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Eliminating Shrinkage Effect from Moment Curvature and Tension Stiffening Relationships of Reinforced Concrete Members

机译:从弯矩曲率和钢筋混凝土构件的拉伸刚度关系中消除收缩效应

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摘要

Experimental results on cracking and deformation behavior of RC members subjected to short-term loading are frequently misinterpreted because shrinkage effect is not taken into account. Even at first loading, free shrinkage strain of concrete may well exceed the cracking strain. The shrinkage strain, restrained by reinforcement, significantly affects the cracking resistance and short-term deformations of RC members. Despite this, most known constitutive laws were derived by using the test data of shrunk RC members under the influence of tension stiffening coupled with shrinkage effect. In this paper, a numerical procedure has been proposed for eliminating shrinkage from moment-curvature and tension-stiffening relationships. The procedure is on the basis of the smeared crack approach and layer section model. It combines direct and inverse techniques of analysis of RC members. The inverse technique, earlier proposed by the first writer, aims at deriving tension-stiffening stress-strain relationships from experimental moment-curvature diagrams. The shrinkage effect was eliminated by assuming in the direct technique a positive (expansion) free shrinkage strain. On the basis of the proposed procedure, free-of-shrinkage tension-stiffening and moment-curvature relationships were derived by using test data of shrunk RC beams obtained by the writers and reported by other investigators. It was shown that negative portions of the tension-stiffening curves disappear after eliminating shrinkage.
机译:由于未考虑收缩效应,经常会曲解关于承受短期荷载的RC构件开裂和变形行为的实验结果。即使在第一次加载时,混凝土的自由收缩应变也可能远远超过开裂应变。受钢筋约束的收缩应变会显着影响RC构件的抗裂性和短期变形。尽管如此,在拉伸刚度和收缩效应的影响下,通过使用收缩的RC构件的测试数据得出了最著名的本构定律。在本文中,提出了一种数值程序,用于消除弯矩曲率和张力-刚度关系中的收缩。该程序基于涂污裂纹方法和层截面模型。它结合了钢筋混凝土构件分析的直接和反向技术。最早由第一位作者提出的反演技术旨在从实验弯矩-曲率图推导张力-加劲应力-应变关系。通过在直接技术中假设正(膨胀)自由收缩应变,消除了收缩效应。根据所提出的程序,利用作者获得并由其他研究者报告的收缩RC梁的测试数据,得出了无收缩的拉伸刚度和弯矩曲率关系。结果表明,消除收缩后,拉伸-刚度曲线的负部分消失了。

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