EN ISO 4491-4:2019 PDF
Metallic powders - Determination of oxygen content by reduction methods - Part 4: Total oxygen by reduction-extraction (ISO 4491-4:2019)
Metallic powders - Determination of oxygen content by reduction methods - Part 4: Total oxygen by reduction-extraction (ISO 4491-4:2019)
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 14
- Дата публикации:
- 1 мая 2019 г.
- Издание:
- CEN EN 4491 edition 2 version 1
- ICS:
- 77.160
This document specifies a method for the determination of the total oxygen content of metallic powders by reduction-extraction at high temperature. By agreement, this method is also applicable to the determination of the total oxygen content of sintered metal materials. The method is applicable to all powders of metals, alloys, carbides, and mixtures thereof which are non-volatile under the test conditions. The sample can be in powder or compact form. The analysis is carried out on the powder as supplied, but the method is not applicable if the powder contains a lubricant or binder. If such substances are present, the method may be used only if they can first be completely removed by a method not affecting the oxygen content of the powder. This document is to be read in conjunction with ISO 4491-1.
Abstract
Overview
EN ISO 4491-4:2019 specifies a standardized laboratory method for measuring the total oxygen content of metallic powders by high-temperature reduction–extraction. The method is applicable to powders of metals, alloys, carbides and their mixtures that are non‑volatile under test conditions, and - by agreement - to sintered metal materials. This part of the ISO 4491 series is intended to be read in conjunction with ISO 4491‑1 (general guidelines).
Key topics and technical requirements
- Principle: sample oxygen is converted to carbon oxides during high‑temperature reduction in a graphite crucible; the resulting CO or CO2 is extracted and quantitatively measured.
- Test environments: extraction can be carried out under vacuum or in a flow of inert gas (e.g., nitrogen, argon, helium).
- Reaction media & heating:
- Dry (solid state) or metal bath (fusible metal to accelerate reduction).
- Continuous heating (preheated crucible) or pulse heating (rapid high‑power pulse).
- Apparatus & materials:
- High‑purity graphite crucibles (individual or cumulative use).
- Devices for crucible degassing, sample introduction, gas extraction, and a purification train to remove water.
- Measuring systems for CO / CO2: volumetric, chromatography, infrared absorption, thermal conductivity, or coulometry.
- Calibration gases (CO, CO2) or certified reference materials for instrument calibration.
- Sample preparation:
- Powder tested as supplied (unless lubricant/binder is present - must be completely removed without changing oxygen content).
- Test portion can be weighed directly, compacted (uniaxial pressing without binders), or enclosed in a capsule.
- Quality practice:
- Carry out blank tests and calibration.
- Use at least two test portions if no gauge repeatability and reproducibility (R&R) study is performed.
- Report results with stated tolerances and test details.
Applications and who uses this standard
- Powder metallurgy manufacturers and suppliers verifying oxygen limits in metal powders (iron, nickel, titanium, etc.).
- Materials testing and QA/QC laboratories performing compositional control for powders and sintered parts.
- R&D labs optimizing powder processing, sintering behavior and powder storage/handling.
- Fabricators of additive manufacturing feedstocks where oxygen affects mechanical properties and powder stability.
Keywords: metallic powders, oxygen determination, reduction‑extraction, total oxygen, powder metallurgy, graphite crucible, CO, CO2, inert gas, calibration.
Related standards
- ISO 4491‑1 - General guidelines for oxygen determination methods.
- ISO 4491‑2 and ISO 4491‑3 - other reduction methods (note: these do not determine total oxygen; see ISO 4491‑4 for total oxygen by reduction‑extraction).
Технические детали
- Технический комитет
- CEN/SS M11 - Powder metallurgy
- SKU
- EN ISO 4491-4:2019
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