首页> 外文期刊>International Journal of Concrete Structures and Materials >Bond Behavior of Basalt Fiber-Reinforced Polymer Bars Embedded in Concrete Under Mono-tensile and Cyclic Loads
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Bond Behavior of Basalt Fiber-Reinforced Polymer Bars Embedded in Concrete Under Mono-tensile and Cyclic Loads

机译:单张拉伸和环状载荷下混凝土中嵌入混凝土中的玄武岩纤维增强聚合物棒的粘合行为

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This study evaluates the static and fatigue bond behavior in basalt fiber-reinforced polymer (BFRP) bars embedded in concrete. For bond behavior under a mono-tensile load, BFRP bars with four types of surface patterns (round, rectangular, cross-winding, and spiral-winding) were adopted, and 20 groups of rib parameters were introduced for round-type BFRP bars. The bond–slip relationships and the influences of the above parameters on bond behavior were investigated. An analytical model for simulating the relationships of full bond slip was studied by data fitting. For bond behavior under cyclic loads, the relationship between stress levels and the number of cycles was investigated, and the slip of round-ribbed BFRP bars was studied with respect to the number of cycles. The results showed that the rectangular, cross-winding, and spiral-winding ribbed bars experienced serious wear, and that the average bond strength was approximately 80.6% of that of the round-ribbed bars. Thus, the bond behavior of the round rib is superior to those of the other surfaces. In addition, a bond–slip constitutive model for a BFRP bar is proposed, representing four main stages: a micro-slip stage, a slip stage, a descending stage, and a residual stage. Under cyclic loads, an equation was proposed for predicting fatigue life with a regression coefficient of 0.880, and a development law of slip was characterized as three stages: the linear increase stage, the steady increase stage, and the sharp increase stage, respectively.
机译:本研究评估垫上混凝土中的玄武岩纤维增强聚合物(BFRP)棒中的静态和疲劳粘合行为。对于单拉伸载荷下的粘合行为,采用具有四种类型图案(圆形,矩形,横向绕组和螺旋绕组)的BFRP棒,并引入了20组肋条参数,用于圆形BFRP棒。研究了粘结性关系和上述参数对粘合行为的影响。通过数据配件研究了模拟全粘合滑移关系的分析模型。对于循环负载下的键合行为,研究了应力水平与循环次数之间的关系,并研究了循环次数的圆形罗布BFRP棒的滑动。结果表明,矩形,交叉绕组和螺旋缠绕肋条棒经历了严重的磨损,并且平均粘合强度约占圆形罗纹条的80.6%。因此,圆形肋的键合行为优于其他表面的键。另外,提出了一种用于BFRP棒的粘结装置型模型,代表四个主要阶段:微滑阶段,滑动阶段,下降阶段和残余阶段。在循环载荷下,提出了一种等式,用于预测具有0.880的回归系数的疲劳寿命,并且滑动的开发法分别表征为三个阶段:线性增加阶段,稳步增加阶段和急剧增加阶段。

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