4.7 Article

The deformation and failure mechanism of cylindrical shell and square plate with pre-formed holes under blast loading

期刊

DEFENCE TECHNOLOGY
卷 17, 期 4, 页码 1143-1159

出版社

ELSEVIER
DOI: 10.1016/j.dt.2020.06.014

关键词

Pre-formed holes; Cylindrical shell and square plate; Deformation mechanism; Failure mechanism

资金

  1. National Natural Science Foundation of China [11902310, 11802292]

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The numerical study on the deformation and failure mechanism of cylindrical shells and square plates with pre-formed holes under blast loading reveals the influence of pre-formed holes on stress concentration, deformation mechanism, and failure modes. Standoff distance plays a key role in the forming location of crack initiation and propagation, with square plates showing better blast-resistant capability at smaller distances but bigger reduction due to pre-formed holes compared to cylindrical shells.
The deformation and failure mechanism of cylindrical shells and square plate with pre-formed holes under blast loading were investigated numerically by employing the Ansys 17.0 and Ls-Dyna 971. To calibrate the numerical model, the experiments of square plates with pre-formed circle holes were modeled and the numerical results have a good agreement with the experiment data. The calibrated numerical model was used to study the deformation and failure mechanism of cylindrical shells with pre-formed circle holes subjected to blast loading. The structure response and stress field changing process has been divided into four specific stages and the deformation mechanism has been discussed systematically. The local and global deformation curves, degree of damage, change of stress status and failure modes of cylindrical shell and square plate with pre-formed circular holes are obtained, compared and analyzed, it can be concluded as: (1) The transition of tensile stress fields is due to the geometrical characteristic of pre-formed holes and cylindrical shell with arch configuration; (2) The existence of preformed holes not only lead to the increasing of stress concentration around the holes, but also release the stress concentration during whole response process; (3) There are three and two kinds of failure modes for square plate and cylindrical shell with pre-formed holes, respectively. and the standoff distance has a key influence on the forming location of the crack initiating point and the locus of crack propagation; (4) The square plate with pre-formed holes has a better performance than cylindrical shell on blast-resistant capability at a smaller standoff distance, while the influence of pre-formed holes on the reduction of blast-resistant capability of square plate is bigger than that of cylindrical shell. (C) 2021 China Ordnance Society. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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