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Design Issues About the Bar Lay-Out at the Dapped Ends of Simply-Supported One-Way R/C Slabs

机译:关于拨入的栏的设计问题在简单支持的单向R / C板块的倾斜端

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Directly- or indirectly-supported R/C slabs are frequently used in the covers of small-to-medium underground facilities, where the service loads are often rather limited, but very severe loads cannot be ruled out in accidental situations.To have fresh information on the structural performance and cracking of R/C slabs simply supported along their short sides via corbels (dapped ends), four rectangular slabs subjected to transversely distributed or concentrated loads have been recently tested in Milan (b x L = 1.30 x 2.20 m; simply-supported span = 2.10 m; thickness = 15 cm). The load was applied either at mid-span (in the bending tests, not presented in this paper), or at 1/10 of the span (in the shear tests). Two bar arrangements were investigated with straight or bent-up bars in the main body, and straight bars or hooks in the corbels.In the D zones of the slabs tested in shear, the concentrated load induces a rather complex 3-D crack pattern, with a limited reduction in the bearing capacity, compared with the cross-wise distributed load.Rather simple strut-and-tie models applied to the slabs with bent-up bars and hooks, and the equations provided by European and North-American codes for the beams devoid of transverse reinforcement are shown to yield realistic predictions for the bearing capacity at the ultimate limit state. In the former case, however, modelling the bond along the tension reinforcement of the corbel requires some care, because of bond local and global effects. Last but not least, refining bar layout confirms - once more - that slab performance can be markedly improved with little extra effort.
机译:直接或间接支持的R / C板经常用于小于媒体地下设施的盖子,在那里服务负载通常是相当有限的,但在意外情况下无法排除非常严重的负载。有新信息关于R / C板坯的结构性能和裂缝,通过CORBELS(DAPPED END)沿着它们的短边支撑,最近在米兰进行了四个经过横向分布的或浓缩载荷的矩形板(BX L = 1.30 x 2.20米;简单地 - 支持跨度= 2.10米;厚度= 15厘米)。在中间跨度(在本文中未呈现的弯曲试验中,在跨度的1/10(在剪切试验中)施加负荷。在主体中的直线或弯曲条和Corbels中的直杆或钩子进行了调查了两个杆装置。在剪切中测试的板坯的D区,浓度诱导相当复杂的3-D裂纹图案,与承载力的减小有限,与横向分布式负载相比。将简单的支柱和领带模型应用于具有弯曲条和钩子的板坯,以及由欧洲和北美代码提供的方程示出了没有横向加强件的梁,以产生最终限制状态的承载能力的现实预测。然而,在前一种情况下,由于邦德局部和全球效果,沿着Corbel的张力加固建模纽带需要一些护理。最后但并非最不重要的是,炼油酒吧布局确认 - 再次额外的额外努力可以显着提高板坯性能。

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