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Nonlinear Response and Residual Strength of Damaged Stiffened Shells Subjected to Combined Loads

机译:组合载荷作用下加筋破损壳体的非线性响应和残余强度

摘要

The results of an analytical study of the nonlinear response of stiffened fuselage shells with long cracks are presented. The shells are modeled with a hierarchical modeling strategy and analyzed with a nonlinear shell analysis code that maintains the shell in a nonlinear equilibrium state while the crack is grown. The analysis accurately accounts for global and local structural response phenomena. Fuselage skins, frames stringers and failsafe straps are included in the models. Results are presented for various combinations of internal pressure and mechanical bending, vertical shear and torsion loads, and the effects of crack orientation and location on the shell response are described. These results indicate that the nonlinear interaction between the in-plane stress resultants and the out-of-plane displacements near a crack can significantly affect the structural response of the shell, and the stress-intensity factors associated with a crack that are used to predict residual strength. The effects of representative combined loading conditions on the stress-intensity factors associated with a crack are presented. The effects of varying structural parameters on the stress-intensity factors associated with a crack, and on self-similar and non-self-similar crack-growth are also presented.
机译:提出了对带有长裂纹的加劲机身壳体的非线性响应进行分析研究的结果。使用分层建模策略对壳进行建模,并使用非线性壳分析代码进行分析,该代码将在裂纹扩展时将壳保持在非线性平衡状态。该分析准确地说明了整体和局部结构响应现象。型号中包括机身蒙皮,车架纵梁和故障安全带。给出了内部压力和机械弯曲,垂直剪切和扭转载荷的各种组合的结果,并描述了裂纹取向和位置对壳体响应的影响。这些结果表明,面内应力结果与裂纹附近的面外位移之间的非线性相互作用会显着影响壳的结构响应,并且与裂纹相关的应力强度因子可用于预测残余强度。提出了代表性的组合载荷条件对与裂纹相关的应力强度因子的影响。还介绍了不同的结构参数对与裂纹相关的应力强度因子以及自相似和非自相似裂纹扩展的影响。

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