首页> 外文期刊>Journal of King Saud University: Physics and Mathematics >Experimental investigation of bond and tube thickness effect on the flexural behavior of concrete-filled FPR tube under lateral cyclic loading
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Experimental investigation of bond and tube thickness effect on the flexural behavior of concrete-filled FPR tube under lateral cyclic loading

机译:横向循环荷载下粘结和管厚对FPR钢管弯曲性能影响的试验研究

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The effect of bond and tube thickness on the flexural behavior of concrete-filled fiber reinforced polymer tube (CFFT) are investigated experimentally in this research. Two different kinds of tubes were used in this research, pultruded tubes and filament winding tubes. Two full scale CFFT column specimens are tested under lateral cyclic load only to study the effect of bond between the concrete core and the tube internal surface under lateral cyclic load only. One of them was prepared with sand-coating on the internal surface of the tube and the other specimen was kept without sand-coating. The CFFT columns were embedded 500mm into a rigid square reinforced concrete footing with 1200mm side dimension and 800mm depth. The two specimens are pultruded FRP tubes having the same mechanical properties and 305mm exterior diameter. Another two full-scale CFFT columns were reinforced with steel reinforcement and were fabricated with tube thicknesses of 4mm and 8mm. These two column were tested to study the tube thickness effect. The columns were embedded 400mm into rigid reinforced concrete footings, which were anchored to the laboratory floor. The columns were loaded under a constant axial load and lateral cyclic load. These two columns are filament winding FRP tubes were manufactured in the Composite Material Reinforcement Laboratory of the Sherbrooke University with the same interior diameter 324mm and with two different thicknesses 4mm and 8mm. The results indicate a significant improvement in the full composite action of CFFT in terms of flexural capacity and stiffness due to the sand-coating. The increasing of the tube thickness delays the yielding of steel and increases the ultimate flexural capacity of the CFFT.
机译:本研究通过实验研究了粘结和管子厚度对填充混凝土纤维增强聚合物管(CFFT)的弯曲行为的影响。在这项研究中使用了两种不同的管,拉挤管和长丝缠绕管。仅在横向循环载荷下测试了两个全尺寸CFFT柱标本,以仅在横向循环载荷下研究混凝土芯与管内表面之间的粘结作用。其中一个在试管的内表面上进行了砂涂处理,而另一个标本未进行砂涂。将CFFT柱嵌入500mm的刚性方形钢筋混凝土基础中,其侧面尺寸为1200mm,深度为800mm。这两个样品是具有相同机械性能和305mm外径的拉挤FRP管。另外两根全尺寸CFFT柱用钢增强了,并制成了4mm和8mm的管厚。测试这两根柱以研究管厚度效应。将这些柱嵌入400毫米的刚性钢筋混凝土基础中,该基础被固定在实验室地板上。柱在恒定的轴向载荷和横向循环载荷下加载。这两根细丝缠绕的FRP管是在舍布鲁克大学的复合材料增强实验室制造的,内径相同,为324mm,厚度为两种,分别为4mm和8mm。结果表明,由于砂涂层的作用,CFFT的全复合作用在抗弯能力和刚度方面都有显着改善。管厚度的增加会延迟钢的屈服并增加CFFT的极限抗弯能力。

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