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首页> 外文期刊>Journal of Constructional Steel Research >Innovative bolted junction with high ductility for circular tubular element
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Innovative bolted junction with high ductility for circular tubular element

机译:高延展性的创新螺栓连接,用于圆形管状元件

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This paper deals with the design of an innovative type of bolted junction that shows a high plastic range in the load displacement. The schematization studied and reported in this paper is generally valid for steel structures and can be applied where high ductility is required (for example structures subjected to earthquakes) or statically indeterminate structures. In this case due to the high ductility of the junction there is a redistribution of stress/load in the elements. For this implementation the bolted junction was studied and applied to the arches of a bridge (designed by the University of Brescia). The developed junction described in this paper will solve the problems described above and permit an adjustment of the arch length until a balanced configuration is reached. The design procedure includes a preliminary analytical computation using the most important buckling theories; subsequently it is carried out a numerical analysis which results are validated executing several experimental analyses on a scale model. The final scope is the design of an innovative junction for tubular elements with circular section which permits the modification of the post-buckling curve in order to increase the ductility of the entire junction. The geometric solution studied was verified numerically and experimentally tested on a scale model. The results show a meaningful increase in elastic plastic performance of the junction. Indicatively this innovative geometry increases the elastic plastic behavior on the experimental geometry approximately 2 times when compared with the junction of the tubular elements without the designed junction. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文讨论了一种创新型的螺栓连接的设计,该连接在负载位移方面显示出较高的塑性范围。本文研究和报道的方案通常适用于钢结构,可用于要求高延展性(例如遭受地震的结构)或超静定结构的场合。在这种情况下,由于结点的高延展性,元件中的应力/载荷会重新分布。为此,对螺栓连接处进行了研究,并将其应用于桥梁的拱门(由布雷西亚大学设计)。本文中描述的改进的接合点将解决上述问题,并允许调整弓的长度,直到达到平衡的构型为止。设计过程包括使用最重要的屈曲理论进行的初步分析计算。随后进行数值分析,并在比例模型上执行几次实验分析以验证结果。最终范围是为具有圆形截面的管状元件设计一种新颖的接头,该接头可以修改屈曲后的曲线,以提高整个接头的延展性。所研究的几何解决方案在比例模型上进行了数值验证和实验测试。结果表明,接合处的弹性塑性性能显着提高。显然,与没有设计结点的管状元件的结点相比,这种创新的几何形状将实验几何学上的弹性塑性性能提高了约2倍。 (C)2015 Elsevier Ltd.保留所有权利。

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