Projects per year
Abstract
Fiber-reinforced polymer (FRP) composites have a promising potential to be utilized to extend the lifespan of geostructures in harsh environments due to their high durability, satisfactory strength and cost-effectiveness. The FRP-soil interaction is critical to model soil-structure interaction problems and assess the performance of foundation systems where composites are used. In this paper, the contact behavior of sand-FRP interfaces at the fundamental level of the grain-scale was investigated with a custom-built micromechanical testing apparatus, with an emphasis on the normal contact response, the tangential load – displacement relationship as well as creep and relaxation behavior. Leighton Buzzard sand (LBS), a typical silica sand, and custom manufactured glass fiber reinforced laminated FRP plates were used in the study. It was shown that the surface texture, thickness, and fiber orientation of the FRP composite plates have important influences on the tribological behavior of the sand-FRP interfaces, and plowing damage was observed to be a dominant mechanism from the shearing tests, particularly at higher normal loads. The results also suggested that creep and relaxation had a significant influence on the interface behavior of sand-FRP and these phenomena should be considered in the long-term design of FRP included composite geostructures.
| Original language | English |
|---|---|
| Article number | 114423 |
| Journal | Composite Structures |
| Volume | 275 |
| Online published | 27 Jul 2021 |
| DOIs | |
| Publication status | Published - 1 Nov 2021 |
Bibliographical note
Full text of this publication does not contain sufficient affiliation information. With consent from the author(s) concerned, the Research Unit(s) information for this record is based on the existing academic department affiliation of the author(s).Research Keywords
- Composite interface
- Creep
- Friction
- FRP
- Micromechanics
- Relaxation
RGC Funding Information
- RGC-funded
Fingerprint
Dive into the research topics of 'A micromechanical-based study on the tribological and creep-relaxation behavior of sand-FRP composite interfaces'. Together they form a unique fingerprint.Projects
- 2 Finished
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GRF: Experimental Micromechanical Study on the Influence of Environment-soil and Fluid-soil Interactions at the Grain Contact Interfaces
SENETAKIS, K. (Principal Investigator / Project Coordinator) & COOP, M. R. (Co-Investigator)
1/12/19 → 17/11/23
Project: Research
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TBRS-ExtU-Lead: Sustainable Marine Infrastructure Enabled by the Innovative Use of Seawater Sea-Sand Concrete and Fibre-Reinforced Polymer Composites
TENG, J. G. (Main Project Coordinator [External]) & LAU, D. (Principal Investigator / Project Coordinator)
1/01/19 → 31/12/25
Project: Research
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