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Cable fracture simulation and experiment of a negative Gaussian curvature cable dome

机译:负高斯曲率电缆穹顶的电缆断裂模拟与实验

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This paper describes a newly developed negative Gaussian cable-strut structure. It focuses on the fracture of a member using an experimental model and the corresponding vector form intrinsic finite element (VFIFE) model. First, this study considered the VFIFE algorithm for bars, cables, and beams. Next, an experimental model of a negative Gaussian curvature cable dome with its supporting system and the corresponding VFIFE model were built. Then, the given ridge cable was fractured using a shear force, and the structural dynamic response during fracture was tested. Finally, to further study the influence of fracture on the structure, different sections of three main ridge cables were selected, and their fractures were successively simulated using the VFIFE model. The results indicated that the VFIFE was an efficient and accurate way to simulate the member fracture of a negative Gaussian curvature cable dome. Furthermore, the results confirmed that members in a section with a negative curvature not only have a much greater effect on the structure but also are much more sensitive to member fracture. (C) 2018 Elsevier Masson SAS. All rights reserved.
机译:本文介绍了一种新开发的负高斯电缆支撑结构。它使用实验模型和相应的矢量形式固有有限元(VFIFE)模型着重于构件的断裂。首先,本研究考虑了用于钢筋,电缆和梁的VFIFE算法。接下来,建立了负高斯曲率电缆穹顶及其支撑系统的实验模型和相应的VFIFE模型。然后,使用剪切力使给定的脊缆断裂,并测试断裂过程中的结构动力响应。最后,为进一步研究断裂对结构的影响,选择了三个主脊缆索的不同截面,并使用VFIFE模型相继模拟了它们的断裂。结果表明,VFIFE是模拟负高斯曲率电缆穹顶构件断裂的有效且准确的方法。此外,结果证实,具有负曲率的截面中的构件不仅对结构具有更大的影响,而且对构件断裂更敏感。 (C)2018 Elsevier Masson SAS。版权所有。

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