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Post-elastic behaviour of ground-floor slabs. Part 2: Fabric-reinforced concrete slabs

机译:楼板的后弹性行为。第2部分:织物增强混凝土板

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Ground-floor slabs (GFS) are being increasingly designed to carry loads beyond their elastic limit, particularly by means of classical plastic analysis. To this end, a study has been carried out to investigate the inelastic behaviour of both plain and fabric-reinforced concrete GFS. The results of the study on plain-concrete GFS were reported in the first of a set of two papers, while the present, second paper is devoted to the research work carried out on fabric-reinforced concrete slabs. Both papers aim at advancing the understanding of the behaviour of these slabs by means of non-linear finite-element analysis (NLFEA) that employs a constitutive model which is based on experimental data on concrete behaviour under triaxial states of stress. Similarly to the findings for the plain-concrete GFS, and with design rationale in mind, a new performance-based (PB) definition for the failure criterion is also proposed for fabric-reinforced GFS, which takes into account the all-important slope condition (i.e. the effect of structural loading on flatness and levelness of the slab). Finally, NLFEA-based design recommendations are made on the effect of the steel reinforcement on the strength and serviceability of fabric-reinforced GFS, including also recommendations on the appropriate location (i.e. top or bottom) of the steel in order to achieve a balanced strength throughout the slab. The present research represents a considerable improvement on existing classical plastic analyses as the latter provide no information on deflections and slopes.
机译:地面楼板(GFS)越来越多地设计为承受超过其弹性极限的载荷,尤其是通过经典的塑性分析。为此,已经进行了研究以研究普通和纤维增强混凝土GFS的非弹性行为。在两篇论文中的第一篇中报道了对普通混凝土GFS的研究结果,而目前,第二篇论文专门针对在织物增强混凝土板上进行的研究工作。这两篇论文都旨在通过非线性有限元分析(NLFEA)来促进对这些平板的性状的理解,非线性有限元分析采用的是本构模型,该模型基于有关三轴应力状态下混凝土行为的实验数据。与普通混凝土GFS的发现相似,并考虑到设计原理,还为织物增强的GFS提出了基于性能的新的PB失效准则定义,其中考虑了所有重要的坡度条件(即,结构载荷对平板的平坦度和水平度的影响)。最后,基于NLFEA的设计建议针对钢的增强对织物增强的GFS的强度和适用性的影响提出建议,还包括针对钢的适当位置(即顶部或底部)以达到平衡强度的建议。整个平板。本研究代表了对现有经典塑性分析的显着改进,因为后者无法提供有关挠度和斜率的信息。

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