AASHTO T 253-2002 Standard Method of Test for Coated Dowel Bars《密封暗销杆的标准测试方法》.pdf
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1、Standard Method of Test for Coated Dowel Bars AASHTO Designation: T 253-02 (2016) Release: Group 2 (June 2016) American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-4g T 253-1 AASHTO Standard Method of Test for Coated Do
2、wel Bars AASHTO Designation: T 253-02 (2016) Release: Group 2 (June 2016) 1. SCOPE 1.1. These methods are designed to test the qualifications of the organic coating of corrosion-resistant dowel bars to withstand the effects of weathering, deicing chemicals, and the abrading and loading stresses expe
3、rienced in field joints. 1.2. The units of measure to be used shall be either SI units or inch-pound units (shown in parentheses in this standard) depending on the units used in the applicable material specification. 1.3. The values stated in SI units are to be regarded as the standard. 2. REFERENCE
4、D DOCUMENTS 2.1. AASHTO Standards: R 39, Making and Curing Concrete Test Specimens in the Laboratory T 106M/T 106, Compressive Strength of Hydraulic Cement Mortar (Using 50-mm or 2-in. Cube Specimens) 2.2. ASTM Standards: D1474/D1474M, Standard Test Methods for Indentation Hardness of Organic Coatin
5、gs G8, Standard Test Methods for Cathodic Disbonding of Pipeline Coatings G12, Standard Test Method for Nondestructive Measurement of Film Thickness of Pipeline Coatings on Steel (withdrawn 2013) G14, Standard Test Method for Impact Resistance of Pipeline Coatings (Falling Weight Test) G20, Standard
6、 Test Method for Chemical Resistance of Pipeline Coatings 3. MATERIALS AND APPARATUS 3.1. The concrete design and constituents shall comply with the procedure and specification stated by the purchasing or specifying agency. 3.2. Suitable containers, molds, and miscellaneous concrete mixing equipment
7、 necessary for mixing and casting the simulated doweled joints for load, pullout, and corrosion tests to meet condition stated in R 39. 3.3. An abradometer capable of operating at 60 to 70 double strokes per minute using 100-mm- (4-in.) long strokes. 2016 by the American Association of State Highway
8、 and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-4g T 253-2 AASHTO 3.4. Universal test machine capable of operating accurately in the 0- to 45-kN (10,000 lbf) ranges and capable of controlled stress and strain rate loading. 3.5. Suitable hold-down d
9、evices for positioning and holding the casting in place without rotation during the flexure tests. 3.6. Freezethaw equipment of sufficient capacity to handle the pullout and corrosionabrasion test specimens. 3.7. Sufficient quantities of chemical to maintain solution for corrosion tests. 4. PREPARAT
10、ION OF SAMPLES 4.1. The coated dowels for deflection tests may be in support baskets or loose. The coated dowels for the remainder of tests shall be loose. 4.2. Type Acoated dowels shall be cast without additional coating of any kind. Type Bcoated dowels shall be covered before casting with the debo
11、nding agent specified by the coating manufacturer. 4.3. The prepared dowels shall be cast in the appropriate molds specified for the various tests. 5. LOAD-DEFLECTION TEST PROCEDURE 5.1. Six dowels with basket assemblies, if any, will be utilized in three load-deflection tests. The test will be cond
12、ucted in accordance with the following procedures: 5.2. Two dowels with basket assemblies, or without basket assemblies in case of loose dowels, shall be cast into each concrete test specimen in a manner to simulate two 305-mm- (12-in.) long highway contraction joints. (See Figure 1.) The contractio
13、n joints are formed by dividing the mold into three sections with two-piece plates 9.5 mm (3/8in.) thick. After the mold has been filled, the concrete shall be consolidated by vibration. 5.3. The concrete test specimens shall be made and cured in accordance with R 39. The specimens shall be removed
14、from the molds after a 24-h curing period and shall be further moist-cured for a total of 14 days. 5.4. On completion of curing, the simulated joint shall be placed in a testing machine and loaded as illustrated in Figure 1. The end sections will be provided with suitable hold-down devices to preven
15、t rotation. The load shall be applied at the rate of 8.9 kN/min (2000 lbf/min) until a load of 17.8 kN (4000 lbf) is obtained. The relative deflection between the loaded center section and the supported stationary ends will be measured under the 17.8-kN (4000-lbf) maximum load. Record maximum relati
16、ve deflection under load. 2016 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-4g T 253-3 AASHTO 304.89.5 JointPavementDepth9.5 JointMax AllowableDeflection = 0.25across JointMax AllowableDeflection = 0.2
17、5across JointUniform LoadReaction ReactionNote: All dimensions shown in millimeters unless otherwise noted. Figure 1Load-Deflection Test Specimen and Diagram 6. PULLOUT TEST PROCEDURE 6.1. Three dowels shall be tested in accordance with the following procedures: 6.2. For one half of its length, each
18、 dowel shall be cast into a 152.4-mm (6-in.) diameter concrete cylinder. Care shall be taken to assure that the dowels are on the centerline axis of the concrete cylinder. The concrete shall be consolidated by vibration. 6.3. Cure the molded specimens in accordance with R 39. Remove the molds from t
19、he specimens after the first 24 h of a 48-h moist-curing period. 6.4. After 48-h curing 2 h, place the concrete cylinder in the testing machine and apply a tensile load parallel to the axis of the dowel. Record the maximum pullout tensile load for the first 12.7 mm (0.5 in.) of movement for each of
20、the three test specimens. The testing machine shall be adjusted to a free-running speed of 0.76 mm/min (0.030 in./min) prior to performing this test and this setting shall be maintained during the test. 6.5. After the first 12.7 mm (0.5 in.) of movement of the dowels, the test specimens will be furt
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