
Magnesium welding wire, It is a specialized welding wire used for welding magnesium alloy materials. Due to its lightweight, high strength, and good corrosion resistance, magnesium alloys have a wide range of applications in aviation, automotive, electronics, and other fields. The use of magnesium welding wire makes the connection of magnesium alloy materials more firm and reliable, improving the quality and performance of products.

During the welding process, magnetic welding wire needs to be used in conjunction with welding equipment to form a strong weld by melting the welding wire and base material. Strict control of welding parameters, such as welding current, voltage, welding speed, etc., is required during the welding process to ensure the quality and performance of the weld seam.
In addition, the selection of magnetic welding wire also needs to be considered based on specific welding requirements and usage environment. Different magnesium welding wires have different compositions and performance characteristics, suitable for different welding scenarios. Therefore, when selecting magnesium welding wires, it is necessary to fully understand their performance characteristics and usage requirements to ensure welding quality and effectiveness.
In summary, magnesium welding wire, as an important welding material, plays a crucial role in the connection of magnesium alloy materials. By reasonable selection and use, high-quality welding effects can be achieved, and the quality and performance of products can be improved.
In addition to its superior physical properties, magnesium welding wire also has some special precautions during the welding process. Firstly, due to its high activity, magnesium easily reacts with oxygen in the air to form magnesium oxide, which can affect the quality of welding. Therefore, before welding, it is necessary to strictly clean the welding wire and welding area, remove surface oxides and oil stains, and ensure the purity of the welding.
In addition, the welding temperature of magnesium welding wire also needs to be strictly controlled. Excessive welding temperature may lead to coarse grain size in the weld area, affecting the mechanical properties of the weld; However, excessively low welding temperatures may not be able to fully melt the welding wire and base material, resulting in unstable welds. Therefore, selecting appropriate welding parameters and process methods is crucial to ensure the welding quality of magnesium welding wires.
Finally, it is worth noting that magnesium welding wire may produce some harmful gases and smoke during the welding process. Therefore, it is necessary to weld in a well ventilated environment and wear appropriate protective equipment to ensure the safety of operators.
In summary, magnesium welding wire, as a key material for welding magnesium alloy materials, has broad application prospects. However, due to its unique physical and chemical properties, it is necessary to strictly control various parameters and conditions during the welding process to ensure welding quality and operational safety. With the continuous progress of technology and the continuous optimization of processes, it is believed that magnesium welding wires will demonstrate even better performance in future applications.


Use bags, metal pail, or paper pail to pack, the underlayer are plastic bag.

Transport Tool: Trucks or containers.

Storage Methods: The storehouse should be ventilated, dry, fire preventing, wet preventing, static preventing and the hermetic goods can be stored for 6 months

Factory direct supply

Particle size and Package Can customized

Strickly quality control system and advanced testing equipments

Good aftersale service.

Magnesium powder products are sold to many countries and regions, such as India, the Netherlands, the United States, Canada, South Korea and have established long-term cooperative relationships with well-known foreign companies such as POSCO and OPTA.
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| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Powder |
SMP358 | Nearly Spherical | >Mg 99% | 0.86-0.92 | 35-80 mesh |
| SMP451 | Nearly Spherical | >Mg 99% | 0.86-0.92 | 45-100 mesh | |
| MP30 | lrregular | >Mg 99% | 0.64-0.73 | 30-80 mesh | |
| MP60 | lrregular | >Mg 99% | 0.64-0.73 | 60-200 mesh | |
| MP150 | lrregular | >Mg 99% | 0.76-0.85 | -150 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Granules |
MG12 | Particles or spheres | ≥99.5% | - | 12-35 mesh |
| MG20 | Particles or spheres | ≥99.5% | - | 20-80 mesh | |
| MG100 | Particles or spheres | ≥99.5% | - | 100mesh all pass | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Turning Chips |
MS6 | Chips | ≥99.7% | - | 6mesh All pass |
| MS840 | Chips | ≥99.7% | - | 8-40mesh | |
| MS2080 | Chips | ≥99.7% | - | 20-80 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesium Alloy Chips |
AZ91D | lrregular | Mg90.43; AI8.9; Zn0.43 | - | 30-80 mesh |
| ZK61 | lrregular | Mg94.46; AI0.0006 Zn5.19 |
- | 30-80 mesh | |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnalium Powder |
AMAP50 | lrregular | AI:50±2%; Mg:50±2% | 0.76-0.85 | 60-200 mesh |
| Can be produced according to customer specifications | |||||
| Product | Grade | Shape | Composition(%) | AD(g/cm3) | Particle Size |
| Magnesiun Desulphurization Reagent | PSMp1080 | lrregular | ≥Mg 92% | 0.75-0.95 | 2-0.18mm (10mesh~80mesh) |
| Can be produced according to customer specifications | |||||







