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The Preparation And Application of Aluminum Carbide Powder

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Aluminum carbide

It is an organic compound having the molecular structure Al4C3. Aluminium carbide, a powdered or crystal block of yellow or greenish grey aluminum that is hygroscopic, is an inorganic compound with the molecular formula Al4C3. Aluminium carbide is dissolved at high temperature into aluminum hydroxide and methane in cold water.

Aluminum Carbide Preparation

By heating coke and aluminum in an electric oven, you can make aluminum carbide. Al4C3 Aluminum Carbide is created by the direct addition of two elements at very high temperatures.

Make a mixture from 1 part black smoke and 6 parts aluminum powder. After moistening the mixture with pine essential oils, spread a thick layer on a clay tray and then add carbon powder. You should cover the crucible by a lid and then fill in any gaps with refractory soil with asbestos fibers. Next, place the mixture and crucible in an oven. For 30 minutes. Higher temperatures can cause the reaction to proceed more efficiently.

Following cooling, product is subject to dilute hydrochloric (or alkaline) treatment under cooling. This will remove any excess aluminum. Aluminum carbide as fine crystal powder is rinsed with water. Next, it is quickly washed off with alcohol and placed in a drying container at 80 to 90 degrees C for drying. It contains large amounts of aluminum Nitride.

While pure aluminum carbide has no color, products manufactured using this process often come in different colors from those made with the same raw materials.

A pure aluminum nitride product can be made by adding hydrogen to the amount of the soot and aluminum mixture. The calcination process should take place at 1800-1900degC for two to three hours. Once the product has been ground, it is calcined once more at the mentioned temperatures.

Aluminum Carbide

The use of aluminum carbide in metalurgical, catalyst and methane manufacturing is common. Other applications include:

1. When combined with silicon caride, the finely dispersed aluminum carbonide particles within the aluminum matrix decrease the material’s tendency to creep.

2. Aluminium-aluminum carbonide composites can be created by mechanically alloying, grinding aluminum particles and graphite together.

3. High-speed cutting machines can make aluminum carbide an abrasive. Its hardness almost matches that of topaz.

4. For example, fireworks can use aluminum carbide to create fireflies.

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