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Bond characteristics of steel fiber and deformed reinforcing steel bar embedded in steel fiber reinforced self-compacting concrete (SFRSCC)

机译:钢纤维增强自密实混凝土(SFRSCC)中埋入的钢纤维和变形钢筋的粘结特性

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Steel fiber reinforced self-compacting concrete (SFRSCC) is a relatively new composite material which congregates the benefits of the self-compacting concrete (SCC) technology with the profits derived from the fiber addition to a brittle cementitious matrix. Steel fibers improve many of the properties of SCC elements including tensile strength, ductility, toughness, energy absorption capacity, fracture toughness and cracking. Although the available research regarding the influence of steel fibers on the properties of SFRSCC is limited, this paper investigates the bond characteristics between steel fiber and SCC firstly. Based on the available experimental results, the current analytical steel fiber pullout model (Dubey 1999) is modified by considering the different SCC properties and different fiber types (smooth, hooked) and inclination. In order to take into account the effect of fiber inclination in the pullout model, apparent shear strengths (τ (app)) and slip coefficient (β) are incorporated to express the variation of pullout peak load and the augmentation of peak slip as the inclined angle increases. These variables are expressed as functions of the inclined angle (?). Furthurmore, steel-concrete composite floors, reinforced concrete floors supported by columns or walls and floors on an elastic foundations belong to the category of structural elements in which the conventional steel reinforcement can be partially replaced by the use of steel fibers. When discussing deformation capacity of structural elements or civil engineering structures manufactured using SFRSCC, one must be able to describe thoroughly both the behavior of the concrete matrix reinforced with steel fibers and the interaction between this composite matrix and discrete steel reinforcement of the conventional type. However, even though the knowledge on bond behavior is essential for evaluating the overall behavior of structural components containing reinforcement and steel fibers, information is hardly available in this area. In this study, bond characteristics of deformed reinforcing steel bars embedded in SFRSCC is investigated secondly.
机译:钢纤维增强自密实混凝土(SFRSCC)是一种相对较新的复合材料,它将自密实混凝土(SCC)技术的优势与纤维添加到脆性胶结基体中所获得的利润相结合。钢纤维改善了SCC元素的许多性能,包括抗张强度,延展性,韧性,能量吸收能力,断裂韧性和开裂。尽管关于钢纤维对SFRSCC性能的影响的研究有限,但本文首先研究了钢纤维与SCC之间的粘结特性。根据可用的实验结果,通过考虑不同的SCC特性和不同的纤维类型(光滑,钩形)和倾斜度,修改了当前的分析钢纤维拉拔模型(Dubey 1999)。为了在拉拔模型中考虑纤维倾角的影响,引入了表观剪切强度(τ(app))和滑移系数(β)来表示拉拔峰值载荷的变化和以斜率表示的峰值滑移的增加角度增加。这些变量表示为倾斜角(θ)的函数。此外,钢混凝土复合地板,由柱或墙支撑的钢筋混凝土地板以及弹性基础上的地板属于结构元件类别,在该结构元件中,传统的钢筋可以通过使用钢纤维部分替代。当讨论使用SFRSCC制造的结构元件或土木工程结构的变形能力时,必须能够全面描述用钢纤维增强的混凝土基体的性能以及这种复合基体与常规类型的离散钢增强体之间的相互作用。但是,即使有关粘结行为的知识对于评估包含增强材料和钢纤维的结构部件的整体行为至关重要,但在该领域却几乎没有可用的信息。在这项研究中,第二研究了埋在SFRSCC中的变形钢筋的粘结特性。

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