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Based on the Canadian Standards Association(CSA) criterion,experiments on 30 pull-out specimens were conducted to study the bond strength of deformed GFRP rebars with 8 different surface configurations.Each rebar was embedded in a 150 mm concrete cube,and the test embedded length was four times of the rebar diameter.Relationship between the mode of failure,the average bond strength and the average bond strength-slip for each rebar was analyzed.Results show that the failure mode of all specimens is the shearing off or desquamation of ribs,no splitting cracks appear on the cube specimens.The bond stress of deformed GFRP rebars mainly depends on the mechanical interaction between the ribs of the bar and the surrounding concrete,and the bond strength of deformed GFRP rebars is improved obviously.The optimal rib spacing is less than 2.5 times of the rebar diameter,and the rib height is more than 3% of the rebar diameter.  相似文献   
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混凝土结构中玻璃纤维增强塑料(GFRP)/钢绞线复合筋的保护层厚度,对保证结构的安全性、适用性和耐久性具有重要意义。基于混杂原理,利用玻璃纤维和钢绞线研制了弹性模量高、耐腐蚀性强的GFRP/钢绞线复合筋。采用拉拔试验,对69个混凝土拉拔试件进行试验研究,测定每个试件的粘结强度。试验变量包括GFRP/钢绞线复合筋的直径、混凝土强度等级和混凝土保护层厚度。通过对试验数据的统计分析,得到了加载端、自由端粘结滑移限值以及粘结强度限值,并在此基础上确定了GFRP/钢绞线复合筋的混凝土保护层厚度的设计建议值。试验数据和设计建议可为GFRP/钢绞线复合筋的工程应用和相关规范的制定提供参考和理论依据。  相似文献   
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