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Results from a Forensic Investigation of a Failed Cement Treated Base
Authors:Dar Hao Chen  Tom Scullion  Tzen-Chin Lee  John Bilyeu
Affiliation:1Professor, Changsha Univ. of Science and Technology, School of Highway Engineering, Chiling Rd. #45, Changsha, Hunan 410076, P.R. China; presently, Pavement Engineering Supervisor, Texas Dept. of Transportation, 4203 Bull Creek #39, Austin, TX 78731 (corresponding author). E-mail: dchen@dot.state.tx.us
2Program Manager, Texas Transportation Institute, 501 CE/TTI Building, Texas A&M Univ., College Station, TX 77843. E-mail: t-scullion@tamu.edu
3Associated Professor, National United Univ., Maio Li, Taiwan. E-mail: ltc6@nuu.edu.tw
4Transportation Engineer, Texas Department of Transportation, 4203 Bull Creek #39, Austin, TX 78731. E-mail: jbilyeu@dot.state.tx.us
Abstract:After only 2 months in service, the frontage road of US 290 developed a series of depressions that caused a very poor ride. The main cause of the premature failure was attributed to disintegration of the cement treated base (CTB) layer. This was attributed to two primary factors: (1) a very coarse gradation of the aggregate used in the CTB layer which produced a mix that was prone to segregation during placement; and (2) the CTB layer was placed in two lifts, which were not well bonded together. Another contributing factor was the lack of bond between the CTB and the hot mix asphalt (HMA) surface layer. Secondary factors include high air voids in the HMA layer and low HMA layer thickness. The material, when prepared carefully in the lab at the design cement content, passed the strength requirement of 2.07?MPa. But this coarse mix appears to have been difficult to place correctly in the field. The coarsely graded aggregate used on this project appears to be prone to segregation, either during placement or compaction. The ground penetration radar results (with confirmation by core samples) indicated that most of the problems were at the bottom of the upper CTB lift. The CTB was placed in two lifts and very poor condition was found between the two CTB layers. This problem was coupled with a thin, porous, and poorly bonded HMA layer that permitted moisture to enter the CTB layer. Similar failures have also been reported recently on other CTB projects in Houston.
Keywords:Cements  Forensic engineering  Failures  Radar  Concrete pavements  
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