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Bond characteristics of carbon and stainless steel flat rebars with an alternate rib pattern

机译:碳纤维和不锈钢扁平钢筋具有交替肋纹的粘结特性

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摘要

The good performance of reinforced concrete depends on the appropriate transfer of forces between reinforcing rebars and concrete, which relies on the bond interaction between the two materials. At an uncracked section, both materials work together by means of the bond forces; however, if the tensile strength of the concrete is reached at a certain part of the structure, a crack will appear and the steel will be the only active element at the cracked section. At increasing loads, the crack will continue opening and large crack openings may lead to a failure of the rebar and to the collapse of the whole structure. A new idea to positively influence the cracking behaviour has emerged, which is based on the combination of smooth and rib zones within the same reinforcing rebar. Furthermore, use of stainless steel flat reinforcement has been considered as an option to optimize the reinforcing of shallow slabs. This paper presents bond tests performed on carbon and stainless steel flat reinforcements embedded in concrete and with different alternate rib configurations. Test results are presented in terms of bond strength and force transfer stiffness, as well as in terms of bond stress–slip relationship. Results show no differences between the bond capacity of carbon and stainless steel rebars if other parameters are kept constant. The use of an alternate surface configuration combining smooth and ribbed zones within the bond length, does affect the bond capacity of the rebar, and the position of the smooth zone within the bond length plays an important role.
机译:钢筋混凝土的良好性能取决于钢筋和混凝土之间适当的力传递,这取决于两种材料之间的键相互作用。在未破裂的部分,两种材料通过结合力共同作用。但是,如果在结构的某个部位达到混凝土的抗拉强度,则会出现裂纹,而钢将成为裂纹部位的唯一活性元素。在增加的载荷下,裂纹将继续打开,并且较大的裂纹开口可能会导致钢筋失效并导致整个结构塌陷。出现了一种积极影响开裂行为的新想法,该想法基于同一钢筋内的光滑区域和肋区域的组合。此外,已经考虑使用不锈钢平板加强筋来优化浅板的加强筋。本文介绍了对埋入混凝土中的碳素和不锈钢扁平钢筋进行粘结测试的方法,并采用了不同的替代肋结构。测试结果以粘结强度和力传递刚度以及粘结应力与滑动的关系表示。如果其他参数保持不变,结果表明碳和不锈钢钢筋的粘结能力之间没有差异。在粘结长度内结合使用平滑区域和肋状区域的替代表面配置的使用,确实会影响钢筋的粘结能力,并且平滑区域在粘结长度内的位置起着重要作用。

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