ASTM C494/C494M-11

    Standard Specification for Chemical Admixtures for Concrete

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    1. Scope

    1.1 This specification covers materials for use as chemical admixtures to be added to hydraulic-cement concrete mixtures in the field for the purpose or purposes indicated for the eight types as follows:

    1.1.1 Type AWater-reducing admixtures,

    1.1.2 Type BRetarding admixtures,

    1.1.3 Type CAccelerating admixtures,

    1.1.4 Type DWater-reducing and retarding admixtures,

    1.1.5 Type EWater-reducing and accelerating admixtures,

    1.1.6 Type FWater-reducing, high range admixtures,

    1.1.7 Type GWater-reducing, high range, and retarding admixtures, and

    1.1.8 Type SSpecific performance admixtures.

    1.2 This specification stipulates tests of an admixture with suitable concreting materials as described in 11.1-11.3 or with cement, pozzolan, aggregates, and an air-entraining admixture proposed for specific work (11.4). Unless specified otherwise by the purchaser, the tests shall be made using concreting materials as described in 11.1-11.3.

    Note 1—It is recommended that, whenever practicable, tests be made using the cement, pozzolan, aggregates, air-entraining admixture, and the mixture proportions, batching sequence, and other physical conditions proposed for the specific work (11.4) because the specific effects produced by chemical admixtures may vary with the properties and proportions of the other ingredients of the concrete. For instance, Types F and G admixtures may exhibit much higher water reduction in concrete mixtures having higher cement factors than that listed in 12.1.1.

    Mixtures having a high range water reduction generally display a higher rate of slump loss. When high-range admixtures are used to impart increased workability (6 to 8-in. slump [150 to 200mm]), the effect may be of limited duration, reverting to the original slump in 30 to 60 min depending on factors normally affecting rate of slump loss. The use of chemical admixtures to produce high-slump (flowing) concrete is covered by Specification C1017/C1017M.

    Note 2—The purchaser should ensure that the admixture supplied for use in the work is equivalent in composition to the admixture subjected to test under this specification (see Section 6, Uniformity and Equivalence).

    Note 3—Admixtures that contain relatively large amounts of chloride may accelerate corrosion of prestressing steel. Compliance with the requirements of this specification does not constitute assurance of acceptability of the admixture for use in prestressed concrete.

    1.3 This specification provides for three levels of testing.

    1.3.1 Level 1During the initial approval stage, proof of compliance with the performance requirements defined in Table 1 demonstrates that the admixture meets the requirements of this specification. Admixtures (except for Types B, C, E, and S) shall qualify for provisional compliance when the physical requirements and any of the alternative compressive strength requirements in Table 1 are met. If subsequent test results at 6 months or one year fail to meet the standard requirement of 100 % of reference strength, the compliance of the admixture to this standard is withdrawn and all users of the admixture shall be notified immediately. Uniformity and equivalence tests of Section 6 shall be carried out to provide results against which later comparisons can be made (See Note 4).

    Note 4—Allowing for provisional compliance while retaining longer term compressive strength requirements promotes more rapid qualification of new materials, but also provides assurance that new admixture technologies will not exhibit unexpected longer term performance. The alternative compressive strength requirements in Table 1 are based on statistical analysis of 103 Specification C494/C494M evaluation tests. The alternative requirements correspond to a 99 % probability of passing subsequent test age requirements.

    1.3.2 Level 2Limited retesting is described in 5.2, 5.2.1 and 5.2.2. Proof of compliance with the requirements of Table 1 demonstrates continued conformity of the admixture with the requirements of the specification.

    1.3.3 Level 3For acceptance of a lot or for measuring uniformity within or between lots, when specified by the purchaser, the uniformity and equivalence tests of Section 6 shall be used.

    1.4 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 values from the two systems may result in non-conformance with the standard.

    1.5 The text of this standard references notes and footnotes which provide explanatory material. These notes and footnotes (excluding those in tables and figures) shall not be considered as requirements of the standard.

    1.6 The following precautionary caveat pertains only to the test method sections, Sections 11-18 of this Specification: 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 standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

    TABLE 1 Physical RequirementsA

    Type A,
    Type B,
    Type C,
    Type D,
    Type E,
    Type F,
    High Range
    Type G,
    and Retarding
    Type S
    Water content, max, % of control95 ......95958888...
    Time of setting, allowable deviation from control, h:min:
    Initial: at least... 1:00 later1:00 earlier1:00 later 1:00 earlier...1:00 later
    not more than1:00 earlier
    nor 1:30
    3:30 later 3:30 earlier3:30 later3:30 earlier 1:00 earlier
    nor 1:30
    3:30 later1:00 earlier
    nor 1:30
    Final: at least... ...1:00 earlier...1:00 earlier... ...
    not more than1:00 earlier
    nor 1:30
    3:30 later ...3:30 later...1:00 earlier
    nor 1:30
    3:30 later1:00 earlier
    nor 1:30
    Compressive strength, min, % of control:B
    1 day... ............140125...
    3 days110 9012511012512512590
    7 days110 9010011011011511590
    28 days110
    90100 110
    90 days(117)Cn/an/a(117)Cn/a(117)C(117)Cn/a
    6 months100
    9090 100
    1 year100 9090 10010010010090
    Flexural strength, min, % control:B
    3 days100 9011010011011011090
    7 days100 9010010010010010090
    28 days1009090 10010010010090
    Length change, max shrinkage (alternative requirements):D
    Percent of control135 135135135135135135135
    Increase over control0.0100.0100.0100.0100.0100.0100.0100.010
    Relative durability
    factor, minE
    8080 8080 8080 8080

    A The values in the table include allowance for normal variation in test results. The object of the 90 % compressive strength requirement for a Type B amd Type S admixture is to require a level of performance comparable to that of the reference concrete.

    B The compressive and flexural strength of the concrete containing the admixture under test at any test age shall be not less than 90 % of that attained at any previous test age. The objective of this limit is to require that the compressive or flexural strength of the concrete containing the admixture under test shall not decrease with age.

    C Alternative requirement. If the physical requirements are met and any of the measured relative strengths are greater than the requirement in parentheses, the admixture shall be considered provisionally qualified until the 1-year strength test results are obtained.

    D Alternative requirements, see 17.1.4, % of control limit applies when length change of control is 0.030 % or greater; increase over control limit applies when length change of control is less than 0.030 %.

    E This requirement is applicable only when the admixture is to be used in air-entrained concrete which may be exposed to freezing and thawing while wet.

    2. Referenced Documents (purchase separately) The documents listed below are referenced within the subject standard but are not provided as part of the standard.

    ASTM Standards

    C33/C33M Specification for Concrete Aggregates

    C39/C39M Test Method for Compressive Strength of Cylindrical Concrete Specimens

    C78/C78M Test Method for Flexural Strength of Concrete (Using Simple Beam with Third-Point Loading)

    C136/C136M Test Method for Sieve Analysis of Fine and Coarse Aggregates

    C138/C138M Test Method for Density (Unit Weight), Yield, and Air Content (Gravimetric) of Concrete

    C143/C143M Test Method for Slump of Hydraulic-Cement Concrete

    C150/C150M Specification for Portland Cement

    C157/C157M Test Method for Length Change of Hardened Hydraulic-Cement Mortar and Concrete

    C183/C183M Practice for Sampling and the Amount of Testing of Hydraulic Cement

    C192/C192M Practice for Making and Curing Concrete Test Specimens in the Laboratory

    C231/C231M Test Method for Air Content of Freshly Mixed Concrete by the Pressure Method

    C260/C260M Specification for Air-Entraining Admixtures for Concrete

    C403/C403M Test Method for Time of Setting of Concrete Mixtures by Penetration Resistance

    C666/C666M Test Method for Resistance of Concrete to Rapid Freezing and Thawing

    C1017/C1017M Specification for Chemical Admixtures for Use in Producing Flowing Concrete

    D75/D75M Practice for Sampling Aggregates

    D891 Test Methods for Specific Gravity, Apparent, of Liquid Industrial Chemicals

    D1193 Specification for Reagent Water

    E100 Specification for ASTM Hydrometers

    E1252 Practice for General Techniques for Obtaining Infrared Spectra for Qualitative Analysis

    American Concrete Institute Standard

    ACI 211.1–91 Standard Practice for Selecting Proportions for Normal, Heavyweight, and Mass Concrete Available from American Concrete Institute (ACI), P.O. Box 9094, Farmington Hills, MI 48333-9094,

    ICS Code

    ICS Number Code 91.100.30 (Concrete and concrete products)

    Referencing This Standard
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    DOI: 10.1520/C0494_C0494M-11

    Citation Format

    ASTM C494 / C494M-11, Standard Specification for Chemical Admixtures for Concrete, ASTM International, West Conshohocken, PA, 2011,

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