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Numerical simulation of tests for the evaluation of the performance of the reinforced concrete slabs strengthening by FRCM

机译:用FRCM评估钢筋混凝土板性能的试验数值模拟。

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In this work the attention is focused to the numerical simulation of the experimental bending tests carried out on a total of six reinforced concrete r.c. plates the latter aimed to provide a basic understanding of the its performance when strengthened by Fiber Reinforced Cementitius Matrix (FRCM) Composites. Three of those were used as control specimens. The numerical simulation was carried out by LUSAS software. A good correlation between the FE results and data obtained from the test, both in the load–deformation behavior and the failure load was highlighted. This permits to prove that applied strengthening system gives back an enhancement 2.5 times greater in respect of the unreinforced case. A greater energy dissipation ability and a residual load-bearing capacity makes the proposed system very useful in the retrofitting as well as in the case of strengthening of bridge structures. Based on the validation of the FE results in bending, the numerical analysis was also extended to characterize the behavior of this strengthening system in tensile.
机译:在这项工作中,注意力集中在对总共六个钢筋混凝土钢筋混凝土进行的实验弯曲试验的数值模拟上。后者旨在通过纤维增强水泥基复合材料(FRCM)复合材料增强其性能时提供基本的了解。其中三个用作对照样品。数值模拟是通过LUSAS软件进行的。有限元结果与从测试中获得的数据之间的良好相关性在载荷变形行为和破坏载荷中都得到了强调。这可以证明,与未加固的情况相比,应用的加固系统可以使强度提高2.5倍。更大的能量耗散能力和残余的承载能力使得所提出的系统在翻新以及桥梁结构加固的情况下非常有用。基于有限元弯曲结果的验证,数值分析也得到扩展,以表征该增强系统的抗拉性能。

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