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  2. Magnesium - Wikipedia

    en.wikipedia.org/wiki/Magnesium

    Magnesium is the third-most-commonly-used structural metal, following iron and aluminium. [58] The main applications of magnesium are, in order: aluminium alloys, die-casting (alloyed with zinc), [59] removing sulfur in the production of iron and steel, and the production of titanium in the Kroll process. [60]

  3. Magnesium alloy - Wikipedia

    en.wikipedia.org/wiki/Magnesium_alloy

    The machinability of magnesium alloys is the best of any commercial metal, and in many applications, the savings in machining costs more than compensate for the increased cost of the material. [ citation needed ] It is necessary, however, to keep the tools sharp and to provide ample space for the chips.

  4. Sorel cement - Wikipedia

    en.wikipedia.org/wiki/Sorel_cement

    Sorel cement (also known as magnesia cement or magnesium oxychloride) is a non-hydraulic cement first produced by the French chemist Stanislas Sorel in 1867. [ 1 ] In fact, in 1855, before working with magnesium compounds, Stanislas Sorel first developed a two-component cement by mixing zinc oxide powder with a solution of zinc chloride .

  5. Magnesium compounds - Wikipedia

    en.wikipedia.org/wiki/Magnesium_compounds

    Other applications include: Magnesium hydride is under investigation as a way to store hydrogen. Magnesium reacted with an alkyl halide gives a Grignard reagent, which is a very useful tool for preparing alcohols. Magnesium salts are included in various foods, fertilizers (magnesium is a component of chlorophyll), and microbe culture media.

  6. Pidgeon process - Wikipedia

    en.wikipedia.org/wiki/Pidgeon_process

    Vapor-deposited magnesium crystals from the Pidgeon process. The Pidgeon process is a practical method for smelting magnesium.The most common method involves the raw material, dolomite being fed into an externally heated reduction tank and then thermally reduced to metallic magnesium using 75% ferrosilicon as a reducing agent in a vacuum. [1]

  7. Bioresorbable metal - Wikipedia

    en.wikipedia.org/wiki/Bioresorbable_Metal

    The primary metals in this category are magnesium-based [2] [3] and iron-based alloys, [4] although recently zinc has also been investigated. [ 5 ] [ 6 ] Currently, the primary uses of bioresorbable metals are as stents for blood vessels (for example bioresorbable stents ) and other internal ducts.

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  9. Magnesium/Teflon/Viton - Wikipedia

    en.wikipedia.org/wiki/Magnesium/Teflon/Viton

    Thermites based on magnesium/Teflon/Viton, aka MTV-compositions, have been in use since the 1950s as payloads in infrared decoy flare applications. See also Countermeasures . Derived from the acronym MTV is the expression "MTV-Flare" for pyrotechnic infrared decoy flares.

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