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Gas Atomized Iron/Silicon Alloy Powder

Gas Atomized Iron/Silicon Alloy Powder

SKU:IRO-686d8f

High-quality Gas Atomized Iron/Silicon Alloy Powder with mean size 14, ideal for alloy manufacturing, offers superior conductivity.

Regular price $75.99
Regular price Sale price $75.99
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Gas Atomized Iron/Silicon Alloy Powder

Gas Atomized Iron/Silicon Alloy Powder

$75.99

Quantity: 1

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Gas Atomized Iron/Silicon Alloy Powder

Gas Atomized Iron/Silicon Alloy Powder

$75.99

Quantity: 1

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Experience exceptional quality with our Gas Atomized Iron/Silicon Alloy Powder featuring a mean particle size of 14 and a high melting point of 1380.00°C. Spherical in shape, this powder is meticulously produced to meet stringent industry requirements, ensuring reliability and performance in various applications. Ideal for alloy manufacturing processes, this powder offers superior thermal and electrical conductivity, making it a top choice for demanding institutional needs.

Product Specifications

Material Material
Iron AlloysAlloys are mixtures of a metal with other elements, the precise combination being governed by the required properties. Alloys are generally considered to be metallic in nature i.e. they have good thermal and electrical conductivities).Alloys can be manufactured by various routes, the most widely used being to melt the constituents together and to cool the resultant mixture to form a single or multi-phase solid.
Specifications Form
Powder
Specifications Mean Particle Size
14
Specifications Production Method
Gas Atomised
Specifications Product Shape
Spherical
Specifications Weight
20 to 500 g
Thermal Properties Melting Point
1380.00 ºC
Type Type
AlloyAlloys are mixtures of a metal with other elements, the precise combination being governed by the required properties. Alloys are generally considered to be metallic in nature i.e. they have good thermal and electrical conductivities). Alloys can be manufactured by various routes, the most widely used being to melt the constituents together and to cool the resultant mixture to form a single or multi-phase solid.