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An experimental and finite element study of the non-linear force-displacement characteristics of tubular YT-joints under combined axial loading

机译:组合轴向载荷作用下管状YT接头非线性力-位移特性的实验和有限元研究

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This paper describes an experimental and finite element investigation of the non-linear elastic- plastic force-displacement response of a simply supported tubular YT-joint under a range of ratios of the T-to Y-brace applied loads, in order to develop an understanding of the dependence of the joint response on loading path. The experiments consist of the static testing of simply supported tin-lead alloy models of tubular YT-joints under combined, proportionally applied T-and Y-brace-end axial forces. A number of different finite element approaches are presented and discussed via comparison with the test results. An improved version of the energy-based elastic-plastic prediction procedure of the present authors is presented; this is shown to represent a framework for the determination of the non-linear local joint T-and Y-brace force-displacement responses to arbitrary radial loading paths in the load space. The work is considered relevant to the simplification of tubular framework analysis methods for the calculation of accurate collapse loads, incorporating non-linear joint behaviour.
机译:本文描述了在T形支架到Y形支架施加的载荷比范围内,简单支撑的管状YT节点的非线性弹塑性力-位移响应的实验和有限元研究,以开发一种了解关节响应对加载路径的依赖性。实验包括在组合的,按比例施加的T和Y型支撑端轴向力的作用下,对管状YT型接头的简单支撑的锡铅合金模型进行的静态测试。通过与测试结果进行比较,提出并讨论了许多不同的有限元方法。提出了作者基于能量的弹塑性预测程序的改进版本。该图显示了用于确定对载荷空间中任意径向载荷路径的非线性局部关节T型和Y型支撑力位移响应的框架。这项工作被认为与简化管状框架分析方法有关,该方法简化了计算精确坍塌载荷的工作,并结合了非线性接头行为。

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