Determination of bearing capacity of fiber-reinforced polymer screw piles via field loading tests

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초록

This study investigated the pull-out performance of fiber-reinforced polymer (FRP) screw piles using full-scale field loading tests. FRP screw piles are lightweight, corrosion-resistant alternatives to traditional piles, particularly suited for soft ground (i.e., saline reclamation sites) applications such as solar power structures. The results demonstrates that the screw blade geometry, especially the tip area, affects the pile's load-bearing capacity, with a minimum effective tip resistance area of 785.4 cm2 required for optimal performance. The field tests results reveal that increasing the number of screws has no impact on the bearing capacity when the blade is sufficiently wide. Additionally, conventional methods for estimating bearing capacity are inadequate for FRP screw piles, necessitating a revised design approaches. Based on the test results, optimized specifications for FRP screw piles are proposed to improve their performance for weak ground conditions. This study provides practical insights for the adoption of FRP screw piles in challenging environments where they offer a durable, efficient, and sustainable solution for foundations.

키워드

Pull-out testFiber-reinforced polymer (FRP) screw pileSoft groundResistance performanceBearing capacity
제목
Determination of bearing capacity of fiber-reinforced polymer screw piles via field loading tests
저자
Kim, Sun-HeeChoi, Wonchang
DOI
10.1016/j.cscm.2025.e04549
발행일
2025-07
유형
Article
저널명
Case Studies in Construction Materials
22

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