ASTM D6125-1997(2002) Standard Test Method for Bending Resistance of Paper and Paperboard (Gurley Type Tester)《纸和纸板耐弯曲性的标准试验方法(GURLEY型试验机)》.pdf
《ASTM D6125-1997(2002) Standard Test Method for Bending Resistance of Paper and Paperboard (Gurley Type Tester)《纸和纸板耐弯曲性的标准试验方法(GURLEY型试验机)》.pdf》由会员分享,可在线阅读,更多相关《ASTM D6125-1997(2002) Standard Test Method for Bending Resistance of Paper and Paperboard (Gurley Type Tester)《纸和纸板耐弯曲性的标准试验方法(GURLEY型试验机)》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 6125 97 (Reapproved 2002)An American National StandardStandard Test Method forBending Resistance of Paper and Paperboard (Gurley TypeTester)1This standard is issued under the fixed designation D 6125; the number immediately following the designation indicates the year oforiginal adopt
2、ion or, in the case of revision, 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 This test method determines the bending resistance ofpaper, paperboard,
3、and other flexible flat-sheet materials bymeasuring the force required to bend a specimen undercontrolled conditions. The instrument described allows for awide variation in specimen length, width and applied force.1.2 This test method is not recommended for soft, limp orcreped materials. Materials s
4、uch as tissue or toweling wouldnot normally be tested by this procedure and materials with apronounced degree of curl would give erroneous results.Products with a bending resistance below 1.39 Gurley Units (orproducts not able to give a deflection between 1 and 7 on thescale when using the lightest
5、weight) should not be tested bythis procedure.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 regul
6、atory limitations prior to use.1.4 The values stated in SI units are to be regarded as thestandard. The values given in parentheses are for informationonly.2. Referenced Documents2.1 ASTM Standards:D 585 Practice for Sampling and Accepting a Single Lot ofPaper, Paperboard, Fiberboard, and Related Pr
7、oduct2D 685 Practice for Conditioning Paper and Paper Productsfor Testing22.2 TAPPI Standards:3T 543 Bending Resistance of PaperT 1200 Interlaboratory Evaluation of Test Methods to De-termine TAPPI Repeatability and Reproducibility3. Terminology3.1 Definitions:3.1.1 bending resistance, na material a
8、ttribute quantifiedby the magnitude of an applied force which produced deflec-tion of a specimen having specified dimensions.3.1.2 stiffness, of paper and paperboard, na synonym forbending resistance.3.1.3 machine direction bending resistance, nthe bendingresistance of a test specimen, clamped with
9、the machinedirection of the paper perpendicular to the specimen clamp.3.1.4 cross direction bending resistance, nthe bendingresistance of a test specimen, clamped with the cross directionof the paper perpendicular to the specimen clamp.3.2 Definitions of Terms Specific to This Standard:3.2.1 Gurley
10、stiffness, nstiffness or bending resistance ofpaper and paperboard determined using measurements madewith a specific instrument patented by Wthe test length and length ratio are used in evaluating Eq 1.8. Conditioning8.1 Condition and test the specimens in an atmosphere inaccordance with Practice D
11、685.9. Procedure9.1 Select an appropriate weight, mounting position andspecimen size to give a deflection between 1 and 7 on the scale.Level the base of the instrument so that the pendulum pointerwill indicate zero after attachment of the required weight. Notethat the pointer is on jeweled bearings.
12、 If the pointer losessensitivity, wipe it clean with a lint-free cloth. Do not oil thesebearings.9.2 Fasten the specimen strip in the specimen clamp in sucha manner that 6.4 6 0.2 mm (0.25 6 0.01 in.) will be held inthe jaws. Set the specimen clamp at a position so that the teststrip will overlap th
13、e top of the pendulum by exactly 6.4 6 0.2mm (0.25 6 0.01 in.). Note that the specimen should bebrought up close to the pendulum vane before applying force toavoid oscillation in the early stages of deflection.9.3 Press the reversing switch to cause the clamp arm tobring the specimen in contact with
14、 the top of the pendulum.Record the reading to the nearest 0.1 unit at the point where thespecimen clears the pendulum.9.4 Reverse the motor and load the test specimen against thependulum from the opposite side. Record the scale reading inthis direction. Average the results of the two readings.9.5 R
15、epeat the test with four more specimens.9.6 There are now digital machines that work as describedabove. The left and right readings are automatically capturedand stored. The average is also calculated and displayed as wellas the actual bending resistance value.10. Calculations and Theory10.1 Calcula
16、tion of Bending ResistanceBending resis-tance is calculated in three ways:10.1.1 Direct lookup via the table of conversion factorsprovided with each instrument (see Table 1).10.1.2 Computation via the equation upon which the lookuptable is based.S 5 1000RDMLR210 VWR(2)where:S = bending resistance or
17、 stiffness, Gurley units,R = scale reading,D = distance from weight to pivot, mm,V = distance from tip of vane to pivot = 127.0mm,M = weight, g,LR= length ratio = Ltest/Lstandard,Lstandard= 76.2 mm,WR= width ratio = Wtest/Wstandard, andWstandard= 25.4 mm.NOTE 1The size specimen used in Eq 2 was the
18、size specimen thatwas selected when the instrument was developed. It must not be confusedwith the preferred testing size given in 7.1.2.10.1.3 Automatic Digital ComputationNewer models ofthe Gurley tester incorporate optical encoders and micropro-cessors. The left and right scale readings are automa
19、ticallyaveraged and displayed. Conversion to Gurley bending resis-tance units are also automatically displayed.FIG. 2 Test SpecimenD 6125 97 (2002)310.2 Additional InformationIn Eq 2, the term R/10 isexactly the sine of the pointer angle at which the vane clearsthe specimen, and the term 1000 (R/10)
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