A mechanical approach for the punching shear provisions in the second generation of Eurocode 2

IF 0.1 Q4 ENGINEERING, CIVIL Hormigon y Acero Pub Date : 2022-11-02 DOI:10.33586/hya.2022.3091
M. Fernández Ruiz, A. Muttoni, J. T. Simões, D. Faria
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引用次数: 3

Abstract

The revision of a code is a long-term project that shall fulfil several aims, comprising the enhancement of the ease-of-use and incorporating updated state-of-the-art. With respect to the revision of Eurocode 2 concerning the punching shear provisions, this task allowed also for the opportunity to enhance the understanding of the code and physical phenomenon by designers. The original EN1992-1-1:2004 punching provisions were adapted from an empirical equation for design based on the regression analyses performed by Zsutty in the 1960s for shear in beams and later reworked in Model Code 1990 for punching shear. These expressions did not show any link to the physical response of a structure, making difficult to designers to clearly understand how to engineer their designs. Instead of continuing with this approach, CEN/TC250/WG1 took the decision in 2016 to ground the punching provisions on a mechanical model that could be explained to engineers, allowing for a transparent understanding of the design equations and phenomena. To that aim, the Critical Shear Crack Theory, already implemented in Model code 2010 at that time, was selected as representative of the state-of-the-art. Following that decision, a large effort has been performed to implement this theory into the Eurocode, keeping its simplicity of use and generality. This paper is aimed at presenting the theoretical ground of the theory as well as the manner in which it is drafted for the future generation of Eurocode 2.
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第二代欧洲规范2中冲孔剪切规定的力学方法
准则的修订是一个长期项目,应实现几个目标,包括提高易用性和纳入最新技术。关于欧洲规范2关于冲切规定的修订,这项任务也使设计者有机会加强对规范和物理现象的理解。最初的EN1992-1-2004冲孔规定是根据Zsutty在20世纪60年代对梁中的剪力进行的回归分析的经验设计方程改编而成的,后来在1990年的模型规范中对冲孔剪力进行了修改。这些表达与结构的物理响应没有任何联系,这使得设计师很难清楚地理解如何设计他们的设计。CEN/TC250/WG1没有继续采用这种方法,而是在2016年决定将冲孔规定建立在可以向工程师解释的机械模型上,以便对设计方程和现象有一个透明的理解。为此,当时已经在模型代码2010中实施的临界剪切裂纹理论被选为最先进的代表。在做出这一决定后,人们付出了巨大的努力,将这一理论纳入欧洲规范,保持其使用的简单性和通用性。本文旨在介绍该理论的理论基础,以及为未来一代欧洲规范2起草该理论的方式。
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来源期刊
Hormigon y Acero
Hormigon y Acero ENGINEERING, CIVIL-
CiteScore
0.50
自引率
0.00%
发文量
4
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