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Damage repair simulation of a tension panel and pressurized cylindrical shell using adhesively bonded patches

机译:使用粘合粘合贴片损坏张力面板和加压圆柱壳的损伤修复仿真

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The bonded patch repair performance of a cracked tension panel, and a pressurized cylindrical shell with longitudinal through-crack, is simulated using a commercially available boundary element code. Three-dimensional, quadrilateral-shaped, reduced-quadratic order, boundary elements are used to model the panel, cylindrical shell, and repair patch. The adhesive layer is modeled using a continuously distributed system of linear springs. A special boundary element is used to model the crack. The tension panel analysis is based on a single-sided repair configuration. The relationship between crack length and stress intensity factor (SIF) for both the unrepaired and repaired panel is presented. The reduction in SIF and change in stress field, for the repaired panel compared to the unrepaired panel, determined from the present analysis, are compared with FME and analytical results. The occurrence of out-of-plane bending and its impact on the through-thickness SIF variation in the panel is discussed. Crack growth simulation results show the crack front becoming curvilinear as the crack advances below the patch. The reduction in SIF for a pressurized cylindrical shell with a double-sided elliptical patch repair is presented as a special case.
机译:使用市售的边界元件代码模拟裂缝张力面板的粘合贴片修复性能和具有纵向通孔的加压圆柱壳。三维,四边形,减少二次顺序,边界元素用于模拟面板,圆柱壳和修复贴片。粘合剂层使用连续分布的线性弹簧系统进行建模。特殊边界元素用于模拟裂缝。张力面板分析基于单面修复配置。介绍了未料和修复面板的裂缝长度和应力强度因子(SIF)之间的关系。与来自本分析的未解档的面板相比,对压力场的SIF和变化的变化,与未料面板相比,与本分析确定,与FME和分析结果进行比较。讨论了平面外弯曲的发生及其对面板贯穿厚度SIF变化的影响。裂纹增长仿真结果显示裂缝前沿成为曲线,因为贴片下方的裂缝前进。具有双面椭圆形贴片修复的加压圆柱形壳的SIF的减少作为特殊情况。

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