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Analysis of the behavior of reinforced concrete columns strengthened with sleeve wedge bolts and a self compacting concrete layer

机译:套筒楔形螺栓和自密实混凝土层加固钢筋混凝土柱的性能分析

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Strengthening of reinforced concrete columns by jacketing is one of the most common structural rehabilitation techniques in Brazil. For adequate performance, it is necessary, among others, to avoid detachment of the new concrete layer (strengthening material) from the old concrete substrate when the strengthened member is again in service conditions. This paper describes the test results of eight reinforced concrete rectangular columns subjected to combined compression and one-axis bending to evaluate the efficiency of using sleeve wedge bolts across the new concrete/old concrete interface to avoid detachment. The strengthening technique, in this case, consists of adding a layer of self-compacting concrete to one face of the column. Two columns tested were monolithic and named PO (original column) e PR (reference column). The other six columns were strengthened using a new 35 mm thick self-compacting concrete layer attached to the column face subjected to highest compressive stresses. Column PO had a 120mm by 250 mm rectangular cross section and its results gave information about column behavior without the use of strengthening. Column PR had a 155mm by 250 mm rectangular cross section and its cross section dimensions matched the strengthened columns but it was cast monolithically. To improve bond conditions between the existing concrete and the new concrete, the concrete surface was roughened and the outermost aggregate was exposed using hydro jetting. Holes along the concrete surface were made to insert the wedge bolts responsible for increasing the bond between the two concrete surfaces. The difference among the six strengthened columns was the position and amount of bolts used. Results indicate that the position and amount of the bolts alters significantly the strength capacity of the columns, since premature rupture by concrete detachment was delayed.
机译:通过套管加固钢筋混凝土柱是巴西最常见的结构修复技术之一。为了获得足够的性能,除其他外,当加固构件再次处于使用状态时,有必要避免新的混凝土层(增强材料)从旧的混凝土基材上脱落。本文介绍了八根钢筋混凝土矩形柱在组合压缩和单轴弯曲作用下的测试结果,以评估在新的混凝土/旧混凝土界面上使用楔形楔形螺栓避免分离的效率。在这种情况下,加固技术包括在立柱的一个面上添加一层自密实混凝土。测试的两个色谱柱是整体柱,分别命名为PO(原始色谱柱)和PR(参考色谱柱)。其他六根柱子使用附着在承受最大压缩应力的柱面上的新的35毫米厚的自密实混凝土层进行了加固。柱PO具有120mm x 250mm的矩形横截面,其结果给出了有关柱行为的信息,而没有使用增强。 PR柱的横截面为155mm x 250mm的矩形,其横截面尺寸与加固后的柱匹配,但整体浇铸而成。为了改善现有混凝土与新混凝土之间的粘结条件,对混凝土表面进行了粗糙处理,并使用水力喷射将最外层的骨料暴露在外。在混凝土表面上开孔以插入楔形螺栓,以增加两个混凝土表面之间的粘结力。六根加固柱之间的差异在于所用螺栓的位置和数量。结果表明,螺栓的位置和数量显着改变了柱子的强度,因为混凝土拆除引起的过早破裂被延迟了。

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