参考文献/References:
[1] 钟晓. 4月至10月在全国开展消防安全执法检查专项行动[J]. 中国消防, 2019(4): 8.
ZHONG Xiao.The special action of fire safety law enforcement inspection was carried out nationwide from April to October[J]. China Fire, 2019(4): 8.(in Chinese)
[2] 范维澄, 孙金华, 陆守香. 火灾风险评估方法学[M]. 北京: 科学出版社, 2004: 258-265.
[3] 陈平军. 高层建筑火灾特点及防范对策[J]. 煤炭技术, 2008, 27(8): 162-163.
CHEN Pingjun. Characteristics of high-rise building fires and countermeasures[J]. Coal Technology, 2008, 27(8): 162-163.(in Chinese)
[4] 黄式培. 小议商场火灾原因及调查方法[J]. 科技资讯, 2013, 11(18): 207,209.
HUANG Shipei.Discussion on fire causes and investigation methods in shopping malls[J]. Science and Techno-logy Information, 2013, 11(18): 207,209.(in Chinese)
[5] 漆政昆, 张和平, 黄冬梅, 等. 消防服用织物材料热湿舒适性综合评价[J]. 中国安全科学学报, 2012, 22(4): 132-138.
QI Zhengkun, ZHANG Heping, HUANG Dongmei, et al. Comprehensive evaluation of thermal and moisture comfortableness of fabric for firefighter protective clothing[J]. China Safety Science Journal, 2012, 22(4): 132-138.(in Chinese)
[6] 朱方龙. 消防服用织物热防护性能数值模拟[J]. 消防科学与技术, 2011, 30(11): 1044-1047.
ZHU Fanglong. Numerical simulation on thermal protection performance of textile used for fire fighting suit[J]. Fire Science and Technology, 2011, 30(11): 1044-1047.(in Chinese)
[7] 王鸿博, 马晶婧, 董维锋, 等. 消防服用面料阻燃性及热防护性综合评价[J]. 服装学报, 2019, 4(2): 102-105,116.
WANG Hongbo, MA Jingjing, DONG Weifeng, et al. Comprehensive evaluation of flame retardancy and thermal protection of fire-fighting fabrics[J]. Journal of Clothing Research, 2019, 4(2): 102-105,116.(in Chinese)
[8] 陈颖, 邵高峰, 吴晓栋, 等. 聚合物气凝胶研究进展[J]. 材料导报, 2016, 30(13): 55-62,70.
CHEN Ying, SHAO Gaofeng, WU Xiaodong, et al. Advances in polymer aerogels[J]. Materials Review, 2016, 30(13): 55-62,70.(in Chinese)
[9] 冯晶晶, 赵晓明, 郑振荣. SiO2气凝胶在热防护纺织品中的应用[J]. 纺织科学与工程学报, 2018, 35(2): 113-117.
FENG Jingjing, ZHAO Xiaoming, ZHENG Zhenrong. Application of SiO2 aerogel in thermal protective textiles[J]. Journal of Textile Science and Engineering, 2018, 35(2): 113-117.(in Chinese)
[10] 王小丹. 复合结构隔热材料的制备与性能研究[D]. 上海: 上海工程技术大学, 2011.
[11] 贺香梅, 徐壁, 蔡再生. SiO2气凝胶隔热涂层织物的制备及性能研究[J]. 表面技术, 2014, 43(3): 95-100.
HE Xiangmei, XU Bi, CAI Zaisheng. Preparation of silica aerogel coated fabric and studies of its performance[J]. Surface Technology, 2014, 43(3): 95-100.(in Chinese)
[12] 任乾乾, 林兰天, 郑慧琴. 采用二氧化硅气凝胶的防火隔热组合面料研究[J]. 上海纺织科技, 2011, 39(12): 53-55.
REN Qianqian, LIN Lantian, ZHENG Huiqin. Research of fireproof and insulation composite fabric by use of silica aerogels[J]. Shanghai Textile Science and Technology, 2011, 39(12): 53-55.(in Chinese)
[13] 张兴娟, 吴洪飞, 孔祥明. 新型组合式消防服热防护性能分析[J]. 中国个体防护装备, 2013(6): 20-24.
ZHANG Xingjuan, WU Hongfei, KONG Xiangming. Analysis of thermal protective performance of aerogel-based new combined firefighters’ clothing[J]. China Personal Protective Equipment, 2013(6): 20-24.(in Chinese)
[14] JABBARI M, ?KESSON D, SKRIFVARS M, et al. Novel lightweight and highly thermally insulative silica aerogel-doped poly(vinyl chloride)-coated fabric composite[J]. Journal of Reinforced Plastics and Composites, 2015, 34(19): 1581-1592.
[15] 张慧. 基于气凝胶的高性能热防护纺织新材料的研究[D]. 天津: 天津工业大学, 2017.
[16] QI Z K, HUANG D M, HE S, et al. Thermal protective performance of aerogel embedded firefighter’s protective clothing[J]. Journal of Engineered Fibers and Fabrics, 2013, 8(2): 134-139.
[17] SHAID A, WANG L J, PADHYE R, et al. Aerogel nonwoven as reinforcement and batting material for firefighter’s protective clothing: a comparative study[J]. Journal of Sol-Gel Science and Technology, 2018, 87(1): 95-104.
[18] CHAKRABORTY S, RAO A V, KOTHARI V K, et al. Radiant heat protective performance of clothing assemblies with flexible aerogel-nomex nonwoven composite as thermal insulation[J]. Indian Journal of Fibre and Textile Research,2019,44(4): 396-403.
[19] KRZEMIN’SKA S, GRESZTA A, R?Z’AN’SKI A, et al. Effects of heat exposure on the properties and structure of aerogels for protective clothing applications[J]. Microporous and Mesoporous Materials, 2019, 285: 43-55.
[20] HEBALKAR N, KOLLIPARA K S, ANANTHAN Y, et al. Nanoporous aerogels for defense and aerospace applications[M]//MAHAJAN Y R,JOHNSON R.Handbook of Advanced Ceramics and Compo-sites: Defense, Security, Aerospace and Energy Applications.Berlin:Springer,2020: 121-163.
[21] 孟晶, 高珊, 卢业虎. 石墨烯气凝胶复合防火面料防护性能的影响因素[J]. 纺织学报, 2020, 41(11): 116-121.
MENG Jing, GAO Shan, LU Yehu. Investigation on factors influencing thermal protection of composite flame retardant fabrics treated by graphene aerogel[J]. Journal of Textile Research, 2020, 41(11): 116-121.(in Chinese)
[22] 赵石楠. 气凝胶型隔热层消防服概念及应用的可行性研究[J]. 消防技术与产品信息, 2018, 31(1): 67- 69.
ZHAO Shinan. Conception and application feasibility of aerogel thermal insulating fire protective clothing[J]. Fire Technique and Products Information, 2018, 31(1): 67- 69.(in Chinese)
HE H L, YU Z C, SONG G W. The effect of moisture and air gap on the thermal protective performance of fabric assemblies used by wildland firefighters[J]. The Journal of the Textile Institute, 2015: 1-7.
[24] 黄冬梅, 何松. 空气层位置对消防战斗服隔热性能的影响[J]. 纺织学报, 2015, 36(10): 113-119.
HUANG Dongmei, HE Song. Influence of air gap position on heat insulation performance of firefighters’ protective clothing[J]. Journal of Textile Research, 2015, 36(10): 113-119.(in Chinese)
[25] DILLER K R, HAYES L J. Analysis of tissue injury by burning: comparison of in situ and skin flap models[J]. International Journal of Heat and Mass Transfer, 1991, 34(6): 1393-1406.
[26] SONG G, BARKER R, THOMPSON D. Comparison of methods used to predict the burn injuries in tests of thermal protective fabrics[J]. Journal of ASTM International, 2005, 2(2): 1-10.
[27] 苏云, 杨杰, 李睿, 等. 热辐射暴露下消防员的生理反应及皮肤烧伤预测[J]. 纺织学报, 2019, 40(2): 147-152.
SU Yun, YANG Jie, LI Rui, et al. Predictions of physiological reaction and skin burn of firefighter exposing to thermal radiation[J]. Journal of Textile Research, 2019, 40(2): 147-152.(in Chinese)
[28] 付明.高温热辐射环境中人员热防护机理与热安全评估研究[D]. 北京: 清华大学, 2015.
[29] PENNES H H. Analysis of tissue and arterial blood temperatures in the resting forearm[J]. Journal of Applied Physiology,1948, 1(2), 93-122.
[30] TORVI D A, DALE J D. A finite element model of skin subjected to a flash fire[J]. Journal of Biomechanical Engineering, 1994, 116(3): 250-255.
[31] HENRIQUES F C, MORITZ A R. Studies of thermal injury: I. the conduction of heat to and through skin and the temperatures attained therein. a theoretical and an experimental investigation[J]. The American Journal of Pathology, 1947, 23(4): 530-549.
[32] WEAVER J A, STOLL A M. Mathematical model of skin exposed to thermal radiation[J]. Aerospace Medicine, 1969, 40(1): 24-30.(责任编辑:邢宝妹)