A new three-axis loading frame has been developed to enable real-time visualization of in-situ soil and rock structure interactions via X-ray tomography during small-scale model testing. The constructed frame is capable of performing a wide range of small-scale 1g tests and can accommodate monotonic and cyclic actuation under both load and displacement control. The compact size of the system enables remote multi-axis operation from within an X-ray cone-beam scanning bay, a capability which is owed to a comprehensive design process. Design and fabrication involved a blend of physical and numerical experiments to assess suitable construction materials and performance. In this scope, the new equipment is discussed and its capability is showcased.
Riccio, T., Romero, T., Previtali, M., Mánica, M., Ciantia, M. (2024). A 4D Soil-Structure Interaction Model Testing Apparatus. GEOTECHNICAL TESTING JOURNAL, 47(6), 1181-1204 [10.1520/gtj20230581].
A 4D Soil-Structure Interaction Model Testing Apparatus
Ciantia, Matteo
2024
Abstract
A new three-axis loading frame has been developed to enable real-time visualization of in-situ soil and rock structure interactions via X-ray tomography during small-scale model testing. The constructed frame is capable of performing a wide range of small-scale 1g tests and can accommodate monotonic and cyclic actuation under both load and displacement control. The compact size of the system enables remote multi-axis operation from within an X-ray cone-beam scanning bay, a capability which is owed to a comprehensive design process. Design and fabrication involved a blend of physical and numerical experiments to assess suitable construction materials and performance. In this scope, the new equipment is discussed and its capability is showcased.| File | Dimensione | Formato | |
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Riccio-2024-Geotech Test J-AAM.pdf
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