Tungsten Crucible Types

A tungsten crucible is a high-temperature container made of high-purity tungsten, widely used in metallurgy, chemical engineering, and the electronics industry. It is particularly essential in high-temperature smelting, single crystal growth, and vacuum evaporation processes. Depending on the application and manufacturing process, tungsten crucibles can be categorized into the following types:

Sintered Tungsten Crucible
Manufacturing Process: Produced by pressing tungsten powder into shape through powder metallurgy and then sintering at high temperatures.
Characteristics: High density, suitable for mass production, and relatively cost-effective.
Applications: Commonly used for smelting rare earth metals, glass, and certain alloys.

Forged Tungsten Crucible
Manufacturing Process: Machined from tungsten rods or tungsten ingots through forging techniques.
Characteristics: High structural density, excellent mechanical strength, and superior high-temperature resistance.
Applications: Ideal for high-precision experiments or scenarios requiring enhanced durability, such as single crystal silicon growth.

Spun Tungsten Crucible
Manufacturing Process: Produced by spinning tungsten sheets into thin-walled crucibles.
Characteristics: Thin-walled and lightweight, making it suitable for processes requiring rapid heating and cooling.
Applications: Primarily used in vacuum coating and small-scale smelting.

tungsten crucible photo tungsten crucible photo

Stamped Tungsten Crucible
Manufacturing Process: Formed by stamping tungsten plates or sheets at high temperatures using specialized molds.
Characteristics: More efficient than sintering or forging for producing thin-walled, precisely shaped crucibles with high production efficiency.
Applications: Frequently used in vacuum evaporation coating, small-scale smelting, and electronic applications requiring rapid heating.

Riveted Tungsten Crucible
Manufacturing Process: Assembled from tungsten plates through riveting, suitable for large or specially shaped crucibles.
Characteristics: Flexible in size and customizable, though riveted joints may be slightly weaker in overall strength compared to solid structures.
Applications: Commonly used in large-scale industrial production.

Plasma Sprayed Tungsten Crucible
Manufacturing Process: Created by coating a tungsten layer onto a substrate using plasma spraying technology.
Characteristics: Complex manufacturing process, designed for specialized applications such as composite material preparation.
Applications: Used in research fields and specialized industrial applications.

Each type of tungsten crucible is designed to meet specific industrial or research needs, ensuring optimal performance in high-temperature environments.

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