Foraboschi Paolo
Dipartimento di Culture del Progetto, Università IUAV di Venezia-Dorsoduro 2206, 30123 Venezia, Italy.
Materials (Basel). 2019 Sep 21;12(19):3085. doi: 10.3390/ma12193085.
This paper investigates the ultimate flexural strength of reinforced concrete beams when affected by premature failure due to a rotational capacity of the first plastic hinge being consumed before the last plastic hinges reach their maximum possible moment. The paper provides a simple formula for predicting the ultimate load of a hyperstatically supported beam, taking into account the available ductility. The proposed formula is the result of calibration against the ultimate loads from a non-linear analysis on a variety of beams, with a wide spectrum of configurations and with concrete grades from 10.0 to 60.0 N/mm. The formula in based on the plastic hinge model, making it easy to apply, and the ultimate bending moments allow for the actual rotational capacity, making predictions accurate.
本文研究了钢筋混凝土梁在因首个塑性铰的转动能力在最后一个塑性铰达到其最大可能弯矩之前被消耗而导致过早破坏时的极限抗弯强度。本文提供了一个简单公式,用于预测超静定梁的极限荷载,同时考虑了可用延性。所提出的公式是通过对各种梁进行非线性分析得到的极限荷载进行校准的结果,这些梁具有广泛的配置,混凝土强度等级从10.0到60.0N/mm。该公式基于塑性铰模型,易于应用,并且极限弯矩考虑了实际转动能力,使得预测准确。