AASHTO M 327-2018 Standard Specification for Processing Additions for Use in the Manufacture of Hydraulic Cements.pdf
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1、Standard Specification for Processing Additions for Use in the Manufacture of Hydraulic Cements AASHTO Designation: M 327-18 Technical Section: 3a, Hydraulic Cement and Lime Release: Group 1 (April) ASTM Designation: C465-16 American Association of State Highway and Transportation Officials 444 Nort
2、h Capitol Street N.W., Suite 249 Washington, D.C. 20001 TS-3a M 327-1 AASHTO Standard Specification for Processing Additions for Use in the Manufacture of Hydraulic Cements AASHTO Designation: M 327-18 Technical Section: 3a, Hydraulic Cement and Lime Release: Group 1 (April) ASTM Designation: C465-1
3、6 1. SCOPE1.1. This specification pertains to the criteria and tests to be used for determining whether an organicor inorganic processing addition, when used in the recommended amount at the option of thecement producer in the manufacture of hydraulic cements, meets the requirements as prescribed by
4、definition in M 85 and M 240M/M 240 as well as ASTM C1157/C1157M and C845/C845M. Thematerials listed in the following former AASHTO and ASTM specifications shall be considered asmeeting the organic processing additions requirements of this specification: M 85-57, Portland Cement ASTM C205-58, Standa
5、rd Specification for Portland Blast-Furnace Slag Cement ASTM C340-58, Standard Specification for Portland-Pozzolan Cement ASTM C358-58, Standard Specification for Slag Cement1.2. The following safety hazards caveat pertains only to the test methods described in thisspecification. This standard does
6、not purport to address all of the safety concerns, if any,associated with its use. It is the responsibility of the user of this standard to establish appropriatesafety and health practices and determine the applicability of regulatory limitations prior to use.2. REFERENCED DOCUMENTS2.1. AASHTO Stand
7、ards: M 6, Fine Aggregate for Hydraulic Cement Concrete M 80, Coarse Aggregate for Hydraulic Cement Concrete M 85, Portland Cement M 85-57 Portland Cement M 240M/M 240, Blended Hydraulic Cement R 39, Making and Curing Concrete Test Specimens in the Laboratory T 22, Compressive Strength of Cylindrica
8、l Concrete Specimens T 97, Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading) T 98M/T 98, Fineness of Portland Cement by the Turbidimeter T 105, Chemical Analysis of Hydraulic Cement T 106M/T 106, Compressive Strength of Hydraulic Cement Mortar (Using 50-mm or 2-in.Cube Speci
9、mens) 2018 by the American Association of State Highway and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-3a M 327-2 AASHTO T 107M/T 107, Autoclave Expansion of Hydraulic Cement T 119M/T 119, Slump of Hydraulic Cement Concrete T 121M/T 121, Density (U
10、nit Weight), Yield, and Air Content (Gravimetric) of Concrete T 129, Amount of Water Required for Normal Consistency of Hydraulic Cement Paste T 131, Time of Setting of Hydraulic Cement by Vicat Needle T 137, Air Content of Hydraulic Cement Mortar T 152, Air Content of Freshly Mixed Concrete by the
11、Pressure Method T 153, Fineness of Hydraulic Cement by Air Permeability Apparatus T 177, Flexural Strength of Concrete (Using Simple Beam with Center-Point Loading) T 196M/T 196, Air Content of Freshly Mixed Concrete by the Volumetric Method T 231, Capping Cylindrical Concrete Specimens 2.2. ASTM St
12、andards: C205-58, Standard Specification for Portland Blast-Furnace Slag Cement C226, Standard Specification for Air-Entraining Additions for Use in the Manufacture of Air-Entraining Hydraulic Cement C340-58, Standard Specification for Portland-Pozzolan Cement C358-58, Standard Specification for Sla
13、g Cement C596, Standard Test Method for Drying Shrinkage of Mortar Containing Hydraulic Cement C845/C845M, Standard Specification for Expansive Hydraulic Cement C1157/C1157M, Standard Performance Specification for Hydraulic Cement D891, Standard Test Methods for Specific Gravity, Apparent, of Liquid
14、 Industrial Chemicals E203, Standard Test Method for Water Using Volumetric Karl Fischer Titration 3. MATERIALS 3.1. Cements: 3.1.1. In cases where it is desired that the proposed organic processing addition be accepted for general use in portland cement, tests shall be made on cements prepared from
15、 at least five different clinkers. As a minimum, these clinkers shall represent two Type I cements containing not less than 9.0 percent C3A, one Type II cement, and two Type III cements, all conforming to M 85. 3.1.2. In cases where it is also desired that the proposed organic processing addition be
16、 used in blended cements, the test and test procedures shall be as specified with a control and an addition for cement conforming to the appropriate specification, M 240M/M 240 or ASTM C1157/C1157M. 3.1.3. Organic processing additions that have been shown to meet the requirements of this specificati
17、on may also be used in cements conforming to ASTM C845/C845M. Testing of the addition with these special cements, where desired, shall be done using the tests and test procedures as specified with a control cement and a cement containing the addition, both conforming to ASTM C845/C845M. 3.1.4. In ca
18、ses where it is desired that the proposed organic processing addition be limited in use to specific types of cement less in number than required in Section 3.1.1, the tests and test procedures shall be as specified, and at least two pairs of cements shall be prepared from two clinkers from different
19、 plants for each type under specific consideration. 3.1.5. For inorganic processing additions, or in cases where it is desired that the proposed organic processing addition be limited in use to a single plant, the tests and test procedures shall be as 2018 by the American Association of State Highwa
20、y and Transportation Officials. All rights reserved. Duplication is a violation of applicable law.TS-3a M 327-3 AASHTO specified, and at least two pairs of cements shall be prepared from clinkers representing each type under specific consideration. 3.1.6. Two companion cements are to be made from an
21、y one clinker. The companion cements shall be prepared from the clinker and shall be: a) cement that does not contain the proposed processing addition (control cement), and b) cement that does contain the proposed processing addition. The two companion cements shall be ground to the same fineness wi
22、thin 7 m2/kg when tested in accordance with T 98M/T 98, or within 13 m2/kg when tested in accordance with T 153, and the SO3content, expressed as a percentage of the cement mass and reported to the nearest 0.01 percent, shall differ by not more than 0.3, so as to afford comparable samples for indica
23、ting the effect of the addition on the cement. Each control cement shall comply with all requirements in the specification applicable to that type of cement and shall not contain the proposed addition when tested by the method furnished by the producer or seller of the addition. 3.1.7. The percentag
24、e of each of the following shall be determined for each lot of cement tested: silicon dioxide (SiO2), aluminum oxide (Al2O3), ferric oxide (Fe2O3), calcium oxide (CaO), magnesium oxide (MgO), sulfur trioxide (SO3), ignition loss, insoluble residue, sodium oxide (Na2O), and potassium oxide (K2O). The
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