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Nonlinear Discrete Mechanical Model of Steel Rings

机译:钢圈非线性离散机械模型

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Circular rings are used in various engineering structures because of their nonlinear properties. The use of large assemblies of steel rings in flexible ring nets is widespread in recent technologies of protection structures and their design requires a nonlinear and computationally efficient mechanical modeling. This paper presents an innovative discrete model of steel rings for application in flexible protection structures. The model aims at providing an effective mechanical response of the net at both the local ring scale and the global net scale. Two different uniaxial tension configurations are defined as reference loading cases and the nonlinear analytical response of the ring model to these loading cases is established. A multicriteria numerical method based on the Levenberg-Marquardt algorithm is developed to calibrate the model parameters from experimental data. An experimental campaign on steel wire spliced rings of different dimensions is conducted and permits the calibration and validation of the model. (C) 2017 American Society of Civil Engineers.
机译:由于其非线性性能,在各种工程结构中使用圆环。在柔性环网中使用大型钢圈钢环在最近的保护结构技术中是广泛的,其设计需要非线性和计算有效的机械建模。本文介绍了一种在柔性保护结构中应用的钢圈的创新型号。该模型旨在提供局部环规模和全球净规模的网络的有效机械响应。两个不同的单轴张力配置被定义为参考装载情况,并且建立了环形模型的非线性分析响应。开发了一种基于Levenberg-Marquardt算法的多轨道数值方法,从实验数据中校准模型参数。进行了不同尺寸的钢丝拼接环的实验运动,并允许校准和验证模型。 (c)2017美国土木工程师协会。

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