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An Enhanced UHPC-Grout Shear Connection for Steel-Concrete Composite Bridges with Precast Decks

机译:具有预制甲板的钢混凝土复合桥的增强的UHPC-灌浆剪切连接

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This article develops an enhanced UHPC-grout shear connection for steel-concrete composite bridges with precast decks. The primary improvement is the use of ultra-high performance concrete (UHPC) as the connection grout. To validate the constructability and the mechanical performance of the new connection, two series of experimental tests (including grouting tests and push-out tests) were conducted. Results from the grouting tests show that both the pressure grouting method and the self-levelling grouting method are applicable to inject the UHPC grout into the channel void of the connection. Results from the push-out tests indicate that the advanced properties of UHPC allow for a significant improvement of the shear resistance of the adhesive connection over traditional cementitious grouts. The ultimate shear capacity of the adhesive connection is controlled by the interface shear strength between the embossed steel and the UHPC grout, with a cohesion value of approximately 5.87?MPa. Meanwhile, the residual frictional resistance can be taken as approximately one-half of the ultimate resistance. The results of the finite-element analysis show that the trilinear model is reasonable to simulate the shear-slip laws of the embossed steel-grout interface and the rough concrete-grout interface.
机译:本文开发了具有预制甲板的钢混凝土复合桥的增强的UHPC-灌浆剪切连接。主要改进是使用超高性能混凝土(UHPC)作为连接灌浆。为了验证新连接的构造性和机械性能,进行了两种一系列实验测试(包括灌浆测试和推出测试)。来自灌浆试验的结果表明,压力灌浆方法和自平整灌浆方法都适用于将UHPC灌浆喷射到连接的通道空隙中。推出测试的结果表明,UHPC的先进特性允许显着提高传统水泥灌浆的粘合连接的剪切电阻。粘合剂连接的最终剪切容量由压花钢和UHPC灌浆之间的界面剪切强度控制,内聚值约为5.87Ωmpa。同时,残留的摩擦阻力可以作为最终阻力的大约一半。有限元分析的结果表明,三线性模型可以合理地模拟压花钢 - 灌浆界面的剪切规律和粗糙的混凝土灌浆界面。

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