AASHTO T 324-2014 Standard Method of Test for Hamburg Wheel-Track Testing of Compacted Hot Mix Asphalt (HMA).pdf
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1、Standard Method of Test for Hamburg Wheel-Track Testing of Compacted Hot Mix Asphalt (HMA) AASHTO Designation: T 324-14 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-2c T 324-1 AASHTO Standard Method of Test for
2、Hamburg Wheel-Track Testing of Compacted Hot Mix Asphalt (HMA) AASHTO Designation: T 324-14 1. SCOPE 1.1. This test method describes a procedure for testing the rutting and moisture-susceptibility of hot mix asphalt (HMA) pavement samples in the Hamburg Wheel-Tracking Device. 1.2. The method describ
3、es the testing of submerged, compacted HMA in a reciprocating rolling-wheel device. This test provides information about the rate of permanent deformation from a moving, concentrated load. A laboratory compactor has been designed to prepare slab specimens. Also, the Superpavegyratory compactor (SGC)
4、 has been designed to compact specimens in the laboratory. Alternatively, field cores having a diameter of 150 mm (6 in.), 250 mm (10 in.), or 300 mm (12 in.), or saw-cut slab specimens may be tested. 1.3. The test method is used to determine the premature failure susceptibility of HMA due to weakne
5、ss in the aggregate structure, inadequate binder stiffness, or moisture damage. This test method measures the rut depth and number of passes to failure. 1.4. This test method measures the potential for moisture damage effects because the specimens are submerged in temperature-controlled water during
6、 loading. 1.5. This 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 establish appropriate safety and health practices and determ
7、ine the applicability of regulatory limitations prior to use. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: R 30, Mixture Conditioning of Hot Mix Asphalt (HMA) T 166, Bulk Specific Gravity (Gmb) of Compacted Hot Mix Asphalt (HMA) Using Saturated Surface-Dry Specimens T 168, Sampling Bituminous Pavi
8、ng Mixtures T 209, Theoretical Maximum Specific Gravity (Gmm) and Density of Hot Mix Asphalt (HMA) T 269, Percent Air Voids in Compacted Dense and Open Asphalt Mixtures T 312, Preparing and Determining the Density of Asphalt Mixture Specimens by Means of the Superpave Gyratory Compactor 2.2. ASTM St
9、andard: D 6027, Standard Practice for Calibrating Linear Displacement Transducers for Geotechnical Purposes (Withdrawn 2013) 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2c T 324-2 AASHTO 3. SIGNIF
10、ICANCE AND USE 3.1. This test measures the rutting and moisture susceptibility of an HMA specimen. 4. SUMMARY OF METHOD 4.1. A laboratory-compacted specimen of HMA, a saw-cut slab specimen, or a core taken from a compacted pavement is repetitively loaded using a reciprocating steel wheel. The specim
11、en is submerged in a temperature-controlled water bath at a temperature specified by the agency. The deformation of the specimen, caused by the wheel loading, is measured. 4.2. The impression is plotted as a function of the number of wheel passes. An abrupt increase in the rate of deformation may co
12、incide with stripping of the asphalt binder from the aggregate in the HMA specimen. 5. APPARATUS 5.1. Hamburg Wheel-Tracking MachineAn electrically powered machine capable of moving a 203.2-mm (8-in.) diameter, 47-mm (1.85-in.) wide steel wheel over a test specimen. The load on the wheel is 705 4.5
13、N (158 1.0 lb). The wheel reciprocates over the specimen, with the position varying sinusoidally over time. The wheel makes 52 2 passes across the specimen per minute. The maximum speed of the wheel, reached at the midpoint of the specimen, is approximately 0.305 m/s (1 ft/s). 5.2. Temperature Contr
14、ol SystemA water bath capable of controlling the temperature within 1.0C (1.8F) over a range of 25 to 70C (77 to 158F) with a mechanical circulating system stabilizing the temperature within the specimen tank. 5.3. Impression Measurement SystemA linear variable differential transducer (LVDT) device
15、capable of measuring the depth of the impression (rut) of the wheel at the center 1/2in. along the length of the wheels path, to within 0.15 mm (0.006 in.), over a minimum range of 0 to 20 mm (0 to 0.8 in.). The system measures the rut depth, without stopping the wheel, at least every 400 passes. Ru
16、t depth is expressed as a function of the wheel passes. Note 1Users may require the capability of impression measurements at different intervals across the length of the wheels path on the test specimen. 5.4. Wheel Pass CounterA non-contacting solenoid that counts each wheel pass over the specimen.
17、The signal from this counter is coupled to the wheel impression measurement, allowing for the rut depth to be expressed as a function of the wheel passes. 5.5. Slab Specimen Mounting SystemA stainless steel tray that is mounted rigidly to the machine. The mounting system must restrict shifting of th
18、e specimen to within 0.5 mm (0.02 in.) during testing and must suspend the specimen to provide a minimum of 20 mm (0.8 in.) of free circulating water on all sides. 5.6. Cylindrical Specimen Mounting SystemAn assembly consisting of two high-density polyethylene (HDPE) molds or plaster of paris in acc
19、ordance with Section 8 to secure the specimen (as shown in Figures 1 and 2) placed in a stainless steel tray that is mounted rigidly to the machine. This mounting system must restrict shifting of the specimen to within 0.5 mm (0.02 in.) during testing and must suspend the specimen to provide a minim
20、um of 20 mm (0.8 in.) of free circulating water on all sides. 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2c T 324-3 AASHTO Figure 1Cylindrical Specimen Mounting System Figure 2Schematic of Cylind
21、rical Specimen Mounting System High-Density Polyethlylene MoldsThickness = 60 1 mm (2.36 0.04 in.) or 40 1 mm (1.57 0.04 in.)150mm(6 in.)150mm(6 in.)*Varies*Varies*Varies*VariesGap Width with HDPE Molds,7.5 mm (0.30 in.) maximum* Dimension may vary depending on manufacturer.No Gap Required withPlast
22、er of Paris 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-2c T 324-4 AASHTO 5.7. Linear Kneading CompactorA hydraulic-powered unit that uses a series of vertically aligned steel plates to compact mo
23、lded asphalt mixtures into flat, rectangular slabs of predetermined thickness and density. 5.8. BalanceBalance of 12 000-g capacity, accurate to 0.1 g. 5.9. OvensOvens for heating aggregate and asphalt binders. 5.10. Superpave Gyratory CompactorSuperpave gyratory compactor (SGC) and molds conforming
24、 to T 312. 5.11. Bowls, spoon, spatula, etc. 6. SPECIMEN PREPARATION 6.1. Number of Test SpecimensPrepare two test specimens for each testeither slab specimens or cylinders. 6.2. Laboratory-Produced HMA: 6.2.1. Batch mixture proportions in accordance with the desired job mix formula. 6.2.2. Use the
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