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本文(ASTM D3350-2012e1 Standard Specification for Polyethylene Plastics Pipe and Fittings Materials《聚乙烯塑料管及其配件用材料的标准规格》.pdf)为本站会员(Iclinic170)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ASTM D3350-2012e1 Standard Specification for Polyethylene Plastics Pipe and Fittings Materials《聚乙烯塑料管及其配件用材料的标准规格》.pdf

1、Designation: D3350 121Standard Specification forPolyethylene Plastics Pipe and Fittings Materials1This standard is issued under the fixed designation D3350; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision.

2、 A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1NOTEEditorial corrections were made in April 2013.1. Scope*1.1 This specification covers the identification of polyeth-ylene plastic pipe and f

3、ittings materials in accordance with acell classification system. It is not the function of this specifi-cation to provide specific engineering data for design purposes,to specify manufacturing tolerances, or to determine suitabilityfor use for a specific application.1.2 Polyethylene plastic materia

4、ls, being thermoplastic, arereprocessable and recyclable (Note 2). This specification al-lows for the use of those polyethylene materials, provided thatall specific requirements of this specification are met.NOTE 1The notes in this specification are for information only andshall not be considered pa

5、rt of this specification.NOTE 2See Guide D5033 for information and definitions related torecycled plastics.1.3 The values stated in SI units are to be regarded asstandard.1.4 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility

6、 of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.NOTE 3There is no known ISO equivalent to this standard.1.5 For information regarding molding and extrusion mate-rials see Specification D4976.

7、For information regarding wireand cable materials see Specification D1248.2. Referenced Documents2.1 ASTM Standards:2D618 Practice for Conditioning Plastics for TestingD638 Test Method for Tensile Properties of PlasticsD746 Test Method for Brittleness Temperature of Plasticsand Elastomers by ImpactD

8、790 Test Methods for Flexural Properties of Unreinforcedand Reinforced Plastics and Electrical Insulating Materi-alsD792 Test Methods for Density and Specific Gravity (Rela-tive Density) of Plastics by DisplacementD883 Terminology Relating to PlasticsD1238 Test Method for Melt Flow Rates of Thermopl

9、asticsby Extrusion PlastometerD1248 Specification for Polyethylene Plastics ExtrusionMaterials for Wire and CableD1505 Test Method for Density of Plastics by the Density-Gradient TechniqueD1603 Test Method for Carbon Black Content in OlefinPlasticsD1693 Test Method for Environmental Stress-Cracking

10、ofEthylene PlasticsD1898 Practice for Sampling of Plastics (Withdrawn 1998)3D2837 Test Method for Obtaining Hydrostatic Design Basisfor Thermoplastic Pipe Materials or Pressure Design Basisfor Thermoplastic Pipe ProductsD2839 Practice for Use of a Melt Index Strand for Deter-mining Density of Polyet

11、hyleneD3892 Practice for Packaging/Packing of PlasticsD4218 Test Method for Determination of Carbon BlackContent in Polyethylene Compounds By the Muffle-Furnace TechniqueD4703 Practice for Compression Molding ThermoplasticMaterials into Test Specimens, Plaques, or SheetsD4883 Test Method for Density

12、 of Polyethylene by theUltrasound TechniqueD4976 Specification for Polyethylene Plastics Molding andExtrusion MaterialsD5033 Guide for Development ofASTM Standards Relatingto Recycling and Use of Recycled Plastics (Withdrawn2007)31This specification is under the jurisdiction of ASTM Committee D20 on

13、Plastics and is the direct responsibility of Subcommittee D20.15 on ThermoplasticMaterials.Current edition approved April 1, 2012. Published May 2012. Originallyapproved in 1974. Last previous edition approved in 2010 as D3350 - 10A. DOI:10.1520/D3350-12E01.2For referenced ASTM standards, visit the

14、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.3The last approved version of this historical standard is referenced onwww.astm.org.*A Summary of Chang

15、es section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1F1473 Test Method for Notch Tensile Test to Measure theResistance to Slow Crack Growth of Polyethylene Pipesand Resins2.2 ISO Standard:ISO 1

16、2162 Thermoplastic Materials for Pipes and Fittingsfor Pressure ApplicationsClassification andDesignationOverall Service (Design) Coefficient3. Terminology3.1 Definitions:3.1.1 Terms as described in Terminology D883 shall applyin this specification.3.1.2 polyethylene plasticsas defined by this speci

17、fication,plastics or resins prepared by the polymerization of no less than85 % ethylene and no less than 95 % of total olefins withadditional compounding ingredients.3.2 Definitions of Terms Specific to This Standard:3.2.1 materialspolyethylene (PE) resins with the addedcompounding ingredients.3.2.2

18、 PE compoundshas the same meaning as PE plasticsmaterials, compounds, and plastics.3.3 Historical usage and user group conventions have re-sulted in inconsistent terminology used to categorize anddescribe polyethylene resins and compounds. The followingterminology is in use in ASTM specifications pe

19、rtaining topolyethylene:3.3.1 Specification D1248:3.3.1.1 Type (0, I, II, III, IV) = density ranges (same,respectively, as Class in Specification D4976).3.3.1.2 Class (A, B, C, D) = composition and use.3.3.1.3 Category (1, 2, 3, 4, 5) = melt index ranges (same asGrade in Specification D4976).3.3.1.4

20、 Grade (E, J, D, or W followed by one or two digits)= specific requirements from tables.3.3.2 Specification D3350:3.3.2.1 Type (I, II, III) = density ranges (same as Types I, II,and III in Specification D1248 and Classes 1, 2, and 3 inSpecification D4976).3.3.2.2 Class = a line callout system consis

21、ting of “PE”followed by six cell numbers from Table 1 plus a letter (A, B,C, D, E) denoting color and UV stabilizer.3.3.2.3 Grade = simplified line callout system using “PE”followed by density and slow crack growth cell numbers fromTable 1.3.3.3 Specification D4976:3.3.3.1 Group (1, 2) = branched or

22、 linear polyethylene.3.3.3.2 Class (0, 1, 2, 3, 4) = density ranges (same,respectively, as Type in Specification D1248).3.3.3.3 Grade (1, 2, 3, 4, 5) = melt index ranges (same asCategory in Specification D1248).4. Classification4.1 Polyethylene plastic pipe and fittings compounds areclassified in ac

23、cordance with density, melt index, flexuralmodulus, tensile strength at yield, slow crack growthresistance, and hydrostatic strength classification in Table 1.NOTE 4It has been a long-standing practice to use the following termsin describing polyethylene plastics:Type I (0.910 to 0.925) = Low Densit

24、yType II (0.926 to 0.940) = Medium DensityType III (0.941 to 0.965) = High DensityNOTE 5The manner in which materials are identified in the cellclassification is illustrated for Class PE233424B as follows (refer also toTable 1 and 6.2):Class233424BDensity (0.9260.940 g/cm3)Melt Index (0.925-0.9400.9

25、40-0.9470.947-0.9550.955 . . . SpecifyValue2. Melt index D1238 Unspecified 1.0 1.0 to0.41103(160 000)SpecifyValue4. Tensile strengthat yield, MPa (psi)D638 Unspecified 28(4000)SpecifyValue5. Slow CrackGrowth ResistanceI. ESCR D1693 Unspecifieda. Test condition(100% Igepal.)DA B C C . . . . . . . . .

26、 SpecifyValueb. Test duration, h 48 24 192 600c. Failure, max, % Unspecified 50 50 20 20II. PENT (hours) F1473Molded plaque,80C, 2.4 MPaUnspecified . . . . . . . . . 10 30 100 500 SpecifyValueNotch depth,F1473, Table 1Unspecified6. Hydrostatic StrengthClassificationI. Hydrostatic designbasis, MPa (p

27、si), (23C)D2837 NPRE5.52(800)6.89(1000)8.62(1250)11.03(1600). .II. Minimum requiredstrength, MPa (psi), (20C)ISO 12162 . . . . . . . . . . . . . . . 8(1160)10(1450)ACompliance with physical properties in accordance with Section 8 is required including requirements for cell classification, color, and

28、 ultraviolet (UV) stabilizer, thermalstability, brittleness temperature, density, tensile strength at yield, and elongation at break.BRefer to 10.1.4.1.CRefer to 10.1.4.2.DThere are environmental concerns regarding the disposal of Nonylphenoxy poly(ethyleneoxy) ethanol (CAS 68412-54-4) for example,

29、Igepal CO-630. Users are advisedto consult their supplier or local environmental office and follow the guidelines provided for the proper disposal of this chemical.ENPR = Not Pressure Rated.D3350 1213in accordance with 10.1.3. When the average density of any lotor shipment falls within 60.002 g/cm3o

30、f the nominal value, itshall be considered as conforming to the nominal value and toall classifications based on the nominal value.6.5.1 For black compounds, containing carbon black, deter-mine the density, Dp, and calculate the resin density, Dr,asfollows:Dr 5 Dp 2 0.0044Cwhere:C = weight percent o

31、f carbon black.6.5.2 For colored compounds, the nominal density of thebase resin shall be provided by the manufacturer, on request.6.6 Tensile Strength at YieldThe tensile strength at yieldused to classify the material shall be the tensile strength at yieldof the PE resin determined in accordance wi

32、th 10.1.6. Whenthe average tensile strength at yield of any lot or shipment fallswithin 63.45 MPa (6500 psi) of the nominal value, it shall beconsidered as conforming to the nominal value and to allclassifications based on the nominal value.6.7 Elongation at BreakAs tested in accordance with10.1.6,

33、all pressure rated materials shall have a minimumextension at break of 400 %.7. Sampling7.1 A batch or lot shall be considered as a unit of manufac-ture and shall consist of one production run or as a blend of twoor more production runs of material.7.2 Unless otherwise agreed upon between the manufa

34、cturerand the purchaser, the material shall be sampled in accordancewith the procedure described in Sections 9 through 12 ofPractice D1898. Adequate statistical sampling prior to packag-ing shall be considered an acceptable alternative.NOTE 8A sample taken from finished product may not necessarilyre

35、present the original batch or lot.8. Number of Tests8.1 The requirements identified by the material designationand otherwise specified in the purchase order shall be verifiedby tests made in accordance with 11.1. For routine inspection,FIG. 1 Mounting Film Specimen in CupD3350 1214only those tests n

36、ecessary to identify the material to thesatisfaction of the purchaser shall be required. One sampleshall be sufficient for testing each batch or lot provided that theaverage values for all of the tests made on that batch or lotcomply with the specified requirements.9. Specimen Preparation9.1 Unless

37、otherwise specified in Section 10, the test speci-mens shall be molded in accordance with Procedure C ofAnnex A1 of Practice D4703.9.2 When pipe or fitting test specimens are required, theyshall be extruded or molded in accordance with the specifica-tions of the material manufacturer.10. Test Method

38、s10.1 The properties enumerated in this specification shall bedetermined in accordance with the following test methods:10.1.1 ConditioningUnless otherwise specified in the testmethods or in this specification, for those tests where condi-tioning is required, condition the molded test specimens inacc

39、ordance with Procedure A of Practice D618.10.1.2 Test ConditionsUnless otherwise specified in thetest methods or in this specification, conduct tests at thestandard laboratory temperature of 23 6 2C (73.4 6 3.6F).10.1.3 DensityTest Method D1505 or alternative methodsreferenced in 2.1 (see D792, D283

40、9, and D4883) providingequivalent accuracy. Make duplicate determinations using twoseparate portions of the same molding or from two moldings.The molded specimen thickness portions shall be 1.9 6 0.2mm (0.075 6 0.008 in.). Calculate the average value.10.1.4 Melt IndexTest Method D1238, using Conditi

41、on190/2.16. Make duplicate determinations on the material in theform of powder, granules, or pellets, and calculate the average;no conditioning is required.10.1.4.1 For materials having a melt index less than 0.15(Cell 4), the manufacturer shall report a flow rate not greaterthan 20 g/10 min and not

42、 less than 4.0 g/10 min when tested inaccordance with Test Method D1238, Condition 190/21.6.10.1.4.2 Classify materials having a melt index less than0.15 (Cell 4) as Cell 5 only if they have a flow rate not greaterthan 4.0 g/10 min when tested in accordance with Test MethodD1238, Condition 190/21.6.

43、NOTE 9For materials having a melt index less than 0.40 to 0.15 g/10min (Cell 3), the manufacturer may report a flow rate value when testedin accordance with Test Method D1238, Condition 190/21.6. For non-pressure applications, if agreed upon between the manufacturer and thepurchaser, the manufacture

44、r may report only the melt index.NOTE 10Flow rate is the general term used for all results obtainedwith Test Method D1238. Although the flow rate of polyethylene plasticsFIG. 2 Typical DSC PlotsD3350 1215may be measured under any of the conditions listed for it under 7.2 of TestMethod D1238, only me

45、asurements made at Condition 190/2.16 may beidentified as “Melt Index.”10.1.5 Flexural ModulusTest Methods D790, usingMethod 1, Procedure B, and a 50-mm (2-in.) test span.Test fivespecimens, each 3.2 by 12.7 mm (18 by12 in.) flatwise at acrosshead speed of 12.7 mm/min (0.5 in./min) and the averageva

46、lue of the secant modulus calculated at 2 % strain in theouter fibers.10.1.5.1 The deflection of the test specimen correspondingto 2 % strain (0.02 mm/mm or in./in.) is calculated as follows:D 5 rL2/6dwhere:D = deflection of the center of the beam test specimen at 2 %strain, in.,r = strain in the ou

47、ter fibers = 0.02 mm/mm (0.02 in./in.),L = test span = 50 mm (2 in.), andd = specimen depth = 3.2 mm (18 in.).10.1.5.2 The stress corresponding to 2 % strain is calculatedas follows:S 5 3 PL/2bd2where:S = stress in the outer fiber at 2 % strain,P = load corresponding to 2 % strain, N (lbf),L = test

48、span = 50 mm (2 in.),d = specimen depth = 3.2 mm (18 in.), andb = specimen width = 12.7 mm (12 in.).The secant modulus at 2 % strain is the ratio of stress tostrain or S/0.02.10.1.6 Tensile Strength at YieldThe tensile strength atyield and elongation at break shall be determined in accordancewith Te

49、st Method D638. The speed of testing shall be 500mm/min (20 in./min for materials in the density range from0.910 to 0.925 g/cm3) and 50 mm/min (2 in./min for all others).Specimens shall conform to the dimensions given for Type IVin Test Method D638 with a thickness of 1.9 6 0.2 mm(0.075 6 0.008 in.). Specimen shall be either die cut ormachined.10.1.7 Slow Crack Growth ResistanceOne method shallbe used to classify this material property.10.1.7.1 Slow Crack Growth ResistanceThe materialsresistance shall meet the minimum requirement shown for

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