AASHTO M 85-2017 Standard Specification for Portland Cement.pdf
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1、Standard Specification for Portland Cement AASHTO Designation: M 85-17 Technical Section: 3a, Hydraulic Cement and Lime Release: Group 1 (April 2017) ASTM Designation: C150/C150M-17 American Association of State Highway and Transportation Officials 444 North Capitol Street N.W., Suite 249 Washington
2、, D.C. 20001 TS-3a M 85-1 AASHTO Standard Specification for Portland Cement AASHTO Designation: M 85-17 Technical Section: 3a, Hydraulic Cement and Lime Release: Group 1 (April 2017) ASTM Designation: C150/C150M-17 1. SCOPE 1.1. This specification covers ten types of portland cement as follows (see
3、Note 1): 1.1.1. Type IFor use when the special properties specified for any other type are not required; 1.1.2. Type IAAir-entraining cement for the same uses as Type I, where air entrainment is desired; 1.1.3. Type IIFor general use, more especially when moderate sulfate resistance is desired; 1.1.
4、4. Type IIAAir-entraining cement for the same uses as Type II, where air entrainment is desired; 1.1.5. Type II(MH)For general use, more especially when moderate heat of hydration and moderate sulfate resistance are desired. 1.1.6. Type II(MH)AAir-entraining cement for the same uses as Type II(MH),
5、where air entrainment is desired. 1.1.7. Type IIIFor use when high early strength is desired; 1.1.8. Type IIIAAir-entraining cement for the same use as Type III, where air entrainment is desired; 1.1.9. Type IVFor use when low heat of hydration is desired; and 1.1.10. Type VFor use when high sulfate
6、 resistance is desired. Note 1Some cements are designated with a combined type classification, such as Type I/II, indicating that the cement meets the requirements of the indicated types and is being offered as suitable for use when either type is desired. 1.2. When both SI and inch-pound units are
7、present, the SI units are the standard. The inch-pound units are approximations listed for information only. 1.3. The text of this standard references notes and footnotes that provide explanatory material. These notes and footnotes (excluding those in tables and figures) shall not be considered as r
8、equirements of the standard. 2017 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3a M 85-2 AASHTO 2. REFERENCED DOCUMENTS 2.1. AASHTO Standards: M 327, Processing Additions for Use in the Manufacture of H
9、ydraulic Cements R 71, Sampling and Amount of Testing of Hydraulic Cement 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 Specimens) T 107M/T 107, Autocla
10、ve Expansion of Hydraulic Cement T 131, Time of Setting of Hydraulic Cement by Vicat Needle T 137, Air Content of Hydraulic Cement Mortar T 153, Fineness of Hydraulic Cement by Air Permeability Apparatus T 154, Time of Setting of Hydraulic Cement Paste by Gillmore Needles T 186, Early Stiffening of
11、Hydraulic Cement (Paste Method) 2.2. ASTM Standards: C33/C33M, Standard Specification for Concrete Aggregates C51, Standard Terminology Relating to Lime and Limestone (as used by the Industry) C186, Standard Test Method for Heat of Hydration of Hydraulic Cement C226, Standard Specification for Air-E
12、ntraining Additions for Use in the Manufacture of Air-Entraining Hydraulic Cement C452/C452M, Standard Test Method for Potential Expansion of Portland-Cement Mortars Exposed to Sulfate C563, Standard Test Method for Approximation of Optimum SO3in Hydraulic Cement Using Compressive Strength C1038/C10
13、38M, Standard Test Method for Expansion of Hydraulic Cement Mortar Bars Stored in Water C1702, Standard Test Method for Measurement of Heat of Hydration of Hydraulic Cementitious Materials Using Isothermal Conduction Calorimetry E29, Standard Practice for Using Significant Digits in Test Data to Det
14、ermine Conformance with Specifications 3. TERMINOLOGY 3.1. Definitions: 3.1.1. portland cementa hydraulic cement produced by pulverizing clinker, consisting essentially of hydraulic calcium silicates, and usually containing one or more of the following: water, calcium sulfate, up to 5 percent limest
15、one, and processing additions. 3.1.2. air-entraining portland cementa portland cement containing an interground air-entraining addition. 2017 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3a M 85-3 AASHT
16、O 3.1.3. hydraulic cementa cement that sets and hardens by chemical interaction with water and is capable of doing so under water. 4. ORDERING INFORMATION 4.1. Orders for material under this specification shall include the following: 4.1.1. This specification number and date; 4.1.2. Type or types al
17、lowable. If no type is specified, Type I shall be supplied; 4.1.3. Any optional chemical requirements from Table 2, if desired; and 4.1.4. Any optional physical requirements from Table 4, if desired. Note 2Cement conforming to the requirements for all types is not carried in stock in some areas. In
18、advance of specifying the use of other than Type I cement, determine whether the proposed type of cement is, or can be made, available. 5. INGREDIENTS 5.1. The cement covered by this specification shall contain no ingredients except as follows: 5.1.1. Portland Cement Clinker. 5.1.2. Water or Calcium
19、 Sulfate or BothThe amounts shall be such that the limits shown in Table 1 for sulfur trioxide and loss on ignition shall not be exceeded. 2017 by the American Association of State Highway and Transportation Officials.All rights reserved. Duplication is a violation of applicable law.TS-3a M 85-4 AAS
20、HTO Table 1Standard Chemical RequirementsaCement Type Applicable Test Method I and IA II and IIA II(MH) and II(MH)A III and IIIA IV V Aluminum oxide (Al2O3), max, % T 105 6.0 6.0 Ferric oxide (Fe2O3), max, % T 105 6.0c6.0b, c 6.5 Magnesium oxide (MgO), max, % T 105 6.0 6.0 6.0 6.0 6.0 6.0 Sulfur tri
21、oxide (SO3),dmax, % T 105 When (C3A)eis 8% or less 3.0 3.0 3.0 3.5 2.3 2.3 When (C3A)eis more than 8% 3.5 f f4.5 f f Loss on ignition, max, % T 105 When limestone is not an ingredient 3.0 3.0 3.0 3.0 2.5 3.0 When limestone is an ingredient 3.5 3.5 3.5 3.5 3.5 3.5 Insoluble residue, max, % T 105 1.5
22、1.5 1.5 1.5 1.5 1.5 Tricalcium silicate (C3S),emax, % See Annex A 35b Dicalcium silicate (C2S),emin, % See Annex A 40b Tricalcium aluminate (C3A),emax, % See Annex A 8 8 15 7b 5c Sum of C3S + 4.75C3A, max, %g 100b, h Tetracalcium aluminoferrite plus twice the tricalcium aluminate (C4AF + 2(C3A), or
23、solid solution (C4AF + C2F), as applicable, max, % See Annex A 25c a See Note 2.b Does not apply when the heat of hydration limit in Table 4 is specified. c Does not apply when the sulfate resistance limit in Table 4 is specified. d It is permissible to exceed the values in the table for SO3 content
24、, provided it has been demonstrated by ASTM C1038/C1038M that the cement with the increased SO3 will not develop expansion exceeding 0.020 percent at 14 days. When the manufacturer supplies cement under this provision, supporting data shall be supplied to the purchaser. See Note 6. e See Annex A for
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