ASTM D3985-2005(2010)e1 Standard Test Method for Oxygen Gas Transmission Rate Through Plastic Film and Sheeting Using a Coulometric Sensor《使用电量计传感器测量氧气通过塑料膜及薄板的传递速率的标准试验方法》.pdf
《ASTM D3985-2005(2010)e1 Standard Test Method for Oxygen Gas Transmission Rate Through Plastic Film and Sheeting Using a Coulometric Sensor《使用电量计传感器测量氧气通过塑料膜及薄板的传递速率的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D3985-2005(2010)e1 Standard Test Method for Oxygen Gas Transmission Rate Through Plastic Film and Sheeting Using a Coulometric Sensor《使用电量计传感器测量氧气通过塑料膜及薄板的传递速率的标准试验方法》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D3985 05 (Reapproved 2010)1Standard Test Method forOxygen Gas Transmission Rate Through Plastic Film andSheeting Using a Coulometric Sensor1This standard is issued under the fixed designation D3985; the number immediately following the designation indicates the year oforiginal adoption
2、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.1NOTEEditorial changes were made throughout in November 2010.1. Scope1.1 This test method
3、 covers a procedure for determinationof the steady-state rate of transmission of oxygen gas throughplastics in the form of film, sheeting, laminates, coextrusions,or plastic-coated papers or fabrics. It provides for the determi-nation of (1) oxygen gas transmission rate (OTR), (2) thepermeance of th
4、e film to oxygen gas (PO2), and (3) oxygenpermeability coefficient (PO2) in the case of homogeneousmaterials.1.2 This test method does not purport to be the only methodfor measurement of OTR. There may be other methods of OTRdetermination that use other oxygen sensors and procedures.1.3 The values s
5、tated in SI units are to be regarded asstandard. No other units of measurement are included in thisstandard.1.4 This standard does not purport to address all of thesafety problems, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety
6、and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D1434 Test Method for Determining Gas PermeabilityCharacteristics of Plastic Film and SheetingD1898 Practice for Sampling of Plastics3E691 Practice for Conducting a
7、n Interlaboratory Study toDetermine the Precision of a Test MethodF1927 Test Method for Determination of Oxygen GasTransmission Rate, Permeability and Permeance at Con-trolled Relative Humidity Through Barrier Materials Usinga Coulometric Detector3. Terminology3.1 Definitions:3.1.1 oxygen permeabili
8、ty coeffcient (PO2)the productof the permeance and the thickness of film. The permeability ismeaningful only for homogeneous materials, in which case it isa property characteristic of the bulk material. This quantityshould not be used, unless the relationship between thicknessand permeance has been
9、verified on tests using several differentthicknesses of the material. The SI unit of oxygen permeabilityis the mol/(msPa). The test conditions (see 3.1.3) must bestated.3.1.2 oxygen permeance (PO2)the ratio of the OTR to thedifference between the partial pressure of O2on the two sidesof the film. Th
10、e SI unit of permeance is the mol/(m2sPa). Thetest conditions (see 5.1) must be stated.3.1.3 oxygen transmission rate (OTR)the quantity ofoxygen gas passing through a unit area of the parallel surfacesof a plastic film per unit time under the conditions of test. TheSI unit of transmission rate is th
11、e mol/(m2s). The test condi-tions, including temperature and oxygen partial pressure onboth sides of the film must be stated.3.1.3.1 A commonly used unit of OTR is the cm3(STP)/(m2d) at one atmosphere pressure difference where 1cm3(STP) is 44.62 mol, 1 atm is 0.1013 MPa, and one day is86.4 3 103s. T
12、he OTR in SI units is obtained by multiplyingthe value in inch-pound units by 5.160 3 1010.4. Summary of Test Method4.1 The oxygen gas transmission rate is determined after thesample has equilibrated in a dry test environment. In thiscontext, a “dry” environment is considered to be one in whichthe r
13、elative humidity is less than 1 %.4.2 The specimen is mounted as a sealed semi-barrierbetween two chambers at ambient atmospheric pressure. Onechamber is slowly purged by a stream of nitrogen and the otherchamber contains oxygen. As oxygen gas permeates throughthe film into the nitrogen carrier gas,
14、 it is transported to the1This test method is under the jurisdiction ofASTM Committee F02 on FlexibleBarrier Packaging and is the direct responsibility of Subcommittee F02.10 onPermeation.Current edition approved Oct. 1, 2010. Published November 2010. Originallyapproved in 1981. Last previous editio
15、n approved in 2005 as D3985 051. DOI:10.1520/D3985-05R10E01.2For 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.3
16、Withdrawn.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.coulometric detector where it produces an electrical current,the magnitude of which is proportional to the amount ofoxygen flowing into the detector per unit time.5. Significa
17、nce and Use5.1 The OTR is an important determinant of the packagingprotection afforded by barrier materials. It is not, however, thesole determinant, and additional tests, based on experience,must be used to correlate packaging performance with OTR. Itis suitable as a referee method of testing, prov
18、ided that thepurchaser and the seller have agreed on sampling procedures,standardization procedures, test conditions, and acceptancecriteria.5.2 Limited statistical data on correlations with Test MethodD1434 methods are available4; however, the oxygen transmis-sion rate of a standard reference mater
19、ial (see 12.1)asdetermined manometrically by NIST, is in good agreementwith the values obtained in the coulometric interlaboratory testusing material from the same manufacturing lot. Thus, this testmethod may be used as a referee method.6. Interferences6.1 The presence of certain interfering substan
20、ces in thecarrier gas stream may give rise to unwanted electrical outputsand error factors. Interfering substances include free chlorineand some strong oxidizing agents. Exposure to carbon dioxideshould also be minimized to avoid damage to the sensorthrough reaction with the potassium hydroxide elec
21、trolyte.7. Apparatus7.1 Oxygen Gas Transmission Apparatus, as diagrammed inFig. 1 with the following:7.1.1 Diffusion Cell shall consist of two metal halves,which, when closed upon the test specimen, will accuratelydefine a circular area. The volume enclosed by each cell half,when clamped, is not cri
22、tical; it should be small enough toallow for rapid gas exchange, but not so small that anunsupported film which happens to sag or bulge will contactthe top or bottom of the cell. The diffusion cell shall beprovided with a thermometer well for measuring temperature.7.1.1.1 O-RingAn appropriately size
23、d groove, machinedinto the oxygen (or test gas) side of the diffusion cell, retains aneoprene O-ring. The test area is considered to be that areaestablished by the inside contact diameter of the compressedO-ring when the diffusion cell is clamped shut against the testspecimen. The area, A, can be ob
24、tained by measuring the insidediameter of the imprint left by the O-ring on the specimen afterit has been removed from the diffusion cell.7.1.1.2 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 s
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