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Long-Term Mechanical Properties of Steel-Concrete Connectors Subjected to Corrosion and Load Coupling

机译:钢-混凝土连接器在腐蚀和载荷耦合作用下的长期力学性能

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Abstract>Steel–concrete composite structures are widely used in modern buildings and bridges for their great rigidity, light weight, and simple construction. However, the mechanical behaviors of steel–concrete composite structures degrade over time because of environmental corrosion and long-term load. The existing research on structural durability has often focused on concrete or steel structures. Few studies have been conducted on steel–concrete composite structures, especially on structures under the coupled impact of corrosion and load. To investigate the coupled impact of corrosion and load on the performance of steel–concrete composite structures, a long-term test of 200 days was carried out on eight connectors. The corrosion of the studs was accelerated by DC current, and the test connectors were submerged in a salt solution with a concentration of 5% NaCl. Deformations including the concrete strain and relative slippage between the concrete slab and the steel beam were measured in the long-term test. The experimental results showed that at the end of the long-term test, the deformations induced by shrinkage were about three times larger than those induced by creep for the steel–concrete composite structures. Notably, the stiffness of the connectors degraded substantially with the aggravation of the corrosion of the studs, whereas the concrete strain was only slightly affected by the studs’ corrosion. The measured deformations were also obviously larger than those calculated by the current specifications. As a reference, a suitable formula for the long-term elastic modulus is proposed to enhance the applicability of specifications.
机译:<抽象xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http://www.w3.org/1999/xlink ” xmlns:oasis = “ http://www.niso.org/standards/z39-96s/oasis-exchange/table ” xmlns:xsi = “ http://www.w3.org/2001/XMLSchema-instance ” xmlns:ali = “ http://www.niso.org/schemas/ali/1.0/ ”> 摘要 >钢-混凝土复合结构在现代建筑和桥梁中广泛用于它们的刚性好,重量轻且结构简单。但是,钢-混凝土复合结构的机械性能会由于环境腐蚀和长期载荷而随着时间推移而降低。现有的关于结构耐久性的研究通常集中在混凝土或钢结构上。对于钢-混凝土复合结构,尤其是在腐蚀和载荷耦合影响下的结构,很少进行研究。为了研究腐蚀和载荷对钢混凝土组合结构性能的耦合影响,对八个连接器进行了200天的长期测试。直流电流加速了螺柱的腐蚀,并将测试连接器浸入浓度为5%NaCl的盐溶液中。在长期测试中,测量了包括混凝土应变和混凝土板与钢梁之间的相对滑移在内的变形。实验结果表明,在长期测试结束时,收缩率引起的变形大约是钢混凝土组合结构的蠕变引起的变形的三倍。值得注意的是,随着螺柱腐蚀的加剧,连接器的刚度大大降低,而混凝土应变仅受到螺柱腐蚀的轻微影响。测得的变形也明显大于当前规范计算的变形。为提高规范的适用性,提出了合适的长期弹性模量公式。

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