Investigation Of the Effects of Temperature on Physical and Mechanical Properties of Monolithic Refractory Made with Pozzolanic Materials

Investigation Of the Effects of Temperature on Physical and Mechanical Properties of Monolithic Refractory Made with Pozzolanic Materials PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
In recent years, scientific studies are carried out to find new refractory material. Having good mechanical properties under very high temperatures, refractories are widely used in industries like iron, steel, glass, cement and pottery. Researches are focused on monolithic refractory making because of their superior properties comparing to conventional firebrick refractories. Providing a mono-block body, having no joints makes the monolithic refractories more durable at elevated temperatures. Easier production and installation are two main points that people are choosing monolithic refractories, thus an economy is made. In this study, for monolithic refractory production, high alumina cement was used as binding material. It is known that the increase in alumina (Al2O3) content increases the high temperature resistance, so that crushed firebrick, having 85% Al2O3 was used as aggregate. Pozzolanic materials, which are silica fume, fly ash, ground granulated firebrick and ground granulated blast furnace slag, were added to improve physical and mechanical properties of mortar. With the addition of steel fibres, change in compressive strength and flexural strength was observed. Superplasticizer was used to understand its behaviour under high temperatures. Portland cement containing mortars were also prepared to make comparison with high alumina cement containing specimens. Specimens were prepared in 5x5x5 cm and 4x4x16 cm prisms. They were cured for one day at curing room, then heated to 105°C and then heated to 1100°C. Weight, size and ultrasound velocity change, compressive strength and flexural strength tests were done to determine physical and mechanical properties of the monolithic refractories, before and after heating. Heated and non-heated specimens were pulverized for microstructural investigation with X-Ray diffraction (XRD) method. Using high alumina cement with 50 6 60 % granulated blast furnace slag or granulated firebrick, by the weight of cement, and crushe.

Investigation Of the Effects of Temperature on Physical and Mechanical Properties of Monolithic Refractory Made with Pozzolanic Materials

Investigation Of the Effects of Temperature on Physical and Mechanical Properties of Monolithic Refractory Made with Pozzolanic Materials PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description
In recent years, scientific studies are carried out to find new refractory material. Having good mechanical properties under very high temperatures, refractories are widely used in industries like iron, steel, glass, cement and pottery. Researches are focused on monolithic refractory making because of their superior properties comparing to conventional firebrick refractories. Providing a mono-block body, having no joints makes the monolithic refractories more durable at elevated temperatures. Easier production and installation are two main points that people are choosing monolithic refractories, thus an economy is made. In this study, for monolithic refractory production, high alumina cement was used as binding material. It is known that the increase in alumina (Al2O3) content increases the high temperature resistance, so that crushed firebrick, having 85% Al2O3 was used as aggregate. Pozzolanic materials, which are silica fume, fly ash, ground granulated firebrick and ground granulated blast furnace slag, were added to improve physical and mechanical properties of mortar. With the addition of steel fibres, change in compressive strength and flexural strength was observed. Superplasticizer was used to understand its behaviour under high temperatures. Portland cement containing mortars were also prepared to make comparison with high alumina cement containing specimens. Specimens were prepared in 5x5x5 cm and 4x4x16 cm prisms. They were cured for one day at curing room, then heated to 105°C and then heated to 1100°C. Weight, size and ultrasound velocity change, compressive strength and flexural strength tests were done to determine physical and mechanical properties of the monolithic refractories, before and after heating. Heated and non-heated specimens were pulverized for microstructural investigation with X-Ray diffraction (XRD) method. Using high alumina cement with 50 6 60 % granulated blast furnace slag or granulated firebrick, by the weight of cement, and crushe.

Improvement of the mechanical reliability of monolithic refractory linings for coal gasification process vessels

Improvement of the mechanical reliability of monolithic refractory linings for coal gasification process vessels PDF Author: Lynchburg Research Center. Materials and Chemical Technology Laboratory
Publisher:
ISBN:
Category :
Languages : en
Pages : 176

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An Investigation Into the Effect of Bond Type and Distribution on the High Temperature Mechanical Properties of Basic Refractory Materials

An Investigation Into the Effect of Bond Type and Distribution on the High Temperature Mechanical Properties of Basic Refractory Materials PDF Author: Anthony Hayhurst
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Battelle Technical Review

Battelle Technical Review PDF Author: Battelle Memorial Institute
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 830

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New Developments in Monolithic Refractories

New Developments in Monolithic Refractories PDF Author: Robert E. Fisher
Publisher:
ISBN:
Category : Heat resistant materials
Languages : en
Pages : 444

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Ceramic Abstracts

Ceramic Abstracts PDF Author:
Publisher:
ISBN:
Category : Ceramics
Languages : en
Pages : 252

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Mechanical Properties of Refractory Metals

Mechanical Properties of Refractory Metals PDF Author: A. P. Gulyaev
Publisher:
ISBN:
Category :
Languages : en
Pages : 17

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Book Description
There is interest in studying the mechanical properties of refractory metals as functions of temperature, taking into account such factors as the admixtures content, structural state, and the deformation rate. In this report an attempt is made to generalize the available data on the effect of the temperature and the above-listed factors on the mechanical properties of refractory metals of the VA (V, Nb, and Ta) and VIA (Cr, Mo, and W) groups. A large portion of the experimental data used for this purpose was obtained on specially developed equipment permitting research to be carried out on extension in the -196 to 2600C temperature range and the rate of deformation to be varied in a wide range. (Author).

Improvement of the Mechanical Reliability of Monolithic Refractory Linings for Coal Gasification Process Vessels

Improvement of the Mechanical Reliability of Monolithic Refractory Linings for Coal Gasification Process Vessels PDF Author: Edward M. Anderson
Publisher:
ISBN:
Category : Refractory materials
Languages : en
Pages :

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Refractories for the Cement Industry

Refractories for the Cement Industry PDF Author: Prasunjit Sengupta
Publisher: Springer Nature
ISBN: 3030213404
Category : Technology & Engineering
Languages : en
Pages : 240

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Book Description
This book provides process engineers with all of the information necessary for installation, maintenance and management of refractory in a cement industry. It describes how to characterize the refractory material and select refractories for various equipments in the cement plant. The author explains refractory installation, in general, and the rotary kiln specifically, as it is distinct from static furnaces used in metallurgical or process industries. It also details the chemical and physical factors that influence refractory performance and has discussed the mechanism of degradation of refractories with special emphasis on thermo-chemical and thermo-mechanical aspects. The heat transfer calculation and energy loss from the equipment surfaces has been addressed. A chapter in the book is dedicated for the management of refractory quality and the installation quality at the site. Maximizes reader understanding of the operating conditions in different equipments and how those are related to selection of refractories; Details the process variables and their influences on the performance of the refractories; Elucidates subtle points of refractory installation to ensure optimal performance; Presents heat transfer calculations and quality management protocols of refractory installation. Reinforces the concepts with many illustrations and tables.

Bulletin of the American Ceramic Society

Bulletin of the American Ceramic Society PDF Author:
Publisher:
ISBN:
Category : Ceramics
Languages : en
Pages : 1898

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