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Study on the Static Performance of Prefabricated UHPC-Steel Epoxy Bonding Interface

机译:预制UHPC-钢环氧键合界面的静态性能研究

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Prefabricated UHPC-steel composite structure can make full use of the two materials’ mechanical and construction performance characteristics, with super mechanical properties and durability, which has been proved to be a very promising structure. However, using traditional mechanical connectors to connect prefabricated UHPC and steel not only is inconvenient for the prefabrication of UHPC components but also introduces heavy welding work, which is detrimental to the construction speed and antifatigue performance of the composite structure. Bonding UHPC-steel interface with epoxy adhesive is a potential alternative to avoid the above problem. In order to explore the mechanical properties of the prefabricated UHPC-steel epoxy bonding interface, this study carried out the direct shear test, tensile test, and tensile-shear test of the UHPC-steel epoxy-bonded interface (prefabricated UHPC-steel epoxy bonding interface). The results show that the interface failure is mainly manifested as the peeling of the epoxy-UHPC interface and the destruction of part of the UHPC matrix (the failure of the UHPC's surface). In pure shear and pure tension state, the interfacial shear strength is 5.14?MPa and the interfacial tensile strength is 1.18?MPa. In the tensile-shear state, the interfacial shear strength is 0.61?MPa and the interfacial tensile strength is 1.06?MPa. The stress-displacement curves of the interface normal and tangential direction are all in the shape of a two-fold line. The ultimate displacement was within 0.1?mm, showing the characteristics of brittle failure. Finally, a numerical model of the tensile specimen is established based on the cohesive interface element, and the interfacial tensile-shear coupling failure mechanism (tensile-shear coupling effect) is analyzed.
机译:预制UHPC钢复合结构能够充分利用两种材料的机械和结构的性能特性,具有超强的机械性能和耐久性,这已被证明是一种非常有前途的结构。然而,使用传统的机械连接器来连接预制UHPC和钢不仅为UHPC组分的预制不方便而且还引入重焊接工作,这是不利的施工速度和复合结构的抗疲劳性能。用环氧树脂粘接UHPC钢接口是为了避免上述问题的潜在替代。为了探索预制UHPC钢环氧键合界面的机械性能,本研究进行的直接剪切试验,拉伸试验和UHPC钢环氧键合界面的拉伸剪切试验(预制UHPC钢环氧树脂粘结界面)。该结果表明,该接口故障主要表现为环氧UHPC界面的剥离和的UHPC矩阵(所述UHPC表面的故障)的部分的破坏。在纯剪切和纯张力状态下,界面剪切强度是5.14?兆帕和界面拉伸强度为1.18?兆帕。在拉伸剪切状态下,界面剪切强度为0.61?兆帕和界面拉伸强度为1.06?兆帕。该接口向和切向方向的应力 - 位移曲线都在两折叠线的形状。极限位移为0.1?毫米内,显示出脆性破坏的特性。最后,拉伸试样的数值模型是基于内聚接口元件上建立,并且界面拉伸剪切耦合故障机制(拉伸剪切耦合效应)进行了分析。

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