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The effects of disbonds on the stress intensity factor of aluminium panels repaired using composite materials

机译:剥离对复合材料修复铝板应力强度因子的影响

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摘要

Bonded composite patching has been recognized as an efficient and economical method to extend the service life of cracked aluminum components. The stress intensity factor is considerably reduced by the bonded composite repair. In this work, the finite element method is applied to analyse the behavior crack emanating from semi-circular notch root repaired by a boron/epoxy composite patch. The stress intensity factor (SIF) was computed for cracks repaired using a composite patch, taking into account of the disbond. In this case, the increase of patch thickness reduce the negative effects of disbond. The maximal reduction of composite patch of orientation (1) is the order of 56% more important with regard to patch of orientation (2). The minimal SIF in the presence of the disbond is obtained when the crack length is the order of 2ρ_(ent). It reaches its value maximal for a crack length equal to 2ρ_(ent)/5.
机译:粘结复合材料修补已被公认为是延长破裂铝部件使用寿命的一种有效且经济的方法。通过粘结的复合材料修复,应力强度因子大大降低。在这项工作中,应用有限元方法来分析由硼/环氧复合材料补片修复的半圆形缺口根部产生的行为裂纹。计算了使用复合贴片修复的裂纹的应力强度因子(SIF),同时考虑了脱粘现象。在这种情况下,补片厚度的增加会减少剥离的负面影响。取向(1)的复合贴片的最大减少量比取向(2)的贴片要重要的多56%。当裂纹长度为2ρ_(ent)的量级时,获得存在脱粘的最小SIF。对于等于2ρ_(ent)/ 5的裂纹长度,其达到最大值。

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