ASTM D5644-2001(2008) 516 Standard Test Methods for Rubber Compounding Materials Determination of Particle Size Distribution of Recycled Vulcanizate Particulate Rubber《橡胶化合材料的标准试验方.pdf
《ASTM D5644-2001(2008) 516 Standard Test Methods for Rubber Compounding Materials Determination of Particle Size Distribution of Recycled Vulcanizate Particulate Rubber《橡胶化合材料的标准试验方.pdf》由会员分享,可在线阅读,更多相关《ASTM D5644-2001(2008) 516 Standard Test Methods for Rubber Compounding Materials Determination of Particle Size Distribution of Recycled Vulcanizate Particulate Rubber《橡胶化合材料的标准试验方.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 5644 01 (Reapproved 2008)Standard Test Methods forRubber Compounding MaterialsDetermination of ParticleSize Distribution of Recycled Vulcanizate ParticulateRubber1This standard is issued under the fixed designation D 5644; the number immediately following the designation indicates the
2、 year oforiginal 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 These test methods describe the procedures for dete
3、r-mining average particle size distribution of recycled vulcani-zate particulate.1.2 Method A describes the Ro-tap sieve test method for 60mesh or coarser particles.1.3 Method B describes the ultrasonic technique combinedwith optical microscope especially suitable for 80 mesh or finerparticles. This
4、 procedure is based on Test Method D 3849.1.4 The values stated in SI units are to be regarded as thestandard.1.5 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 safet
5、y and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2D 297 Test Methods for Rubber ProductsChemicalAnalysisD 1416 Test Methods for Rubber from Synthetic SourcesChemical Analysis3D 1566 Terminology Relating to Rubber
6、D 3182 Practice for RubberMaterials, Equipment, andProcedures for Mixing Standard Compounds and Prepar-ing Standard Vulcanized SheetsD 3191 Test Methods for Carbon Black in SBR (Styrene-Butadiene Rubber)Recipe and Evaluation ProceduresD 3192 Test Methods for Carbon Black Evaluation in NR(Natural Rub
7、ber)D 3849 Test Method for Carbon BlackMorphologicalCharacterization of Carbon Black Using Electron Micros-copyD 5603 Classification for Rubber CompoundingMaterialsRecycled Vulcanizate Particulate RubberE11 Specification for Wire Cloth and Sieves for TestingPurposesE 105 Practice for Probability Sam
8、pling Of Materials3. Terminology3.1 Definitions:3.1.1 parent compound, noriginal compound used in theproduct.3.1.2 recycled vulcanizate rubber, nvulcanized rubberthat has been processed to give particulates or other forms ofdifferent shapes, sizes, and size distributions.3.1.3 DiscussionThe words “v
9、ulcanizate” and “vulca-nized rubber” are interchangeable. Additional terminologyassociated with this classification can be found in TerminologyD 1566.4. Significance and Use4.1 The particulate size distribution of vulcanizate particu-late rubber is used for the purpose of assigning a product meshor
10、average particle size designation.4.2 The product designation for mesh size for the Ro-tapmethod (MethodA, as follows) is based on the size designationscreen which allows a range for the upper limit retained ofmaximum 5 % for up to 850 m (20 mesh) particles, maximum10 % for 600 to 150 m (30 to 100 m
11、esh), and maximum 15 %for 128 to 75 m (120 to 200 mesh). No rubber particles shallbe retained on the zero screen (see Table 1, ClassificationD 5603).4.3 For Method A, the weight percent retained on a specificscreen is noted whereas in Method B (ultrasonic technique),the number of particles at a part
12、icular size is counted.4.4 Method B addresses problems that may be caused bytackiness and static electrical forces that recycled rubberparticles exert on each other to form agglomerates, especiallyfor 80 mesh or finer particles. This method eliminates agglom-erate formation by ultrasonically dispers
13、ing the particles.1These test methods are under the jurisdiction of ASTM Committee D11 onRubber and are the direct responsibility of Subcommittee D11.20 on CompoundingMaterials and Procedures.Current edition approved July 1, 2008. Published September 2008. Originallyapproved in 1994. Last previous e
14、dition approved in 2001 as D 5644 01.2For 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.3Withdrawn.1Copyright AS
15、TM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4.5 Both methods can be used as a quality control tool.5. Method A: The Ro-tap Method5.1 Summary of Test Method5.1.1 Method ARo-tap Method5.1.1.1 A 100 6 1 g specimen of the recycled rubber iscombin
16、ed with a fixed amount of talc and placed on top of aseries of mesh sieves, with the coarsest sieve being on top andthe finest on the bottom. The specimen is placed in a Ro-tapshaker for 10 to 20 min, depending on the grade of the recycledrubber. The weight of the rubber retained on the individualsi
17、eves is then recorded and the mesh designation of the productdetermined.6. Apparatus6.1 Mechanical Sieve Shaker4This is a mechanicallyoperated sieve shaker that imparts a uniform rotary and tappingmotion to a stack of 200-mm (8-in.) sieves in accordance with6.2. The sieve shaker should be adjusted t
18、o accommodate astack of sieves, receiver pan, and cover plate. The bottom stopsshould be adjusted to give a clearance of 1.5 mm (0.06 in.)between the bottom plate and the screens so that the screenswill be free to rotate. The sieve shaker machine shall bepowered with an electric motor operating 28.7
19、5 to 29.17 Hz(1725 to 1750 rpm). This will produce 2.33 to 2.60 Hz and 280to 320 rotary motions/min. The cover plate shall be fitted witha cork stopper that shall extend from 3.00 to 9.00 mm (0.118to 0.354 in.) above the metal recess. At no time shall a rubber,wood, or other material other than cork
20、 be permitted.6.2 Standard Sieves, stainless steel or brass, 200 mm (7.9in.) in diameter in accordance with Specification E11. Thesieve set should include a lid and a bottom pan.6.3 Balance, with a sensitivity of 0.1 g.6.4 Brush.6.4.1 A Tyler Model 1778-SB soft brass wire brush forcleaning sieves 10
21、0 mesh and coarser.6.4.2 Anylon bristle brush for cleaning sieves finer than 100mesh.6.5 Jar, capacity of 500 cm3(1 pint) with large opening.6.6 Rubber Balls,5with a diameter from 25 to 50 mm (1 to2 in.) or Plastic Rings, with a height of 20 6 3 mm, an outsidediameter of 60 6 3 mm, and an inside dia
22、meter of 58 6 3 mm.The height of the balls or rings must be lesss than the depth ofthe screens being used. Enough balls or rings are needed tohave two balls or rings per sieve. Balls and rings are not to beused simultaneously.6.7 Talcum Powders, usually some mixture of magnesiumsilicate, silica, mag
23、nesium oxide, magnesium-aluminum sili-cate with at least 90 % of the particles being less than 40 m(approximately 400 mesh) in size.7. Procedure7.1 Select test screens appropriate to the particle sizedistribution of the product being tested. A set of two to sixsieves and a receiver pan are normally
24、used. The actual numberof sieves is to be agreed upon by vendor and customer.7.2 Clean each screen with brush (see 6.4), making sure allparticles are removed from both sides of screen.7.3 Stack test screens in order of increasing mesh size withsmallest number on top (coarsest) and highest number onb
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