Better suited for applications
SiO₂ ≥ 92%, suitable for high-strength, high-density material systems.
Product Details
Densified Silica Fume
Suitable for bridges, marine engineering, high-strength concrete, precast components, and high-performance material systems.
Product Overview
It offers efficiency advantages in transportation, storage, and dosing, making it particularly suitable for large-scale high-strength concrete projects, marine and bridge engineering, high-strength precast components, and applications such as UHPC and RPC.
Product Advantages
SiO₂ ≥ 92%, suitable for high-strength, high-density material systems.
Lower impurity content, better compatibility with admixtures, and more stable mix design performance.
Suitable for applications such as high-strength concrete, UHPC, and RPC.
Densified form, improving efficiency in transportation, storage, and dosing.
Technical Data
| Test Item | Typical Value | ASTM C1240 |
|---|---|---|
| SiO₂ Content | >= 92% | 85.0 % Minimum |
| Moisture Content | <= 2.0% | 3.0% Maximum |
| Loss on Ignition | = 118 % | - |
| Original particle size | 1.0 um | - |
| 45 μm sieve residue | 4.0 % | 10.0 % Maximum |
| Activity Index (7 days) | 108.0 % | 105.0 % Minimum |
| Activity Index (28 days) | >= 118 % | - |
| Bulk Density (Compacted) | 450-700 Kg/m³ | - |
| BET Specific Surface Area | 15,000-25,000 m²/Kg | 15,000 m²/Kg |
The data listed above is for reference only and does not constitute factory control specifications or acceptance criteria. Customers should conduct trials within their own systems to confirm product suitability.
Performance Comparison
Based on existing formulation tests, this section shows reference performance improvement from the micro-filling effect and pozzolanic reaction of silica fume. Actual results vary with matrix type, mix design, dosage, dispersion and process conditions, so sample testing is recommended.
Silica Fume Applications
Suitable for high-strength, high-density concrete systems with a strength class of C80 or higher.
Optimize particle size distribution to improve matrix density and durability.
Improves water resistance and resistance to chloride ion penetration.
Suitable for pipe piles, utility poles, bridge components, and wind turbine towers.
Improves concrete density and long-term water resistance.
Suitable for refractory systems containing coarse aggregates under conditions of adequate mixing.
Quality Control
Packaging and Logistics
Suitable for small batches, experiments, and sporadic use.
Suitable for engineering projects and industrial use, and designed for both container loading and transshipment.
Match pallets, labels, inner liners, and export documentation according to project requirements.
FAQ
Answers to common purchasing questions about packaging, export documents, sample trials, loading and delivery.
92% Densified Silica Fume refers to an active, ultrafine siliceous powder with a SiO₂ content of at least 92% that has undergone a densification process. It has a high bulk density and is suitable for material systems that allow for thorough mixing, such as high-strength concrete, UHPC, precast components, and refractory castables.
The 92% densified Silica Fume has a higher SiO₂ grade and is typically used in projects with stricter requirements for material density, durability, and batch consistency. While the 90% grade emphasizes a balance between performance and cost, the 92% grade is better suited for high-strength concrete, highly durable projects, and mid- to high-end refractory materials.
92% Densified Silica Fume is primarily suitable for use in high-strength concrete, UHPC and RPC, bridge and marine engineering projects, high-strength precast components, tunnel and underground engineering, and projects requiring high weather resistance.
Yes. 92% Densified Silica Fume can be used in UHPC and RPC systems to help optimize particle size distribution and improve matrix density. Since Densified products contain loose agglomerates, their use requires forced mixing, a proper dosing sequence, and a suitable water-reducing agent.
92% Densified Silica Fume can enhance concrete density through the micro-filling effect, pozzolanic reaction, and optimization of the interface transition zone, thereby improving strength, impermeability, abrasion resistance, and resistance to chloride ion penetration. Actual results depend on the dosage, mix design, degree of dispersion, and curing conditions.
Compliance with ASTM C1240 must be determined based on complete test results, including SiO₂ content, moisture content, loss on ignition, 45 μm sieve residue, and activity index; it cannot be confirmed solely based on a SiO₂ content of 92%. Suppliers may provide a Certificate of Analysis (COA) and relevant test reports for specific batches.
Supply Capacity
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