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Evaluation of minimum flexural reinforcement in RC beams

机译:钢筋混凝土梁的最小抗弯钢筋评估

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摘要

An analytical study on the influence of beam size and strength of concrete for evaluation of minimum flexural reinforcement is reported. The empirical equations specified in the codes of practice may be re-evaluated and adjusted appropriately according to rational approach. The study of reinforced concrete beams using fracture mechanics of concrete with the help of fictitious crack model has been undertaken. The depth of beam was varied from 100 mm to 1500 mm and the strength of concrete was varied from 20 MPa to 70 MPa. The minimum flexural reinforcement in the beams has been established using the condition that the surface crack width at the tension face of the beam does not exceed the maximum crack mouth opening displacement. It has been noticed that the minimum flexural reinforcement increases with increase in the size of beam. As the strength of concrete increases, the minimum flexural reinforcement also increases. This has been attributed to the brittleness imparted by the structural size and material behaviour.
机译:报告了分析梁尺寸和强度对最小抗弯钢筋的影响的分析研究。实践准则中规定的经验方程式可以根据理性方法进行重新评估和适当调整。借助虚拟裂缝模型,利用混凝土的断裂力学进行了钢筋混凝土梁的研究。梁的深度从100毫米变化到1500毫米,混凝土的强度从20兆帕变化到70兆帕。横梁中的最小抗弯钢筋的确定条件是:横梁张紧面上的表面裂缝宽度不超过最大裂缝口张开位移。已经注意到,最小抗弯钢筋随着梁尺寸的增加而增加。随着混凝土强度的增加,最小抗弯钢筋也增加。这归因于结构尺寸和材料性能赋予的脆性。

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