AASHTO T 311-2000 Standard Method of Test for Grain-Size Analysis of Granular Soil Materials《土壤颗粒材料的粒度分析的标准试验方法》.pdf
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1、Standard Method of Test for Grain-Size Analysis of Granular Soil Materials AASHTO Designation: T 311-00 (2015) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-1a T 311-1 AASHTO Standard Method of Test for Grain-Siz
2、e Analysis of Granular Soil Materials AASHTO Designation: T 311-00 (2015) 1. SCOPE 1.1. This method covers the determination of the particle size distribution of granular soil material. This method utilizes the 6.3-mm sieve size for separation purposes. However, the sample tester may use an alternat
3、ive sieve size (i.e., 4.75 mm, 2.00 mm). In this case, the alternative sieve size used must replace the 6.3-mm size throughout this procedure. 1.2. Specifications for granular soil material, which reference this method, usually contain grading requirements that include both coarse and fine fractions
4、 in sizes between 100 mm and 0.075 mm. 1.3. The standard may involve hazardous materials, operations, and equipment. This standard does not purport to address all of the safety concerns associated with its use. It is the responsibility of the user of this standard to consult and establish appropriat
5、e safety and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 92, Wire-Cloth Sieves for Testing Purposes M 231, Weighing Devices Used in the Testing of Materials T 2, Sampling of Aggregates 2.2. ASTM Standard: E
6、29, Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications 3. SUMMARY OF METHOD 3.1. A weighed sample of dry granular soil material is separated through a series of sieves with progressively smaller openings. Particle size distribution is determined
7、by weighing the material retained on each of the sieves and dividing these weights by the total dry weight of the sample. This method requires drying, washing, and a series of separations. 4. SIGNIFICANCE AND USE 4.1. This method is used primarily to determine the gradation of granular soil material
8、 for use as fill material in subbase, pipe, or structural backfill. Granular soil material used in these applications generally necessitates a well graded material. This results in samples that contain material that is retained on a wide range of sieve sizes. The results are used to determine the co
9、mpliance of grain size distribution of granular soil material with applicable specification requirements, and to 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a T 311-2 AASHTO provide the necessary
10、 data in order to determine the acceptability of this select granular material for the stated uses. This procedure is intended for use in quality assurance testing where large numbers of samples are processed. 5. APPARATUS 5.1. Platform ScaleThe platform scale shall conform to the requirements of M
11、231 for the class of general-purpose scale required for the principal sample weight being tested. 5.2. BalanceThe balance shall conform to the requirements of M 231 for the class of general-purpose balance required for the sample weight of fine granular material being tested. 5.3. SievesThe sieves s
12、hall be mounted on substantial frames constructed in a manner that will prevent loss of material during sieving. Suitable sieve sizes shall be selected to furnish the information required by the specifications covering the material to be tested. The sieves shall conform to M 92 (Note 1). Note 1It is
13、 recommended that sieves mounted in frames larger than standard 203-mm-diameter frames be used for testing coarse aggregate. Also, it may be desirable to use a heavy-duty screen meeting the required opening tolerances but with a larger wire diameter. 5.4. Mechanical Sieve ShakerA mechanical sieve sh
14、aker, if used, shall impact a vertical or lateral and vertical motion to the sieve, causing the particles thereon to bounce and turn so as to present different orientations to the sieving surface. The sieving action shall be such that the criterion for adequacy of sieving described in Section 7.4 is
15、 met in a reasonable time period. Note 2Use of a mechanical sieve shaker is recommended when the size of the sample is 20 kg or greater, and may be used for smaller samples, including fine granular material. Excessive time (more than approximately 5 min) to achieve adequate sieving may result in deg
16、radation of the sample. The same mechanical sieve shaker may not be practical for all sizes of samples, since the large sieving area needed for practical sieving of a large nominal size coarse granular material very likely could result in loss of a portion of the sample if used for a smaller sample
17、of coarse granular or fine granular material. 5.5. OvenAn oven of appropriate size capable of maintaining a uniform temperature of 110 5C. 5.6. MiscellaneousSpoons, spatulas, brushes, and containers (noncorroding and not subject to weight change). 6. SAMPLING AND PREPARATION 6.1. Sample the aggregat
18、e in accordance with T 2. 6.2. Sample Size: 6.2.1. For granular construction items, the sample(s) shall be transported to the testing facility in a clean, approved container. Assure that the sample size meets a minimum mass requirement of 20 kg. 2015 by the American Association of State Highway and
19、Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a T 311-3 AASHTO 6.2.2. For materials other than granular construction items, i.e., design testing, the sample(s) shall be transported to the testing facility in a clean, approved container and be large en
20、ough to be representative of the material being tested. In general, the larger the nominal maximum particle size is, the larger the sample should be in order to be considered representative. The following may be considered a guide (not a requirement) for sample masses on particle size: Nominal Maxim
21、um Particle Size Sample Mass 50 mm 20 kg 19 mm 7 kg 6.3 mm 1 kg 7. PROCEDURE Note 3Due to ease of operation, the following Procedure, Calculation, and Sieve Analysis Data Sheet utilizes a 6.3-mm sieve for separation. Depending on the sample type and size, or the testers preference, or both, alternat
22、ive sieve sizes can be used for separation (i.e., 4.75 mm, 2.00 mm). When an alternative sieve size is used, then that size must replace the 6.3-mm size as outlined in this method. In addition, a new Sieve Analysis Data Sheet must be developed for the alternative sieve size utilized. 7.1. Screen the
23、 sample on a 6.3-mm sieve in order to divide it into plus 6.3-mm and minus 6.3-mm portions. If an excessive amount of silt or clay adheres to the plus 6.3-mm material, it should be screened again after additional drying. If the sample does not have any plus 6.3-mm particles, proceed in accordance wi
24、th Section 7.4. Note 4During this initial and subsequent sieving, care should be exercised to prevent “overloading” the 6.3 mm and any other sieve. This condition exists when an excessive amount of soil is placed on the sieve, leaving an insufficient amount of sieve openings for the material to pass
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