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Experimental studies on snaking in 3D-printed cylindrical shells under axial compression using photogrammetry

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DataONE2024-01-19 更新2025-08-02 收录
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The buckling instability of cylindrical shells under axial compression has been one of the most renowned problems in structural engineering for several decades. Many pioneering works in the 20th century have provided insights into understanding the shells' infamous imperfection sensitivity and led to reliability-based designs. However, a recent surge in numerical studies of the snaking phenomenon explores the development of a localised stable post-buckling mode in axially compressed cylindrical shells. Hitherto, none of the experimental studies report on the evolution of azimuthal snaking. In this work, experimental studies are carried out with the objective of revealing the snaking phenomenon. The axial compression experiments are performed on 3D-printed shells made of thermoplastic polyurethane (TPU). The work's novelty lies in the usage of TPU shells for slowing down the propagation of circumferential dimples and making it feasible to capture them using Photogrammetry. Despite the ma..., The dataset of Numerical results of buckling of 3D printed shells was generated using ABAQUS, a Finite element software. The dataset of Experimental results of buckling of 3D printed shells consists of load-displacement response under compression. In addition, the post-buckling mode shapes of the shell acquired using Photogrammetry were also uploaded., , This README file was generated on 18/01/2024 by G Raju. GENERAL INFORMATION 1. Title of Dataset: Experimental studies on snaking in 3D-printed cylindrical shells under axial compression using photogrammetry 2. Author Information A. Principal Investigator Contact Information Name: G Raju Institution: Indian Institute of Technology, Hyderabad Address: India Email: B. Associate or Co-investigator Contact Information Name: V Ravulapalli Institution: Indian Institute of Technology, Hyderabad Address: India Email: 3. Date of data collection: March-December 2023 \##################################################################### SHARING/ACCESS INFORMATION 1. Recommended citation for this dataset: Raju, Gangadharan; Ravulapalli, Vineeth; Narayanamurthy, Vijayabaskar (2024). Experimental studies on snaking in 3D-printed cylindrical shells under axial compression using photogrammetry. Dryad Digital Repository. 2. Links to other publicly a...
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2025-07-26
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