TECHNICAL PAPERS
Feb 1, 2000

Cyclic Shear Strength of Soft Railroad Subgrade

Publication: Journal of Geotechnical and Geoenvironmental Engineering
Volume 126, Issue 2

Abstract

A laboratory study was conducted to investigate the behavior of a soft compacted clayey soil subjected to repeated loading. The work was part of a comprehensive investigation of the Low Track Modulus section at the Facility for Accelerated Service Testing, operated by the Association of American Railroads Transportation Technology Center in Pueblo, Colorado. The goal of the study was to quantify the stress-strain behavior of the LTM subgrade soil subjected to physical and stress conditions existing under train traffic. To achieve this goal, cyclic triaxial tests were conducted on tube samples at their natural water content and on samples subjected to back-pressure saturation. Results indicate that the normalized cyclic shear strength is sensitive to drainage conditions and degree of saturation. Data trends indicate that cyclic strength may decrease by approximately 80% as the initial degree of saturation is increased from 90 to 100%. Field observations of persistently accumulating shear deformations in the the LTM subgrade are consistent with the strength criteria developed in this study.

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References

1.
Annual book of standards. (1997). American Society for Testing and Materials, West Conshohocken, Pa., Section 4, Construction, Vol. 4.08.
2.
Bishop, A. W., Alpan, I., Blight, G. E., and Donald, I. B. (1960). “Factors controlling the strength of partially saturated cohesive soils.” Proc., Res. Conf. on Shear Strength of Cohesive Soils, ASCE, New York, 503–532.
3.
Brooks, R. H., and Corey, A. T. ( 1964). “Hydraulic properties of porous media.” Hydrol. Paper No. 3, Colorado State University, Ft. Collins, Colo.
4.
Brown, S. F., Lashine, A. K. F., and Hyde, A. F. L. (1975). “Repeated load triaxial testing of a silty clay.” Geotechnique, 25(1), 95–114.
5.
Campbell, J. D. ( 1973). “Pore pressures and volume changes in unsaturated soils,” PhD dissertation, University of Illinois at Urbana-Champaign, Ill.
6.
Castro, G., and Christian, J. T. (1976). “Shear strength of soils and cyclic loading.”J. Geotech. Engrg. Div., ASCE, 102(9), 887–894.
7.
Drumm, E. C., Reeves, J. S., Madgett, M. R., and Trolinger, W. D. (1997). “Subgrade resilient modulus correction for saturation effects.”J. Geotech. and Geoenvir. Engrg., 123(7), 663–670.
8.
Fredlund, D. G., and Rahardjo, H. (1993). Soil mechanics for unsaturated soils. Wiley, New York.
9.
Fredlund, D. G., Morgenstern, N. R., and Widger, R. A. (1978). “The shear strength of unsaturated soils.” Can. Geotech. J., 15(3), 313–321.
10.
Holtz, R. D., and Kovacs, W. D. (1991). An introduction to geotechnical engineering, Prentice-Hall, Englewood Cliffs, N.J.
11.
Lambe, T. W., and Whitman, R. V. (1979). Soil Mechanics, SI Version. Wiley, New York.
12.
Larew, H. G. ( 1960). “Strength and deformation characteristics of compacted soils under the action of repeated axial loads,” PhD thesis, Purdue University, W. Lafayette, Ind.
13.
Li, D., and Selig, E. T. (1994). “Resilient modulus for fine-grained subgrade soils.”J. Geotech. Engrg., ASCE, 120(6), 939–957.
14.
Li, D., and Selig, E. T. (1995). “Evaluation of railway subgrade problems.” Transp. Res. Rec. No. 1489, Transportation Research Board, Washington, D.C., 17–25.
15.
Li, D., and Selig, E. T. (1996). “Cumulative plastic deformation for fine-grained subgrade soils.”J. Geotech. Engrg., ASCE, 122(12), 1006–1013.
16.
Li, D., Read, D., and Chrismer, S. (1997). “Effects of heavy axle loads on soft-subgrade performance.” TD 97-020, Technology Digest, Association of American Railroads, Research and Test Dept., Pueblo, Colo.
17.
Matsui, T., Ohara, H., and Ito, T. (1980). “Cyclic stress-strain history and shear characteristics of clay.”J. Geotech. Engrg. Div., ASCE, 106(10), 1101–1120.
18.
Monismith, C. L., Ogawa, N., and Freeme, C. R. (1975). “Permanent deformation characteristics of subgrade soils due to repeated loading.” Transp. Res. Rec. No. 537, Transportation Research Board, Washington, D.C., 1–17.
19.
Mooney, M. A., Finno, R. J., and Viggiani, G. (1997). “Undrained shear band deformation in granular media.”J. Engrg. Mech., ASCE, 123(6), 577–585.
20.
Raymond, G. P., Gaskin, P. N., and Addo-Abedi, F. Y. (1979). “Repeated compressive loading of leda clay.” Can. Geotech. J., 16(1), 1–10.
21.
Read, D., and Li, D. (1995). “Subballast considerations for heavy axle load trackage.” TD 95-028, Technology Digest, Association of American Railroads, Research and Test Dept., Pueblo, Colo.
22.
Shackel, B. (1973a). “Repeated loading of soils—a review.” Austral. Road Res., Melbourne, 5(3), 22–49.
23.
Shackel, B. (1973b). “Changes in soil suction in a sand-clay subjected to repeated triaxial loading.” Highway Res. Rec. 429, Highway Research Board, Washington, D.C., 29–39.
24.
Skempton, A. W. (1954). “The pore pressure coefficients A and B.” Geotechnique, 4(4), 143–147.
25.
“Standard practice for thin-walled tube sampling of soils.” (1997). Standard D 1587, ASTM, W. Conshohocken, Pa.
26.
“Standard test method for consolidated-undrained triaxial compression test on cohesive soils.” (1997). Standard D 4767, ASTM, W. Conshohocken, Pa.
27.
“Standard test method for one-dimensional properties of soils.” (1997). Standard D 2435, ASTM, W. Conshohocken, Pa.
28.
Van Eekelen, H. A. M., and Potts, D. M. (1978). “The behavior of drammen clay under cyclic loading.” Geotechnique, 28(2), 173–196.
29.
Yasuhara, K., Hirao, K., and Hyde, A. F. (1992). “Effects of cyclic loading on undrained strength and compressibility of clay.” Soils and Foundations, Tokyo, 32(1), 100–116.

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Go to Journal of Geotechnical and Geoenvironmental Engineering
Journal of Geotechnical and Geoenvironmental Engineering
Volume 126Issue 2February 2000
Pages: 139 - 147

History

Received: Nov 24, 1998
Published online: Feb 1, 2000
Published in print: Feb 2000

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Authors

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Member, ASCE
Associate Member, ASCE
Members, ASCE
Asst. Prof., School of Civ. Engrg. and Envir. Sci., Univ. of Oklahoma, 202 W. Boyd St., Rm. 334, Norman, OK 73019-0631.
The Benham Group, 9400 N. Broadway 73114, P.O. Box 20400, Oklahoma City, OK 73156-0400; formerly, Grad. Res. Asst. at Univ. of Oklahoma.
Sr. Engr., Engrg. Resour., Assoc. of American Railroads, Transportation Technology Ctr., P.O. Box 11130, Pueblo, CO 81001.
Prof., School of Civ. Engrg. and Envir. Sci., Univ. of Oklahoma, 202 W. Boyd St., Rm. 334, Norman, OK.

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