ASTM C1709-22 - 1.10.2022
 
Significance and Use

4.1?Supplementary cementitious materials (SCM) covered under existing ASTM specifications are fly ash, slag cement, raw and calcined natural pozzolans including calcined clays, silica fume, and ground-glass pozzolan. The use of these materials, and limits established in existing specifications, are based on data obtained from research programs, field testing, and long term performance monitoring. Performance of SCM in specific concrete mixtures is commonly verified through preconstruction testing. This guide provides an approach to assessing the properties of materials that are not covered under existing specifications, and for assessing the performance of those materials in concrete.

4.2?If an ASCM does not yet have a significant record of performance in concrete, a comprehensive evaluation based on this Guide should be undertaken, and it should be recognized that this ASCM might be introduced for a specific project or into a limited marketplace to initially demonstrate its performance. The user should bear in mind the intended end use of the ASCM and use appropriate test methods to establish its suitability. An ASCM that demonstrates good performance through a comprehensive evaluation as outlined in this guide could then be considered to have access to broader markets and could be considered for inclusion in an ASTM standard for SCM. For this reason, the test program to demonstrate acceptable performance should include concrete mixtures with a range of characteristics specific to the ASCMs intended use.

4.3?In the absence of long-term durability or acceptable field performance, prospective users are advised to apply appropriate risk management and engineering practice in the use of an ASCM.

 
1. Scope

1.1?This guide is intended to provide a technical approach to the evaluation of alternative supplementary cementitious materials such as pozzolans and hydraulic materials that fall outside the scope of Specifications C618, C989/C989M, C1240, and C1866/C1866M. This guide provides the initial steps for a comprehensive evaluation of an ASCM that provides due diligence for its specific intended uses in concrete; however, it does not evaluate conformance to all possible performance criteria for all types of concrete mixtures.

1.2?The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.3?Performing the tests or meeting the test limits in this guide should not imply that the material tested meets the requirements of Specifications C618, C989/C989M, C1240, and C1866/C1866M. These materials should not be represented as such and each specific source is to be evaluated separately.

1.4?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, health, and environmental practices and determine the applicability of regulatory limitations prior to use.

1.5?This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

 
2. Referenced Documents

D3987-12(2020)

Standard Practice for Shake Extraction of Solid Waste with Water

C457/C457M-23a

Standard Test Method for Microscopical Determination of Parameters of the Air-Void System in Hardened Concrete (Includes all amendments and changes 1/24/2024).

C469-02

Standard Test Method for Static Modulus of Elasticity and Poisson's Ratio of Concrete in Compression

C618-23e1

Standard Specification for Coal Ash and Raw or Calcined Natural Pozzolan for Use in Concrete (Includes all amendments and changes 3/21/2023).

C666-C666M-15

Standard Test Method for Resistance of Concrete to Rapid Freezing and Thawing (Withdrawn 2024)

C672-C672M-12

Standard Test Method for Scaling Resistance of Concrete Surfaces Exposed to Deicing Chemicals (Withdrawn 2021)

C989-10

Standard Specification for Slag Cement for Use in Concrete and Mortars

C39/C39M-23

Standard Test Method for Compressive Strength of Cylindrical Concrete Specimens

C78-09

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

C109/C109M-23

Standard Test Method for Compressive Strength of Hydraulic Cement Mortars (Using 50?mm [2 in.] Cube Specimens)

C114-23

Standard Test Methods for Chemical Analysis of Hydraulic Cement

C125-21a

Standard Terminology Relating to Concrete and Concrete Aggregates (Includes all amendments and changes 10/14/2021).

C138/C138M-23

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

C143/C143M-20

Standard Test Method for Slump of Hydraulic-Cement Concrete

C157/C157M-17

Standard Test Method for Length Change of Hardened Hydraulic-Cement Mortar and Concrete

C186-17

Standard Test Method for Heat of Hydration of Hydraulic Cement (Withdrawn 2019)

C204-24

Standard Test Methods for Fineness of Hydraulic Cement by Air-Permeability Apparatus

C231/C231M-24

Standard Test Method for Air Content of Freshly Mixed Concrete by the Pressure Method

C232/C232M-21

Standard Test Method for Bleeding of Concrete

C311-11

Standard Test Methods for Sampling and Testing Fly Ash or Natural Pozzolans for Use in Portland-Cement Concrete

C403/C403M-23

Standard Test Method for Time of Setting of Concrete Mixtures by Penetration Resistance

C430-17

Standard Test Method for Fineness of Hydraulic Cement by the 45-µm (No. 325) Sieve

C1585-20

Standard Test Method for Measurement of Rate of Absorption of Water by Hydraulic-Cement Concretes

D4326-21

Standard Test Method for Major and Minor Elements in Coal Ash By X-Ray Fluorescence

ACI 318

Building Code Requirements for Structural Concrete and Commentary

C1012/C1012M-18b

Standard Test Method for Length Change of Hydraulic-Cement Mortars Exposed to a Sulfate Solution (Includes all amendments and changes 1/9/2019).

C1064/C1064M-23

Standard Test Method for Temperature of Freshly Mixed Hydraulic-Cement Concrete

C1202-22e1

Standard Test Method for Electrical Indication of Concrete’s Ability to Resist Chloride Ion Penetration (Includes all amendments and changes 6/27/2022).

C1218/C1218M-20

Standard Test Method for Water-Soluble Chloride in Mortar and Concrete

C1240-20

Standard Specification for Silica Fume Used in Cementitious Mixtures

C1293-20

Standard Test Method for Determination of Length Change of Concrete Due to Alkali-Silica Reaction

C1543-10

Standard Test Method for Determining the Penetration of Chloride Ion into Concrete by Ponding

C1556-22

Standard Test Method for Determining the Apparent Chloride Diffusion Coefficient of Cementitious Mixtures by Bulk Diffusion

C1567-23

Standard Test Method for Determining the Potential Alkali-Silica Reactivity of Combinations of Cementitious Materials and Aggregate (Accelerated Mortar-Bar Method)

C1679-22

Standard Practice for Measuring Hydration Kinetics of Hydraulic Cementitious Mixtures Using Isothermal Calorimetry

C1702-23

Standard Test Method for Measurement of Heat of Hydration of Hydraulic Cementitious Materials Using Isothermal Conduction Calorimetry