AASHTO T 167-2010 Standard Method of Test for Compressive Strength of Hot Mix Asphalt.pdf
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1、Standard Method of Test for Compressive Strength of Hot Mix Asphalt AASHTO Designation: T 167-10 (2015) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-2d T 167-1 AASHTO Standard Method of Test for Compressive Stre
2、ngth of Hot Mix Asphalt AASHTO Designation: T 167-10 (2015) 1. SCOPE 1.1. This test method provides a method for measuring the compressive strength of compacted asphalt mixtures. It is for use with specimens weighed, batched, mixed, and fabricated in the laboratory, as well as for mixtures manufactu
3、red in a hot mix plant. 1.2. The values stated in SI units are to be regarded as the standard. The values given in parentheses are provided for information only. 1.3. This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of th
4、e user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 231, Weighing Devices Used in the Testing of Materials T 2, Sampling of Aggregates T 27, Sieve Analysi
5、s of Fine and Coarse Aggregates R 66, Sampling Asphalt Materials T 166, Bulk Specific Gravity (Gmb) of Compacted Hot Mix Asphalt (HMA) Using Saturated Surface-Dry Specimens T 168, Sampling Bituminous Paving Mixtures T 201, Kinematic Viscosity of Asphalts (Bitumens) T 209, Theoretical Maximum Specifi
6、c Gravity (Gmm) and Density of Hot Mix Asphalt (HMA) T 248, Reducing Samples of Aggregate to Testing Size T 269, Percent Air Voids in Compacted Dense and Open Asphalt Mixtures T 316, Viscosity Determination of Asphalt Binder Using Rotational Viscometer 2.2. ASTM Standards: C670, Standard Practice fo
7、r Preparing Precision and Bias Statements for Test Methods for Construction Materials D341, Standard Practice for Viscosity-Temperature Charts for Liquid Petroleum Products D1075, Standard Test Method for Effect of Water on Compressive Strength of Compacted Bituminous Mixtures D2493/D2493M, Standard
8、 Viscosity-Temperature Chart for Asphalts E4, Standard Practices for Force Verification of Testing Machines 2015 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2d T 167-2 AASHTO 2.3. FHWA Standard: FP-03,
9、 Standard Specifications for Construction of Roads and Bridges on Federal Highway Projects 3. SIGNIFICANCE AND USE 3.1. The compressive strength of specimens prepared and tested by this test method along with density and voids properties are used for laboratory mix design of asphalt mixtures. 3.1.1.
10、 This test method also describes methods that can be used for molding, curing, and testing of specimens being evaluated by ASTM D1075. 3.1.2. When used in conjunction with other mixture physical properties, the compressive strength may contribute to the overall mixture characterization and is one fa
11、ctor determining its suitability for use under given loading conditions and environment as a highway paving material. 3.2. Typical values of minimum compressive strengths for design of asphalt mixtures by this test method for different traffic densities are given in Table 402-1 of the “Standard Spec
12、ifications for Construction of Roads and Bridges on Federal Highway Projects, 2003.” Some state departments of transportation and federal agencies have specific requirements of their own based on their experience with this test method. The agencies should be consulted for their specific requirements
13、 if work is to meet their standards. 3.3. Reheated field mixtures are permissible in this test method, but the resulting compressive strengths will be higher than for newly prepared mixtures due to the change in the binder viscosity, an element of the compressive strength as measured under these loa
14、ding conditions and temperature (Note 4). 4. APPARATUS 4.1. Molds and PlungersMolds and plungers shall be as follows: 4.1.1. The molding cylinder shall have sufficient height to allow fabrication of a 101.6-by-101.6-mm (4-by-4-in.) specimen. It shall have an inside diameter of 101.60 to 101.73 mm (4
15、.000 to 4.005 in.) and a nominal wall thickness of 6.4 mm (1/4in.). 4.1.2. The mold plungers shall pass through the mold freely and shall have a diameter within 1.27 mm (0.050 in.) of the molds inside diameter. The plungers may be solid, hollow, or other structure as long as the ends are at least 12
16、.7 mm (1/2in.) thick and are at a right angle to the mold wall. The bottom plunger must be within 50 4 mm (2 1/8in.) high, but the top plunger may be any suitable height. 4.1.3. Specimens Other Than 101.6 by 101.6 mm (4 by 4 in.)Molds and plungers for fabricating these size specimens may be used in
17、accordance with Section 6. 4.2. SupportsTemporary supports shall be provided to raise the molding cylinder 25.4 mm (1 in.) during the molding operation. Steel bars 25.4 mm (1 in.) square are suitable. 4.3. Testing MachineThe testing machine must be of any type of sufficient capacity that will provid
18、e a range of accurately controllable rates of vertical deformation. Because the rate of vertical deformation for the compression test is specified as 0.05 mm/minmm (0.05 in./minin.) of specimen height, and it may be necessary to test specimens ranging in size from 50.8 by 50.8 mm 2015 by the America
19、n Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2d T 167-3 AASHTO (2 by 2 in.) to perhaps 203.2 by 203.2 mm (8 by 8 in.) in order to maintain the specified minimum ratio of specimen diameter to particle size, the testin
20、g machine should have a range of controlled speeds covering at least 2.5 mm (0.1 in.)/min for 50.8-mm (2-in.) specimens to 10.2 mm (0.4 in.)/min for 203.2-mm (8-in.) specimens. The testing machine shall conform to the requirements of ASTM E4. The testing machine shall be equipped with two steel bear
21、ing blocks with hardened faces, one of which is spherically seated and the other plain. The spherically seated block shall be mounted to bear on the upper surface of the test specimen and the plain block shall rest on the platen of the testing machine to form a seat for the specimen. The bearing fac
22、es of the plates shall have a diameter slightly greater than that of the largest specimens to be tested. The bearing faces, when new, shall not depart from a true plane by more than 0.0127 mm (0.0005 in.) at any point and shall be maintained within a permissible variation limit of 0.025 mm (0.001 in
23、.). In the spherically seated block, the center of the sphere shall coincide with the center of the bearing face. The movable portion of this block shall be held closely in the spherical seat, but the design shall be such that the bearing face can be rotated freely and tilted through small angles in
24、 any direction. 4.4. OvenThe oven used in the preparation of materials or reheating of mixtures shall be controllable within 3C (5F) of any specified temperature above ambient up to 200C (392F). 4.5. Hot PlateA small hot plate equipped with a rheostat shall be provided for supplying sufficient heat
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