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Bond-Slip Behavior between Stainless Steel Rebars and Concrete

机译:不锈钢钢筋与混凝土之间的粘结滑移行为

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摘要

Maintenance of reinforced concrete structures is a prevailing topic, especially with regard to lifeline structures and bridges, many of which are now designed with a service life beyond 100 years. Reinforcement made of ordinary (carbon) steel may corrode in aggressive environments. Stainless steel, being much more resistant to corrosion, is a valid solution to facilitate the protection of the works, increasing the service life and reducing the need for repair and maintenance. Despite the potential for stainless steel to reduce maintenance costs, studies investigating the influence of stainless steel on the behavior of reinforced concrete structures are limited. This study investigated the bond behavior of stainless steel rebars by means of experimental tests on reinforced concrete specimens with different concrete cover thicknesses, concrete strengths, and bar diameters. In each case, identical specimens with carbon steel reinforcement were tested for comparison. The failure modes of the specimens were examined, and a bond stress–slip relationship for stainless steel bars was established. This research shows that the bond behavior of stainless steel rebars is comparable to that of carbon steel bars.
机译:钢筋混凝土结构的维护是一个普遍的话题,特别是对于救生索结构和桥梁而言,其中许多设计使用寿命已超过100年。普通(碳)钢制成的钢筋可能会在侵蚀性环境中腐蚀。不锈钢具有更强的耐腐蚀性,是一种有效的解决方案,可促进对工件的保护,延长使用寿命并减少维修和保养的需要。尽管不锈钢具有降低维护成本的潜力,但研究不锈钢对钢筋混凝土结构性能的影响的研究仍然有限。本研究通过对具有不同混凝土覆盖层厚度,混凝土强度和钢筋直径的钢筋混凝土试样进行实验测试,研究了不锈钢钢筋的粘结性能。在每种情况下,都对相同的碳钢增强试样进行了比较测试。检查了样品的破坏模式,并建立了不锈钢棒的粘结应力-滑动关系。这项研究表明,不锈钢螺纹钢的粘结性能与碳钢螺纹钢的粘结性能相当。

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