ASTM F2703-2008 Standard Test Method for Unsteady-State Heat Transfer Evaluation of Flame Resistant Materials for Clothing with Burn Injury Prediction《评估阻燃服装材料的非稳态传热进行烧伤预测的标准试验方法》.pdf
《ASTM F2703-2008 Standard Test Method for Unsteady-State Heat Transfer Evaluation of Flame Resistant Materials for Clothing with Burn Injury Prediction《评估阻燃服装材料的非稳态传热进行烧伤预测的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM F2703-2008 Standard Test Method for Unsteady-State Heat Transfer Evaluation of Flame Resistant Materials for Clothing with Burn Injury Prediction《评估阻燃服装材料的非稳态传热进行烧伤预测的标准试验方法》.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 2703 08Standard Test Method forUnsteady-State Heat Transfer Evaluation of Flame ResistantMaterials for Clothing with Burn Injury Prediction1This standard is issued under the fixed designation F 2703; the number immediately following the designation indicates the year oforiginal adopti
2、on or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method measures the non-steady state heattransfer through flame
3、resistant materials for clothing subjectedto a combined convective and radiant heat exposure.1.1.1 This test method is not applicable to materials that arenot flame resistant.NOTE 1The determination of a materials flame resistance shall bemade prior to testing and done in accordance with the applica
4、bleperformance and/or specification standard for the materials end-use.1.1.2 This test method accounts for the thermal energycontained in an exposed test specimen after the standardizedcombined convective and radiant heat exposure has ceased andis used to estimate performance to a predicted second-d
5、egreeskin burn injury.1.2 This test method is used to measure and describe theresponse of materials, products, or assemblies to heat undercontrolled conditions, but does not by itself incorporate allfactors required for fire hazard or fire risk assessment of thematerials, products, or assemblies und
6、er actual fire conditions.1.3 The values stated in SI units are to be regarded asstandard. The values given in parentheses are mathematicalconversions to inch-pound or other units that are commonlyused for thermal testing.1.4 This standard does not purport to address the safetyconcerns, if any, asso
7、ciated with its use. It is the responsibilityof the user of this standard to establish appropriate safety andhealth practices and determine the applicability of regulatorylimitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 123 Terminology Relating to TextilesD 1776 Practice for Con
8、ditioning and Testing TextilesD 1777 Test Method for Thickness of Textile MaterialsD 3776 Test Methods for Mass Per Unit Area (Weight) ofFabricE 457 Test Method for Measuring Heat-Transfer Rate Usinga Thermal Capacitance (Slug) CalorimeterF 1494 Terminology Relating to Protective Clothing3. Terminol
9、ogy3.1 Definitions:3.1.1 breakopen, nin testing thermal protective materials,a material response evidenced by the formation of a hole in thetest specimen during the thermal exposure that may result inthe exposure energy in direct contact with the heat sensor.3.1.1.1 DiscussionThe specimen is conside
10、red to exhibitbreakopen when a hole is produced as a result of the thermalexposure that is at least 3.2 cm2(0.5 in.2) in area or at least 2.5cm (1.0 in.) in any dimension. Single threads across theopening or hole do not reduce the size of the hole for thepurposes of this test method.3.1.2 charring,
11、nthe formation of a carbonaceous residueas the result of pyrolysis or incomplete combustion.3.1.3 dripping, na material response evidenced by flow-ing of the polymer.3.1.4 embrittlement, nthe formation of a brittle residue asa result of pyrolysis or incomplete combustion.3.1.5 heat flux, nthe therma
12、l intensity indicated by theamount of energy transmitted divided by area and time;kW/m2(cal/cm2s).3.1.6 ignition, nthe initiation of combustion.3.1.7 melting, na material response evidenced by soften-ing of the polymer.3.1.8 unsteady state heat transfer value, nin testing ofthermal protective materi
13、als, a quantity expressed as thetime-dependent difference between the incident and exitingthermal energy values normal to and across two definedparallel surfaces of an exposed thermal insulative material.3.1.9 thermal performance estimate (TPE), nin testing ofthermal protective materials, the cumula
14、tive amount of energyidentified by the intersection of a measured time-dependent1This test method is under the jurisdiction ofASTM Committee F23 on PersonalProtective Clothing and Equipment and is the direct responsibility of SubcommitteeF23.80 on Flame and Thermal.Current edition approved July 1, 2
15、008. Published August 2008.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100
16、 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.heat transfer response through a subject material to a time-dependent, empirical predicted second-degree skin burn injuryperformance curve3, expressed as a rating or value; J/cm2(cal/cm2).3.1.10 response to heat exposur
17、e, nin testing the resis-tance to heat transfer of thermal protective materials, theobservable response of the material to the energy exposure asindicated by break-open, melting, dripping, charring, em-brittlement, shrinkage, sticking, and ignition.3.1.11 second-degree burn injury, nin testing of th
18、ermalprotective materials, reversible burn damage at the epidermis/dermis interface in human tissue.3.1.12 shrinkage, na decrease in one or more dimensionsof an object or material.3.1.13 sticking, na material response evidenced by soft-ening and adherence of the material to the surface of itself ora
19、nother material.3.1.14 sample test suite, nany number of test specimensused to derive a single thermal performance estimate value.3.1.14.1 Discussionthe determination of a single thermalperformance estimate value requires exposing a number ofspecimens under varying exposure conditions so that thethe
20、rmal energy stored in the sample after the heat source isremoved is considered and accounted for when determiningperformance against a burn injury prediction.3.1.15 For the definitions of protective clothing terms usedin this method, refer to Terminology F 1494, and for othertextile terms used in th
21、is method, refer to Terminology D 123.4. Summary of Test Method4.1 A horizontally positioned test specimen is exposed to acombined convective and radiant heat source with an exposureheat flux of 84 6 2kW/m2(2 6 0.05 cal/cm2s).NOTE 2Other exposure heat flux values are allowed, however differ-ent expo
22、sure conditions have the potential to produce different results. Thetest facility shall verify the stability of other exposure levels over thematerials exposure time interval (used to determine the thermal perfor-mance estimate value) and include this in the test results report.4.2 The unsteady-stat
23、e transfer of heat through the testspecimen is measured using a copper slug calorimeter. Thechange in temperature versus time is used, along with theknown thermo-physical properties of copper, to determine therespective thermal energy passed through the test specimen.4.3 A Thermal Performance Estima
24、te value of the testspecimen is determined iteratively as the intersection of thetime-dependent cumulative heat response as measured by thecalorimeter to a time-dependent, empirical predicted second-degree skin burn injury performance curve identified in10.4.1.5,Eq1).4.4 Observations of the thermal
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