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Flexural Behavior of RC Slabs Strengthened in Flexure with Basalt Fabric-Reinforced Cementitious Matrix

机译:玄武岩纤维增强水泥基增强RC板的抗弯性能

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This paper presents both experimental and analytical research results for predicting the flexural capacity of reinforced concrete (RC) slabs strengthened in flexure with basalt fabric-reinforced cementitious matrix (FRCM). A total of 13 specimens were fabricated to evaluate the flexural behavior of RC slabs strengthened with basalt FRCM composite and were tested under four-point loading. The fiber type, tensile reinforcement ratio, and the number of fabric layers were chosen as experimental variables. The maximum load of FRCM-strengthened specimens increased from 11.2% to 98.2% relative to the reference specimens. The energy ratio and ductility of the FRCM-strengthened specimens decreased with the higher amount of fabric and tensile reinforcement. The effective stress level of FRCM fabric can be accurately predicted by a bond strength of ACI 549 and Jung’s model.
机译:本文提供了实验和分析研究结果,以预测用玄武岩纤维增强水泥基(FRCM)增强的抗弯钢筋混凝土(RC)板的抗弯能力。总共制作了13个样品来评估用玄武岩FRCM复合材料增强的RC板的弯曲性能,并在四点荷载下进行了测试。选择纤维类型,拉伸增强比和织物层数作为实验变量。相对于参考标本,FRCM增强标本的最大载荷从11.2%增加到98.2%。 FRCM增强的样品的能量比和延展性随织物和拉伸增强材料含量的增加而降低。 FRCM织物的有效应力水平可以通过ACI 549和Jung模型的粘合强度准确预测。

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