ASTM D7269 D7269M-2010 5625 Standard Test Methods for Tensile Testing of Aramid Yarns《芳族聚酰胺纱线抗拉试验的标准试验方法》.pdf
《ASTM D7269 D7269M-2010 5625 Standard Test Methods for Tensile Testing of Aramid Yarns《芳族聚酰胺纱线抗拉试验的标准试验方法》.pdf》由会员分享,可在线阅读,更多相关《ASTM D7269 D7269M-2010 5625 Standard Test Methods for Tensile Testing of Aramid Yarns《芳族聚酰胺纱线抗拉试验的标准试验方法》.pdf(28页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D7269/D7269M 10Standard Test Methods forTensile Testing of Aramid Yarns1This standard is issued under the fixed designation D7269/D7269M; the number immediately following the designation indicates theyear of original adoption or, in the case of revision, the year of last revision. A num
2、ber in parentheses indicates the year of lastreapproval. A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 These test methods cover the tensile testing of aramidyarns, cords twisted from such yarns, and fabrics woven fromsuch cords. The yarn or
3、cord may be wound on cones, tubes,bobbins, spools, or beams; may be woven into fabric; or maybe in some other form. The methods include testing procedureonly and include no specifications or tolerances.1.2 The values stated in either SI units or inch-pound unitsare to be regarded separately as stand
4、ard. The values stated ineach system may not be exact equivalents; therefore, eachsystem shall be used independently of the other. Combiningvalues from the two systems may result in non-conformancewith the standard.1.3 This standard includes the following test methods:SectionBreaking Strength (Force
5、) 11Breaking Tenacity 12Breaking Toughness 17Elongation at Break 13Force at Specified Elongation (FASE) 14Linear Density 10Modulus 15Work-to-Break 161.4 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 s
6、tandard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D76 Specification for Tensile Testing Machines for TextilesD123 Terminology Relating to TextilesD885 Test Methods for Tire
7、Cords, Tire Cord Fabrics, andIndustrial Filament Yarns Made from ManufacturedOrganic-Base FibersD1776 Practice for Conditioning and Testing TextilesD1907 Test Method for Linear Density of Yarn (YarnNumber) by the Skein MethodD1909 Standard Table of Commercial Moisture Regains forTextile FibersD2258
8、Practice for Sampling Yarn for TestingD4848 Terminology Related to Force, Deformation andRelated Properties of TextilesD6477 Terminology Relating to Tire Cord, Bead Wire,Hose Reinforcing Wire, and Fabrics3. Terminology3.1 Definitions:3.1.1 For definitions of terms relating to tire cord and tirecord
9、fabrics, refer to Terminology D6477.3.1.1.1 The following terms are relevant to this standard:cord, cord twist, dip, dip pickup, in a textile cord or fabric,industrial yarn, moisture equilibrium for testing, for industrialyarns and tire cords, pneumatic tire, single twist, standardatmosphere for tes
10、ting textiles, tabby sample, tire, and tire cordfabric.3.1.2 For definitions of terms related to force and deforma-tion in textiles, refer to Terminology D4848.3.1.2.1 The following terms are relevant to this standard:breaking force, breaking strength, breaking tenacity. breakingtoughness, chord mod
11、ulus, in a stress-strain curve, elongation,force at specified elongation (FASE), initial modulus, tensilestrength, and work-to-break.3.1.3 For definitions of other terms related to textiles, referto Terminology D123.3.1.3.1 The following terms are relevant to this standard:fabric and growth.4. Summa
12、ry of Test Method4.1 These test methods are used to determine the tensileproperties of aramid yarns or cords.4.2 Aconditioned or oven-dried specimen of aramid yarn orcord is clamped in a tensile testing machine and then stretchedor loaded until broken. Breaking force, elongation, and force at1These
13、test methods are under the jurisdiction of ASTM Committee D13 onTextiles and are the direct responsibility of Subcommittee D13.19 on IndustrialFibers and Metallic Reinforcements.Current edition approved Jan. 1, 2010. Published August 2010. Originallyapproved in 2006. Last previous edition approved i
14、n 2008 as D726908. DOI:10.1520/D7269-10.2For 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 Inter
15、national, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.specified elongation (FASE) are determined directly. Modulusand work-to-break are calculated from the force-elongationcurve. The output of a constant-rate-of-extension (CRE) tensiletesting machine can be co
16、nnected with electronic recording andcomputing equipment, which may be programmed to calculateand print the test results of tensile properties of interest.5. Significance and Use5.1 The levels of tensile properties obtained when testingaramid yarns and tire cords are dependent on the age andhistory
17、of the specimen and on the specific conditions usedduring the test. Among these conditions are rate of stretching,type of clamps, gage length of specimen, temperature andhumidity of the atmosphere, rate of airflow across the speci-men, and temperature and moisture content of the specimen.Testing con
18、ditions accordingly are specified precisely to obtainreproducible test results on a specific sample.5.2 Because the force-bearing ability of a reinforced rubberproduct is related to the strength of the yarn or cord used as areinforcing material, breaking strength is used in engineeringcalculations w
19、hen designing various types of textile reinforcedrubber products. When needed to compare intrinsic strengthcharacteristics of yarns or cords of different sizes or differenttypes of fiber, breaking tenacity is very useful because, for agiven type of fiber, breaking force is approximately propor-tiona
20、l to linear density.5.3 Elongation of yarn or cord is taken into consideration inthe design and engineering of reinforced rubber productsbecause of its effect on uniformity of the finished product andits dimensional stability during service.5.4 The FASE is used to monitor changes in characteristicso
21、f the textile material during the various stages involved in theprocessing and incorporation of yarn or cord into a rubberproduct.5.5 Modulus is a measure of the resistance of yarn or cord toextension as a force is applied. It is useful for estimating theresponse of a textile reinforced structure to
22、 the application ofvarying forces and rates of stretching. Although modulus maybe determined at any specified force, initial modulus is thevalue most commonly used.5.6 Work-to-break is dependent on the relationship of forceto elongation. It is a measure of the ability of a textile structureto absorb
23、 mechanical energy. Breaking toughness is work-to-break per unit mass.5.7 It should be emphasized that, although the precedingparameters are related to the performance of a textile-reinforced product, the actual configuration of the product issignificant. Shape, size, and internal construction also
24、can haveappreciable effect on product performance. It is not possible,therefore, to evaluate the performance of a textile reinforcedproduct in terms of the reinforcing material alone.5.8 If there are differences of practical significance betweenreported test results for two laboratories (or more), c
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