ASTM D1282-2005(2009) Standard Test Method for Resistance to Airflow as an Indication of Average Fiber Diameter of Wool Top Card Sliver and Scoured Wool 《用气流阻力表示羊毛毛条 生条和洗净羊毛的平均纤维直经.pdf
《ASTM D1282-2005(2009) Standard Test Method for Resistance to Airflow as an Indication of Average Fiber Diameter of Wool Top Card Sliver and Scoured Wool 《用气流阻力表示羊毛毛条 生条和洗净羊毛的平均纤维直经.pdf》由会员分享,可在线阅读,更多相关《ASTM D1282-2005(2009) Standard Test Method for Resistance to Airflow as an Indication of Average Fiber Diameter of Wool Top Card Sliver and Scoured Wool 《用气流阻力表示羊毛毛条 生条和洗净羊毛的平均纤维直经.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 1282 05 (Reapproved 2009)Standard Test Method forResistance to Airflow as an Indication of Average FiberDiameter of Wool Top, Card Sliver, and Scoured Wool1This standard is issued under the fixed designation D 1282; the number immediately following the designation indicates the year o
2、foriginal adoption 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.1. Scope1.1 This test method covers the estimation of the averagefiber
3、 diameter of wool fibers by use of the Port-Ar and theWIRA Fiber Fineness Meter instrument, which operate on theair-flow principle. Other air-flow instruments have not beentested with this method. The method is directly applicable tonon-medullated, carded wool and wool top.1.2 This test method is ap
4、plicable to grease wool andscoured wool after the samples of such materials have beenprepared as directed in Test Method D 2130.NOTE 1The use of the Micronaire instrument for measuring thefineness of cotton fibers is covered in Test Method D 1448.The assignment of grade for wool and mohair is covere
5、d in Specifica-tions D 3991 and D 3992.1.3 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 determine the applica-bility of regulatory l
6、imitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 123 Terminology Relating to TextilesD 1060 Practice for Core Sampling of Raw Wool in Pack-ages for Determination of Percentage of Clean Wool FiberPresentD 1448 Test Method for Micronaire Reading of CottonFibersD 2130 Test Method fo
7、r Diameter of Wool and OtherAnimal Fibers by MicroprojectionD 3991 Specifications for Fineness of Wool or Mohair andAssignment of GradeD 3992 Specifications for Fineness of Wool Top or MohairTop and Assignment of GradeD 4845 Terminology Relating to Wool2.2 Other Standard:IWTO-6-92(E) Method of Test
8、for the Determination of TheMean Diameter of Wool Fibers in Combed Sliver Usingthe Air-Flow ApparatusIWTO-28-82(E) Determination By The Airflow Method ofthe Mean Fibre Diameter of Core Samples of Raw Wool3. Terminology3.1 For all terminology related to wool and wool felt, referto Terminology D 4845.
9、3.1.1 The following terms are relevant to this standard:sliver, specific area, top, and wool.3.2 For all other terminology related to textiles, see Termi-nology D 123.4. Summary of Test Method4.1 The resistance to air flow of predetermined mass ofwool compressed to a fixed volume is measured. The in
10、stru-ments approved for use have been calibrated to read averagediameter in micrometres. Specimens of wool top are rated witha Wool Top Scale and specimens of carded, scoured wool andscoured12-in. (13.0-mm) cores are rated with a Scoured WoolScale. If instruments are properly calibrated, results are
11、 inter-changeable.5. Significance and Use5.1 This test method is not recommended for the acceptancetesting of commercial shipments of wool top, card sliver, orscoured wool since the referee method, Test Method D 2130,isrecommended for that purpose. Although this test method isnot recommended for acc
12、eptance testing, it is useful for fastquality control checks.5.1.1 .If there are differences of practical significance be-tween reported test results for two laboratories (or more),comparative test should be performed to determine if there is astatistical bias between them, using competent statistic
13、al assis-tance. As a minimum, use the samples for such a comparativetest that are as homogenous as possible, drawn from the samelot of material as the samples that resulted in disparate resultsduring initial testing and randomly assigned in equal numbersto each laboratory. The test results from the
14、laboratoriesinvolved should be compared using a statistical test for1This test method is under the jurisdiction ofASTM Committee D13 on Textilesand is the direct responsibility of Subcommittee D13.13 on Wool and Felt.Current edition approved July 1, 2009. Published August 2009. Originallyapproved in
15、 1953. Last previous edition approved in 2005 as D 1282 05.2For 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.1C
16、opyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.unpaired data, a probability level chosen prior to the testingseries. If bias is found, either its cause must be found andcorrected, or future test results for that material must beadjust
17、ed in consideration of the known bias.5.2 The specific area of the wool fibers is measured by theresistance in air flow.The resistance to air flow has been relatedto average fiber diameter measured by the microprojectionmethod. The instruments have been calibrated to read averagediameter in micromet
18、res. Although the reading is affected bythe average fiber diameter distribution of the specimen, theresults secured by the instruments give no indication of thisdistribution. However, in converting the micrometres readingto millitex units (Annex A1), low, medium, and high standarddeviations were use
19、d in the calculations to arrive at the rangeof millitex units which accordingly reflect the distribution offiber diameters.6. Apparatus, Materials, and Reagent6.1 Port-Ar3, described in this method and shown in Fig. 1.6.2 WIRA Fiber Fineness Meter4, described in this methodand shown in Fig. 2.6.2.1
20、Scale graduated in millimetres.6.2.2 Calibration chart converting float height in millimetresto diameter in micrometres.3The Port-Ar instrument, trademark for a product manufactured by ZellwegerUster, 456 Troy Circle, P.O. Box 51720, Knoxville, TN 37950, has been foundsatisfactory for this purpose.4
21、The WIRA Fiber Fineness Meter, trademark for a product manufactured byReynolds and Branson Ltd., for Thorn Bendix Ltd., Beech Ave., New Barford,Nottingham NG7 7JJ England. This instrument is available from Lawson-HemphillSales, Inc., P.O. Drawer 6388, Spartanburg, SC 29304.1) Balance Adjustment Knob
22、 8) Porosity Calibration Control2) Balance Pan 9) Compression Lever3) Air Reservoir 10) Calibrator Plug Plunger4) Meter Zero Adjustment Screw 11) Porosity Calibrator Plug5) Porosity Test Chamber Lid 12) Calibration Weight6) Differential Pressure Gage 13) Weighing Balance Mechanism7) Porosity Zero Co
23、ntrol 14) Atomizer BulbFIG. 1 Port-Ar Apparatus1) Metal specimen container 6) Gage tube2) Packing rod 7) Millimetre scale3) Plunger 8) Vacuum supply4) Retaining collar 9) Upper gage tube mark5) Control knob 10) Lower gage tube markFIG. 2 WIRA Fiber Fineness MeterD 1282 05 (2009)26.2.3 Air pump capab
24、le of furnishing a constant vacuum of609.6 mm (24 in.) of mercury.6.2.4 Tables of correction values to correct observed resultsin micrometres to deviations from standard conditions, 20C(68F) and 65 % relative humidity, as shown in Annex A2.6.3 Trichloroethane or equivalent solvent.6.4 Working Refere
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