首页|空气洗洗护机制及其在衣物除皱护理中的应用研究

空气洗洗护机制及其在衣物除皱护理中的应用研究

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为明确空气洗洗护机制及其在衣物除皱护理中的作用,选择棉、麻制品作为实验面料,探究了气流温度、气流湿度、滚筒转速、气流流速和洗护时间及其参数组合对衣物除皱效果的影响.结果表明:空气洗对衣物外观平整度影响较大,棉、麻制品在气流温度 70℃、气流湿度 85%、滚筒转速 30 r/min、气流流速 5 m/s和洗护时间 30 min时,外观平整度主观等级最高,除皱效果最佳;空气洗对衣物折皱回复性能影响较小,棉制品的折皱回复性能略有下降,折皱回复角变小,而麻制品的折皱回复性能略有增强,折皱回复角增大;空气洗后棉、麻制品表面会有少量纤维抽离,但表面磨损程度较低并无显著变化.研究结论可为优化不同面料的空气洗洗护机制提供参考,帮助企业研发最佳空气洗洗护程序.
Research on the mechanism of air washing and its application in wrinkle removal care of clothing
To clarify the mechanism of air washing and its application on wrinkle removal care of clothing,this article selects cotton and linen products as experimental fabrics and systematically explores the effects of airflow temperature,airflow humidity,drum speed,airflow velocity,washing time,and their parameter combinations on the wrinkle removal effect of clothing.The research results show that air washing has a significant impact on the appearance smoothness.Cotton and linen products have the highest subjective level of appearance smoothness and the best wrinkle removal effect when the air temperature is 70℃,the air humidity is 85%,the drum speed is 30 r/min,the air flow rate is 5 m/s,and the washing time is 30 min;air washing has a relatively small impact on wrinkle recovery,with cotton products having weakened wrinkle recovery performance and reduced wrinkle recovery angle,while linen products have enhanced wrinkle recovery performance and increased wrinkle recovery angle;air washing has a relatively low degree of surface wear,and a small amount of fibers may be removed from the surface of cotton and linen products.The degree of surface wear is relatively low and there is no significant change.The research can provide reference for optimizing the air washing and care mechanisms of different fabrics,help enterprises develop the best air washing and care program.

air washingclothingevennesswrinkle removalperformance evaluation

万梓豪、孙琦、韦玉辉、袁惠芬、潘伟

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安徽工程大学 纺织服装学院,安徽 芜湖 241000

浙江理工大学 服装学院,浙江 杭州 310018

安徽苏立科技股份有限公司,安徽 芜湖 241000

空气洗 衣物 平整度 除皱 性能评价

安徽省纺织工程技术研究中心和"纺织面料"安徽省高等学校重点实验室联合开放基金(2021)安徽省高等学校自然科学研究项目省级大学生创新创业训练计划(2021)安徽工程大学大学生科研项目(2021)安徽工程大学-鸠江区产业协同创新专项(2022)

2021AETKL20KJ2020A0352S2021103632292021DZ132022cyxtb7

2024

河南工程学院学报(自然科学版)
河南工程学院

河南工程学院学报(自然科学版)

影响因子:0.26
ISSN:1674-330X
年,卷(期):2024.36(2)