Results 151 to 160 of about 5,017 (196)
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Calculations of Portland cement clinkering reactions

Advances in Cement Research, 2000
Calculations have been undertaken of both equilibrium and non-equilibrium chemistry of relevant parts of the CaO—Fe2O3—Al2O3—SiO2 system and related reactions in the gas phase. The examples provide new insights into topics of current concern in the manufacture of Portland cement, including the early stages of melting, the undesirable retention of lime,
T. I. Barry, F. P. Glasser
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Portland Cement Clinker

2014
This chapter is composed of five sections: 2.1. Portland cement clinker burning, 2.2. The phase systems important for cement chemistry, 2.3. The clinkering process in industrial mixes, 2.4. Thermochemistry of clinkering process, 2.5. Phase composition of Portland cements. Clinkering process can be divided in two stage: the reactions in the solid state,
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Thermoelasticity of belite in Portland cement clinker

Cement and Concrete Research, 1998
Abstract Belite crystals, separated from an industrial cement clinker, were examined by high-temperature powder X-ray diffractometry. We determined the starting and finishing temperatures of the α′ L -to-β martensitic transformation and those of the reverse (β-to-α′ L ) transformation.
K Fukuda, S Ito, H Taguchi
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Utilization of steel slag for Portland cement clinker production

Journal of Hazardous Materials, 2008
The aim of the present research work is to investigate the possibility of adding steel slag, a by-product of the conversion of iron to steel process, in the raw meal for the production of Portland cement clinker. Two samples of raw meals were prepared, one with ordinary raw materials, as a reference sample ((PC)(Ref)), and another with 10.5% steel slag
P E, Tsakiridis   +3 more
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Reaction of Portland cement clinker with gaseous SO2 to form alite-ye'elimite clinker

Cement and Concrete Research, 2019
Abstract In this paper, an innovative method was proposed to synthesize an alite-ye'elimite clinker by adopting a secondary heat treatment step in a different sintering atmosphere after a traditional Portland cement (PC) clinker has been heated up at 1450 °C.
Suhua Ma   +5 more
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Phase identification of alite in portland cement clinker

Cement and Concrete Research, 1982
Abstract Unequivocal phase identification of alite in portland cement clinker has been made by combined use of microscopy during heating, X-ray powder diffraction, and differential thermal analysis. Alite thus far assigned to M 1b by X-ray powder diffractometry, in reality, gives every indication of being M 3 . Only M 1a should therefore be denoted
I. Maki, K. Kato
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Properties of Portland clinker and cement

This chapter deals with chemical and physical properties other than ones for which the nature of the hydration products must be considered. In general, properties of the whole clinker or cement are alone considered, those of the constituent phases having been dealt with in Chapter 1, but factors affecting the reactivities of these phases are included.
Ian G Richardson, HFW Taylor
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Electron microprobe analysis of portland cement clinkers

Cement and Concrete Research, 1979
Abstract Using modern electron microprobe techniques, we have undertaken a detailed composition analysis of all the major phases in portland cement. A preferential incorporation of certain elements into either alites or belites is confirmed, and compared to existing ideas on alite decomposition. In addition the composition data are discussed in terms
A. Ghose, P. Barnes
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An Unusual Form of Belite in Portland Cement Clinker

Journal of the American Ceramic Society, 1981
Potassium‐rich structures around the edge of a fissure in a portland cement clinker have been found to have compositional and structural properties similar to those of dendritic bellies. However, the potassium levels surprisingly exceed the accepted solubility limit.
A. Ghose, P. Barnes
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Mechanical behaviour and reliability of sintered clinker Portland

Journal of the European Ceramic Society, 1994
Abstract In the present work, clinker Portland has been used, not as a component of cements manufacture, but like a raw material for making structural ceramics. The manufacturing process for this material includes blending for homogenization followed by cold isostatic pressing and sintering.
J.M. Torralba   +2 more
openaire   +1 more source

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