纺织学报 ›› 2023, Vol. 44 ›› Issue (01): 164-170.doi: 10.13475/j.fzxb.20211201907
WANG Shitan1, JIANG Shu1, WANG Yunyi1,2()
摘要:
内穿服装作为消防员贴身穿着的服装,会影响衣下微环境的温湿度及汗液分布,进而影响人体的热生理和心理反应。通过调研确定了4组典型的消防员内穿服装,并开展着装人体热反应实验,测试8名受试者在4种着装条件下的热生理反应和心理反应。利用层次分析法,探究各指标间的内在关联及效应权重,计算了消防服套装的综合得分。结果表明:消防服内穿棉/涤纶短袖和棉/涤纶长裤时人体的皮温、心率、皮肤电反应和湿感觉的综合得分最高,其中心率比其它3组样本小4.31次/min,且湿感觉最不强烈;着装人体的热感觉、湿感觉和黏附感存在区域差异,躯干和大腿的热、湿感觉最强烈,前臂、膝部和小腿的黏附感最强烈;应基于功能分区的设计优化消防员内穿服装,如前胸和后背拼接透气导湿面料,小腿拼接耐磨面料。
中图分类号:
[1] |
BARR D, GREGSON W, REILLY T. The thermal ergonomics of firefighting reviewed[J]. Applied Ergonomics, 2010, 41(1): 161-172.
doi: 10.1016/j.apergo.2009.07.001 pmid: 19664755 |
[2] |
MCQUERRY M, BARKER R, DENHARTOG E. Relationship between novel design modifications and heat stress relief in structural firefighters' protective cloth-ing[J]. Applied Ergonomics, 2018, 70(3): 260-268.
doi: 10.1016/j.apergo.2018.03.004 |
[3] |
SHAID A, WANG L, PADHYE R. The thermal protection and comfort properties of aerogel and PCM-coated fabric for firefighter garment[J]. Journal of Industrial Textiles, 2016, 45(4): 611-625.
doi: 10.1177/1528083715610296 |
[4] |
BARR D, GREGSON W, REILLY T. The thermal ergonomics of firefighting reviewed[J]. Applied Ergonomics, 2010, 41(1): 161-172.
doi: 10.1016/j.apergo.2009.07.001 pmid: 19664755 |
[5] |
PETRUSIC S, ONOFREI E, BEDEK G, et al. Moisture management of underwear fabrics and linings of firefighter protective clothing assemblies[J]. Journal of The Textile Institute, 2015, 106(12): 1270-1281.
doi: 10.1080/00405000.2014.995457 |
[6] | United States Department of Agriculture Forest Service. Tests of undergarments exposed to fire[EB/OL]. (2008-12-22)[2021-03-30]. https://www.fs.usda.gov/. |
[7] |
CHOU C, UMEZAKI S, SON S, et al. Effects of wearing trousers or shorts under firefighting protective clothing on physiological and subjective responses[J]. Journal of the Human-Environment System, 2009, 12(2): 63-71.
doi: 10.1618/jhes.12.63 |
[8] |
MCLELLAN T M, SELKIRK G A. Heat stress while wearing long pants or shorts under firefighting protective clothing[J]. Ergonomics, 2004, 47(1): 75-90.
pmid: 14660219 |
[9] |
WANG Y, ZHANG Z, LI J, et al. Effects of inner and outer clothing combinations on firefighter ensembles' thermal-and moisture-related comfort levels[J]. Journal of The Textile Institute, 2013, 104(5): 530-540.
doi: 10.1080/00405000.2012.750030 |
[10] | 江舒, 田苗, 李俊. 消防服的研究进展: 基于Web of Science数据库的CiteSpace分析[J]. 丝绸, 2019, 56(11): 36-45. |
JIANG Shu, TIAN Miao, LI Jun. Research progress on firefighter's protective clothing: CiteSpace analysis based on Web of Science database[J]. Journal of Silk, 2019, 56(11): 36-45. | |
[11] | MORAN D, PANDOLF K B. A physiological strain index (PSI) to evaluate heat stress: 6102128[J]. American Journal of Physiology, 1998, 275(2): 129-134. |
[12] | PARK J. The role of base-layer cooling conditions in human error occurrences during doffing of personal protective equipment in health care[J]. International Journal of Occupational Safety and Ergonomics, 2021, 12: 1-9. |
[13] |
RAMANATHAN N L. A new weighting system for mean surface temperature of the human body[J]. Journal of Applied Physiology, 1964, 19: 531-533.
pmid: 14173555 |
[14] |
SMITH D L, ARENA L, DEBLOIS J P, et al. Effect of base layer materials on physiological and perceptual responses to exercise in personal protective equip-ment[J]. Applied Ergonomics, 2014, 45(3): 428-436.
doi: 10.1016/j.apergo.2013.06.001 |
[15] |
SMITH C J, HAVENITH G. Body mapping of sweating patterns in male athletes in mild exercise-induced hyperthermia[J]. European Journal of Applied Physiology, 2011, 111(7): 1391-1404.
doi: 10.1007/s00421-010-1744-8 pmid: 21153660 |
[16] | 刘自远, 刘成福. 综合评价中指标权重系数确定方法探讨[J]. 中国卫生质量管理, 2006, 13(2): 44-48. |
LIU Ziyuan, LIU Chengfu. Study on method of determining weight coefficient in comprehensive evaluation[J]. Chinese Health Quality Management, 2006, 13(2): 44-48. |
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