Permanent Deformation Properties of Asphalt Concrete Mixtures

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Author :
Release : 2002
Genre : Asphalt concrete
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Permanent Deformation Properties of Asphalt Concrete Mixtures - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Permanent Deformation Properties of Asphalt Concrete Mixtures write by Rabbira Garba. This book was released on 2002. Permanent Deformation Properties of Asphalt Concrete Mixtures available in PDF, EPUB and Kindle. Rutting is recognized to be the major distress mechanism in flexible pavements as a result of increase in tire pressures and axle loads. Rutting is caused by the accumulation of permanent deformation in all or some of the layers in the pavement structure. The accumulation of permanent deformation in the asphalt surfacing layer is now recognized to be the major component of rutting in flexible pavements. This is a consequence of increased tire pressures and axle loads, which subjects the asphalt surfacing layer nearest to the tire-pavement contact area to increased stresses. Thus the study of permanent deformation properties of asphalt mixtures has become the focus of research, which aim to mitigate or reduce rutting in flexible pavements. The research work reported in this thesis aims to contribute towards understanding of the material properties and factors affecting permanent deformation in asphalt mixtures, mechanisms of the permanent deformation, and methods of its prediction. The specific objectives of this research work include; review and evaluation of available models for permanent deformation of asphalt concrete mixtures, investigation of the effect of volumetric composition, loading and temperature conditions on the permanent deformation of asphalt concrete, and the identification and definition of simple measures of resistance to permanent deformation. To meet the objectives of the study a laboratory investigation is conducted on several asphalt concrete specimens with varying volumetric composition. Two testing procedures are adopted; the repeated load triaxial and triaxial creep and recovery tests. The tests were conducted at two temperature levels of 25 and 50oC under varying stress conditions. A review of literature on factors affecting permanent deformation and available models for prediction of the permanent deformation is also conducted. The literature review indicated that most of the research work done so far concentrated on evaluation of the effect on permanent deformation response of component material properties such as aggregate gradation, aggregate angularity and binder type (or grade). Most of the studies conducted on permanent deformation properties of asphalt mixtures were also found to be based on different testing procedures and methods of evaluation, which makes it difficult to compare them and draw firm conclusions. The literature also indicated that, as yet, there is no comprehensive model for deformation of asphalt concrete. Results of tests conducted in this study are analysed to investigate the effect of volumetric composition, particularly binder content and void content, and loading conditions on the permanent deformation response of the mixture. Both the binder content and void content are found to significantly influence the permanent deformation characteristics. The effect of loading conditions, i.e., the confining stress and the deviatoric stress, is also found to be significant. Throughout this study emphasis is placed on methods and parameters that are used to evaluate mixtures for their resistance to permanent deformation. The traditionally used parameters such as the slope and intercept of the power model are evaluated for their sensitivities to changes in volumetric composition. This evaluation is based on the premises that any measure of resistance to permanent deformation should be sensitive to changes in volumetric composition to be good enough. It is found that most of these parameters are not sensitive to changes in volumetric composition and therefore are not suitable for comparison of mixtures made from the same materials but with varying proportion of the components. Permanent deformation in asphalt concrete is caused by both densification and shear deformation. The mode of deformation in asphalt concrete pavements, for greater part of their service life, is considered to be the shear deformation. Therefore it is necessary to evaluate mixtures for their susceptibility to shear deformation. The shear deformation manifests itself in the form of large lateral deformation relative to axial deformation. It is found that one dimensional analysis, which does not take the lateral deformation into account may lead to misleading results regarding the resistance to permanent deformation of mixtures. Therefore parameters which include volumetric and lateral strain are proposed for use in evaluation of mixtures. Substantial effort is put into modelling the accumulation of permanent deformation under repeated loading. For this purpose two approaches were selected: the cyclic hardening model based on bounding surface plasticity concept and an elasto-viscoplastic model based on strain decomposition approach. The bounding surface plasticity approach is found to be a convenient method to model the accumulation of permanent deformation. It is demonstrated that deformations calculated using cyclic hardening model based on bounding surface plasticity fits the measured deformation quite well. The elasto-viscoplastic model, which is based on strain decomposition approach, provides a suitable method for analysis of creep and recovery test results. Deformations calculated using this model also fit the measured deformation quite well. Finally a new composite measure of resistance to permanent deformation is developed. The resistance index is based on strain decomposition approach and is simple to calculate. The index incorporates a parameter related to shear susceptibility of mixtures and is sensitive to changes in volumetric composition. It is believed that this index can be used to compare and select mixtures at mixture design stage. If its applicability to other materials is proved by further research, it can also be linked to performance related specifications, as a simple measure of performance with regard to rutting.

Engineering Properties of Asphalt Mixtures and the Relationship to Their Performance

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Author :
Release : 1995
Genre : Asphalt emulsion mixtures
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Book Rating : 028/5 ( reviews)

Engineering Properties of Asphalt Mixtures and the Relationship to Their Performance - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Engineering Properties of Asphalt Mixtures and the Relationship to Their Performance write by Gerald A. Huber. This book was released on 1995. Engineering Properties of Asphalt Mixtures and the Relationship to Their Performance available in PDF, EPUB and Kindle. Thirteen papers presented at the conference on [title], held in Phoenix, Arizona, December, 1994, discuss the products of the strategic highway research program, the Superpave method of mix design, and test methods for fatigue cracking and permanent deformation. Lacks an index. Annotation c. by Book

Permanent Deformation Characteristics of Recycled Asphalt Concrete Mixes

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Author :
Release : 1987
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Permanent Deformation Characteristics of Recycled Asphalt Concrete Mixes - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Permanent Deformation Characteristics of Recycled Asphalt Concrete Mixes write by . This book was released on 1987. Permanent Deformation Characteristics of Recycled Asphalt Concrete Mixes available in PDF, EPUB and Kindle. Various blends of recovered and virgin asphalt cement were tested for properties including penetration, absolute and kinematic viscosity and water susceptibility. conventional marshall tests were also performed, and permanent strain characteristics were measured by repeated load triaxial tests. the test results show that inclusion of reclaimed material in amounts as low as 30 percent can reduce the permanent strain values significantly. a regression model has been developed to relate permanent strain to the number of load repetitions, to predict permanent deformation under various mix and environmental conditions. for the covering abstract of the conference see irrd 807058.

An Evaluation of Permanent Deformation Properties of Crumb Rubber Modified (CRM) Asphalt Concrete Mixtures

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Release : 1995
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An Evaluation of Permanent Deformation Properties of Crumb Rubber Modified (CRM) Asphalt Concrete Mixtures - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook An Evaluation of Permanent Deformation Properties of Crumb Rubber Modified (CRM) Asphalt Concrete Mixtures write by Danai Ellarin Makunike. This book was released on 1995. An Evaluation of Permanent Deformation Properties of Crumb Rubber Modified (CRM) Asphalt Concrete Mixtures available in PDF, EPUB and Kindle.

Permanent Deformation Response of Asphalt Aggregate Mixes

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Release : 1994
Genre : Technology & Engineering
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Permanent Deformation Response of Asphalt Aggregate Mixes - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Permanent Deformation Response of Asphalt Aggregate Mixes write by Christine W. Curtis. This book was released on 1994. Permanent Deformation Response of Asphalt Aggregate Mixes available in PDF, EPUB and Kindle. This report describes the research conducted on permanent deformation of asphalt concrete mixes as part of the SHRP Asphalt Research Program. Divided into three sections the report addresses the following: the development of a series of accelerated performance tests to measure the permanent deformation response and a constitutive relationship to define it; validation of the binder properties included in the SHRP binder specification; and the use of the test methodology in an asphalt concrete mix design and analysis system.