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Influence of long-term creep on prestressed concrete beams in relation to deformations and structural resistance: Experiments and modeling

机译:长期蠕变对预应力混凝土梁相关变形及结构阻力的影响:实验与建模

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Realistic structural models incorporating the time-dependent effects of concrete are essential in order to make accurate predictions of the time-dependent deflections at any time of the service life. Experimental databases are used to calibrate and validate existing models for creep and shrinkage available in international standards. However, extensive research campaigns on large-scale prestressed beams are scarce. In 1967-1985, a research program comprising a unique set of long-term experimental data on concrete beams was conducted in joint collaboration with four Belgian research institutes to determine the influence of creep and shrinkage on the long-term behavior of reinforced and prestressed concrete members. The main aim of the final part of the research campaign was the determination of the long-term behavior of prestressed and partially prestressed beams subjected to permanent loads, considering the influence of the magnitude of the loads, the degree of prestressing, the shape of the cross-section, the type of prestressing and the stress conditions. This paper reports on the obtained unique set of long-term tests. Additionally, also information related to the creep and shrinkage data of prisms and the results of the static tests in a four-point bending configuration until failure at the age of 28 days and 5 years are presented in this paper. The measurements of the prestressed members are compared with a simplified calculation method based on the direct stiffness method, which accounts for aging, creep, and shrinkage. The proposed simplified calculation model allows fast and accurate predictions of strains, stresses, and deflections as a function of time. The results show that the direct stiffness method in combination with the current models of EN1992-1-1 and fib Model Code 2010 can predict the long-term behavior of concrete beams in good agreement with the available experimental data. The research allows to develop more accurate calculation guidelines with respect to the evolution of deflections, concrete deformations and stresses of prestressed beams as function of the prestress-degree, shape of the cross-section, and the type of prestressing.
机译:结合混凝土的时间依赖性效果的现实结构模型对于在使用寿命的任何时间进行准确预测时间依赖性偏转。实验数据库用于校准和验证国际标准可用的蠕变和收缩的现有模型。但是,大规模预应力梁上的广泛研究活动稀缺。 1967年至1985年,在与四个比利时研究机构的联合合作中,进行了一套关于混凝土梁的独特长期实验数据的研究计划,以确定蠕变和收缩对加强和预应力混凝土的长期行为的影响会员。研究活动的最后一部分的主要目标是确定预应力和部分预应力梁的长期行为,考虑到负荷幅度,预应力程度,形状的影响横截面,预应力的类型和压力条件。本文报告了所获得的独特的长期测试集。此外,还有与棱镜的蠕变和收缩数据有关的信息以及四点弯曲配置中的静态测试的结果,直到本文提出了28天和5年龄的故障。将预应力成员的测量与基于直接刚度法的简化计算方法进行了比较,其用于老化,蠕变和收缩。所提出的简化计算模型允许作为时间的函数的快速准确地预测菌株,应力和偏转。结果表明,直接刚度法与EN1992-1-1和FIB模型代码2010的当前模型组合可以预测与可用的实验数据良好的吻合梁的长期行为。该研究允许在预应力的横截面,形状的横截面的功能和预应力的函数和预应力的类型中,开发更准确的计算指导。

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