Creep and particle breakage in coral sand and development of a modified burgers model

This study investigates the high-pressure one-dimensional creep and progressive particle breakage of coral sand from the South China Sea. A series of high-pressure oedometer tests were performed under varying vertical stresses (1 ∼ 4 MPa), loading durations (up to 10,000 min), and median particle sizes ( d 50 = 0.8, 1.3, and 2.5 mm). The results indicate that creep deformation is highly time-dependent and size-sensitive, exhibiting a distinct three-stage progression. Particle breakage, quantified by Hardin’s index ( B r ), is highly progressive and follows a sigmoidal growth pattern with stress. Crucially, B r uniquely correlates with vertical strain and scales linearly with total input work, confirming the independence of grading. To capture these non-linear behaviors, a modified Burgers soft-matter model was developed by incorporating a fractional soft-matter element and a stress-size coupled formulation for pre-creep strain. The proposed model yields excellent predictions of the temporal creep curves, providing an empirical framework for representing the one-dimensional creep response of coral sand.

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Publication Details

Journal
Advanced Powder Technology
Published
2026-10-09
DOI
https://doi.org/10.1016/j.apt.2026.105462
Primary Topic
Geotechnical Engineering and Soil Mechanics
Type
article
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article

Creep and particle breakage in coral sand and development of a modified burgers model

徐勋前 Xu Xunqian, Jiefei Zheng, Tao Zhang, Zhaohua Sun et al.
Advanced Powder Technology
Geotechnical Engineering and Soil Mechanics
article

Creep and particle breakage in coral sand and development of a modified burgers model

徐勋前 Xu Xunqian, Jiefei Zheng, Tao Zhang, Zhaohua Sun, Changjiang Wu
article en

Abstract

This study investigates the high-pressure one-dimensional creep and progressive particle breakage of coral sand from the South China Sea. A series of high-pressure oedometer tests were performed under varying vertical stresses (1 ∼ 4 MPa), loading durations (up to 10,000 min), and median particle sizes ( d 50 = 0.8, 1.3, and 2.5 mm). The results indicate that creep deformation is highly time-dependent and size-sensitive, exhibiting a distinct three-stage progression. Particle breakage, quantified by Hardin’s index ( B r ), is highly progressive and follows a sigmoidal growth pattern with stress. Crucially, B r uniquely correlates with vertical strain and scales linearly with total input work, confirming the independence of grading. To capture these non-linear behaviors, a modified Burgers soft-matter model was developed by incorporating a fractional soft-matter element and a stress-size coupled formulation for pre-creep strain. The proposed model yields excellent predictions of the temporal creep curves, providing an empirical framework for representing the one-dimensional creep response of coral sand.

Advanced Powder TechnologyVol. 37(11)
Nantong University (CN), China University of Mining and Technology (CN)
Openalex Percentile: Top 18%
Geotechnical Engineering and Soil Mechanics
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Creep and particle breakage in coral sand and development of a modified burgers model — 徐勋前 Xu Xunqian, Jiefei Zheng, et al. · Advanced Powder Technology (2026) | TGRS Research Map | TGRS