Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Properties of SiMn slag as apozzolanic material in portland cement manufacture

View through CrossRef
The primary purpose of this study was to evaluate the behaviour of SiMn slag as a pozzolanic material in commercial Portland cement manufacture. This necessitated exploring different scientific and technical aspects to ensure a correct valuation. The results obtained revealed that silica and calcium are the main components of SiMn slag, whose pozzolanic activity occupies an intermediate position between silica fume and fly ash; it reduces heat of hydration and mortars made with cement containing SiMn slag exhibit compressive strength values similar to the figures for standard mortar. Consequently, the use of SiMn slag as an active addition to cement is feasible, inasmuch as the resulting product meets the requirements laid down in the present legislation.
Title: Properties of SiMn slag as apozzolanic material in portland cement manufacture
Description:
The primary purpose of this study was to evaluate the behaviour of SiMn slag as a pozzolanic material in commercial Portland cement manufacture.
This necessitated exploring different scientific and technical aspects to ensure a correct valuation.
The results obtained revealed that silica and calcium are the main components of SiMn slag, whose pozzolanic activity occupies an intermediate position between silica fume and fly ash; it reduces heat of hydration and mortars made with cement containing SiMn slag exhibit compressive strength values similar to the figures for standard mortar.
Consequently, the use of SiMn slag as an active addition to cement is feasible, inasmuch as the resulting product meets the requirements laid down in the present legislation.

Related Results

Slags in Production of Manganese Alloys
Slags in Production of Manganese Alloys
AbstractThe paper analyses the equilibrium partitioning of manganese and silicon between slag and alloy during the production of high carbon ferromanganese (HC FeMn) and silicomang...
The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
This study compares the strength of the native bone-cement bond and the old-new cement bond under cyclic loading, using third generation cementing technique, rasping and contaminat...
Performance of Blast-Furnace Slag Cement
Performance of Blast-Furnace Slag Cement
Abstract The sulfate resisting portland cement is obtained from a special portland cement clinker with low-tricalcium-aluminate content. In Western Europe another ce...
Model study for subsurface trajectory of 75FeSi and SiMn ferroalloys in steel
Model study for subsurface trajectory of 75FeSi and SiMn ferroalloys in steel
The present study, using a low temperature model, is aimed at examining the feasibility of subsurface melting of 75FeSi and SiMn alloys added to steel baths. Wooden objects, simula...
Expanding Cements for Primary Cementing
Expanding Cements for Primary Cementing
Abstract The expansion of cement and the effect of various expansive aids upon oil well cementing compositions have been investigated to determine the amount of e...
Study on cementitious properties of steel slag
Study on cementitious properties of steel slag
The converter steel slag chemical and mineral components in China?s main steel plants have been analysed in the present paper. The electronic microscope, energy spectrum anal...
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
ABSTRACT: The integrity of cement sheath is critical to oil and gas effective extraction, in which the cement displacement efficiency and solidify quality are the...
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
Cement-soil mixing piles have been commonly used to enhance the bearing capacity of fly ash stratum and mitigate the settlement damage to the surrounding environment. However, only...

Back to Top