AASHTO T 160-2017 Standard Method of Test for Length Change of Hardened Hydraulic Cement Mortar and Concrete.pdf
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1、Standard Method of Test for Length Change of Hardened Hydraulic Cement Mortar and Concrete AASHTO Designation: T 160-17 Technical Section: 3c, Hardened Concrete Release: Group 1 (April 2017) ASTM Designation: C157/C157M-14 American Association of State Highway and Transportation Officials 444 North
2、Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-3c T 160-1 AASHTO Standard Method of Test for Length Change of Hardened Hydraulic Cement Mortar and Concrete AASHTO Designation: T 160-17 Technical Section: 3c, Hardened Concrete Release: Group 1 (April 2017) ASTM Designation: C157/C157M-14 1.
3、 SCOPE 1.1. This test method covers determination of the length changes that are produced by causes other than externally applied forces and temperature changes in hardened hydraulic-cement mortar and concrete specimens made in the laboratory and exposed to controlled conditions of temperature and m
4、oisture. 1.2. The values stated in either inch-pound or SI units are to be regarded separately as standard. An exception is with regard to sieve sizes and nominal size of aggregate, in which the SI values are the standard, as stated in specification ASTM E11. Within the text, the inch-pound units ar
5、e shown in parentheses. The values stated in each system are not exact equivalents; therefore, each system must be used independently of the other, without combining values in any way. 1.3. This standard does not purport to address all of the safety concerns, if any, associated with its use. It is t
6、he responsibility of the 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 201, Mixing Rooms, Moist Cabinets, Moist Rooms, and Water Storage Tanks Used in
7、 the Testing of Hydraulic Cements and Concretes M 210M/M 210, Use of Apparatus for the Determination of Length Change of Hardened Cement Paste, Mortar, and Concrete R 39, Making and Curing Concrete Test Specimens in the Laboratory R 60, Sampling Freshly Mixed Concrete T 106M/T 106, Compressive Stren
8、gth of Hydraulic Cement Mortar (Using 50-mm or 2-in. Cube Specimens) T 119M/T 119, Slump of Hydraulic Cement Concrete T 162, Mechanical Mixing of Hydraulic Cement Pastes and Mortars of Plastic Consistency 2.2. ASTM Standards: C125, Standard Terminology Relating to Concrete and Concrete Aggregates C1
9、43/C143M, Standard Test Method for Slump of Hydraulic Cement Concrete 2017 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 160-2 AASHTO C511, Standard Specification for Mixing Rooms, Moist Cabinets, M
10、oist Rooms, and Water Storage Tanks Used in the Testing of Hydraulic Cements and Concretes C596, Standard Test Method for Drying Shrinkage of Mortar Containing Hydraulic Cement E11, Standard Specification for Woven Wire Test Sieve Cloth and Test Sieves E337, Standard Test Method for Measuring Humidi
11、ty with a Psychrometer (the Measurement of Wet- and Dry-Bulb Temperatures) 3. TERMINOLOGY 3.1. DefinitionsThe terms used in this test method are defined in the terminology of ASTM C125. 3.2. Definition of Terms Specific to This Standard: 3.2.1. length changean increase or decrease in the length of a
12、 test specimen that has been caused to change by any factor other than externally applied forces and temperature changes. 4. SIGNIFICANCE AND USE 4.1. Measurement of length change permits assessment of the potential for volumetric expansion or contraction of mortar or concrete due to various causes
13、other than applied force or temperature change. The method is particularly useful for comparative evaluation of this potential in different hydraulic-cement mortar or concrete mixtures. 4.2. This test method provides useful information for experimental purposes or for products that require testing u
14、nder nonstandard mixing, placing, handling, or curing conditions, such as high product workability or different demolding times. Standard conditions are described in Section 5.4.1. 4.3. If conditions for mixing, curing, sampling, and storage other than those specified in this method are required, th
15、ey shall be reported but are not to be considered as standard conditions of this test method. Nonstandard conditions and the reasons for departure from standard conditions shall be reported clearly and prominently with comparator values. 5. APPARATUS 5.1. Molds and Length ComparatorThe molds for cas
16、ting test specimens and the length comparator for measuring length change shall conform to the requirements of M 210M/M 210. 5.2. TamperThe tamper shall be made of a nonabsorptive, nonabrasive material such as medium-hard rubber or seasoned oak wood rendered nonabsorptive by immersion for 15 min in
17、paraffin at approximately 200C (392F) and shall have a cross section of 13 by 25 mm (0.50 by 1 in.) and a convenient length of about 150 mm (6 in.). The tamping face of the tamper shall be flat and at right angles to the length of the tamper. 5.3. Tamping RodThe tamping rod shall be a straight steel
18、 rod 10 mm (0.375 in.) in diameter and not less than 250 mm (10 in.) in length, having at least the tamping end rounded to a hemispherical tip of the same diameter. 5.4. Drying Room and ControlsA drying room with suitable racks shall be provided when storing specimens in air. The racks shall be desi
19、gned for free circulation of air around specimens, except for necessary supports, and shall be so situated with respect to the nearest wall or other obstruction that air circulation is not restricted in the intervening space. The supports shall be 2017 by the American Association of State Highway an
20、d Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3c T 160-3 AASHTO horizontal and shall consist of two nonabsorptive members not deeper than 25 mm (1 in.) and having a bearing area of not more than 6 mm (0.25 in.) in width. Conditioned air shall be circ
21、ulated into and out of the room in a uniform manner so that the specified rate of evaporation is attained adjacent to all specimens. 5.4.1. The air in the room shall be maintained at a temperature of 23.0 1.7C (73.4 3.0F) and a relative humidity of 50 4 percent. The air movement past all specimens s
22、hall be such that the rate of evaporation is 77 30 mL/24 h from an atmometer or 13 15 mL/24 h from a 400-mL Griffin low-form beaker filled to 20 mm (0.75 in.) from the top. The temperature and relative humidity of the air in the room shall be measured with either a sling or Assmann psychrometer at l
23、east twice each working day. The psychrometer shall comply with ASTM E337, except that thermometers having an overall length of 250 mm (10 in.) and marked in subdivisions of 0.25C (0.5F) are permitted. The room shall be equipped with a means of measuring and recording wet- and dry-bulb temperatures
24、continuously. Correction factors as indicated by the sling or Assmann psychrometer shall be applied to the recorded data. The rate of evaporation within the room shall be determined daily by the use of the atmometer or by the loss of mass of water from a 400-mL Griffin low-form beaker filled initial
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