


slag
Slag is a stony byproduct separated from metals during the smelting or refining of ore. In the grinding industry, Ground Granulated Blast-Furnace Slag (GGBS) is a high-value eco-friendly cementitious material that significantly improves the durability and strength of modern concrete.


slag
Slag is a stony byproduct separated from metals during the smelting or refining of ore. In the grinding industry, Ground Granulated Blast-Furnace Slag (GGBS) is a high-value eco-friendly cementitious material that significantly improves the durability and strength of modern concrete.
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CLIRIK offers a comprehensive range of slag 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 slag-based products.

Material Introduction
Slag typically has a Mohs hardness of 5.0 – 6.0, making it a moderately hard and abrasive material that requires grinding systems with high torque and wear resistance. Its core industrial value lies in its latent hydraulic properties. When ground into ultra-fine powder, slag reacts with water and calcium hydroxide to form stable compounds, making it a superior partial replacement for Portland cement. This process not only reduces carbon emissions in construction but also enhances the chemical resistance of structures against seawater and sulfates.

Clirik Total Grinding Solutions
CLIRIK offers a comprehensive range of slag 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 slag-based products.

Industrial Applications
1
200 -400 Mesh | S95 Grade GGBS & Standard Concrete
Applications :
Used as a high-performance mineral admixture in general construction concrete and ready-mix concrete.
Advantages :
Effectively improves workability and long-term strength, while significantly reducing the hydration heat, which is critical for preventing cracks in mass concrete structures.
2
400 – 800 Mesh | S105/S115 Grade & High-Performance Concrete
Applications :
Utilized in high-strength infrastructure projects such as skyscrapers, long-span bridges, and marine engineering.
Advantages :
Provides superior chemical resistance and lower permeability, shielding the internal reinforcement from corrosion in harsh saltwater or industrial environments.
3
800 – 1500 Mesh | Ultra-High Performance Concrete (UHPC) & Micro-Fillers
Applications :
Acting as a reactive micro-filler in specialized precast components and ultra-high-density concrete formulations.
Advantages :
Achieves extreme density and structural integrity, allowing for the creation of thinner, lighter, yet significantly stronger architectural elements.
4
1500 – 2500+ Mesh | Precision Ceramics & Advanced Additives
Applications :
Sub-micron powder processed for use in technical ceramics, refractory materials, and high-precision polymer modifiers.
Advantages :
The ultra-fine particle size offers massive specific surface area for rapid reactivity, improving the thermal stability and mechanical hardness of specialized industrial products.

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 slag 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 slag-based products.

Material Introduction
Slag typically has a Mohs hardness of 5.0 – 6.0, making it a moderately hard and abrasive material that requires grinding systems with high torque and wear resistance. Its core industrial value lies in its latent hydraulic properties. When ground into ultra-fine powder, slag reacts with water and calcium hydroxide to form stable compounds, making it a superior partial replacement for Portland cement. This process not only reduces carbon emissions in construction but also enhances the chemical resistance of structures against seawater and sulfates.

Clirik Total Grinding Solutions
CLIRIK offers a comprehensive range of slag 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 slag-based products.

Industrial Applications
1
200 -400 Mesh | S95 Grade GGBS & Standard Concrete
Applications :
Used as a high-performance mineral admixture in general construction concrete and ready-mix concrete.
Advantages :
Effectively improves workability and long-term strength, while significantly reducing the hydration heat, which is critical for preventing cracks in mass concrete structures.
2
400 – 800 Mesh | S105/S115 Grade & High-Performance Concrete
Applications :
Utilized in high-strength infrastructure projects such as skyscrapers, long-span bridges, and marine engineering.
Advantages :
Provides superior chemical resistance and lower permeability, shielding the internal reinforcement from corrosion in harsh saltwater or industrial environments.
3
800 – 1500 Mesh | Ultra-High Performance Concrete (UHPC) & Micro-Fillers
Applications :
Acting as a reactive micro-filler in specialized precast components and ultra-high-density concrete formulations.
Advantages :
Achieves extreme density and structural integrity, allowing for the creation of thinner, lighter, yet significantly stronger architectural elements.
4
1500 – 2500+ Mesh | Precision Ceramics & Advanced Additives
Applications :
Sub-micron powder processed for use in technical ceramics, refractory materials, and high-precision polymer modifiers.
Advantages :
The ultra-fine particle size offers massive specific surface area for rapid reactivity, improving the thermal stability and mechanical hardness of specialized industrial products.

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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