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Investigation into cracked aluminum plate repaired with bonded composite patch

机译:粘结复合材料修补铝板裂纹的研究

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Several parameters/factors related to mechanical and fatigue behaviors of a cracked 7075-T6 aluminum panel repaired with one-sided adhesively bonded composite patch were studied by a combined experimental-analytical approach. These were strain distribution, out-of-plane deformation and residual strength along with crack growth behavior. The effects of cool-down temperature during patch bonding, disbond and bending moment were also investigated. Residual thermal stresses, developed during patch bonding, requires the knowledge of temperature at which adhesive becomes effective in creating a bond between the specimen and patch. This can be determined through the out-of-plane deformation of the repaired panel. A bending moment is developed upon application of axial load due to initial out-of-plane deformation of the repaired panel with one-sided bonded patch. This can be also determined from the out-of-plane deformation. Further, the bending moment and temperature change during patch curing have a relatively more effect on the out-of-plane deformation than on the in-plane strain of the repaired panel. The disbond does not affect the out-of-plane deformation and in-plane strain except in their vicinity. Crack length has a small effect upon the in-plane strain and out-of-plane deformation. The stress intensity factor varies along the thickness of the repaired panel; however, crack growth rate was primarily dominated by stress intensity factor near the bonded patch side of the thin repaired panel in the present study. The bonded patch repair of a cracked panel provides a considerable increase in the residual strength as well as fatigue life.
机译:通过组合的实验分析方法研究了与单面粘合复合补强板修复的破裂的7075-T6铝面板的力学和疲劳行为相关的几个参数/因素。这些是应变分布,面外变形和残余强度以及裂纹扩展行为。还研究了补片粘结,脱粘和弯矩对冷却温度的影响。在贴片粘合过程中产生的残余热应力需要了解粘合剂有效地在样品和贴片之间建立粘合的温度。这可以通过修复后的面板的平面外变形来确定。在施加轴向载荷时,由于带有单面粘合贴片的修复面板的初始平面外变形而产生了弯矩。这也可以从平面外变形确定。此外,贴片固化过程中的弯矩和温度变化对平面外变形的影响要大于对修复面板的平面内应变的影响。除附近以外,剥离不影响面外变形和面内应变。裂纹长度对面内应变和面外变形影响很小。应力强度因子沿修复面板的厚度变化;然而,在本研究中,裂纹扩展速率主要由薄修复面板粘结面附近的应力强度因子决定。开裂面板的粘结修补修复可显着提高残余强度以及疲劳寿命。

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