Effects of floor slabs on the flexural strength of beams in reinforced concrete buildings

T. Kabeyasawa, Toshikazu Kabeyasawa, H. Fukuyama
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引用次数: 6

Abstract

The effects of floor slabs on the flexural strength of beams in reinforced concrete buildings under seismic action were verified through tests of frame assembly specimens. A series of experimental and analytical investigations were conducted from 2010 to 2014 in order to further validate the current design practices in Japan. Loading methods in the past beam component tests were reviewed with probable effects of floor slabs. A special loading set-up was used for the frame assembly specimens consisting of four columns and four beams with lengths of one span and two half spans in two directions. The four columns were loaded laterally and independently at mid-height of the upper storey and supported at mid-height of the lower storey with pinfixed and pin-roller so that axial elongation of the beams and slab would not be constrained by the lateral forces. It has been found from these new loading tests that the tensile stresses in the floor slab reinforcing bars are generally uniform at the beam critical sections and up to the full slab width for the flexural strength when the slab is subjected to tension bending around one percent storey drift, which is much wider than assumed in the current design evaluation.
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楼板对钢筋混凝土建筑梁抗弯强度的影响
通过框架组合试件试验,验证了楼板对地震作用下钢筋混凝土建筑梁抗弯强度的影响。为了进一步验证日本目前的设计实践,在2010年至2014年期间进行了一系列的实验和分析调查。回顾了过去梁构件试验中的加载方法,并考虑了楼板的可能影响。框架组合试件采用特殊的加载装置,由四柱和四梁组成,长度为一个跨和两个半跨。四根柱子在上层的中高处横向独立加载,在下层的中高处用销固定和销辊支承,这样梁和板的轴向伸长率就不会受到侧向力的约束。从这些新的加载试验中发现,在梁的临界截面上,楼板钢筋的拉应力通常是均匀的,当楼板在大约1%的楼层漂移时,楼板受拉弯曲时,楼板的抗弯强度达到整个楼板宽度,这比目前设计评估中假设的要宽得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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