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首页> 外文期刊>Journal of Composites for Construction >Stochastic-Based Nonlinear Numerical Modeling of Shear Critical RC Beam Repaired with Bonded CFRP Sheets
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Stochastic-Based Nonlinear Numerical Modeling of Shear Critical RC Beam Repaired with Bonded CFRP Sheets

机译:粘结CFRP片修复的临界剪力RC梁的随机非线性数值模拟

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The response of a shear critical substandard reinforced concrete beam and the structural repair of the predamaged beam by carbon-fiber-reinforced polymer sheets (CFRPs) were investigated by advanced numerical modeling method. First, the specimen was tested up to failure under monotonic loading in a four-point bending test. Owing to spatial variability of the concrete mechanical properties over a specific region, the damage was concentrated on one side of the beam. The severe shear cracks on the damaged side were then successfully repaired by externally bonded CFRP sheets. The former load-carrying capacity of the repaired beam was recovered, and the crack formation was transferred to the other side of the specimen, which had not been repaired. After repairing the unrepaired side of the beam using the same process, the failure mode was characterized by concrete crushing when the limiting strain of the concrete was reached under compression. The unsymmetrical crack pattern in the as-built specimen due to the uneven distribution of the concrete mechanical properties was reproduced by a random fields approach that combines the nonlinear finite-element method with stochastic sampling. In addition, the nonlinear response of the repair processes on the predamaged beam was adequately reproduced in the finite-element environment. The crack patterns and capacities obtained in the numerical solutions matched well the experimentally observed responses of the as-built and twice-repaired specimens.
机译:通过先进的数值模拟方法研究了剪力不合格的钢筋混凝土梁的响应以及碳纤维增强聚合物板(CFRP)对预损伤梁的结构修复。首先,在四点弯曲试验中,对试样进行单调加载直至断裂的测试。由于特定区域内混凝土力学性能的空间变化,损坏集中在梁的一侧。然后通过外部粘合的CFRP板成功修复了受损侧的严重剪切裂缝。修复后的梁恢复了以前的承载能力,并将裂纹形成转移到未修复的试样的另一侧。使用相同的方法修复未修复的梁侧后,破坏模式的特征是在压缩状态下达到混凝土的极限应变时,混凝土被压碎。通过将非线性有限元方法与随机抽样相结合的随机场方法,再现了由于混凝土力学性能不均匀分布所引起的在建试件中的非对称裂纹模式。此外,在有限元环境下,修复过程对预损伤梁的非线性响应得到了充分的再现。在数值解决方案中获得的裂纹模式和能力与已建成和两次修复的试样的实验观察到的响应非常吻合。

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