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Effect of modulus of elasticity and thickness of the CFRP plate on the performance of a novel anchor for structural retrofitting and rehabilitation applications

机译:CFRP板的弹性模量和厚度对用于结构翻新和修复应用的新型锚固件性能的影响

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This article presents the effect of the thickness, the modulus of elasticity and the strength of the carbon fibre-reinforced-polymer (CFRP) plate on the CFRP-metal couples for the structural rehabilitation and retrofitting applications. This article illustrates the development and assessment of a novel prestressing anchor to grip the commercially available 50 mm x 1.4 mm CFRP plates. This is a high-modulus CFRP plate with a modulus of elasticity of 210,000 MPa and an ultimate tensile strength of 2900 MPa. The new anchor was made of 22-gauge (0.71 mm thick) annealed copper and heat-treated H13 steel. An ABAQUS-based finite element advanced simulation model of the bolted anchor was developed to analyze, optimize and design the new anchor. A detailed manufacturability study was conducted. An experimental investigation was carried out to authenticate the numerical simulation results. The average failure load of this new anchor was 231 6 kN, which was more than 100% of the guaranteed ultimate tensile strength of the high-modulus CFRP plate (203 kN). The failure mode was the sudden tensile failure of the CFRP plate outside of the anchor. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了碳纤维增强聚合物(CFRP)板的厚度,弹性模量和强度对CFRP-金属对的影响,以进行结构修复和翻新应用。本文说明了一种新型预应力锚固件的开发和评估,该锚固件可夹持市售的50 mm x 1.4 mm CFRP板。这是一种高模量CFRP板,其弹性模量为210,000 MPa,极限抗拉强度为2900 MPa。新的锚固件是由22规格(0.71毫米厚)的退火铜和经热处理的H13钢制成。开发了基于ABAQUS的锚固有限元高级仿真模型,以分析,优化和设计新型锚固。进行了详细的可制造性研究。进行了实验研究以验证数值模拟结果。这种新锚的平均破坏载荷为231 6 kN,这是高模量CFRP板的最大极限抗拉强度(203 kN)的100%以上。破坏模式是锚固件外的CFRP板突然拉伸破坏。 (C)2017 Elsevier Ltd.保留所有权利。

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