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Evaluation of bond using FRP rods with axisymmetric deformations

机译:使用具有轴对称变形的FRP杆评估粘结

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摘要

This paper presents experimental results obtained with the direct pull--out test using machined and wrapped glass/vinylester, carbon/vinylester, and carbon/epoxy FRP rods with axisymmetric lugs. The typical results are given as nominal shear stress vs. free- and loaded-end slip. Experimental results obtained from strain probes used during the pull-out test are presented as shear stress vs. strain. Machined glass/vinylester FRP rods with embedded lengths including five and 10 lugs, and different lug widths and heights were studied. The failure mode consisted of the shearing off of the lugs without concrete damage. Four concrete mixtures with strengths ranging from 32 to 66.1 MPa were examined. Provided that enough confinement is used, it was found that the concrete strength has no noticeable effect on the shear strength and failure mode of FRP rods. Results showed that the FRP--concrete bond is controlled by the lug dimension and shear strength of the resin. The shear strength of the wrapped lugs is less than that of machined ones due to fiber orientation and weaker interfacial bond between the wrapped strands and rod surface.
机译:本文介绍了使用带有轴对称凸耳的机加工和包裹玻璃/乙烯基酯,碳/乙烯基酯以及碳/环氧FRP棒通过直接拉出测试获得的实验结果。典型结果以名义剪切应力与自由端和负载端滑移的关系给出。从拉拔测试期间使用的应变探头获得的实验结果以剪切应力与应变的关系表示。研究了嵌入长度包括5个和10个凸耳以及不同凸耳宽度和高度的机加工玻璃/乙烯基酯FRP棒。破坏模式包括剪断凸耳而没有混凝土损坏。检查了强度范围为32至66.1 MPa的四种混凝土混合物。如果使用了足够的约束,则发现混凝土强度对FRP杆的抗剪强度和破坏模式没有明显影响。结果表明,FRP-混凝土键受凸耳尺寸和树脂的剪切强度控制。由于纤维的取向以及包裹的股线和杆表面之间的界面结合力较弱,因此包裹的凸耳的剪切强度小于机加工的凸耳的剪切强度。

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