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Elastoplastic analysis of cracked Aluminum plates with a hybrid repair technique using the bonded composite patch and drilling hole in opening mode I

机译:用粘合复合贴片和开启模式钻孔钻孔裂纹铝板裂纹铝板的弹性分析I

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The objective of this study is to analyze the performance of composite bonding repair, hole drilling and the combination of the two techniques (hybrid repairs) by tensile tests and to show the interest of a hybrid repair versus to other processes. These repair techniques can apply in different branches of engineering: mechanical, aerospace, civil, naval, etc. The finite element method with the ABAQUS code was used to model the mechanical behavior of the different repair techniques. The Notch Stress Intensity Factor (NSIF) is adopted to model the behavior of the cracked notch based on the volumetric method. The size of the plastic zone, the intensity of the normal σ_(yy) stress, the peel stress and CTOD are combined to model the proposed technics repairs. Although the bonded composite is very strong, the application of a drilling hole results in additional energy absorption and reduces the level of the maximum normal stress by about 50% compared to a simple patch only. The use of a hybrid repair has a high resistance compared to other proposed methods, improves the mechanical strength and increases the life of the cracked structure compared to a single composite joint and a repair by drilling hole only.
机译:本研究的目的是通过拉伸试验分析复合粘合修复,孔钻孔和两种技术(混合修复)的组合的性能,并显示混合修复与其他过程的兴趣。这些维修技术可以应用于不同的工程分支:机械,航空航天,民用,海军等。使用ABAQUS代码的有限元方法用于模拟不同修复技术的力学行为。采用凹口应力强度因子(NSIF)基于体积法模拟裂缝槽口的行为。塑料区的尺寸,正常σ_(yy)应力的强度,剥离应力和CTOD组合以模拟所提出的技术维修。虽然粘合复合材料非常强,但钻孔孔的应用导致额外的能量吸收,并与仅简单的贴片相比,将最大正常应力的水平降低约50%。与其他提出的方法相比,使用混合修复具有高电阻,与单个复合接头和仅通过钻孔修复,提高了机械强度并增加了裂纹结构的寿命。

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