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首页> 外文期刊>Journal of bridge engineering >Adjacent Concrete Box Girders Transversely Post-Tensioned at Top Flanges Only: Experimental Investigation
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Adjacent Concrete Box Girders Transversely Post-Tensioned at Top Flanges Only: Experimental Investigation

机译:相邻的混凝土盒梁梁只在顶部法兰横向后张紧:实验调查

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摘要

In this study, a new transverse post-tensioning (TPT) technique for box girder bridges is investigated, where TPT is applied at the top flange of the girder resulting in eliminating the intermediate transverse diaphragms. A one-third-scale bridge model consisting of four adjacent box girders with partial-depth shear keys was erected and tested. The bridge model was investigated for the optimal TPT force and spacing to ensure a uniform distribution of the clamping prestress. The efficiency of the proposed technique in transversely distributing live loads during simulated service and ultimate conditions was also investigated. Test results demonstrated that distributing the TPT force at a shorter spacing along the length of the bridge is more efficient than increasing the TPT force at discrete distant locations in producing the minimum required concrete prestress. It was observed that the effect of TPT force and spacing was insignificant during the simulated service condition, where shear keys remained intact or partially cracked. However, at failure, the presence of TPT added redundancy to the bridge model and mitigated any sudden failure when shear keys were fully cracked.
机译:在该研究中,研究了用于箱梁桥的新横向张紧(TPT)技术,其中TPT在梁的顶部凸缘处施加,导致消除中间横向膜片。竖立并测试了由具有部分深度剪切键的四个相邻框架梁组成的三分之一的桥梁模型。研究了桥梁模型,以获得最佳的TPT力和间隔,以确保夹紧预应力的均匀分布。还研究了在模拟服务和最终条件下横向分布活载的提出技术的效率。测试结果证明,在桥梁的长度沿着桥的长度的较短间隔处分布TPT力比在离散的远距位置在制造最小所需的混凝土预应力时增加TPT力更有效。观察到,在模拟的服务条件下,TPT力和间距的效果是微不足道的,其中剪切键保持完整或部分破裂。然而,在发生故障时,TPT的存在向桥梁模型增加了冗余,并在剪切键完全破裂时减轻了任何突然发生故障。

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