AASHTO T 273-1986 Standard Method of Test for Soil Suction《土壤吸入的标准测试方法》.pdf
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1、Standard Method of Test for Soil Suction AASHTO Designation: T 273-86 (2013) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-1a T 273-1 AASHTO Standard Method of Test for Soil Suction AASHTO Designation: T 273-86 (
2、2013) 1. SCOPE 1.1. This method covers the procedure for determining total soil suction force using thermocouple psychrometers. The test results of this method are to be used in conjunction with T 258. 1.2. The thermocouple psychrometer measures the relative humidity in the soil by a technique calle
3、d Peltier cooling. By causing a small direct current of approximately four to eight milliamperes to flow through the thermocouple junction for approximately 15 s in the correct direction, this junction will cool and water will condense on it when the dewpoint temperature is reached. Condensation of
4、this water inhibits further cooling of the junction and the voltage difference developed between the thermocouple and the reference junctions can be measured using a microvoltmeter. With proper calibration, the thermocouple psychrometer output in microvolts can be converted directly to soil suction
5、in convenient units of pressure. Typical thermocouple psychrometer output voltages vary from less than one microvolt for relative humidities close to 100 percent or total soil suction less than 95.76 kPa (1 tsf) to about 25 microvolts for relative humidities of about 95 percent or total soil suction
6、s of about 5746 kPa (60 tsf). 1.3. The following applies to all specified limits in this standard: For the purposes of determining conformance with these specifications, an observed value or a calculated value shall be rounded off “to the nearest unit” in the last right-hand place of figures used in
7、 expressing the limiting value, in accordance with ASTM E29. 1.4. The values stated in SI units are to be regarded as the standard. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: T 207, Thin-Walled Tube Sampling of Soils T 233, Density of Soil In-Place by Block, Chunk, or Core Sampling T 258, Determ
8、ining Expansive Soils 2.2. ASTM Standard: E29, Standard Practice for Using Significant Digits in Test Data to Determine Conformance with Specifications 3. TERMINOLOGY 3.1. Definitions: 3.1.1. matrix suctionthe matrix suction is the result of clay mineral surface attractive forces for water and catio
9、ns (i.e., ion hydration) and the surface tension effects of water in soil. The matrix suction is both water content and surcharge pressure dependent. 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a
10、 T 273-2 AASHTO 3.1.2. osmotic suctionthe osmotic suction arises from the presence of soluble salts in the pore water of the soil and is the result of the difference in the ion concentration between the pore water and the clay particles double-layer water. Osmotic suction is independent of water con
11、tent and surcharge pressure. 3.1.3. soil suctionsoil suction is a quantity that can be used to characterize the effect of moisture on the volume and strength properties of soils; that is, soil suction quantitatively describes the interaction between soil particles and water, which determines the phy
12、sical behavior of the soil mass. Soil suction, expressed in units of pressure, is a measure of the pulling force exerted on water by the soil mass. 3.1.4. total soil suctiontotal soil suction, as determined by this method of test, is the force responsible for soil water retention and is the sum of t
13、he matrix and osmotic components. 4. APPARATUS 4.1. MicrovoltmeterMinimum range of 30 V and readable to the nearest 0.01 V. 4.2. MilliammeterMinimum range of 0 to 25mA. 4.3. Thermocouple PsychrometersWESCOR Model PT 51-10, or equal. 4.4. Polystyrene Thermal ContainersChest or box insulated with at l
14、east 38.1 mm (1.5 in.) of foamed polystyrene. One container approximately 304.8 mm by 304.8 mm by 381 mm (12 in. by 12 in. by 15 in.) will accommodate six samples. 4.5. Sample Containers0.5-L (1-pt) metal sample containers with interior coated with melted wax to prevent corrosion. One-half-liter pai
15、nt cans are satisfactory. 4.6. Rubber StoppersSize 131/2rubber stoppers with an approximately 6-mm (0.25-in.) diameter hole through the center. 4.7. Electrical SuppliesSwitch box, selector switches, electrical connectors, two 1.5-V dry cell batteries, and a 1 K ohm variable potentiometer. 4.8. Calib
16、ration StandardsMinimum of three WESCOR Osmolality Standards (290, 1000, and 1800 mOs/kg) (Note 1). Standard sodium chloride solutions of various molalities may be prepared in the laboratory. 4.9. Stopwatch. 4.10. Tare Containers. 4.11. Specimen Cutting EquipmentWire saw, knife, bandsaw, etc. 4.12.
17、BalanceThe balance shall have sufficient capacity, be readable to 0.1 percent of the sample mass, or better, and conform to the requirements of M 231. Note 1mOs/kg is the abbreviation for milliosmos per kilogram. 5. ASSEMBLING EQUIPMENT 5.1. The assembled apparatus is as shown in Figure 1. The appar
18、atus should be assembled to accommodate multiple samples to be tested simultaneously. The wiring diagram shown in 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a T 273-3 AASHTO Figure 2 permits the
19、 testing of twelve samples simultaneously by utilizing a 12-position selector switch. Figure 1Soil Suction Apparatus Figure 2Wiring Diagram for Soil Suction Apparatus 5.2. The thermocouple psychrometer wires are fed through an approximately 12-mm (0.5-in.) diameter hole in the center of the thermal
20、container cover. The thermocouple psychrometer wires are then fed through the hole in the rubber stoppers so the psychrometer tips extend approximately 25 mm (1 in.) from the bottom (small diameter end) of the stopper. The protective sheathing around the psychrometer tip must form an airtight seal i
21、n the hole in the rubber stopper. 5.3. The milliammeter, dry-cell batteries, and the variable potentiometer form the cooling circuit. 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-1a T 273-4 AASHTO
22、5.4. The electrical connectors are affixed to the psychrometer wires for easy connection to the switch box. 5.5. The switches are wired so the output voltages (temperature and soil suction) can be monitored on each of the psychrometers in turn. 5.6. The rubber stoppers are placed in the metal sample
23、 containers, which are placed in the thermal containers to minimize temperature variations. The temperature inside the thermal container is monitored by a thermometer placed through the container cover. 5.7. The equipment should be kept in a room where ambient temperature variations are minimal. 6.
24、CALIBRATION OF EQUIPMENT 6.1. Place a small piece of filter paper (type and grade variable) in the bottom of each sample container along with 3 mL of the calibration standard. A minimum of three calibration standard concentrations should be used to adequately define the calibration line (i.e., 290,
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