现代纺织技术 ›› 2023, Vol. 31 ›› Issue (4): 227-235.

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热风干燥式鞋盒中运动鞋干燥性能表征与分析

  

  1. 1.东华大学,a.服装与艺术设计学院;b.现代服装设计与技术教育部重点实验室,上海 200051;2.无锡小天鹅电器有限公司,无锡 214035;3.上海海关,上海 200135
  • 收稿日期:2022-07-18 出版日期:2023-07-10 网络出版日期:2023-09-12
  • 作者简介:中央高校基本科研业务费专项基金项目(2232022G-08)
  • 基金资助:
    中央高校基本科研业务费专项基金项目(2232022G-08)

Characterization and analysis of drying performance of athletic shoes in hot air drying shoe box

  1. 1a. College of Fashion and Design; 1b. Key Laboratory of Clothing Design and Technology, the Ministry of Education, Donghua University, Shanghai 200051, China; 2. Wuxi Little Swan Electric Co., Ltd., Wuxi 214035, China; 3. Shanghai Customs District, Shanghai 200135, China
  • Received:2022-07-18 Published:2023-07-10 Online:2023-09-12

摘要: 运动鞋日常护理中需要干燥,通常是采用热风干燥式鞋护理产品进行。然而,目前热风干燥式鞋护理产品对运动鞋干燥规律的研究仍是空白,行业内也缺乏量化评价鞋护理产品干燥性能的方法,很难为生产厂商提供参数设置的理论指导。本文研究了运动鞋干燥测试方法,选用3种有代表性的运动鞋(跑鞋、篮球鞋和老爹鞋)在不同温度和风量条件下测试鞋盒环境和鞋腔内的温湿度变化,以探讨各因素对运动鞋干燥的影响作用。结果表明:鞋盒环境温度和热风风量增大会提高干燥驱动力,但当鞋盒环境温度在36 ℃以上提升时,鞋腔内和鞋盒环境的相对湿度并没有显著降低;当热风风量为116.64 m3/s时,鞋盒环境温度的升高对于相对湿度降低的影响减小;对于篮球鞋和老爹鞋,干燥时间受风量的影响远大于鞋盒环境温度的影响;对于跑鞋,鞋盒环境温度和风量共同影响干燥时间。

关键词: 干燥, 运动鞋, 温湿度, 风量, 瞬时含水率

Abstract: In recent years, China's sports shoes industry has maintained rapid development. In 2019, the market size of China's sports shoes industry reached 183 billion dollars, and the average annual compound growth rate from 2014 to 2019 was 20.6%. During daily wearing, sports shoes will produce moisture, odor and other problems due to sweating, which will not only affect the wearing comfort, but also adversely affect the function and health of human feet. Therefore, sports shoes need to be dried in daily care. Because the shoe is of three-dimensional structure with good overall shape stability, and the deformable variable of fabric or clothing is large, the research on the drying process of the whole shoe is different from that of fabric or clothing. In addition, the difference in structure, shape and material composition of sports shoes will have a great impact on the drying performance of sports shoes.
We aim to explore the influence of temperature, humidity and air volume on the drying of different types of sports shoes, so as to fill in the blank of quantitative evaluation of the drying performance of shoe care products. Firstly, the drying test method of sports shoes was studied. Three representative sports shoes (running shoes, basketball shoes and clunky sneakers) were selected, and the significant sweating area of sports shoes was humidified according to the sports sweating simulation, and the experiment was terminated when the instantaneous moisture content (M) reached 0.5%. Then, the temperature and humidity changes of shoe box environment and shoe cavity were tested under different temperatures and air volume conditions to explore the impact of temperature and air volume on the drying of sports shoes. According to the experimental results, the optimal design of adding guide tubes was proposed. On this basis, the drying laws of different types of sports shoes were analyzed, and the effects of temperature and air volume on the drying time of different types of sports shoes were discussed. The results show that the drying driving force increases with the increase of the ambient temperature of the shoe box and the hot air volume, but when the ambient temperature of the shoe box increases above 36 ℃, the relative humidity in the shoe cavity and the shoe box environment does not decrease significantly. When the hot air volume is 116.64 m3/s, the increase of the shoe box environment temperature has less influence on the reduction of the relative humidity. For basketball shoes and clunky sneakers, the drying time is more affected by the air volume than the ambient temperature of the shoe box. For running shoes, the drying time is affected by the ambient temperature and air volume of the shoe box.
There are various types of shoe care products on the market, but there is still a lack of evaluation standards for their drying performance and a lack of theoretical support for the design of key parameters such as temperature and humidity. The results of this study can provide a theoretical basis and reference for appliance companies in the design of care shoe box parameters and product design, to comprehensively achieve the goal of shortening the drying time of care shoe boxes and to provide differentiated drying parameter settings for different types of sports shoes.

Key words: drying, sports shoes, temperature and humidity, air volume, instantaneous moisture content

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