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首页> 外文期刊>International Journal of Solids and Structures >Wedge-shaped fracturing in the pull out of FRP stiffeners from quasi-brittle substrates
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Wedge-shaped fracturing in the pull out of FRP stiffeners from quasi-brittle substrates

机译:从准脆性基底拉出FRP加强筋时出现楔形断裂

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摘要

Fiber-Reinforced-Polymer (FRP) strips can be glued to the surface of concrete or masonry structures to improve their strength. Pull-out tests on FRP bonds have shown a progressive failure of the adhesive joint involving early-stage cracking parallel to the axis of the FRP stiffener, and an inclined crack initiating at the free end of the stiffener and extending into the quasi-brittle substrate in the latest stage. The subsurface crack produces a characteristic wedge-shaped spall. There is no consensus on the reasons for the transition from cracking along the bond to cracking within the substrate. Therefore a Linear Elastic Fracture Mechanics model problem is presented here that accounts for and provides improved understanding of the formation of the subsurface crack. The boundary value problem is solved analytically using the distributed dislocation technique. Competition between crack extension along the adhesive joint and into the substrate is quantified using a quantized crack propagation criterion, whereby the crack does not advance in infinitesimal continuous increments, but instead in finite steps of length comparable to the characteristic dimensions of the material microstructure. The model predicts results that are in good agreement with experimental evidence.
机译:可以将纤维增强聚合物(FRP)条粘贴到混凝土或砖石结构的表面,以提高其强度。对FRP键的拉拔测试表明,胶粘剂接头逐渐失效,其中包括平行于FRP加强筋轴线的早期裂纹,以及在加强筋的自由端开始并延伸到准脆性基材中的倾斜裂缝。在最新阶段。地下裂纹会产生特征性的楔形剥落。关于从沿键的裂纹过渡到基板内的裂纹的原因尚无共识。因此,这里提出了线性弹性断裂力学模型问题,该问题说明并提供了对地下裂缝形成的更好的理解。使用分布式位错技术解析地解决了边值问题。使用量化的裂纹扩展标准来量化沿着粘合接头的裂纹扩展和进入基材之间的竞争,由此,裂纹不会以无限小的连续增量前进,而是以与材料微结构的特征尺寸相当的有限长度长度前进。该模型预测的结果与实验证据非常吻合。

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