GB/T 5149-2026Magnesium and magnesium alloy powder (English PDF)
镁及镁合金粉
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Issued by
SAMR; SAC
Level / Type
National · Recommended
Issue date
April 30, 2026
Implementation date
November 1, 2026
Scope
GB/T 5149-2026 is the English-translated version of 镁及镁合金粉.
GB/T 5149-2026 is the Chinese national standard covering magnesium powder - the grades, the particle size and purity, and above all the handling, because a suspended magnesium dust is one of the most readily ignitable and hardest to extinguish materials in industry. It replaces GB/T 5149.1-2004 and has been in force since 1 November 2026. It was issued on 30 April 2026 and takes effect on 1 November 2026, replacing GB/T 5149.1-2004. The document is under the responsibility of the China Nonferrous Metals Industry Association. This page is published from the official record of the 2026 edition; the clause text of a standard this recent is not yet in circulation, and the figures, limits and tables it contains are those of the document itself, delivered in full with the English translation.
Document preview — GB/T 5149-2026
National Standard of the People's Republic of China
- ICS
- 77.150.99
- Classification
- H 61
- Replacing
- GB/T 5149.1-2004
Issued by: State Administration for Market Regulation; Standardization Administration of the PRC
Contents
- 5 Technical Requirements
- 5.1 Particle size distribution, median diameter, and loose packing density
- 5.2 Chemical composition
- 5.6 Appearance Quality
- 6 Test Methods
- 6.1 Particle size distribution, median diameter, and loose packing density
- 6.2 Chemical composition
- 6.5 Passivation performance
- 7 Inspection Rules
- 7.1 Inspection and Acceptance
- 7.2 Batching
- 7.3 Inspection Items
- 7.4 Sampling
- 7.5 Judgment of Test Results
- 8 Marking, packaging, transport, storage and accompanying documents
- 8.1 Marking
- 8.2 Packaging
- 8.3 Transportation and storage
5.1 Particle size distribution, median diameter, and loose packing density
5.1.1 The particle size distribution and loose packing density of milled magnesium powder shall conform to the provisions of Table 2.
5.1.2 The particle size distribution, median diameter (D50), and bulk density of the atomized magnesium powder shall conform to the specifications in Table
3.The particle size distribution and median diameter in the table... (D50) Two indicators, the buyer can only choose one of them when placing an order.
5.1.4 If the buyer has special requirements for particle size distribution, median diameter and loose packing density, the requirements shall be determined through negotiation between the supplier and the buyer and noted in the purchase order.
5.2 Chemical composition
5.2.1 The chemical composition of milling magnesium powder shall conform to the provisions of Table 5.
5.2.2 The chemical composition of atomized magnesium powder shall conform to the provisions of Table 6.
5.2.4 If the buyer has other requirements for the chemical composition, the supplier and the buyer shall negotiate and determine them, and indicate them in the purchase order.
5.3 Moisture The moisture content (mass fraction) of milled magnesium powder and ball-milled aluminum-magnesium alloy powder should not exceed 0.2%, and the moisture content (mass fraction) of atomized magnesium powder should also be... No more than 0.1%.
5.4 Hydrochloric acid insoluble content The hydrochloric acid insoluble content (mass fraction) of milled magnesium powder and atomized magnesium powder should not exceed 0.2%.
5.5 Passivation performance Milled magnesium powder used as a desulfurizing agent in steelmaking should undergo passivation treatment. The passivation process shall be determined through negotiation between the supplier and the buyer. The product after passivation treatment... The performance of the product shall conform to the specifications in Table
8.If the buyer has passivation requirements for other magnesium powders, the supplier and the buyer shall agree on the terms and indicate them in the purchase order.
5.6 Appearance Quality
5.6.1 Magnesium powder produced by milling is in the form of silvery-white/gray flakes. Magnesium powder produced by milling and pulverizing is in the form of granules.
5.6.2 The atomized magnesium powder is in the form of spherical particles, and is silvery-white or silvery-gray in color.
5.6.3 The ball-milled aluminum-magnesium alloy powder is an irregular polyhedron in shape, and is silvery-white or silvery-gray in color.
5.6.4 Magnesium powder should be free of foreign inclusions and lumps that are difficult to sieve due to powder particle adhesion. Trace amounts are permissible in ball-milled aluminum-magnesium alloy powder. Powder lumps.
5.6.5 The magnesium powder after passivation treatment should have a dense coating, but a small amount of passivation powder is allowed, and the color should be grayish-white.
6.1 Particle size distribution, median diameter, and loose packing density
6.1.1 The particle size distribution and median diameter (D50) of magnesium powder were determined according to the method in Appendix B.
6.1.2 The bulk density of magnesium powder shall be determined according to the method in Appendix C.
6.2 Chemical composition
6.2.1 The determination of aluminum content in magnesium powder shall be carried out in accordance with the method of GB/T 13748.1.
6.2.2 The determination of iron content in magnesium powder shall be carried out in accordance with the method of GB/T 13748.9.
6.2.3 The determination of chloride ion content in magnesium powder shall be carried out in accordance with the method of GB/T 13748.18.
6.2.4 The determination of silicon content in magnesium powder shall be carried out in accordance with the method of GB/T 13748.9.
6.2.5 The determination of copper content in magnesium powder shall be carried out in accordance with the method of GB/T 13748.2.
6.2.6 The determination of the content of active magnesium and active metals (Al Mg) in magnesium powder shall be carried out in accordance with the method in Appendix D.
6.2.7 The method for determining the carbon content in magnesium powder shall be determined through negotiation between the supplier and the buyer and shall be specified in the purchase order.
6.3 Moisture The moisture content in magnesium powder was determined according to the method in Appendix E.
6.4 Content of hydrochloric acid insoluble matter The determination of the hydrochloric acid insoluble content in magnesium powder shall be carried out according to the method in Appendix F.
6.5 Passivation performance
6.5.1 Active magnesium content The determination of active magnesium content shall be carried out according to the method in Appendix D.
6.5.2 Chloride ion content The chloride ion content was determined according to the method in GB/T 13748.18.
6.5.3 Loose packing density The loose density was determined according to the method in Appendix C.
6.5.4 Angle of Repose The angle of repose was determined according to the method of YS/T 56.
6.5.5 Ignition Point Place 10g of passivated magnesium powder in a tray and put it into an oven or a high-temperature furnace with a viewing window. Turn off the oven or furnace and... Turn on the power and start heating. Observe the changes in the magnesium powder. When it starts to burn, read the displayed temperature. This temperature is the ignition point.
6.5.6 Flame retardant time After heating the high-temperature furnace to 1000°C±2°C, quickly open the furnace door and place the tray containing 10g of passivated magnesium powder into the high-temperature furnace within 5 seconds. Open the furnace, quickly close the furnace door, start timing, and observe the changes in the magnesium powder. When it begins to burn, stop timing; this time is the flame-retardant time.
6.6 Appearance Quality The appearance quality of magnesium powder is inspected visually.
7.1 Inspection and Acceptance
7.1.1 The supplier shall inspect the products to ensure that the product quality meets the requirements of this document and the purchase order, and fill out a quality certificate.
7.1.2 The buyer shall inspect the received products in accordance with the provisions of this document. If the inspection results do not conform to the provisions of this document or the purchase order, the buyer shall... Objections should be submitted to the supplier in writing and resolved through negotiation between the supplier and the buyer. Objections concerning appearance quality and particle size distribution (or median diameter) should be submitted within [timeframe missing]. Objections must be raised within one month of the product's issuance date. Objections concerning other performance aspects must be raised within three months of receiving the product. For arbitration, please contact [relevant authority/organization]. The sampling was conducted by a unit recognized by both the supplier and the buyer, and samples were taken jointly by the buyer.
7.2 Batching
7.2.1 Magnesium powder shall be submitted for acceptance in batches, and each batch shall consist of magnesium powder of the same grade. The batch weight of atomized magnesium powder and ball-milled aluminum-magnesium alloy powder shall not exceed the specified limit. More than 5000kg.
7.2.2 Milling magnesium powder requiring passivation should be produced from the same batch of magnesium ingots, with 5000kg constituting one inspection batch. Batches less than 5000kg are also acceptable. An inspection batch.
7.2.3 If the buyer has special requirements for the batch weight, they can negotiate with the supplier and indicate them in the order form.
7.3 Inspection Items
7.3.1 Before each batch of milled magnesium powder and atomized magnesium powder leaves the factory, particle size distribution (or median diameter), loose packing density, chemical composition, moisture content, and hydrochloric acid content shall be tested. Inspection of insoluble content and appearance quality.
7.3.2 Each batch of ductile aluminum-magnesium alloy powder shall be inspected for particle size distribution, chemical composition, moisture content and appearance quality before leaving the factory.
7.3.3 The frequency of testing for the angle of repose, ignition point, and flame retardant time of magnesium powder after passivation treatment shall be determined through negotiation between the supplier and the buyer, or as required by the purchase order. Conduct an inspection.
7.4 Sampling
7.4.1 For each batch of products, sampling and fractionation shall be carried out according to the provisions of GB/T 5314.The samples shall be mixed thoroughly and reduced to at least 250g using the quartering method. Two equal portions of the sample.
7.4.2 Place two samples into separate dry, sealed containers. One sample is for testing and analysis, and the other is to be stored in the laboratory for 6 months for arbitration. For analysis purposes.
7.5 Judgment of Test Results
7.5.1 When the test results for particle size distribution, median diameter (D50), loose density, hydrochloric acid insoluble content, angle of repose, ignition point, or flame retardant time are inconsistent... If the requirements of this document are met, double the number of samples shall be taken from the batch for repeated testing of the items that do not comply with the requirements of this document. If the re-inspection results still do not meet the requirements of this document, the batch of powder shall be deemed unqualified. However, with the mutual agreement of both parties, each piece may be inspected individually, and those that pass the inspection shall be deemed unqualified. delivery.
7.5.2 If the chemical composition does not conform to the provisions of this document, the batch of products shall be deemed unqualified.
7.5.3 If the moisture content does not meet the requirements of this document, the batch of products shall be deemed unqualified.
7.5.4 If the appearance quality does not meet the requirements of this document, the batch of products shall be deemed unqualified.
8.1 Marking
8.1.1 Mark each bucket (bag) with ink that is not easily faded.
a) Name of the manufacturer;
b) Product Name;
d) Batch number;
e) Gross weight and net weight;
f) This document number;
g) Production date;
h) The words "flammable" and "moisture-proof" are included;
i) Dangerous goods signs, the size, color and usage of the signs shall comply with the provisions of GB 190.
8.2 Packaging
8.2.1 Magnesium powder shall be packaged in steel drums or cardboard drums lined with moisture-proof plastic bags. Milling magnesium powder may also be packaged in woven bags. Woven bags should not... Static electricity is generated.
8.2.2 The packaging drums are fully open. They have undergone stacking tests, drop tests, airtightness tests, and hydraulic tests according to GB 12463. Only qualified products can be used, and the body and lid of the packaging barrel should not have sharp burrs or be damaged.
8.2.3 The lid of the packaging drum shall be secured with a horizontally convex locking ring or a galvanized bolt locking ring. A horizontally convex locking ring shall be used. When necessary, pins should be added for securing. Rubber gaskets should be added to the lids of metal packaging drums, and the drums should be inspected for both sealing and appearance.
8.2.4 After the magnesium powder is filled, the bag opening should be tied and sealed.
8.2.5 If the buyer has other requirements for packaging, the supplier and the buyer shall negotiate and specify them in the purchase order.
8.3 Transportation and storage
8.3.1 Magnesium powder should be transported using hazardous chemical transport vehicles, and the transport vehicles should be protected against static electricity and no source of ignition should be allowed near them.
8.3.2 Magnesium powder should not be transported with acids and is prohibited by small boats. During loading and unloading of drums, impacts and inversions are prohibited. Palletized transport is required upon request. When transporting, wooden or plastic pallets should be used, and the pallets and steel drums should be secured together with steel or plastic straps.
8.3.3 Magnesium powder should be stored in a well-ventilated, dry warehouse.
8.3.4 The glass windows of warehouses storing magnesium powder should be white-coated to prevent direct sunlight. Explosion-proof electrical appliances should be used for warehouse lighting, and lightning protection devices should be installed. Storage. Oxidizing agents, acids, chlorine, fluorine, and other halogens, as well as substances that react with each other, are not permitted in the warehouse.
8.4 Accompanying Documents Each batch of products should be accompanied by a product quality certificate (to ensure the validity of relevant inspection documents, the quality certificate may not be provided with the products). (for supply), with a note on it.
a) Name of the manufacturer;
b) Product Name;
d) Batch number;
e) Number of pieces and net weight;
f) All analytical and testing results and the supplier's quality inspection department's stamp;
g) This document number;
h) Manufacturing date.
9.Order details The purchase order for the products listed in this document should include the following information.
a) Product Name;
......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 51 pages — is available in the English PDF.
Editions of GB/T 5149
| Edition | Title | Revision | Status |
|---|---|---|---|
| GB/T 5149-2026 | Magnesium and magnesium alloy powder | current edition | Current |
| GB/T 5149.1-2004 | Magnesium and magnesium alloy powder | previous edition | In force until 1 November 2026 |
This page sells the current edition, GB/T 5149-2026. Earlier editions are listed for reference only.
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