AASHTO T 97-2014 Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third- Point Loading).pdf
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1、Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading) AASHTO Designation: T 97-14 ASTM Designation: C 78-08 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-3c T 97-1
2、 AASHTO Standard Method of Test for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading) AASHTO Designation: T 97-14 ASTM Designation: C 78-08 1. SCOPE 1.1. This test method covers determination of the flexural strength of concrete by the use of a simple beam with third-point l
3、oading. 1.2. The values stated in SI units are to be regarded as the standard. Note 1For methods of molding concrete specimens, see T 23 and R 39. 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 the user of this
4、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: R 39, Making and Curing Concrete Test Specimens in the Laboratory T 23, Making and Curing Concrete Test Specimens in th
5、e Field T 24M/T 24, Obtaining and Testing Drilled Cores and Sawed Beams of Concrete T 231, Capping Cylindrical Concrete Specimens 2.2. ASTM Standards: C 31/C 31M, Standard Practice for Making and Curing Concrete Test Specimens in the Field C 42/C 42M, Standard Test Method for Obtaining and Testing D
6、rilled Cores and Sawed Beams of Concrete C 192/C 192M, Standard Practice for Making and Curing Concrete Test Specimens in the Laboratory C 617/C 617M, Standard Practice for Capping Cylindrical Concrete Specimens C 1077, Standard Practice for Agencies Testing Concrete and Concrete Aggregates for Use
7、in Construction and Criteria for Testing Agency Evaluation E 4, Standard Practices for Force Verification of Testing Machines 2.3. TRB Document: Tanesi, J., A. Ardani, and J. Leavitt. Reducing the Specimen Size of the AASHTO T 97 Concrete Flexural Strength Test for Safety and Ease of Handling. In Tr
8、ansportation Research Record 2342: Journal of the Transportation Research Board. Transportation Research Board of National Academies, Washington, DC, 2013, pp. 99105. 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of app
9、licable law.TS-3c T 97-2 AASHTO 3. SIGNIFICANCE AND USE 3.1. This test method is used to determine the flexural strength of specimens prepared and cured in accordance with T 23, T 24M/T 24, or R 39. Results are calculated and reported as the modulus of rupture. The strength determined will vary wher
10、e there are differences in specimen size, preparation, moisture condition, curing, or where the beam has been molded or sawed to size. 3.2. The result of this test method may be used to determine compliance with specifications or as a basis for proportioning, mixing, and placement operations. It is
11、used in testing concrete for construction of slabs and pavements. 4. APPARATUS 4.1. The testing machine shall conform to the requirements of sections on Basis of Verifications, Corrections, and Time Interval Between Verification of ASTM E 4. Hand-operated testing machines having pumps that do not pr
12、ovide a continuous loading in one stroke are not permitted. Motorized pumps or hand-operated positive displacement pumps having sufficient volume in one continuous stroke to complete a test without requiring replenishment are permitted and shall be capable of applying loads at a uniform rate without
13、 shock or interruption. 4.2. Loading ApparatusThe third-point loading method shall be used in making flexure tests of concrete employing bearing blocks, which will ensure that forces applied to the beam will be perpendicular to the face of the specimen and applied without eccentricity. A diagram of
14、an apparatus that accomplishes this purpose is shown in Figure 1. Notes: 1. 1 in. = 25.4 mm. 2. This apparatus may be used inverted. If the testing machine applies force through a spherically seated head, the center pivot may be omitted, provided one load-applying block pivots on a rod and the other
15、 on a ball. Figure 1Diagrammatic View of a Suitable Apparatus for Flexure Test of Concrete by Third-Point Loading Method 4.2.1. All apparatus for making flexure tests of concrete should be capable of maintaining the specified span length and distances between load-applying blocks and support blocks
16、constant within 1.3 mm (0.05 in.). Head ofTesting MachineSteel Ball25 mm minSteel RodBed ofTesting Machine25 mm minOptional Positions forOne Steel Rod andOne Steel BallLoad-Applyingand Support BlocksSteel BallRigid Loading Structure or,if it is a loading accessory,Steel Plate or ChannelSpan Length,
17、LL/3 L/3 L/3Specimend=L/3 2014 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 97-3 AASHTO 4.2.2. The ratio of the horizontal distance between the point of application of the load and the point of app
18、lication of the nearest reaction to the depth of the beam shall be 1.0 0.03. 4.2.3. If an apparatus similar to that illustrated in Figure 1 is used: 4.2.3.1. The load-applying and support blocks should not be more than 64 mm (21/2in.) high, measured from the center or the axis of pivot, and should e
19、xtend entirely across or beyond the full width of the specimen. Each case-hardened bearing surface in contact with the specimen shall not depart from a plane by more than 0.05 mm (0.002 in.) and should be a portion of a cylinder, the axis of which is coincidental with either the axis of the rod or c
20、enter of the ball, whichever the block is pivoted upon. The angle subtended by the curved surface of each block should be at least 45 degrees (0.79 rad). 4.2.3.2. The load-applying and support blocks should be maintained in a vertical position and in contact with the rod or ball by means of spring-l
21、oaded screws that hold them in contact with the pivot rod or ball. 4.2.3.3. The uppermost bearing plate and centerpoint ball in Figure 1 may be omitted when a spherically seated bearing block is used, provided one rod and one ball are used as pivots for the upper load-applying blocks. 5. TESTING 5.1
22、. The test specimen shall conform to all requirements of T 23, T 24M/T 24, and R 39. The specimen shall have a test span within 2 percent of being three times its depth as tested. The sides of the specimen shall be at right angles with the top and bottom. All surfaces shall be smooth and free of sca
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