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Crack Width Prediction for Ledges in Inverted 'T' Bent Caps

机译:倒T形弯帽中壁架的裂缝宽度预测

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摘要

Inverted "T" bent caps are used extensively in concrete highway bridges because they are aesthetically pleasing and offer a practical means to increase vertical clearance. The problem is that at service load unacceptable diagonal cracks frequently occur at the re-entrant corners between the cantilever ledges and the web. In order to control the diagonal cracks, an extensive three-phase investigation was carried out. The first phase was to predict the diagonal crack widths at the interior portions of the bent caps. A2-D analytical model, called Compatibility-Aided Strut-and-Tie Model (CASTM), was developed. This model was calibrated by testing seven full-size 2-D test specimens. The second phase was to predict the diagonal crack widths at the end faces of the exterior portions of bent caps. In this phase the CASTM was extended to 3-D analysis, which was calibrated by testing ten 3-D specimens. In the third phase, two whole-wholebent-cap specimens were tested to determine the effective distribution width in the vicinity of an interior applied load on the ledge. Crack control methods for the interior spans and the exterior end faces were recommended.
机译:倒“ T”形弯盖广泛用于混凝土公路桥梁,因为它们在美学上令人愉悦,并提供了增加垂直间隙的实用方法。问题在于,在使用载荷下,在悬臂壁架和腹板之间的凹角处经常出现不可接受的对角裂纹。为了控制斜裂纹,进行了广泛的三相研究。第一阶段是预测弯曲帽内部的对角裂缝宽度。开发了称为兼容辅助撑杆和领带模型(CASTM)的A2-D分析模型。通过测试七个全尺寸的2-D测试样本来校准此模型。第二阶段是预测弯曲帽盖外部端面的对角裂纹宽度。在此阶段,CASTM扩展到了3-D分析,可通过测试十个3-D样品进行校准。在第三阶段,测试了两个全盖帽样本,以确定壁架上内部施加的载荷附近的有效分布宽度。建议对内部跨度和外部端面采用裂纹控制方法。

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