ISO 13520:2023 PDF
Determination of ferrite content in austenitic stainless steel castings
Determination of ferrite content in austenitic stainless steel castings
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 11
- Дата публикации:
- 13 марта 2023 г.
- Издание:
- ISO IS 13520 edition 3 version 1
- ICS:
- 77.140.80
Procedures are covered for estimating ferrite content in certain grades of austenitic iron-chromium-nickel alloy castings that have compositions balanced to create the formation of ferrite as a second phase in amounts controlled within specified limits. Methods are described for estimating ferrite content by chemical, magnetic and metallographic means.
Abstract
Overview
ISO 13520:2023 specifies procedures for estimating ferrite content in austenitic stainless steel castings (iron‑chromium‑nickel alloys) where a controlled amount of ferrite forms as a second phase. The standard describes three accepted approaches - chemical composition, magnetic response, and metallographic methods - and explains how to use Cr/Ni equivalents and the Schoefer diagram to estimate ferrite percentage. It also sets out ordering, acceptance, and certification information for suppliers and purchasers.
Key Topics
- Scope and purpose: Applies to austenitic castings balanced to produce limited ferrite (volume percent) and where ferrite content affects mechanical, welding and corrosion performance.
- Three measurement methods:
- Chemical composition method - estimation using chromium and nickel equivalents (Cr/Ni ratio) and the Schoefer diagram; depends on accurate chemical analysis of C, Mn, Si, Cr, Ni, Mo, Nb and N.
- Magnetic response method - instrument measurements calibrated for castings (reference methods such as ASTM A799 or BNIF 345); surface condition, probe placement, and heat treatment affect results.
- Metallographic examination - quantitative or point‑count methods (ISO 9042) on agreed specimen locations for the most accurate local ferrite fraction.
- Practical requirements:
- Element ranges applicable to the Schoefer diagram (e.g., Cr 17–28 wt%, Ni 4–13 wt%, plus limits for C, Mn, Si, Mo, Nb, N).
- Ordering details: alloy grade, required ferrite range (volume %), measurement method, and measurement locations.
- Acceptance criteria for magnetic measurements (average within limits; not more than 20% of individual readings outside limits) and precedence of metallography if disagreement occurs.
- Documentation and certification: manufacturers must report chemical analyses and ferrite estimates and sign inspection documents.
Applications and Who Uses It
ISO 13520:2023 is used by:
- Foundries and casting manufacturers for process control and supplier certification.
- Metallurgists and quality engineers for ferrite specification, testing and acceptance.
- Purchasing/specification writers and inspectors to define ferrite limits and test methods in contracts.
- Designers and fabricators who need to ensure mechanical, weldability and corrosion performance of austenitic castings by controlling ferrite content.
Practical applications include iron‑chromium‑nickel pump housings, valve bodies, pressure-containing components and other cast parts where microstructure impacts service behavior.
Related Standards
- ISO 4990 - Steel castings - General technical delivery requirements
- ISO 9042 - Manual point counting method for volume fraction estimation
- ASTM A799 and BNIF 345 - referenced calibration/guidance for magnetic ferrite measurement (moved to bibliography in this edition)
Keywords: ISO 13520:2023, ferrite content, austenitic stainless steel castings, Schoefer diagram, ferrite measurement, chemical composition method, magnetic response, metallographic examination.
Технические детали
- Технический комитет
- ISO/TC 17/SC 11 - Steel castings
- SKU
- ISO 13520:2023
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
BS ISO 9042:2024
ДействующийSteels. Point counting method for statistically estimating the volume fraction of a constituent with a point…
1 Scope This document specifies a point counting method for statistically estimating the volume fraction of a constituent through the microstructure of a steel by means of a point grid. It applies to…
ISO 4990:2003
ОтменёнSteel castings — General technical delivery requirements
ISO 8689-1:2000
ДействующийWater quality — Biological classification of rivers — Part 1: Guidance on the interpretation of biological qu…
Overview ISO 8689-1:2000, titled Water quality - Biological classification of rivers - Part 1: Guidance on the interpretation of biological quality data from surveys of benthic macroinvertebrates, is…
ISO/ASTM51540-04(2012)
ОтменёнStandard Practice for Use of a Radiochromic Liquid Dosimetry System (Withdrawn 2020)
Significance and Use4.1 The radiochromic liquid dosimetry system provides a means of measuring absorbed dose in materials (5-7). Under the influence of ionizing radiation, chemical reactions take pla…
ISO/ASTM51204-04
ДействующийStandard Practice for Dosimetry in Gamma Irradiation Facilities for Food Processing (Withdrawn 2013)
Significance and Use4.1 Food products may be treated with ionizing radiation, such as gamma-rays from 60Co or 137Cs sources, for numerous purposes, including control of parasites and pathogenic micro…
ISO/ASTM51431-05
ОтменёнStandard Practice for Dosimetry in Electron Beam and X-Ray (Bremsstrahlung) Irradiation Facilities for Food P…
Significance and Use4.1 Food products may be treated with acceleratorgenerated radiation (electrons and X-rays) for numerous purposes, including control of parasites and pathogenic microorganisms, in…
ISO/ASTM52628-20e1
ДействующийStandard Practice for Dosimetry in Radiation Processing
1.1 This practice describes the basic requirements that apply when making absorbed dose measurements in accordance with the ASTM E61 series of dosimetry standards. In addition, it provides guidance o…
ISO/ASTM52921-13(2019)
ДействующийStandard Terminology for Additive Manufacturing—Coordinate Systems and Test Methodologies
Significance and Use 3.1 Although many additive manufacturing systems are based heavily upon the principles of Computer Numerical Control (CNC), the coordinate systems and nomenclature specific to CN…