


Tungsten
Tungsten is a rare strategic metal with the highest melting point (3,422℃) of all metals. Primarily extracted from Wolframite and Scheelite, it is known as the “Teeth of Industry” due to its indispensable role in aerospace, military, and high-precision manufacturing.


Tungsten
Tungsten is a rare strategic metal with the highest melting point (3,422℃) of all metals. Primarily extracted from Wolframite and Scheelite, it is known as the “Teeth of Industry” due to its indispensable role in aerospace, military, and high-precision manufacturing.
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CLIRIK offers a comprehensive range of tungsten ore crushing and grinding systems. Our technology is designed to optimize your production efficiency, significantly reduce specific energy consumption, and meet the most stringent manufacturing requirements for various tungsten-based products.

Material Introduction
Tungsten ore typically occurs in nature as wolframite (iron-manganese tungstate) and scheelite (calcium tungstate). It is characterized by its exceptional density (specific gravity of 7.0 – 7.5) and a Mohs hardness ranging from 4.0 to 5.5. In the global supply chain, the processing of tungsten ore begins with crushing and fine grinding to liberate the minerals for concentration via gravity or flotation. The resulting concentrate is then chemically processed into Ammonium Paratungstate (APT), the precursor for all tungsten products. Because of its abrasive nature and high weight, grinding tungsten requires high-torque systems and superior wear-resistant materials.

Clirik Total Grinding Solutions
CLIRIK offers a comprehensive range of tungsten ore crushing and grinding systems. Our technology is designed to optimize your production efficiency, significantly reduce specific energy consumption, and meet the most stringent manufacturing requirements for various tungsten-based products.

Industrial Applications
1
200 – 325 Mesh | Mineral Beneficiation (Gravity & Flotation)
Applications :
Primary grinding of raw tungsten ore to separate tungsten minerals from waste rock (gangue) through gravity or flotation methods.
Advantages :
Achieves optimal mineral liberation, ensuring a higher grade of tungsten concentrate and minimizing the loss of valuable metal in the tailings.
2
400 – 1250 Mesh | APT Chemical Smelting
Applications :
Fine grinding of tungsten concentrate to increase the reactivity for chemical leaching and the synthesis of Ammonium Paratungstate (APT).
Advantages :
The high specific surface area significantly improves the chemical reaction rate and leaching efficiency, reducing the duration and cost of smelting.
3
1250 – 2500 Mesh | Tungsten Carbide & Hard Alloys
Applications :
Processing ultra-fine tungsten powder into Tungsten Carbide (WC), the core material for high-speed cutting tools, mining bits, and industrial wear parts.
Advantages :
Provides unmatched hardness and thermal stability, ensuring tools maintain their cutting edge and structural integrity under extreme heat and pressure.
4
2500+ Mesh | Precision Electronics & Aerospace
Applications :
Sub-micron tungsten powder used in integrated circuit components, X-ray shielding, and rocket engine nozzles.
Advantages :
The sub-micron particle size ensures exceptional sintering activity and high compact density, which are critical for the mechanical strength and thermal stability required in aerospace components. In electronic applications, it provides superior dispersion and uniformity, ensuring the reliability of micro-circuits and high-efficiency radiation absorption for advanced shielding.

Related Cases

Clirik HGM Series Ultrafine Mill has been successfully integrated into a production line in Abu Dhabi, United Arab Emirates
To meet the client’s demand in Abu Dhabi, United Arab Emirates, for high-precision 10-micron (D97) calcium carbonate, our experts engineered an eco-friendly production line focused on strict particle size control and zero dust emission. By integrating advanced ball milling units, precision classifiers, and powder coating equipment, the system ensures uniform particle distribution and minimal material loss, delivering a high-quality, sustainable solution for premium industrial powder applications.

Clirik CLUM Series Vertical Mill was officially commissioned for high-end powder grinding in Ho Chi Minh City, Vietnam
By incorporating advanced vertical grinding mills and smart separators, our technical team customized a high-efficiency processing circuit in Ho Chi Minh City, Vietnam. This project was specifically designed to satisfy local requirements for 15-micron (D97) mineral fillers through rigorous fineness management and clean-air operation. The facility guarantees consistent product quality and optimized power savings, providing a top-tier, eco-conscious outcome for specialized manufacturing sectors.



CLIRIK offers a comprehensive range of tungsten ore crushing and grinding systems. Our technology is designed to optimize your production efficiency, significantly reduce specific energy consumption, and meet the most stringent manufacturing requirements for various tungsten-based products.

Material Introduction
Tungsten ore typically occurs in nature as wolframite (iron-manganese tungstate) and scheelite (calcium tungstate). It is characterized by its exceptional density (specific gravity of 7.0 – 7.5) and a Mohs hardness ranging from 4.0 to 5.5. In the global supply chain, the processing of tungsten ore begins with crushing and fine grinding to liberate the minerals for concentration via gravity or flotation. The resulting concentrate is then chemically processed into Ammonium Paratungstate (APT), the precursor for all tungsten products. Because of its abrasive nature and high weight, grinding tungsten requires high-torque systems and superior wear-resistant materials.

Clirik Total Grinding Solutions
CLIRIK offers a comprehensive range of tungsten ore crushing and grinding systems. Our technology is designed to optimize your production efficiency, significantly reduce specific energy consumption, and meet the most stringent manufacturing requirements for various tungsten-based products.

Industrial Applications
1
200 – 325 Mesh | Mineral Beneficiation (Gravity & Flotation)
Applications :
Primary grinding of raw tungsten ore to separate tungsten minerals from waste rock (gangue) through gravity or flotation methods.
Advantages :
Achieves optimal mineral liberation, ensuring a higher grade of tungsten concentrate and minimizing the loss of valuable metal in the tailings.
2
400 – 1250 Mesh | APT Chemical Smelting
Applications :
Fine grinding of tungsten concentrate to increase the reactivity for chemical leaching and the synthesis of Ammonium Paratungstate (APT).
Advantages :
The high specific surface area significantly improves the chemical reaction rate and leaching efficiency, reducing the duration and cost of smelting.
3
1250 – 2500 Mesh | Tungsten Carbide & Hard Alloys
Applications :
Processing ultra-fine tungsten powder into Tungsten Carbide (WC), the core material for high-speed cutting tools, mining bits, and industrial wear parts.
Advantages :
Provides unmatched hardness and thermal stability, ensuring tools maintain their cutting edge and structural integrity under extreme heat and pressure.
4
2500+ Mesh | Precision Electronics & Aerospace
Applications :
Sub-micron tungsten powder used in integrated circuit components, X-ray shielding, and rocket engine nozzles.
Advantages :
The sub-micron particle size ensures exceptional sintering activity and high compact density, which are critical for the mechanical strength and thermal stability required in aerospace components. In electronic applications, it provides superior dispersion and uniformity, ensuring the reliability of micro-circuits and high-efficiency radiation absorption for advanced shielding.

Related Cases

Clirik HGM Series Ultrafine Mill has been successfully integrated into a production line in Abu Dhabi, United Arab Emirates
To meet the client’s demand in Abu Dhabi, United Arab Emirates, for high-precision 10-micron (D97) calcium carbonate, our experts engineered an eco-friendly production line focused on strict particle size control and zero dust emission. By integrating advanced ball milling units, precision classifiers, and powder coating equipment, the system ensures uniform particle distribution and minimal material loss, delivering a high-quality, sustainable solution for premium industrial powder applications.

Clirik CLUM Series Vertical Mill was officially commissioned for high-end powder grinding in Ho Chi Minh City, Vietnam
By incorporating advanced vertical grinding mills and smart separators, our technical team customized a high-efficiency processing circuit in Ho Chi Minh City, Vietnam. This project was specifically designed to satisfy local requirements for 15-micron (D97) mineral fillers through rigorous fineness management and clean-air operation. The facility guarantees consistent product quality and optimized power savings, providing a top-tier, eco-conscious outcome for specialized manufacturing sectors.
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