AASHTO T 224-2010 Standard Method of Test for Correction for Coarse Particles in the Soil Compaction Test.pdf
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1、TS-1b T 224-1 AASHTO Standard Method of Test for Correction for Coarse Particles in the Soil Compaction Test AASHTO Designation: T 224-10 1. SCOPE 1.1. This method describes a procedure for adjusting the densities of soil and soil aggregate mixtures to compensate for differing percentages of coarse
2、particles retained on either the 4.75-mm (No. 4) or 19.0-mm (3/4-in.) sieve. This is necessary to adjust either the field wet density to a dry density of the material passing these sieves or the reverse, by adjusting the lab density to the field density when doing compaction control testing. Compari
3、sons are made by comparing the field densities with the maximum dry density as determined by T 99 or T 180. 1.2. Two methods are available for correction: either lab-to-field or field-to-lab density. The method specified in Section 4.1 adjusts the compacted lab density to the field density. The meth
4、od specified in Section 4.2 adjusts the field wet density to dry density of the fine fraction and compares its results with the compacted lab density. 1.3. This test method applies to soil mixtures that have 40 percent or less retained on the 4.75-mm (No. 4) sieve, when Method A or B of T 99 or T 18
5、0 is used, or mixtures that have 30 percent or less retained on the 19.0-mm (3/4-in.) sieve, when Method C or D of T 99 or T 180 is used. The material retained on these sieves shall be defined as oversize particles (coarse particles). 1.4. This method applies to soils with any percentage of oversize
6、 particles as specified in Section 1.3. However, the correction may not be of practical significance for soils with only a small percentage of oversize particles. The person or agency specifying this method shall specify a minimum percentage of oversize particles below which the method need not be a
7、pplied. If a minimum percentage is not specified, this method shall be applied to samples with more than 5 percent by weight of oversize particles. 1.5. The following applies to all specified limits in this standard: For the purposes of determining conformance with these specifications, an observed
8、value or a calculated value shall be rounded off to the nearest 10 kg/m3(1 pcf), according to ASTM E 29. 1.6. The values stated in SI units are to be regarded as the standard. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: T 85, Specific Gravity and Absorption of Coarse Aggregate T 99, Moisture-Dens
9、ity Relations of Soils Using a 2.5-kg (5.5-lb) Rammer and a 305-mm (12-in.) Drop T 180, Moisture-Density Relations of Soils Using a 4.54-kg (10-lb) Rammer and a 457-mm (18-in.) Drop 2013 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a v
10、iolation of applicable law.TS-1b T 224-2 AASHTO T 217, Determination of Moisture in Soils by Means of a Calcium Carbide Gas Pressure Moisture Tester T 255, Total Evaporable Moisture Content of Aggregate by Drying T 265, Laboratory Determination of Moisture Content of Soils T 272, Family of CurvesOne
11、-Point Method 2.2. ASTM Standard: E 29, Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications 3. OUTLINE OF METHOD 3.1. When Method A or Method B of T 99 or T 180 is employed, the total field wet density is compared with the dry density of the soil
12、particles passing the 4.75-mm (No. 4) sieve. 3.2. When Method C or Method D of T 99 or T 180 is employed, the total field wet density is compared with the dry density of the soil particles passing the 19.0-mm (3/4-in.) sieve. 3.3. Significant figures are as follows: 3.3.1. Adjusted wet density of th
13、e fine material passing the 4.75-mm (No. 4) sieve, Methods A and B; or 19.0-mm (3/4-in.) sieve, Methods C and D; (Df) 1 kg/m3(0.1 pcf). 3.3.2. Bulk specific gravity of the coarse material retained on the 4.75-mm (No. 4) sieve, Methods A and B; or 19.0-mm (3/4-in.) sieve, Methods C and D; (Gm) 0.01.
14、3.3.3. Percent by mass, of coarse and fine particles, of material retained and passing the 4.75-mm (No. 4) sieve, Methods A and B; or 19.0-mm (3/4-in.) sieve, Methods C and D; (Pc) and (Pf) 0.1 percent. 3.3.4. In-place (field) wet density of the total sample (D) 1 kg/m3(0.1 pcf). 4. ADJUSTMENT EQUAT
15、ION 4.1. Compacted Laboratory Dry Density Corrected to Field Dry Density: 4.1.1. This section corrects the laboratory density obtained by either T 99 or T 180 for the moisture content and density of the material retained on the 4.75-mm (No. 4) sieve, Methods A and B; or the material retained on the
16、19.0-mm (3/4-in.) sieve, Methods C and D. The maximum lab dry density, adjusted for oversized particles and total moisture content, is compared with the field dry density and field moisture content. This method is limited to field samples containing 40 percent or less for material retained on the 4.
17、75-mm (No. 4) sieve, Methods A and B; or 30 percent or less of material retained on the 19.0-mm (3/4-in.) sieve, Methods C and D. 4.1.2. Determine the moisture content of the fine particles and oversize particles of the material used during compaction. The moisture contents can be determined by T 26
18、5, T 217, or T 255. The moisture content of the oversize material retained on the sieve can be assumed to be 2 percent for most construction applications. If the moisture content of the oversized material is generally known, substitute that moisture content in the calculations. It is recommended tha
19、t if drying equipment is available, determine the actual moisture contents. Calculate the moisture contents according to the calculations specified in T 265. 2013 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable l
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