首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Verification Test of Restoration Effect of Offshore Concrete Structure Using Permanent Formwork Panels and Underwater inseparable Mortar
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Verification Test of Restoration Effect of Offshore Concrete Structure Using Permanent Formwork Panels and Underwater inseparable Mortar

机译:使用永久性模板和水下不可分离的砂浆验证近海混凝土结构恢复效果的验证试验

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摘要

In recent years, the deterioration of harbor structures has become a matter for concern, and the establishment of effective repair methods has become urgent. In this study, a repair method for installing permanent formwork panels and filling them with underwater inseparable mortar is proposed as an effective section-restoring method for deteriorated concrete caisson sidewalls. To investigate the integrity between existing concrete and repaired parts as well as the effect of thickness increase due to panel installation, static bending tests of a flat-reinforced concrete (RC)-beam-modeled side wall used in caisson structures are conducted. The results obtained from this study are as follows: (1) by attaching the permanent formwork panels to the flat RC beam, the bending crack occurring load was improved by a factor of three, and the rebar yielding load and maximum load were doubled. This tendency was the same even when the RC beam had a cross-sectional defect. (2) The RC beam with the permanent formwork panels finally failed with diagonal cracks opening after the maximum load was reached. The ductility ratio at this time was approximately 6. To improve the deformation performance, it is necessary to apply shear reinforcement. (3) The analysis results by the fiber model assuming the complete adhesion of the permanent formwork panels, underwater inseparable mortar, and RC beam were performed, and the results were compared with the experimental results. As a result, it was clarified that the adhesion of each constituent material was retained until the yield of the main reinforcing bar. After that, pulling out of the main reinforcing bar from the concrete and damage to the permanent formwork panel became apparent. (4) The curvature of the cross-section at the yield of the main reinforcing bar was phi(yc) = 0.007 m(-1), and it was confirmed that the assumption of plane conservation was valid in the cross-section with a curvature less than that. This research is expected to promote the efficient maintenance of existing concrete caisson structures. As the amount of cement used and the construction period can be reduced, it is assumed that the environmental load can be reduced as well.
机译:近年来,港口结构的恶化已成为关注的问题,建立有效的修复方法已成为迫切。在本研究中,提出了一种修复方法,用于安装永久性模板和用水下不可分离的砂浆填充它们的修复方法是一种有效的混凝土沉箱侧壁的恢复方法。为了研究现有混凝土和修复部件之间的完整性以及由于面板安装引起的厚度增加的效果,进行了在沉箱结构中使用的扁平钢筋混凝土(RC)的侧壁的静态弯曲试验。从该研究获得的结果如下:(1)通过将永久性模板连接到扁平RC光束,弯曲裂纹发生的载荷提高了三倍,钢筋产生负荷和最大载荷加倍。即使RC光束具有横截面缺陷,这种趋势也是如此。 (2)具有永久性模板面板的RC光束最终失效,达到最大载荷后对角线裂缝开口。此时的延展性比约为6.为了提高变形性能,有必要施加剪切钢筋。 (3)通过纤维模型的分析结果假设在进行永久性模板,水下不可分离的砂浆和RC光束的完全粘附,并将结果与​​实验结果进行比较。结果,澄清了保留了每个组成材料的粘附直至主增强棒的产率。之后,从混凝土中拉出主加固杆,并损坏永久性模板面板变得明显。 (4)主增强棒产率下横截面的曲率为PHI(Yc)= 0.007米(-1),并确认平面保守的假设在横截面中有效曲率低于此。该研究预计将促进现有混凝土沉箱结构的有效维护。随着所用水泥的量和施工时段可以减少,假设也可以减少环境负荷。

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