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首页> 外文期刊>Fatigue & Fracture of Engineering Materials & Structures >Crack growth induced delamination on steel members reinforced by prestressed composite patch
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Crack growth induced delamination on steel members reinforced by prestressed composite patch

机译:由预应力复合补强板加固的钢构件上的裂纹扩展引起的分层

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Prestressed composite patch bonded on cracked steel section is a promising technique to reinforce cracked details or to prevent fatigue cracking on steel structural elements. It introduces compressive stresses that produce a crack closure effect. Moreover, it modifies the crack geometry by bridging the crack faces and so reduces the stress intensity range at the crack tip. Fatigue tests were performed on notched steel plate reinforced by CFRP strips as a step toward the validation of crack patching for fatigue life extension of riveted steel bridges. A crack growth induced debonded region in the adhesive-plate interface was observed using an optical technique. Moreover, the size of the debonded region significantly influences the efficiency of the crack repair. Debond crack total strain energy release rate is computed by the modified virtual crack closure technique (MVCCT). A parametric analysis is performed to investigate the influence of some design parameters such as the composite patch Young's modulus, the adhesive thickness and the pretension level on the adhesive-plate interface debond. [References: 21]
机译:将预应力复合补片粘结在开裂的钢型材上是一种很有前途的技术,可以增强开裂的细节或防止钢结构元件疲劳断裂。它引入压缩应力,从而产生裂纹闭合效果。此外,它通过桥接裂纹面来修改裂纹的几何形状,从而减小了裂纹尖端处的应力强度范围。对用CFRP筋加固的带缺口钢板进行了疲劳测试,这是迈向验证裂纹修补以延长铆接钢桥疲劳寿命的一步。使用光学技术观察到在粘合剂-板界面中裂纹增长引起的剥离区域。而且,脱粘区域的尺寸显着影响裂纹修复的效率。通过改进的虚拟裂纹闭合技术(MVCCT)计算脱粘裂纹的总应变能释放速率。进行参数分析以研究某些设计参数(如复合贴片的杨氏模量,胶粘剂厚度和预拉伸水平)对胶粘剂板界面脱胶的影响。 [参考:21]

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