Molybdenum crucible

Category Tag

Molybdenum crucibles are very important in many laboratory applications, especially in the fields of metallurgy, materials science, chemical analysis, etc. They are used to study and analyze the properties of various materials, as well as perform high-temperature reactions and experiments.

Additional information

Material

Pure Molybdenum

Purity

Mo>99.95%

Density

10.2g/cm³

Product Details:

Molybdenum crucible is a kind of laboratory equipment used for high temperature experiments and material melting. It is usually made of pure molybdenum because molybdenum has good high temperature stability and corrosion resistance and can withstand extremely high temperatures and chemical corrosion.

Molybdenum crucibles usually have a bowl or funnel shape with an opening and a bottom. Its design allows samples to be heated at high temperatures without being affected by the container itself. Therefore, it is often used to analyze and study the properties of materials, such as melting temperature, heat capacity, thermal conductivity, etc.

The main features of molybdenum crucibles include:

1. High temperature stability: Molybdenum crucible can withstand very high temperatures and can usually be used above 1500 degrees Celsius.

2. Good corrosion resistance: Molybdenum is not easily corroded by many chemicals, so it can be used to process various chemical samples.

3. High purity: In order to avoid the influence of impurities on experimental results, molybdenum crucibles are usually made of high-purity molybdenum.

4. Durability: Molybdenum crucible has a long service life and can be reused many times.

5. Easy to clean: Since the surface of the molybdenum crucible is not easy to adhere to substances, cleaning is relatively easy.

Molybdenum crucibles are very important in many laboratory applications, especially in the fields of metallurgy, materials science, chemical analysis, etc. They are used to study and analyze the properties of various materials, as well as perform high-temperature reactions and experiments.

Size:

Delivery condition Size(mm) Tolerance(mm)
Diameter(mm) High(mm) Diameter(mm) High(mm)
Sintering 10-500 10-600 +/-5 +/-5
Forging 10-130 10-200 +/-1 +/-2

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