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Features
CAS No.: | 7439-95-4 |
Linear Formula: | Mg |
Material: | Pure Magnesium |
Purity: | 99% - 99.999% |
Appearance: | Silvery metallic solid |
Shape: | Ingot |
Size: | Customized |
Magnesium Ingot Description
Welcome to the world of magnesium ingots, a very light metal that is very versatile and reliable. Magnesium ingots are important in many different industries like construction, medicine, and more. In this detailed description of a product, we explain how magnesium ingots work, what they can do, how they are made, and more.
Magnesium is one of the most innovative metals because it can conduct heat and electricity like aluminum. Magnesium is a metal that melts like aluminum and stays stable in air and water at normal temperatures. This happens because it forms a protective layer called an oxide layer. Magnesium is strong and can stand up to most acids, but it can also give off hydrogen when exposed to acids. It is a powerful reducing agent because it can react with many different elements.
Making magnesium ingots involves many steps, starting with getting magnesium from its ores using electrolytic processes. The magnesium is taken out and made into different types of metals. Modern methods of making make sure that the metals are mixed precisely and that the final pieces have the right properties.
Using magnesium ingots has many benefits, such as:
Magnesium is light and can be used in places where weight reduction is important, like in cars and airplanes.
Magnesium alloys are very strong against corrosion and can last a long time in tough places.
Magnesium ingots can be used to make high-performance alloys that meet specific application requirements. These alloys have superior mechanical properties and thermal stability.
To sum up, magnesium ingots show that modern metalworking is innovative and very good. Magnesium ingots are a great combination of properties, versatility, and reliability. They continue to make progress across industries, such as construction, medicine, manufacturing, and more. We make high-quality magnesium ingots that help our customers do amazing things. Join us on a journey to innovation and excellence with magnesium ingots.
Magnesium Ingot Specification
Elements | Content limit |
Fe | <2 ppm |
Si | <1 ppm |
Ni | <6 ppm |
Cu | <2 ppm |
Al | <1 ppm |
Mn | <3 ppm |
Ti | <1 ppm |
Pb | <39 ppm |
Sn | <1 ppm |
Zn | <45 ppm |
Magnesium Ingot Applications and Related Industries
Construction: Magnesium alloys are a lightweight but strong option for building parts. They have a good strength-to-weight ratio and can resist corrosion.
Medicine: Magnesium compounds are important for cellular functions and pharmaceutical formulations.
Manufacturing: Magnesium ingots are used to produce a wide range of products, including aerospace components, automotive parts, electronic devices, and consumer goods.
Chemical Identifiers
Linear Formula | Mg |
MDL Number | MFCD00085308 |
EC No. | 231-104-6 |
Beilstein/Reaxys No. | 4948473 |
Pubchem CID | 5462224 |
SMILES | [Mg] |
InchI Identifier | InChI=1S/Mg |
InchI Key | FYYHWMGAXLPEAU-UHFFFAOYSA-N |
Magnesium Ingot Properties (Theoretical)
Molecular Weight | 24.31 |
Appearance | Gray |
Melting Point | 650 °C |
Boiling Point | 1090 °C |
Density | 1738 kg/m3 |
Solubility in H2O | N/A |
Electrical Resistivity | 4.45 microhm-cm @ 20 °C |
Electronegativity | 1.2 Paulings |
Heat of Fusion | 2.16 Cal/gm mole |
Heat of Vaporization | 32.517 K-Cal/gm atom at 1090 °C |
Poisson's Ratio | 0.29 |
Specific Heat | 0.243 Cal/g/K @ 25 °C |
Tensile Strength | N/A |
Thermal Conductivity | 1.56 W/cm/K @ 298.2 K |
Thermal Expansion | (25 °C) 24.8 µm·m-1·K-1 |
Vickers Hardness | N/A |
Young's Modulus | 45 GPa |
Magnesium Ingot Health & Safety Information
Signal Word | Danger |
Hazard Statements | H250-H260 |
Hazard Codes | F |
Precautionary Statements | P222-P223-P231+P232-P370+P378-P422 |
Flash Point | N/A |
Risk Codes | N/A |
Safety Statements | N/A |
RTECS Number | OM2100000 |
Harmonized Tariff Code | 8104.90 |
Transport Information | UN 1869 4.1 / PG III |
WGK Germany | nwg |
GHS Pictograms | GHS02 Flame
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