arXiv · 2510.14326
Vertical pullout of a non-spherical intruder from a granular medium: From system-wide response to avalanching around the intruder
Abstract
Intruder mechanics in a granular aggregate is a common subject in engineering and geotechnical applications. However, most studies are limited to spherical intruders or small displacement regimes up to the point of failure. In this work we investigate the vertical pullout of a plate-like intruder buried within a granular aggregate well past the point of failure. While we find the maximum resistance force to depend on the material properties, in the post failure regime the resistance force converges onto the same curve for all friction coefficients. Likewise, the effective geometry of the intruder will always develop the same conical shape on top of the plate, independent of the magnitude of friction, that remains unchanged during the pullout process once established. Further, between the intruder and the aggregate a natural hopper flow develops in which material is transported into the void below the intruder by discrete flow events.
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Dominik Krengel, Jian Chen, Shun Nomura, Shunsuke Ota, Hidenori Takahashi. 2025-10-16. Vertical pullout of a non-spherical intruder from a granular medium: From system-wide response to avalanching around the intruder. https://doi.org/10.1016/j.powtec.2026.122440
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