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Technical Basis of Austroads Guide to Pavement Technology Part 4E: Recycled Materials
The purpose of this literature review is to assess the current body of research for the incorporation of recycled material in pavements to inform updated guidance to the current Austroads Guide to Pavement Technology Part 4E: Recycled Materials. New…
Development of a Specification for Recycled Crushed Glass as a Sand Aggregate Replacement
This report presents the technical basis for the development of the Austroads technical specification and guideline for the use of recycled glass in bedding, backfilling material, concrete, road drainage, embankment fill, and landscaping…
Properties of General-purpose Cement with Increased Percentages of Limestone
This report presents the results of a research project commissioned by Austroads to investigate whether the currently used Australian general-purpose (GP) cement which complies with AS 3972, and which may contain up to 7.5% limestone as a mineral…
Specification and Use of Geopolymer Concrete in the Manufacture of Structural and Non-Structural Components: Experimental Work

This report details the experimental phase of an Austroads project to review the specifications and use of geopolymer concrete. The findings indicate that acceptable grades of structural geopolymer concrete can be made for field applications.

This…

Specification and Use of Geopolymer Concrete in the Manufacture of Structural and Non-structural Components: Review of Literature

This report reviews published information on the formulation, manufacture and properties of geopolymer binders and concretes, to inform the manufacture of geopolymer concrete components for structural and non-structural bridge components and other…

Prediction of Flexural Strength and Breaking Strain of Cemented Materials: Laboratory Study

Consideration is being given to the use of new methods of characterisation to improve performance prediction in the Austroads pavement design procedures, including flexural strength, breaking strain and flexural modulus.

This study evaluated cemented…

Preliminary Investigation of the Influence of Micro-cracking on Fatigue Life of Cemented Materials

Following the Austroads research reports prepared as part of TT1359: Cost-effective Structural Treatments for Rural Highways in June 2010 and TT1358 Strategic Review of Pavement Design, Austroads commissioned ARRB Group to undertake further research…

A Laboratory Study of the Influence of Multiple Axle Loads on Performance of a Cement Treated Material - Interim Report

This report details a laboratory investigation of the effects of different multiple-axle load groups on the fatigue performance of cement treated materials. In the Austroads flexible pavement design process the performance of cement treated…

Towards the Revision of Austroads Procedures for the Design of Pavements Containing Cemented Materials

The laboratory characterisation of cemented materials for road pavements has recently been completed in Austroads Project TT1359 Cost-Effective Structural Treatments for Rural Highways. This project concluded there is a need for a substantial…

The Development and Evaluation of Protocols for the Laboratory Characterisation of Cemented Materials
The study involved a laboratory assessment of two cemented materials to assess their strength, modulus and fatigue properties. The cemented materials consisted of a hornfels crushed rock and a quartzite siltstone bound with general purpose cement at…