AASHTO T 288-2012 Standard Method of Test for Determining Minimum Laboratory Soil Resistivity.pdf
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1、Standard Method of Test for Determining Minimum Laboratory Soil Resistivity AASHTO Designation: T 288-12 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-1a T 288-1 AASHTO Standard Method of Test for Determining Min
2、imum Laboratory Soil Resistivity AASHTO Designation: T 288-12 1. SCOPE 1.1. This test method covers the laboratory determination for the minimum resistivity of a soil. 1.2. The principal use of this test method is to determine a soils corrosivity and thereby identify the conditions under which the c
3、orrosion of metals in soil may be sharply accentuated. This standard is divided into two parts. The first part involves obtaining and preparing the sample to size for testing, and the second part describes the test method for determining the minimum laboratory soil resistivity. Note 1When less than
4、5 percent of a material passes the No.10 sieve, this test method may not be indicative of the corrosion potential of the material. 1.3. The values stated in SI units are to be regarded as the standard. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 92, Wire-Cloth Sieves for Testing Purposes M 231,
5、 Weighing Devices Used in the Testing of Materials T 2, Sampling of Aggregates T 248, Reducing Samples of Aggregate to Testing Size 2.2. ASTM Standard: E29, Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications PART IINITIAL PREPARATION OF TEST SAMP
6、LES 3. SCOPE 3.1. This method covers the dry preparation of soil and soil-aggregate samples, as received from the field, for soil resistivity determination. 3.2. The following applies to all specified limits in this standard: for the purpose of determining conformance with these specifications, an o
7、bserved value or calculated value shall be rounded off “to the nearest unit” in the last right-hand place of figures used in expressing the limiting value, in accordance with ASTM E29. 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is
8、a violation of applicable law.TS-1a T 288-2 AASHTO 4. APPARATUS 4.1. BalanceThe balance shall have sufficient capacity and be readable to 0.1 percent of the sample mass, or better, and conform to the requirements of M 231. 4.2. Drying ApparatusAny suitable device capable of drying samples at a tempe
9、rature not exceeding 60C (140F). 4.3. SievesA series of the following sizes: 6.3 mm (1/4in.), 4.75 mm (No. 4), 2.00 mm (No. 10), and pan as required for preparing the sample for the minimum soil resistivity test. The sieves shall conform to M 92, Wire-Cloth Sieves for Testing Purposes (see Note 2).
10、4.4. Pulverizing ApparatusEither a mortar and rubber-covered pestle or any device suitable for breaking up the aggregations of soil particles without reducing the size of the individual grains of soil (see Note 3). 4.5. Sample SplitterA suitable riffle sampler or sample splitter for proportional spl
11、itting of the sample and capable of obtaining representative portions of the sample without appreciable loss of fines. The width of the container used to feed the riffle sampler splitter should be equal to the total combined width of the riffle chutes. Proportional splitting of the sample on a canva
12、s cloth is also permitted. Note 2The sieve sizes that have an opening size of 6.3 mm (1/4in.) or larger shall conform to the requirements specified in M 92, excluding column No. 7. This exclusion permits the use of heavier screens in nonstandard frames that are larger than the 203.2 mm (8 in.) round
13、 frames. Note 3Other types of apparatus are satisfactory if the aggregations of soil particles are broken up without reducing the size of the individual grains. 5. SAMPLE SIZE 5.1. The amount of soil material required to perform the minimum soil resistivity test is as follows: Test Approx Mass (g) S
14、ieve Size Finer Than: Resistivity 1500 2.00 mm (No. 10) 6. INITIAL PREPARATION OF TEST SAMPLES 6.1. The sample as received from the field shall be dried in air or a drying apparatus not exceeding 60C (140F). A representative test sample of the amount required to perform the minimum soil resistivity
15、test shall then be obtained with the sampler, or by splitting or quartering. The aggregations of soil particles shall then be broken up in the pulverizing apparatus until the aggregation of soil particles is separated into individual grains in such a way as to avoid reducing the natural size of the
16、individual particles (see Note 4). Note 4Samples dried in an oven or other drying apparatus at a temperature not exceeding 60C (140F) are considered to be air dried. 6.2. The portion of the dried sample selected for minimum soil resistivity testing shall be separated into fractions by one of the fol
17、lowing methods: 6.2.1. Alternate Method Using 2.0-mm (No. 10) SieveThe dried sample shall be separated into two fractions using a 2.00-mm sieve. The fraction retained on the sieve shall be ground with a pulverizing apparatus until the aggregations of the soil particles are broken into separate grain
18、s. The ground soil shall then be separated into two fractions using the 2.00-mm sieve. 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a T 288-3 AASHTO 6.2.2. Alternate Method Using 4.75-mm and 2.00-
19、mm (No. 4 and No. 10) SievesThe dried sample shall first be separated into two fractions using a 4.75-mm sieve. The fraction retained on this sieve shall be ground with a pulverizing apparatus until the aggregations of soil particles are broken into separate grains and again separated on the 4.75-mm
20、 sieve. The fraction passing the 4.75-mm sieve shall be mixed thoroughly and, by the use of the sampler or by splitting and quartering, a representative portion adequate for testing shall be obtained. This split-off portion shall then be separated on the 2.00-mm sieve, and processed as in Section 6.
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