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Title:

DETERMINATION OF FREE-DRAINING BASE MATERIALS PROPERTIES

Accession Number:

00648226

Record Type:

Component

Availability:

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Order URL: http://worldcat.org/isbn/0309055725

Abstract:

Recently, Oregon designed and constructed two types of permeable bases under both flexible and rigid pavement: an asphalt-treated permeable material (ATPM) and an open-graded aggregate material. Permeability and resilient modulus of both materials have not been determined. During pavement structural design using the AASHTO Guide for Design of Pavement Structures, 1986, layer and drainage coefficients had to be assumed to establish pavement thickness designs. In addition, construction with the existing open-graded aggregate revealed that the material was less stable and would ravel easily under construction traffic. In 1990, a research project was initiated to determine the desirable material properties for the two types of free-draining base materials and establish a more stable gradation for the open-graded aggregate base. This project consisted primarily of a laboratory investigation. Pavement cores of the asphalt-treated permeable base and samples of aggregate materials were tested in the laboratory for permeability and resilient modulus. The permeability was determined using both constant and falling head test procedures. The laboratory study indicated that the current Oregon ATPM has a sufficient drainage capability, and the resilient modulus of this material is typical of the findings of other states. A modified open-graded aggregate gradation resulted, which has a higher permeability and higher resilient modulus than the existing gradation. Recommendations for implementation include selection of layer and drainage coefficients for pavement structural design and use of the proposed open-graded aggregate gradation in pavement construction.

Supplemental Notes:

This paper appears in Transportation Research Record No. 1425, Field Performance of Subsurface Drainage. Distribution, posting, or copying of this PDF is strictly prohibited without written permission of the Transportation Research Board of the National Academy of Sciences. Unless otherwise indicated, all materials in this PDF are copyrighted by the National Academy of Sciences. Copyright © National Academy of Sciences. All rights reserved

Monograph Accession #:

01398729

Language:

English

Authors:

Zhou, Haiping
Moore, Lucinda
Huddleston, Jim
Gower, Jeffrey

Pagination:

p. 54-63

Publication Date:

1993

Serial:

Transportation Research Record

Issue Number: 1425
Publisher: Transportation Research Board
ISSN: 0361-1981

ISBN:

0309055725

Features:

Figures (4) ; References (28) ; Tables (9)

Uncontrolled Terms:

Old TRIS Terms:

Subject Areas:

Geotechnology; Highways; Materials; I42: Soil Mechanics

Files:

TRIS, TRB

Created Date:

Jun 21 1994 12:00AM

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