 Liu Di;Wu Lili;Fang Lei;Li Tiantian;Zhu Ziyu;Fang Kuanjun;Zhang Guoqing;Liu Yuexing(Shandong Yellow River Delta Textile Science and Technology Research Institute,Binzhou/China;College of Textiles&Clothing,Qingdao University,Qingdao/China;YUYUE Home Textile Co.,Ltd.,Binzhou/China;College of Textile Science and Engineering,Tiangong University,Tianjin/China)
机构地区:[1]山东黄河三角洲纺织科技研究院有限公司,中国 [2]青岛大学纺织服装学院,中国 [3]愉悦家纺有限公司,中国 [4]天津工业大学纺织科学与工程学院,中国
出 处:《国际纺织导报》2022年第6期27-30,38,共5页Melliand China
基 金:多功能纳米碳素复合纤维与制品的研发及产业化示范(项目编号:2019TSLH0108)。
摘 要:以传热学、能量守恒定律为理论基础,研究远红外理疗产品的发热温度与发热面料织造工艺参数、测试环境之间的量化关系,通过试验模拟得出对流换热系数、热容,建立理论计算模型。在控制其他条件一致的情况下,测试不同电极宽度下的发热温度,发现各类产品加热面料的理论温度与实测温度相关性较高,即测试结果与理论模型具有较好的一致性。Based on the theory of heat transfer and the law of conservation of energy, the quantitative relationship between the heating temperature of the electro-heating fabric and the fabric weaving process parameters and the test environment was studied, and the convective heat transfer coefficient h and the heat capacity a value were obtained through experimental simulation. Establish theoretical calculation model. Under the control of other conditions consistent, the heating temperature of different electrode widths was tested. It was found that the theoretical temperature of heating fabric of various products had a high correlation with the measured temperature. The test results were in good agreement with the theoretical model.
分 类 号:TS105.1[轻工技术与工程—纺织工程]
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