AASHTO M 240M M 240-2016 Standard Specification for Blended Hydraulic Cement.pdf
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1、Standard Specification for Blended Hydraulic Cement AASHTO Designation: M 240M/M 240-161Release: Group 1 (April 2016) ASTM Designation: C595/C595M-16 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-3a M 240M/M 240-
2、1 AASHTO Standard Specification for Blended Hydraulic Cement AASHTO Designation: M 240M/M 240-161Release: Group 1 (April 2016) ASTM Designation: C595/C595M-16 1. SCOPE 1.1. This specification pertains to blended hydraulic cements for both general and special applications using slag, pozzolan, limest
3、one, or some combination thereof, with portland cement or portland cement clinker, or slag with lime (see Note 1). Note 1This specification prescribes ingredients and proportions with some performance requirements, whereas ASTM C1157/C1157M is a hydraulic cement specification in which performance cr
4、iteria alone govern the products and their acceptance. 1.2. The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining va
5、lues from the two systems may result in nonconformance with the standard. Values in SI units or inch-pound units shall be obtained by measurement in SI units or inch-pound units or by appropriate conversion, using the Rules for Conversion and Rounding given in IEEE/ASTM SI 10, of measurements made i
6、n other units or SI units. Values are stated in only SI units when inch-pound units are not used in practice. 1.3. The text of this standard refers to notes and footnotes that provide explanatory material. These notes and footnotes (excluding those in tables and figures) are not requirements of the
7、standard. 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 85, Portland Cement M 92, Wire-Cloth Sieves for Testing Purposes M 201, Mixing Rooms, Moist Cabinets, Moist Rooms, and Water Storage Tanks Used in the Testing of Hydraulic Cements and Concretes M 327, Processing Additions for Use in the Manu
8、facture of Hydraulic Cements R 71, Sampling and Amount of Testing of Hydraulic Cement T 105, Chemical Analysis of Hydraulic Cement T 106M/T 106, Compressive Strength of Hydraulic Cement Mortar (Using 50-mm or 2-in. Cube Specimens) T 107M/T 107, Autoclave Expansion of Hydraulic Cement T 129, Amount o
9、f Water Required for Normal Consistency of Hydraulic Cement Paste T 131, Time of Setting of Hydraulic Cement by Vicat Needle T 133, Density of Hydraulic Cement T 137, Air Content of Hydraulic Cement Mortar T 153, Fineness of Hydraulic Cement by Air Permeability Apparatus 2016 by the American Associa
10、tion of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3a M 240M/M 240-2 AASHTO T 160, Length Change of Hardened Hydraulic Cement Mortar and Concrete T 192, Fineness of Hydraulic Cement by the 45-m (No. 325) Sieve 2.2. ASTM Standards:
11、C51, Standard Terminology Relating to Lime and Limestone (as used by the Industry) C186, Standard Test Method for Heat of Hydration of Hydraulic Cement C219, Standard Terminology Relating to Hydraulic Cement C226, Standard Specification for Air-Entraining Additions for Use in the Manufacture of Air-
12、Entraining Hydraulic Cement C227, Standard Test Method for Potential Alkali Reactivity of Cement-Aggregate Combinations (Mortar-Bar Method) C311/C311M, Standard Test Methods for Sampling and Testing Fly Ash or Natural Pozzolans for Use in Portland-Cement Concrete C563, Standard Test Method for Appro
13、ximation of Optimum SO3in Hydraulic Cement Using Compressive Strength C688, Standard Specification for Functional Additions for Use in Hydraulic Cements C821, Standard Specification for Lime for Use with Pozzolans C1012/C1012M, Standard Test Method for Length Change of Hydraulic-Cement Mortars Expos
14、ed to a Sulfate Solution C1038/C1038M, Standard Test Method for Expansion of Hydraulic Cement Mortar Bars Stored in Water C1157/C1157M, Standard Performance Specification for Hydraulic Cement E350, Standard Test Methods for Chemical Analysis of Carbon Steel, Low-Alloy Steel, Silicon Electrical Steel
15、, Ingot Iron, and Wrought Iron E1019, Standard Test Methods for Determination of Carbon, Sulfur, Nitrogen, and Oxygen in Steel, Iron, Nickel, and Cobalt Alloys by Various Combustion and Fusion Techniques Manual of Cement Testing, Annual Book of ASTM Standards, Volume 04.01 2.3. IEEE/ASTM Standard: S
16、I10, American National Standard for Metric Practice 3. TERMINOLOGY 3.1. DefinitionsThe terms used in this specification are defined in ASTM C219 (see Note 2), except for the following terms: 3.1.1. binary blended cementa blended hydraulic cement consisting of portland cement with either a slag, a po
17、zzolan, or a limestone. 3.1.2. slag, nthe term “slag” is used within this standard to denote either slag cement or granulated blast-furnace slag. 3.1.3. ternary blended cementa blended hydraulic cement consisting of portland cement with either a combination of two different pozzolans, slag and a poz
18、zolan, a pozzolan and a limestone, or a slag and a limestone. Note 2Relevant terms in ASTM C219 applicable to this standard include portland cement, portland cement clinker, hydraulic cement, slag cement, granulated blast-furnace slag, pozzolan, and calcium sulfate. Limestone is defined in ASTM C51.
19、 2016 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3a M 240M/M 240-3 AASHTO 4. CLASSIFICATION 4.1. This specification applies to the following types of blended cement that generally are intended for use
20、 as directed. 4.1.1. Blended hydraulic cements for general concrete construction. 4.1.1.1. Type ISPortland blast-furnace slag cement. 4.1.1.2. Type IPPortland-pozzolan cement. 4.1.1.3. Type ILPortland-limestone cement. 4.1.1.4. Type ITTernary blended cement. 4.2. Reporting: 4.2.1. The naming practic
21、e for blended cements shall be made by adding the suffix (X) to the type designation under Section 4.1.1, where (X) equals the targeted percentage of slag, pozzolan, or limestone in the product expressed as a whole number by mass of the final blended product, within the allowable variation as stated
22、 in Section 15.3. 4.2.2. The naming practice for ternary blended cements shall be made by adding the suffixes (AX) and (BY) to the Type IT designation under Section 4.1.1, where: 4.2.2.1. A is “S” for slag, “P” for pozzolan, or “L” for limestone, whichever is present in a larger amount by mass; 4.2.
23、2.2. X is the targeted percentage by mass of constituent A; 4.2.2.3. B is “S” for slag, “P” for pozzolan, or “L” for limestone; and 4.2.2.4. Y is the targeted percentage by mass of constituent B. 4.2.2.5. Both X and Y values are expressed as a whole number by mass of the final blended product, withi
24、n the allowable variation as stated in Section 15.3. If X and Y are the same, list the two constituents in alphabetical order by constituent type (limestone, pozzolan, or slag). Note 3Examples of the naming practice per Sections 4.2.1 and 4.3 are shown below (all percentages by mass): Binary blended
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