首页> 外文期刊>Journal of Composites for Construction >Composite Patch Configuration and Prestraining Effect on Crack Tip Deformation and Plastic Zone for Inclined Cracks
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Composite Patch Configuration and Prestraining Effect on Crack Tip Deformation and Plastic Zone for Inclined Cracks

机译:复合膜片构型及预应力对倾斜裂纹的塑性变形和塑性区的影响

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摘要

Bonding a composite patch to a cracked steel section is an efficient technique to reinforce cracked members or to delay fatigue crack growth in the structural elements. In this paper, a numerical study was performed to highlight the effect of bonded prestressed composite patches on the fracture parameters, such as crack tip opening displacement and the plastic zone. A three-dimensional finite element model of the double sided strengthened specimen is used to study the fracture behavior of an inclined edge crack under different combinations of modes I and II loading conditions. The influence of the pretension level, patch stiffness ratio, and fiber orientation on the crack tip opening displacement and plastic zone are also investigated. The introduction of a compressive stress by pretensioning of the composite patch prior to bonding produces a significant reduction in the crack tip opening displacement and plastic zone. This pretensioning reduces the crack tip driving force and subsequently reduces the fatigue crack growth rate, which increases the fatigue life of the structural member. Furthermore, the increase in the patch stiffness ratio reduces the amount of plastic zone and opening displacement at the crack tip. The effectiveness of the fiber orientation in the composite patch depends primarily on the loading directions and crack inclination angle.
机译:将复合材料补片粘合到破裂的钢型材上是增强破裂构件或延迟疲劳裂纹在结构元件中生长的有效技术。在本文中,进行了数值研究,以突出预应力复合材料粘结片对断裂参数(如裂纹尖端的开度位移和塑性区)的影响。利用双面加固试件的三维有限元模型研究了在I和II型加载条件不同组合下斜边裂纹的断裂行为。还研究了预拉伸水平,补片刚度比和纤维取向对裂纹尖端开口位移和塑性区的影响。在粘结之前通过预拉伸复合材料补片引入压缩应力会显着减少裂纹尖端的开口位移和塑性区。这种预张紧减小了裂纹尖端的驱动力,并随后减小了疲劳裂纹的增长速度,从而增加了结构构件的疲劳寿命。此外,补片刚度比的增加减少了塑性区的数量和裂纹尖端处的开口位移。复合补丁中纤维取向的有效性主要取决于载荷方向和裂纹倾斜角度。

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