ASTM D6770-2007(2015) 4436 Standard Test Method for Abrasion Resistance of Textile Webbing (Hex Bar Method)《纺织织带耐磨性的标准试验方法 (六角钢条法)》.pdf
《ASTM D6770-2007(2015) 4436 Standard Test Method for Abrasion Resistance of Textile Webbing (Hex Bar Method)《纺织织带耐磨性的标准试验方法 (六角钢条法)》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6770-2007(2015) 4436 Standard Test Method for Abrasion Resistance of Textile Webbing (Hex Bar Method)《纺织织带耐磨性的标准试验方法 (六角钢条法)》.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D6770 07 (Reapproved 2015)Standard Test Method forAbrasion Resistance of Textile Webbing (Hex Bar Method)1This standard is issued under the fixed designation D6770; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the y
2、ear 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.1. Scope1.1 This test method covers the determination of abrasionresistance of textile webbing using a hex bar abrasion tes
3、ter.1.1.1 The resistance is expressed as a percentage of retainedbreak strength.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 practices and det
4、ermine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D123 Terminology Relating to TextilesD1776 Practice for Conditioning and Testing TextilesD4850 Terminology Relating to Fabrics and Fabric TestMethods2.2 Other Standard:Federal Standard 191, Me
5、thod 4108 “Strength andElongation, Breaking; Textile Webbing, Tape and BraidedItems”33. Terminology3.1 For all terminology relating to Fabrics, refer to Termi-nology D4850.3.2 The following terms are relevant to this standard:abrasion, abrasion cycle, breaking force, standard atmospherefor precondit
6、ioning textiles, standard atmosphere for testingtextiles, stroke, in hex bar abrasion testing, webbing.3.3 For all other terminology related to textiles, refer toTerminology D123.4. Summary of Test Method4.1 Abrasion resistance is measured by subjecting the speci-men to unidirectional reciprocal rub
7、bing over a specific barunder specified conditions of tension, stroke length and time.Resistance to abrasion is evaluated by determining the percentretention of breaking force of an abraded specimen comparedto an unabraded specimen.5. Significance and Use5.1 The measurement of the resistance to abra
8、sion of textilewebbing is very complex. The resistance to abrasion is affectedby many factors that include the inherent mechanical propertiesof the fibers; the dimensions of the fibers; the structure of theyarns; the construction of the webbing; the type, kind, andamount of treatment added to the fi
9、bers, yarns, or webbing; thenature of the abradant; the variable action of the abradant overthe specimen area abraded; the tension on the specimen; thepressure between the specimen and the abradant; and thedimensional changes in the specimen.5.2 The resistance of textile webbing to abrasion as mea-s
10、ured by this test method does not include all the factors whichaccount for wear performance or durability in actual use. Whilethe abrasion resistance stated in terms of the number of cyclesand durability (defined as the ability to withstand deteriorationor wearing out in use, including the effects o
11、f abrasion) arefrequently related, the relationship varies with different enduses. Different factors may be necessary in any calculation ofpredicted durability from specific abrasion data.5.3 Laboratory tests may be reliable as an indication ofrelative end use in cases where the difference in abrasi
12、onresistance of various materials is large, but they should not berelied upon where differences in laboratory test findings aresmall. In general, the results should not be relied upon forprediction of performance during actual wear life for specificend uses unless there are data showing the specific
13、 relationshipbetween laboratory abrasion tests and actual wear in theintended end use.5.4 While there has not been extensive interlaboratorytesting prior to development of this standard, there has beensome quality control testing by manufacturers. An intralabora-tory test was conducted to initiate t
14、his test method, using asingle product. This data will be used to determine a prelimi-nary statement on precision and bias. Subsequent to approval1This test method is under the jurisdiction ofASTM Committee D13 on Textilesand is the direct responsibility of Subcommittee D13.60 on Fabric Test Methods
15、,Specific.Current edition approved July 1, 2015. Published September 2015. Originallyapproved in 2002. Last previous edition approved in 2011 as D677007(2011). DOI:10.1520/D6770-07R15.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm
16、.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3Available from Superintendent of Documents, Government Printing Office,Washington, DC 20402.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken,
17、 PA 19428-2959. United States1of this standard, a formalized interlaboratory procedure will beinitiated under the direction of a professional statistician andwill produce a research report. Samples used in this controlledtest will be representative of end use applications.5.5 These general observati
18、ons apply to most webbings thatare used in automotive, aerospace, industrial, and militaryapplications.5.6 This test method can be used for acceptance testing ofcommercial shipments but comparisons should be made withcaution because estimates of between-laboratory precision areincomplete.5.7 If ther
19、e are differences of practical significance betweenreported test results for two laboratories (or more), compara-tive tests should be performed to determine if there is astatistical bias between them, using competent statistical assis-tance. As a minimum, use samples for such comparative teststhat a
20、re as homogenous as possible, drawn from the same lot ofmaterial as the samples that resulted in disparate results duringinitial testing, and randomly assigned in equal numbers to eachlaboratory. The test results from the laboratories involvedshould be compared using a statistical test for unpaired
21、data, ata probability level chosen prior to the testing series. If bias isfound, either its cause must be found and corrected, or futuretest results must be adjusted in consideration of the knownbias.6. Apparatus6.1 Webbing Abrasion TesterThe webbing abrasion testerconsists of a suitable mechanism t
22、hat will provide a recipro-cating motion of the webbing over a standardized hex bar. Oneend of each specimen is attached to the mechanism and theother end passing over a hexagonal steel rod is attached to aweight. The hexagonal rod is so fixed as to subject the webbingspecimen to abrasion on two adj
23、acent edges as the drum movesthe specimen across the rod. One example of such a mecha-nism is a reciprocating drum as illustrated in Fig. 1.6.1.1 Mass “B” shall be 900 6 60g(2lb6 2 oz) forwebbing with breaking strengths up to 4500 N (1000 lb), 18006 60g(4lb6 2 oz) for breaking strengths of 4500 to 1
24、3 500N (1000 to 3000 lb) and 2400 6 60 g (5.2 6 2 lb) for breakingstrengths over 13 500 N (3000 lb).6.1.2 Steel hexagonal rods “C” shall be 6.35 6 0.03 mm(0.250 6 0.001 in.) when measured across opposite flat sidesand the radius shall be 0.5 6 0.2 mm (0.020 6 0.008 in.). Thesteel shall have a cold d
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