参考文献/References:
[1] BARKER R L.A review of gaps and limitation in test methods for first responder protective clothing and equipment[R].Raleigh:North Carolina State University,2005.
[2] National Fire Protection Association.NFPA 1971 Standard on Protective Ensemble for Structural Fire Fighting:ISO 02169—7471[S].Geneva:An International Codes and Standards organization,2000.
[3] 全国消防标准化技术委员会第五分技术委员会.消防员灭火防护服:GA 10—2002[S].北京:中国标准出版社,2002.
[4] 王肖杰.基于聚酰亚胺纤维灭火防护服外层面料的设计与开发[D].上海:东华大学,2016.
[5] Gopal R,Kaur S,Ma Z,et al.Electrospun nanofibrous filtration membrane[J].Journal of Membrane Science,2006,281(1):581-586.
[6] Houshyar S,Padhye R,Vijayan A,et al.The impact of super-absorbent materials on the thermo-physiological properties of textiles[J].Textile Research Journal,2014,85(6):601- 608.
[7] E.Vincent Zoby.Aeroheating design issues for reusable launch vehicles:a perspective[M].America:Bibliogov,2013.
[8] A Putorti,A Mensch,N Bryner,et al.Thermal performance of self-contained breathing apparatus facepiece lenses exposed to radiant heat flux[D].Commonovealth of Pennsylvania:The Pennsylvania State University,2013.
[9] 赵富森.我国消防员个人防护装备产业和技术状况及未来发展方向[J].中国个体防护装备,2013(3):12-16.
ZHAO Fusen.The trend and direction of Chinese fire fighters’ personal protective equipment industry and technology position[J].China Personal Protection Equipment,2013(3):12-16.(in Chinese)
[10] 马皎皎.新型消防头盔的研制[D].上海:上海交通大学,2007.
[11] Keiser C,Becker C,Rossi R M.Moisture transport and absorption in multilayer protective clothing fabrics[J].Textile Research Journal,2008,78(7):604- 613.
[12] Desruelle A V,Schmid B.The steam laboratory of the Institut de Médecine Navale du Service de Santé des Armées:a set of tools in the service of the French Navy[J].European Journal of Applied Physiology,2004,92(6):630-635.
[13] 李俊,王云仪,张向辉,等.消防服多层织物系统的组合构成与性能[J].东华大学学报(自然科学版),2008,34(4):410- 415.
LI Jun,WANG Yunyi,ZHANG Xianghui,et al.Properties and combination of multi-layered fabrics of firefighter protective clothing[J].Journal of Donghua University(Natural Science),2008,34(4):410- 415.(in Chinese)
[14] 查思思.相变材料在消防服用织物中的应用研究[D].上海:东华大学,2013.
[15] Congalton D.Shape memory alloys for use in thermally activated clothing,protection against flame and heat[J].Fire and Materials,1999,23(5):223-226.
[16] YANG H,NI W,CHEN D,et al.Mechanism of low thermal conductivity of xonotlite-silica aerogel nanoporous super insulation material[J].Journal of University of Science and Technology Beijing Mineral Metallurgy Material,2008,15(5):649- 653.
[17] Havenith G,Heus R.A test battery related to ergonomics of protective clothing[J].Applied Ergonomics,2004,35(1):3-20.
[18] 卢业虎.高温液体环境下热防护服装热湿传递与皮肤烧伤预测[D].上海:东华大学,2013.
[19] WANG M,LI X,LI J,et al.A new approach to quantify the thermal shrinkage of fire protective clothing after flash fire exposure[J].Textile Research Journal,2016:86(6):580-592.
[20] LI X,LU Y,ZHAI L,et al.Analyzing thermal shrinkage of fire-protective clothing exposed to flash fire[J].Fire Technology,2013,51(1):195-211.
[21] 辛丽莎,李俊,王云仪.防护服装功能设计模式研究[J].纺织学报,2011,32(11):119-125.
XIN Lisha,LI Jun,WANG Yunyi.Research on functional design pattern of protective clothing[J].Journal of Textile Research,2011,32(11):119-125.(in Chinese)
[22] 顾娟,胡兆燕,钱锋.消防服热防护性能检测用热传感器的研究[J].产业用纺织品,2007,25(12):41- 44.GU Juan,HU Zhaoyan,QIAN Feng.Research of thermal sensors used in firefighter’s clothing thermal protective performance test[J].Technical Textiles,2007,25(12):41- 44.(in Chinese)
[23] Curone D,Secco E L,Tognetti A,et al.Smart garments for emergency operators:the proeTEX project[J].IEEE Transactions on Information Technology in Biomedicine A Publication of the IEEE Engineering in Medicine and Biology Society,2010,14(3):694-701.
[24] 卜宇.基于传感器的消防员体征监测系统设计[J].信息安全与技术,2016,7(2):46- 48.
BU Yu.A Wearable intelligent system for monitoring firefighter’s physiological state based on embedded sensors[J].Information Security and Technology,2016,7(2):46- 48.(in Chinese)
[25] 李媛媛.智能消防服系统信息获取与处理关键技术研究[D].上海:东华大学,2013.
[26] Standard Test Method for Evaluation of Flame Resistant Clothing for Protection Against Flash Fire Simulations Using an Instrumented Manikin:ASTM F1930-12[S/OL].[2016-08-26].http://www.astm.org/DATABASE.CART/HISTORIC/F1930-12/.htm
[27] Protective Clothing Against Heat and Flame Test Method for Complete Garments Prediction of Bum Injury Using an Instrumented Manikin:ISO 13506.3[S/OL].[2016-08-23].http://www.doc88.com/p-98334/7894375.html
[28] Tickner G,Bendler R.Thermo-man:super textile tester[J].Instruments and Control Systems,1974,47(6):39- 42.
[29] WANG M,LI X,LI J.Correlation of bench scale and manikin testing of fire protective clothing with thermal shrinkage effect considered[J].Fibers and Polymers,2015,16(6):1370-1377.
[30] Hummel A,Barker R,Lyons K,et al.Development of instrumented manikin hands for characterizing the thermal protective performance of gloves in flash fire exposures[J].Fire Technology,2011,47(3):615- 629.
[31] HE J,WANG M,LI J.Determination of the thermal protective performance of clothing during bench-scale fire test and flame engulfment test:Evidence from a new index[J].Journal of Fire Sciences,2015,33(3):218-231.
[32] Ellison A D.Thermal manikin testing of fire fighter ensem- bles[D].Massachusetts:Worcester Polytechnic Institute,2006.
[33] SONG G.Modeling thermal protection outfits for fire exposures[D].North Carolina:North Carolina State University,2003.
[34] UMBACH K H.Physiological tests and evaluation models for the optimization of the performance of protective clothing[C]//Mekjavic I B,Banister E W,Morrison J B.Developments in Environmental Ergonomics.New York:IEEE Computer Society,1988:139-161.
[35] 田苗,王云仪,张向辉,等.高温防护服的舒适工效性能评价与优化对策[J].东华大学学报(自然科学版),2013,39(6):754-759.
TIAN Miao,WANG Yunyi,ZHANG Xianghui,et al.Comfort-ergonomics evaluation and optimization of thermal protective clothing[J].Journal of Donghua University(Natural Science Edition),2013,39(6):754-759.(in Chinese)
[36] Gajdosik R L,Bohannon R W.Clinical measurement of range of motion.Review of goniometry emphasizing reliability and validity[J].Physical Therapy,1987,67(12):1867-1872.
(责任编辑:卢 杰,邢宝妹)
相似文献/References:
[1]李莎莎,李 俊*.消防服性能测评技术及其综合评价原则[J].服装学报,2017,2(03):212.
LI Shasha,LI Jun*.Study on the Performance Evaluating Methods and Comprehensive Evaluation Principles of Fire Fighting Clothing[J].Journal of Clothing Research,2017,2(01):212.
[2]李 俊,管曼好.热防护服装发展现状及趋势[J].服装学报,2020,5(01):21.
LI Jun,GUAN Manhao.Development Status and Trends of Thermal Protective Clothing[J].Journal of Clothing Research,2020,5(01):21.
[3]周 琦.消防服用组合织物热防护性与热湿舒适性综合评价[J].服装学报,2021,6(02):102.
ZHOU Qi.Comprehensive Evaluation on Thermal Protection Performance and Thermal-Wet Comfort Performance of Composite Fabrics Used for Firefighters’ Protective Clothing[J].Journal of Clothing Research,2021,6(01):102.
[4]刘 沙,陈维旺*.气凝胶隔热面料热防护性能测评[J].服装学报,2021,6(04):291.
LIU Sha,CHEN Weiwang*.Evaluation on Thermal Protective Performance of Aerogel Fabrics[J].Journal of Clothing Research,2021,6(01):291.
[5]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(02):102.
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(01):102.