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Iron & Metal Alloys #2906921

Low Carbon Ferro Chrome

  • Element Cr, C, Si
Extra low carbon ferrochrome is used during steel production to correct chrome percentages, without causing undesirable variations in the carbon or trace element percentages. Extra Low Carbon ferro chrome is also a low cost alternative to metallic chrome for uses in super alloys and other special melting applications. Extra Low Carbon Ferro Chrome is limited by the carbon content of the alloy being not more than 0.03%. Extra Low Carbon Ferro Chrome is usually produced by the Perrin Process, Thermit Process or by the VIM Process.
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Ferro Calcium Silicon

  • Element Si, Ca, Fe
  • MAC-FeCaSi-30 60 % min, 30 % max
  • MAC-FeCaSi-12 55-60 %, 12-14 %
Calcium-Silicon alloys are used as deoxidizer and desulfurizer in the manufacturing of high grade steel. Indeed, Calcium and Silicon both have a strong chemical affinity for oxygen. Especially calcium, have a strong chemical affinity not only for oxygen, but also for sulphur and nitrogen. The steel industry accounts for around 90 % of global Calcium Silicon consumption. Ferro Calcium Silicon alloy is also used for the modification of non-metallic inclusions. Calcium Silicon is used to control the shape, size and distribution of oxide and sulfide inclusions improving fluidity, machinability, ductility, and impact properties of the steel product. The calcium liquefies the suspended solid inclusions of aluminium oxide, a principal source of fatigue failure in highly stressed alloy steels, that are always present in aluminium killed steels (Al203 is transformed by Ca into CaO:Al2O3). Furthermore, the material properties of steel are improved: the calcium aluminates formed are largely undeformable in the solidified steel and allow high isotropy of the material properties to be maintained after working of the steel. As a sulphide former, Calcium Silicon alloy promotes random distribution of sulfides, thereby minimizing chain-type inclusions.
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Ferro Alloys

We deal in almost all kinds of ferro alloys available in the market. 1. Ferro Manganese 2. Ferro Chrome 3. Ferro Boron 4. Ferro Phosphorus 5. Ferro Titanium 6. Ferro Aluminum 7. Ferro Molybdenum 8. Ferro Titanium 9. Silico Manganese
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Copper Metal

Powder (60 100 MESH) for Welding IndustryPowder (Below 100 MESH) for Powder Metallurgy
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Ferro Boron

Ferro Boron is an alloy, which is formed by combining iron and boron. Ferro Boron will typically be added to steel to form a very strong, highly durable and specialist steel for use across a variety of applications. Although the uses of Ferro Boron as a steel additive are limited due to the relative high cost of production, it is still considered to be one of the most useful ferro alloys.
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Ferro Chrome

Chrome is the twenty first most abundant element in the Earths crust, its name is derived from the Greek word Chroma to mean color due to the many colorful compounds made from it. Chrome does not occur free in nature, rather as the mineral Chromite. Chromite ore was first discovered in the Ural mountains of Russia in 1778 and chrome metal was subsequently isolated by Nicholas Louis Vauquelin in Paris, France in 1797. South Africa has 90% of the worlds economic chrome reserves and produces over 50% of the worlds Chromite. Other producers are Kazakhstan and India with increasing amounts being produced in Turkey.
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Ferro Silicon

Metal & Alloys Corporation was established in December, 1983 with a goal to be the leading trader of minerals, metals and refractories. It is the vision and leadership of Mr. P. R. Agarwal that today Metal & Alloys Corporation is recognized worldwide as a prime supplier of metals, minerals, refractories of all grades and specifications.
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Ferro Titanium

Ferro Titanium is used by stainless steel makers as a stabilizer to prevent chromium carbide forming at grain boundaries and in the production of low carbon steels for sheet production. Ferro Titanium is also used in foundries for addition of titanium to the molten metal imparting excellent strength to it without altering other ratios.
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