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Experimental study on composite mechanical properties of a double-deck prestressed concrete box girder

机译:双层预应力混凝土箱梁组合力学性能试验研究

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摘要

A series of tests were carried out on a scaled (1:8) double-deck prestressed concrete box girder in this study, aiming to study the structural response and failure mechanism of the box girder under prestressed axial compression, transverse bending, and torsion. The test results, such as the twist angle, crack development, and distortion of the box girder, were analyzed in detail. The results show that (1) the box girder eventually suffered lateral bending damage, and the cross-section of the support distorted severely; (2) torsional cracking occurred in the pure torsion region at the mid-span, but the longitudinal and transverse rebars did not yield, indicating that the pure torsion section of the box girder was still in the early stage of torsion failure; and (3) after the cracking of the box girder, stress redistribution phenomenon occurred, resulting in obvious nonlinear strain variations. Comparison of the longitudinal and transverse steel strains showed that transverse steel withstood the most shear stress during the early stage of torsion.
机译:在此研究中,对比例为1:8的双层预应力混凝土箱梁进行了一系列测试,旨在研究箱梁在预应力轴向压缩,横向弯曲和扭转下的结构响应和破坏机理。详细分析了箱梁的扭转角,裂缝发展和变形等测试结果。结果表明:(1)箱形梁最终遭受侧向弯曲破坏,支座截面严重变形。 (2)在中跨的纯扭转区域发生扭转裂纹,但纵向和横向钢筋没有屈服,表明箱形梁的纯扭转截面仍处于扭转破坏的早期; (3)箱形梁开裂后,出现应力再分布现象,导致明显的非线性应变变化。纵向和横向钢应变的比较表明,横向钢在扭转的初期承受了最大的剪切应力。

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