ASTM D2305-2002 Standard Test Methods for Polymeric Films Used for Electrical Insulation《电绝缘用聚合物薄膜的标准试验方法》.pdf
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1、Designation: D 2305 02An American National StandardStandard Test Methods forPolymeric Films Used for Electrical Insulation1This standard is issued under the fixed designation D 2305; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision,
2、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 These test methods cover the testing of homogeneousorganic polymer films not over 2.4 mm (95 mils) thick
3、that areto be used for electrical insulation.1.2 These test methods are not necessarily applicable totesting films in combinations with a coating, another film, orwith other types of substrate, such as fabrics or papers.1.3 The values stated in SI units are the standard. The valuesin parentheses are
4、 provided for information only.1.4 The procedures appear in the following sections:Procedure SectionsConditioning 5 and 6Dielectric Breakdown Voltage therefore,the specimen should be in the stated conditioning environmentwhen the test is being performed. When the test is performedin a different envi
5、ronment, note these conditions and the timeof exposure to this new environment.6. Procedure6.1 Unless otherwise specified in the individual test meth-ods, test the specimens in the Standard Laboratory Atmosphere23 6 2C, 50 6 5 % R.H. prescribed in Practice D 6054.THICKNESS7. Significance and Use7.1
6、The determination of film thickness is frequently nec-essary to ensure (1) the satisfactory production of electricalequipment, and (2) the maintenance of desired electricalproperties of the film during the use of the electrical equip-ment. Some properties, such as dielectric strengths, vary withthe
7、thickness of the material; other properties, such as permit-tivity, cannot be calculated without a proper determination ofthickness unless special techniques are used.8. Procedure8.1 Use Method C of Test Methods D 374 for this measure-ment, with the apparatus modified as follows: Use a presserfoot o
8、f 6.25 6 0.05 mm (250 6 1 mil) diameter, and an anvilsurface, upon which the specimen rests, of at least 50-mm(2-in.) diameter. Apply a force of 0.84 6 0.2N(36 0.75) ozfto the specimen. Take ten measurements, equally spacedthroughout the specimen.9. Report9.1 Report the average, maximum, and minimum
9、 thick-nesses to the nearest 0.5 m (0.02 mil) for specimens thinnerthan 50 m (2 mils) and to the nearest 1 m (0.04 mil) forspecimens 50 m (2 mils) or more in thickness.10. Precision and Bias10.1 PrecisionA formal round robin test in accordancewith Practice E 691 has not been conducted. Persons famil
10、iarwith this method have determined that two test results can beexpected (with a probability of 95 %) to agree within 3 %.Each test result is the average of 10 thickness readings taken ona single sample of polyimide film in one laboratory in which amultiple number of operators used the same apparatu
11、s.10.2 BiasThis test method has no bias because the valuefor thickness is determined solely in terms of this test method.TENSILE PROPERTIES11. Procedure11.1 Use Method A of Test Methods D 882. Report dataonly for the specific tests required by a specification.11.2 Prepare five specimens in each of t
12、he two principaldirections, each 12 by 200 mm (0.5 by 8 in.).11.3 Unless otherwise stated, measure the tensile strengthand tensile elongation, with initial jaw separation of 100 6 2mm (4.06 0.08 in.) and rate of jaw separation of 50 6 2mm(2 6 0.08 in.)/min.11.4 For each specimen, record the thicknes
13、s and widthprior to the application of the tensile force. Use these values tocalculate the tensile strength for each specimen. Report thetensile strength in MPa (lbf/in.2).STRAIN RELIEF12. Significance and Use12.1 The strain relief test gives an indication of the dimen-sional changes that may occur
14、when a film is exposed toelevated temperatures during a manufacturing process or whilein service.13. Apparatus13.1 Ovens, shall be of a forced-convection type capable ofmaintaining the specified temperature6 5C.13.2 Scale, graduated in 0.25-mm (0.01-in.) divisions with atotal length of at least 300
15、mm (12 in.).14. Test Specimen14.1 Prepare test specimens 25 mm (1 in.) wide and at least300 mm (12 in.) long. When sheets or rolls are greater than 300mm wide, also cut specimens in the transverse direction.15. Conditioning15.1 Condition test specimens in accordance with Section 6before the initial
16、and final measurements are made.16. Procedure16.1 Mark gage lines on five specimens approximately 25mm (1 in.) in from the ends of the specimen at a gage distanceof 250 mm (10.0 in.). Determine the initial gage distance bymeasuring both edges of each specimen. Hang the specimenD 23052freely in the o
17、ven at the time and temperature specified for thematerial. Determine the final gage distance by measurementafter conditioning.16.1.1 Use a marking technique that does not affect theproperties or dimensions of the material.16.1.2 Adjust the air flow in the oven so that the specimensdo not whip.17. Ca
18、lculation17.1 Calculate the liner dimensional change as follows:Linear change, % 5 Dt2 Dv!/Dv# 3 100 (1)where:Dt= final dimensions, in. (mm), andDv= original dimension, in. (mm).A negative value denotes shrinkage, and a positive valueindicates expansion.17.2 Average the values obtained for each dire
19、ction.18. Report18.1 Report the following information:18.1.1 Identification of the material tested,18.1.2 Test conditions (time and temperature), including theconditioning of the test specimens,18.1.3 Average percentage linear change and maximumdeviations, in both machine and transverse directions o
20、f thefilm, and18.1.4 Any curl at the edges or other visual defects.19. Precision and Bias19.1 PrecisionThis test method has been in use for manyyears, but no information has been presented to ASTM uponwhich to base a statement of precision. No activity has beenplanned to develop such information.19.
21、2 BiasThis test method has no bias because the valuefor strain relief is determined solely in terms of this test methoditself.DIELECTRIC BREAKDOWN VOLTAGE ANDDIELECTRIC STRENGTH20. Significance and Use20.1 The dielectric breakdown voltage and dielectricstrength of a film is an indication of its abil
22、ity to withstandelectric stress. This value should be used primarily as anindication of quality and for comparison of different lots ortypes of the same material. Secondarily, this value may beuseful as a design criterion, particularly when considering shortterm exposures, providing that sufficient
23、experience has beengained to give an adequate correlation between this test and theproposed end uses.20.2 Unless special precautions are taken, these test resultsmay be just a measure of the quality of the electrode surfacesand the electrical apparatus. This is especially true with thinnerfilms.20.3
24、 For further details on the significance of this test, referto Test Method D 149.21. Apparatus21.1 Use apparatus that conforms to that specified in TestMethod D 149, including the 25-mm (1-in.) diameter elec-trodes described therein. As an exception, the 6.4-mm (14-in.)diameter electrodes are permit
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