Microsilica 85-95%D for Concrete Cement

Product Details
Customization: Available
Type: Silicate Cement / Portland Cement
Mineral Composition: Portland Cement
Manufacturer/Factory, Trading Company
Gold Member Since 2021

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Registered Capital
2000000 RMB
Plant Area
<100 square meters
  • Microsilica 85-95%D for Concrete Cement
  • Microsilica 85-95%D for Concrete Cement
  • Microsilica 85-95%D for Concrete Cement
  • Microsilica 85-95%D for Concrete Cement
  • Microsilica 85-95%D for Concrete Cement
  • Microsilica 85-95%D for Concrete Cement
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Basic Info.

Model NO.
Microsilica
Hardening Feature
Rapid Hardening
Heat of Hydration
Moderate Heat
Fineness
0~10um
Technique
Dry Process
Color
Grey
Silica Fume
85%-92%
Size
Accept Custom
Sio2 Content
85%-95%
Al2O3 Content
0.3%Max
Cao Content
0.5%Max
Usage
Cement Concrete Refractory
Fe2o3 Content
0.1%Max
MGO Content
0.55%Max
P2o5 Content
0.5%Max
Appearance
Power Granular Silica Fume
Transport Package
Jumbo Bag
Specification
Customize
Trademark
MRG
Origin
China
HS Code
28112290
Production Capacity
90000tons

Product Description

Introduction:

Silica fume, also known as microsilica, (CAS number 69012-64-2, EINECS number 273-761-1) is an amorphous (non-crystalline) polymorph of silicon dioxide, silica. It is an ultrafine powder collected as a by-product of the silicon and ferrosilicon alloy production and consists of spherical particles with an average particle diameter of 150 nm. The main field of application is as pozzolanic material for high performance concrete.
Microsilica 85-95%D for Concrete Cement

 

Function:

Microsilica 85-95%D for Concrete Cement
Dense castables

Improved flow

Hot strength

Strength during heat-up


Specification:
Type
SiO2
Al2O3
Fe2O3
LOI
PH
SF-95
95%Min
1.0%Max
1.0%Max
4%Max
4.5-7.5
SF-92
92%Min
1.0%Max
1.0%Max
5%Max
4.5-7.5
SF-90
90%Min
2.0%Max
2.0%Max
5%Max
4.5-7.5
SF-85
85%Min
2.5%Max
2.5%Max
6%Max
4.5-7.5

 

Package:


Microsilica 85-95%D for Concrete Cement

Because of its extreme fineness and high silica content, silica fume is a very effective pozzolanic material. Standard specifications for silica fume used in cementitious mixtures are ASTM C1240, EN 13263.

Silica fume is added to Portland cement concrete to improve its properties, in particular its compressive strength, bond strength, and abrasion resistance. These improvements stem from both the mechanical improvements resulting from addition of a very fine powder to the cement paste mix as well as from the pozzolanic reactions between the silica fume and free calcium hydroxide in the paste.

Addition of silica fume also reduces the permeability of concrete to chloride ions, which protects the reinforcing steel of concrete from corrosion, especially in chloride-rich environments such as coastal regions and those of humid continental roadways and runways (because of the use of deicing salts) and saltwater bridges. Furthermore, Silica Fumes has important uses in oil and gas operations. Silica fume can be used for a primary placement of grout as a hydraulic seal in the well bore, or secondary applications such as remedial operations including leak repairs, splits, and closing of depleted zones. 

Prior to the mid-1970s, nearly all silica fume was discharged into the atmosphere. After environmental concerns necessitated the collection and landfilling of silica fume, it became economically viable to use silica fume in various applications, in particular high-performance concrete.Effects of silica fume on different properties of fresh and hardened concrete include:

  • Workability: With the addition of silica fume, the slump loss with time is directly proportional to increase in the silica fume content due to the introduction of large surface area in the concrete mix by its addition. Although the slump decreases, the mix remains highly cohesive.
  • Segregation and bleeding: Silica fume reduces bleeding significantly because the free water is consumed in wetting of the large surface area of the silica fume and hence the free water left in the mix for bleeding also decreases. Silica fume also blocks the pores in the fresh concrete so water within the concrete is not allowed to come to the surface.
Microsilica 85-95%D for Concrete Cement

 

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