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Mechanical Properties of Geopolymeric Materials at Elevated Temperatures

Mechanical Properties of Geopolymeric Materials at Elevated Temperatures
Author: Zhu Pan
Publisher:
Total Pages: 390
Release: 2010
Genre: Aluminum silicates
ISBN:

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Geopolymer is an amorphous aluminosilicate binder which is produced by hydrothermal synthesis of aluminosilicates in the presence of concentrated alkaline or alkaline silicate solutions. It is an emerging construction material purported to provide an environmentally-friendly alternative to ordinary Portland cement (OPC) based concrete. Owing to its ceramic-like properties, geopolymer has been touted to be a highly fire resistant material. This claim is further supported by results from investigations of residual strength after thermal exposure. Some studies have found that geopolymers increase in strength after exposure to temperatures of 800°C. In contrast, several recent studies have shown a decrease in residual strength of geopolymers after a similar exposure. These contradictory observations are explored here. The study shows that two opposing processes are occurring simultaneously in geopolymers at elevated temperatures. Process (1) is further geopolymerization, and has the effect of increasing the strength. Process (2) is the damage due to thermal incompatibility which arises because of (i) the temperature gradient and (ii) different movements between matrix and inclusions. Process (2) is also a function of the brittleness level of the material. Whether the strength increases or decreases is dependent on which of the two processes is dominant in the specimen and the test conditions.The detailed examination of process (2) reveals a strong correlation between the degree of strength loss and the brittleness of geopolymers. This correlation suggests that geopolymers are quite brittle. For the first time, the brittleness of geopolymer concrete has been quantitatively determined and compared with OPC concrete. The comparatively high brittleness of geopolymer concrete is important for its fire resistance properties. The high brittleness will also require special structural design measures, similar to the design requirements for high strength concrete. With regard to the fire resistance of geopolymers, most research to date has investigated only residual strength, but the properties of geopolymer while hot have received less attention. Therefore, a number of tests to determine stress-strain curve, ultimate strength, elastic modulus and creep were undertaken in steady and transient heating conditions. In these tests, several critical features of the material's performance were observed: (1) geopolymers exhibit glass transition behaviour at elevated temperatures; (2) glass transition temperature is improved by the substitution of a sodium-based activator for the potassium-based activator; (3) below glass transition temperature there is a significant increase in hot strength and hot elastic modulus; (4) in the range of 250-550°C thermal transitional creep is absent as compared to OPC concrete. Data obtained from these measurements can serve as input for the development of constitutive models which are essential to predict the response of geopolymer concrete elements in fire. In addition to its deteriorating properties at high temperatures, concrete can also be damaged in fire by a phenomenon called spalling, which is particularly severe in high strength concrete. Since geopolymer is comparatively more brittle than high strength concrete, the issue of spalling in fire is further explored in the last part of this study. It was found that the spalling resistance of geopolymer concrete increases as maximum aggregate size increases. The increasing aggregate size results in an increase in fracture zone length (lp); this in turn reduces the flux of kinetic energy (due to pore pressure) that is released into the fracture front and thereby improves spalling resistance. This theory is further validated by the observation of a good correlation between lp and spalling resistance in this thesis. This study is the first to propose such a hypothesis on the effect of aggregate size on the spalling of concrete, both OPC and geopolymer, and contributes to a better understanding of spalling of concrete in fire.


Geopolymers

Geopolymers
Author: Petrica Vizureanu
Publisher: CRC Press
Total Pages: 203
Release: 2023-11-22
Genre: Technology & Engineering
ISBN: 1000971082

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Geopolymers presents a complex and interdisciplinary study in the fields of physics, chemistry, materials science, and civil engineering on oxide materials based on mineral wastes, known as geopolymers. Considering the ideal requirements for developing eco-friendly materials for industrial applications, this book describes how to design and develop different types of geopolymers that use mineral wastes or natural aluminosilicates as raw materials. It contains advanced knowledge and information regarding geopolymer manufacturing, development, characterization, and applications in soil stabilization, civil engineering, or ceramics. This book is relevant for undergraduate and graduate students conducting fundamental and applied research in the fields of materials engineering, ceramics engineering, and water processing.


Fire-Resistant Geopolymers

Fire-Resistant Geopolymers
Author: Les Vickers
Publisher: Springer
Total Pages: 135
Release: 2014-12-05
Genre: Technology & Engineering
ISBN: 9812873112

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The book covers the topic of geopolymers, in particular it highlights the relationship between structural differences as a result of variations during the geopolymer synthesis and its physical and chemical properties. In particular, the book describes the optimization of the thermal properties of geopolymers by adding micro-structural modifiers such as fibres and/or fillers into the geopolymer matrix. The range of fibres and fillers used in geopolymers, their impact on the microstructure and thermal properties is described in great detail. The book content will appeal to researchers, scientists, or engineers who are interested in geopolymer science and technology and its industrial applications.


Geopolymers

Geopolymers
Author: Petrica Vizureanu
Publisher: CRC Press
Total Pages: 171
Release: 2023-11-22
Genre: Technology & Engineering
ISBN: 1000971031

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Geopolymers presents a complex and interdisciplinary study in the fields of physics, chemistry, materials science, and civil engineering on oxide materials based on mineral wastes, known as geopolymers. Considering the ideal requirements for developing eco-friendly materials for industrial applications, this book describes how to design and develop different types of geopolymers that use mineral wastes or natural aluminosilicates as raw materials. It contains advanced knowledge and information regarding geopolymer manufacturing, development, characterization, and applications in soil stabilization, civil engineering, or ceramics. This book is relevant for undergraduate and graduate students conducting fundamental and applied research in the fields of materials engineering, ceramics engineering, and water processing.


Geopolymer Composite for High Temperature Exposure

Geopolymer Composite for High Temperature Exposure
Author: Mohd Mustafa Al Bakri Abdullah
Publisher: LAP Lambert Academic Publishing
Total Pages: 76
Release: 2012-02
Genre:
ISBN: 9783848406852

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GEOPOLYMER COMPOSITE FOR HIGH TEMPERATURE EXPOSURE describes about basic geopolymer process, chemical reaction and the behaviour of fly ash-based geopolymer when expose to high temperature. Different important factors (e.g. NaOH molarity, activator-to-fly ash ratios, curing condition, etc.) influencing the processing of the fly ash-based geopolymer were investigated. These experimental results are utilized to propose a new method for geopolymer cement processing and the design of geopolymer concrete mixtures. Experimental data on the characterization and properties of the geopolymer cement and concrete are then presented. Final part of this book also describes the impact of the mechanical treatment (Ball milling), elevated temperature on the properties of fly ash geopolymers, geopolymer refractory material and the application of these geopolymers as lightweight materials.


Advanced Building Materials: Geopolymers

Advanced Building Materials: Geopolymers
Author: Rohit Kumar
Publisher: BFC Publications
Total Pages: 91
Release: 2022-04-02
Genre: Architecture
ISBN: 9355096739

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The purpose of this writing this book is to express the properties of Rise Husk Ash (RHA) based geopoylmer incorporate with, (GGBS) at ambient curing conditions, which ican be trated as a substitute to the (OPC). The work constructs with subsidizes for fabrication of innovative eco-friendly binders in concrete. Even though, present several reasearch that evaluate the performance of geopolymer. using numerous kinds of source material, much of this research has concentrated on rice husk ash as primary source material. Only inadequate studies till conducted in large-volume mortars of RHA-based geopolymer, using sensible compressive strength and no further studies with GGBS have been combined.


High Temperature Effect of Geopolymeric Coatings on Concretes

High Temperature Effect of Geopolymeric Coatings on Concretes
Author: Natalya Privorotskaya
Publisher:
Total Pages: 150
Release: 2005
Genre: Concrete coatings
ISBN:

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"Microstructure and thermal properties of inorganic geopolymeric materials synthesized from metakaolin at 65°C have been investigated for their further application as a thermal barrier for concrete structures. Thermogravimetric analysis of two geopolymer compositions revealed good thermal stability of this material at temperatures of up to 1000°C. Substancial expansion of the samples with addition of silica were observed during heat treatment at 450°C and 800°C, accounting for the differences in microstructure between the two compositions as was seen with scanning electron microscope. Infrared analysis revealed the presence of additional structural groups for silica-containing specimens. The ability of mortar samples to withstand elevated temperatures was based on the degree of compressive strength loss as well as the microstructure changes that were observed before and after the exposure of specimens to 450°C and 800°C for one hour. As compared to unprotected concrete, the reduction in strength at 450°C was 12% and 14% less for mortar cubes coated with metakaolin-based geopolymer and that with addition of amorphous silica, respectively. At 800°C, the observed difference was more than 20%. Infrared analysis and electron spectroscopy studies of heat treated mortar showed little signs of deterioration when samples were coated with geopolymer. Consequently, it was determined that geopolymer can be used as a suitable coating for thermal protection of concrete"--Abstract.


Geopolymer and Geopolymer Matrix Composites

Geopolymer and Geopolymer Matrix Composites
Author: Dechang Jia
Publisher: Springer Nature
Total Pages: 319
Release: 2020-12-02
Genre: Technology & Engineering
ISBN: 9811595364

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This book investigates geopolymers and geopolymer-based composites, with a focus on their preparation, geopolymerization mechanisms, microstructures, mechanical properties, and fracture behaviors. Geopolymers are inorganic materials consisting of tetrahedral units (such as [SiO4] and [AlO4]) linked by shared oxygens and forming long-range, covalently bonded and amorphous frameworks. Geopolymers have the advantages of low-temperature preparation, low cost, high heat and corrosion resistance, and being environmentally friendly. Using the preparation methods for epoxy-based composite, they can easily be formed into complex shapes or structures. Intended for researchers investigating geopolymers and their matrix composite materials, this book is also a valuable resource for engineers from various fields, such as materials, mechanical, civil and structural engineering, as well as students interested in other kinds of inorganic materials or even cementitious materials in general.


Geopolymers: The route to eliminate waste and emissions in ceramic and cement manufacturing

Geopolymers: The route to eliminate waste and emissions in ceramic and cement manufacturing
Author: ICe rS
Publisher: Lulu.com
Total Pages: 146
Release: 2015-07-29
Genre: Science
ISBN: 1326377329

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This book compiles the contributions presented at the First ECI Conference on Geopolymers: The route to eliminate waste and emissions in ceramic and cement manufacturing held in Hernstein, Austria in June, 2015. The book includes the plenary lecture of Dr. Davidovits, whose 80th birthday was celebrated during the event, jointly with the summaries of the three Round Tables.