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Shear Performance Assessment of Sand-Coated GFRP Perforated Connectors Embedded in Concrete

机译:埋在混凝土中的砂膜GFRP穿孔连接器的剪切性能评估

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摘要

In order to evaluate the shear performance of sand-coated glass fiber-reinforced polymer (GFRP) perforated connectors (SCGPC) embedded in concrete, 8 pull-out tests were conducted. Finite element (FE) analysis considering GFRP failure and cohesion between GFRP and concrete of SCGPC were conducted for parametric analysis. Effects of surface treatment, hole’s radius, embedment length, and multi holes were examined. The test and theoretical analysis revealed that the strength of SCGPC is considerably larger than GFRP Perforated Connector (GPC). The stiffness of SCGPC is determined by the adhesion between concrete and GFRP. When GFRP plate’s thickness is less than the critical thickness, the embedment length plays a major role in the strength of SCGPC. When embedment length is less than the effective bond length, the shear strength of SCGPC is governed by both the adhesion and GPC’s shear capacity; otherwise, the strength of SCGPC is governed by the adhesion strength. Furthermore, an empirical equation was suggested to predict the shear strength of SCGPC. The equation involves the failure mechanism of both bond and GPC and deals the strength of SCGPC into two ranges according to the embedment length. Good agreement was achieved between the strength prediction by the suggested equation and the parametric analysis result.
机译:为了评估嵌在混凝土中的砂涂玻璃纤维增​​强聚合物(GFRP)多孔连接器(SCGPC)的剪切性能,进行了8次拉拔测试。进行了考虑GFRP破坏和GFRP与SCGPC混凝土之间的内聚力的有限元(FE)分析,以进行参数分析。研究了表面处理,孔的半径,嵌入长度和多个孔的影响。测试和理论分析表明,SCGPC的强度明显大于GFRP穿孔连接器(GPC)。 SCGPC的刚度取决于混凝土与GFRP之间的粘附力。当GFRP板的厚度小于临界厚度时,嵌入长度在SCGPC的强度中起着重要作用。当嵌入长度小于有效粘结长度时,SCGPC的剪切强度受粘合力和GPC剪切能力的控制;否则,SCGPC的强度取决于粘合强度。此外,提出了经验方程来预测SCGPC的剪切强度。该方程涉及键和GPC的破坏机理,并根据嵌入长度将SCGPC的强度分为两个范围。所建议方程的强度预测与参数分析结果之间取得了很好的一致性。

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