ASTM F2476-2005 Test Method for the Determination of Carbon Dioxide Gas Transmission Rate (Co 2TR) Through Barrier Materials Using An Infrared Detecto《用红外线探测器透过屏蔽材料测定二氧化碳气体传输率(CoTR.pdf
《ASTM F2476-2005 Test Method for the Determination of Carbon Dioxide Gas Transmission Rate (Co 2TR) Through Barrier Materials Using An Infrared Detecto《用红外线探测器透过屏蔽材料测定二氧化碳气体传输率(CoTR.pdf》由会员分享,可在线阅读,更多相关《ASTM F2476-2005 Test Method for the Determination of Carbon Dioxide Gas Transmission Rate (Co 2TR) Through Barrier Materials Using An Infrared Detecto《用红外线探测器透过屏蔽材料测定二氧化碳气体传输率(CoTR.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: F 2476 05Standard Test Method forthe Determination of Carbon Dioxide Gas Transmission Rate(Co2TR) Through Barrier Materials Using An InfraredDetector1This standard is issued under the fixed designation F 2476; the number immediately following the designation indicates the year oforigina
2、l adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This method covers a procedure for determination of thesteady-sta
3、te rate of transmission of carbon dioxide gas throughplastics in the form of film, sheeting, laminates, coextrusions,or plastic-coated papers or fabrics. It provides for the determi-nation of (1) carbon dioxide gas transmission rate (CO2TR),(2) the permeance of the film to carbon dioxide gas (PCO2),
4、and (3) carbon dioxide permeability coefficient (P”CO2)inthecase of homogeneous materials.1.2 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practic
5、es and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 1898 Practice for Sampling of Plastics3E 691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Method3. Terminology3.1 Definitions:3.1.1 Carbon d
6、ioxide permeability coeffcient (P”CO2)theproduct of the permeance and the thickness of film. Thepermeability is meaningful only for homogeneous materials, inwhich case it is a property characteristic of the bulk material.This quantity should not be used unless the relationshipbetween thickness and p
7、ermeance has been verified on testsusing several different thicknesses of the material. The SI unitof carbon dioxide permeability is the mol/msPa. The testconditions (see 3.1.3) must be stated.3.1.2 Carbon dioxide permeance (PCO2)the ratio of theCO2TR to the difference between the partial pressure o
8、f CO2on the two sides of the film. The SI unit of permeance is themol/(m2sPa). The test conditions (see 3.1.3) must be stated.3.1.3 Carbon dioxide transmission rate (CO2TR)Thequantity of carbon dioxide gas passing through a unit area ofthe parallel surfaces of a plastic film per unit time under thec
9、onditions of the test. The SI unit of transmission rate is themol/(m2s). The test conditions, including temperature andcarbon dioxide partial pressure on both sides of the film, mustbe stated.3.1.3.1 DiscussionA commonly used metric unit ofCO2TR is the cc(STP)/(m2day) at one atmosphere drivingforce
10、pressure differential where: 1 cc(STP) is 44.62 mol. 1atm is 0.1013 MPa. and one day is 86.4 x 103s. CO2TR in SIunits is obtained by multiplying the value in metric units by5.164 x 10-10or the value in inch-pound units (cm3(STP)/100in2day) by 8.004 x 10-9.4. Summary of Test Method4.1 The carbon diox
11、ide gas transmission rate is determinedafter the sample has equilibrated in a dry-test environment. Inthis context, a “dry” environment is considered to be one inwhich the relative humidity is less than 1 %.4.2 The specimen is mounted as a sealed semi-barrierbetween two chambers at ambient atmospher
12、ic pressure. Onechamber is slowly purged by a stream of nitrogen and the otherchamber with carbon dioxide.As carbon dioxide gas permeatesthrough the film into the nitrogen carrier gas, it is transportedto an infrared detector where an electrical output is producedwhose magnitude is proportional to t
13、he amount of CO2flowinginto the detector per unit of time.5. Significance and Use5.1 Carbon dioxide gas transmission rate (CO2TR) is animportant determinant of the packaging protection afforded bybarrier materials. It is not, however, the sole determinant, andadditional tests, based on experience, m
14、ust be used to correlate1This test method is under jurisdiction of ASTM Committee F02 on FlexibleBarrier Materials and is the direct responsibility of Subcommittee F02.10 onPermeation.Current edition approved May 1, 2005. Published May 2005.2For referenced ASTM standards, visit the ASTM website, www
15、.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.3Withdrawn.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United S
16、tates.packaging performance with CO2TR. It is suitable as a refereemethod of testing, provided that purchaser and seller haveagreed on sampling procedures, standardization procedures,test conditions and acceptance criteria.6. Apparatus6.1 Carbon Dioxide Gas Transmission Apparatus, as dia-grammed in
17、Fig. 1 or Fig. 2, with the following:6.1.1 Diffusion Cellshall consist of two metal halves,which, when closed upon the test specimen, will accuratelydefine a circular area. A typical acceptable diffusion cell area is50 cm2. The volume enclosed by each cell half, when clamped,in not critical: it shou
18、ld be small enough to allow for rapid gasexchange, but not so small that an unsupported film thathappens to sag or bulge will contact the top or bottom of thecell.6.1.1.1 O-Ring Groovean appropriately sized groove, ma-chined into the CO2(or test gas) side of the diffusion cell,retains an elastomer O
19、-ring. The test area is considered to bethat area established by the inside contact diameter of thecompressed O-ring when the diffusion cell is clamped shutagainst the test specimen. The area, A, can be obtained bymeasuring the inside diameter of the imprint left by the O-ringon the specimen after i
20、t has been removed from the diffusioncell.6.1.1.2 The nitrogen (or carrier gas) side of the diffusion cellshall have a flat raised rim. Since this rim is a critical sealingsurface against which the test specimen is pressed, it shall besmooth and flat, without radial scratches.6.1.1.3 Diffusion Cell
21、Pneumatic Fittingseach half of thediffusion cell shall incorporate suitable fittings for the intro-duction and exhaust of gases without significant loss orleakage.6.1.1.4 It is desirable to thermostatically control the diffu-sion cell. Because the transmission rate is a function oftemperature, it sh
22、all be controlled to within 6 0.1C.6.1.1.5 Experience has shown that arrangements using mul-tiple diffusion cells are a practical way to increase the numberof measurements that can be obtained from an infrared sensor.A valving manifold connects the carrier gas side of eachindividual diffusion cell t
23、o the sensor in a predeterminedpattern. Carrier gas is continually purging the carrier gas sideof those cells that are not connected to the sensor. Either testgas or carrier gas, as is appropriate, purges the test gas chamberof any individual cell.6.1.2 Flowmetera means shall be provided to establis
24、hand maintain test gas and carrier gas flows. An operating rangein the order of 5 to 100 ml/min for CO2and up to 300 ml/minfor N2.6.1.3 Flow Switching Valvesneeded to perform the tasksof (1) purging, (2) accumulating, if needed, for static ordynamic testing methods, and (3) maintaining flow for con-
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