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冻融循环下CFRP锚杆粘结性能试验 被引量:2

Bond Performance Test of CFRP Anchor under the Cycle of Freezing and Thawing
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摘要 通过冻融循环、拉伸试验研究了冻融作用对碳纤维CFRP锚杆强度、弹性模量、延伸率等基本力学性能及粘结性能的影响,并利用粘结应力—滑移线性回归方法预测冻融循环后CFRP锚杆不同筋材直径、不同锚固长度下滑移值。试验及分析结果证明:CFRP锚杆在冻融循环作用下强度变化、弹性模量、延伸率等变化不大;粘结剂环氧砂浆抗压强度提高13.68%,弹性模量降低约13.8%;冻融循环作用后CFRP锚杆粘结滑移增大,粘结性能降低。 Effect of freeze-thaw cycles on strength, modulus of elasticity, elongation and other basic mechanical properties, as well as adhesive properties, of CFRP anchors were studied by freeze-thaw cycles and the tensile test. The bond stress and slip linear regression method is used to predict the slip value of different reinforcement diameters and different anchoring lengths under the condition of the freeze-thaw cycles. Test and analysis results show that the tensile strength elastic modulus and elongation of CFRP anchors change a little. The compressive strength of epoxy mortar used as adhesive increases by 13.68% , the elastic modulus of decrease by about 13.8%. The slip of CFRP anchor increases, and the bond nerformance reduced.
出处 《建筑科学》 北大核心 2013年第5期56-59,共4页 Building Science
基金 国家自然科学基金(51168006) 广西柳州市应用技术研究与开发计划项目(2010020603)
关键词 碳纤维(CFRP)锚杆 冻融循环 基本力学性能 线性回归 粘结性能 carbon fiber reinforced plastics (CFRP) anchor freeze-thaw cycles basic mechanical property linear regression bond performance
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  • 1HUANG Fan1, LIU Yiqun1, ZHANG Xiaohong1, GAO Jianming1, SONG Zhihai1, TANG Banghui1, WEI Genshuan2 & QIAO Jinliang1 1. SINOPEC Beijing Research Institute of Chemical Industry, Beijing 100013, China,2. Institute of Applied Chemistry, College of Chemistry and Molecular Engineering, Peking University, Beijing 100080, China Correspondence should be addressed to Qiao Jinliang (email: jqiao@brici.ac.cn.).Interface and properties of epoxy resin modified by elastomeric nano-particles[J].Science China Chemistry,2005,48(2):148-155. 被引量:9
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