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Causes of excessive detensioning stresses in northeast extreme tee (NEXT) beams

机译:东北极三通(NEXT)梁中过大的拉伸应力的原因

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摘要

During prestress release, northeast extreme tee (NEXT) bridge beams crack in their flanges and webs at beam ends in recurrent patterns. These cracks may lead to corrosion in pretensioned and mild reinforcement. Causes of flange cracks in NEXT beams were investigated in this paper using nonlinear finite element analysis that captures stress redistribution in concrete upon cracking and using field measurements of reinforcing bar strains. A torsion-based analytical method was also used to explore the impact of differential camber between stems of skewed beams. The individual contributions of prestress, uncut strand restraint, skew, thermal strains, formwork restraint, and torsion due to differential camber to detensioning cracks were studied. Torsion with formwork restraint and high skew angles were the largest contributors to end cracking. Flange cutouts, flexible supports, or removable formwork are recommended for crack control. The torsion-based method may also be suitable for predicting flange stresses and detailing reinforcement.
机译:在释放预应力期间,东北极端三通(NEXT)桥梁的凸缘和腹板中的腹板以反复的方式开裂。这些裂纹可能会导致预紧和适度的钢筋腐蚀。本文使用非线性有限元分析方法研究了NEXT梁中的凸缘裂纹的原因,该方法可以捕获混凝土在开裂时的应力重新分布,并使用钢筋应变的现场测量结果。还使用基于扭转的分析方法来探究偏斜梁杆之间的差异弯度的影响。研究了预应力,未剪断的钢绞线约束,偏斜,热应变,模板约束和因弯度不同而引起的扭转对张紧裂纹的个体影响。具有模板约束力和高偏斜角的扭转是最终开裂的最大原因。建议使用法兰切口,柔性支撑或可移动模板来控制裂缝。基于扭转的方法也可能适用于预测凸缘应力和细化钢筋。

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