ASTM E112-13(2021) PDF
Standard Test Methods for Determining Average Grain Size
Standard Test Methods for Determining Average Grain Size
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 28
- Дата публикации:
- 1 сентября 2021 г.
- Издание:
- E112
- ICS:
- 77.040.01
SIGNIFICANCE AND USE 4.1 These test methods cover procedures for estimating and rules for expressing the average grain size of all metals consisting entirely, or principally, of a single phase. The grain size of specimens with two phases, or a phase and a constituent, can be measured using a combination of two methods, a measurement of the volume fraction of the phase and an intercept or planimetric count (see Section 17). The test methods may also be used for any structures having appearances similar to those of the metallic structures shown in the comparison charts. The three basic procedures for grain size estimation are: 4.1.1 Comparison Procedure—The comparison procedure does not require counting of either grains, intercepts, or intersections but, as the name suggests, involves comparison of the grain structure to a series of graded images, either in the form of a wall chart, clear plastic overlays, or an eyepiece reticle. There appears to be a general bias in that comparison grain size ratings claim that the grain size is somewhat coarser (1/2 to 1 G number lower) than it actually is (see X1.3.5). Repeatability and reproducibility of comparison chart ratings are generally ±1 grain size number. 4.1.2 Planimetric Procedure—The planimetric method involves an actual count of the number of grains within a known area. The number of grains per unit area, NA , is used to determine the ASTM grain size number, G. The precision of the method is a function of the number of grains counted. A precision of ±0.25 grain size units can be attained with a reasonable amount of effort. Results are free of bias and repeatability and reproducibility are less than ±0.5 grain size units. An accurate count does require marking off of the grains as they are counted. 4.1.3 Intercept Procedure—The intercept method involves an actual count of the number of grains intercepted by a test line or the number of grain boundary intersections with a test line, per unit length of test line, used to calculate t... SCOPE 1.1 These test methods cover the measurement of average grain size and include the comparison procedure, the planimetric (or Jeffries) procedure, and the intercept procedures. These test methods may also be applied to nonmetallic materials with structures having appearances similar to those of the metallic structures shown in the comparison charts. These test methods apply chiefly to single phase grain structures but they can be applied to determine the average size of a particular type of grain structure in a multiphase or multiconstituent specimen. 1.2 These test methods are used to determine the average grain size of specimens with a unimodal distribution of grain areas, diameters, or intercept lengths. These distributions are approximately log normal. These test methods do not cover methods to characterize the nature of these distributions. Characterization of grain size in specimens with duplex grain size distributions is described in Test Methods E1181. Measurement of individual, very coarse grains in a fine grained matrix is described in Test Methods E930. 1.3 These test methods deal only with determination of planar grain size, that is, characterization of the two-dimensional grain sections revealed by the sectioning plane. Determination of spatial grain size, that is, measurement of the size of the three-dimensional grains in the specimen volume, is beyond the scope of these test methods. 1.4 These test methods describe techniques performed manually using either a standard series of graded chart images for the comparison method or simple templates for the manual counting methods. Utilization of semi-automatic digitizing tablets or automatic image analyzers to measure grain size is described in Test Methods E1382. 1.5 These test methods deal only with the recommended test methods and nothing in them should be construed as defining or establishing limits of acceptability or fitness of purpose of the ma...
Abstract
Overview
ASTM E112-13(2021) - Standard Test Methods for Determining Average Grain Size provides internationally recognized procedures for estimating and expressing the average grain size in metallic and certain nonmetallic materials. Developed by ASTM International, this standard is widely adopted in metallurgical laboratories and industrial quality control settings to ensure consistent, reliable grain size measurements across a range of applications. The standard describes manual measurement methods, including procedures suitable for single-phase and selected multi-phase materials, and supports both quality assurance and research in material science sectors.
Key Topics
-
Scope and Applicability
- Primarily for the measurement of average grain size in single-phase metals, but procedures may also be adapted for certain nonmetallic materials and multi-phase grain structures.
- Applicable to microstructures with unimodal grain size distributions.
-
Manual Grain Size Measurement Methods
- Comparison Procedure: Involves visually comparing the microstructure to standardized, graded images (comparison charts or overlays). This quick visual approach is best for equiaxed grains and can be subject to minor observer bias.
- Planimetric (Jeffries) Procedure: Involves counting the number of grains within a defined area (typically inscribed as a circle or square). This method is precise and minimizes bias; repeatability and reproducibility are generally within ±0.5 grain size units.
- Intercept Procedure: Counts the number of grains intercepted or the number of grain boundary intersections per unit length along a test line. Precision is related to the number of intercepts measured, often offering efficiency compared to the planimetric method.
-
Selection of Test Fields and Sampling
- Emphasizes random selection of specimen areas to avoid bias.
- Suggests measuring at least three fields per specimen for accurate averaging.
- Recommends not estimating average grain size in heavily cold-worked material.
-
Reporting and Calibration
- Requires documentation of procedures, fields measured, and number of grains or intercepts counted.
- Outlines calibration procedures for microscopes and comparison charts to ensure measurement accuracy.
Applications
-
Metallurgical Quality Control
- Used by manufacturers and material testing laboratories to measure grain size for production control and certification.
- Supports the verification of product compliance with mechanical property specifications, as grain size directly affects material strength and performance.
-
Materials Research and Development
- Facilitates alloy development and process optimization by providing reliable methods to track changes in grain size resulting from mechanical or thermal treatments.
-
Educational and Standardization Purposes
- Acts as the foundational method in academic labs for teaching grain size analysis.
- Used in the creation of new material standards and specifications in line with global trade and quality frameworks.
Related Standards
- ASTM E930: Test Methods for Estimating the Largest Grain Observed in a Metallographic Section.
- ASTM E1181: Test Methods for Characterizing Duplex (Mixed) Grain Size Distributions.
- ASTM E1382: Test Methods for Determining Average Grain Size Using Semiautomatic and Automatic Image Analysis.
- ASTM E3: Guide for Preparation of Metallographic Specimens.
- ASTM E407: Practice for Microetching Metals and Alloys.
Practical Value
Adopting ASTM E112-13(2021) ensures:
- Consistent grain size measurement across organizations.
- Improved accuracy and traceability in metallography and materials science.
- Support for global trade, as measurements align with international standards and WTO technical barriers to trade principles.
By following ASTM E112, laboratories and industries optimize their testing processes, meet regulatory requirements, and improve material performance predictability.
Технические детали
- Технический комитет
- E04 - Metallography
- SKU
- ASTM E112-13(2021)
Похожие стандарты
Другие стандарты ASTM
ASTM-TPT-47
Phase I & Phase II Environmental Site Assessment Processes
Phase I & Phase II Environmental Site Assessment Processes
ASTM-TPT-8
Phase I Environmental Site Assessment Practices For Commercial Real Estate: Phase I Site Assessment & Transac…
ASTM-TPT-1137
ASTM D975 Standard Specification for Diesel Fuel
ASTM D975 Standard Specification for Diesel Fuel
ASTM-TPT-1202
ASTM D8421 Standard Test Method for Determination of Per- and Polyfluoroalkyl Substances (PFAS) in Aqueous Ma…
ASTM D8421 Standard Test Method -- eLearning Course
ASTM-TPT-691
Microaprendizagem para D4057: Amostragem de ponto (PT)
D4057 Microlearning: Spot Sampling Portuguese
ASTM-TPT-1091
Metodo de prueba estandar D4052 de ASTM -- Curso de aprendizaje electrónico (ES)
Modulo eLearning para ASTM D4052 en espanol
ASTM ACEM20180086
Using Neutron Radiography to Quantify the Settlement of Fresh Concrete
Specifications have been implemented for concrete bridge decks in North America that restrict the use of higher slump concrete mixtures primarily because of concerns about differential settlement and…
ASTM ACEM20180041
Experimental Study of Competing Failure of Reinforced Concrete Based on the Weibull Distribution
To predict the failure lifetime of reinforced concrete, a current accelerating corrosion test was performed on concrete by simulating the environment in an area with saline soil. To study the concret…