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Nonlinear Model Updating of a Cantilevered Plate and a Stiffened Skin Panel from a Lynx Helicopter

机译:x直升机的悬臂板和加筋蒙皮面板的非线性模型更新

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This work explores technologies for nonlinear modeling, testing and nonlinear model updating of geometrically nonlinear structures. The methodology centers around a finite element model (FEM) of the structure, created and solved using commercial software. A nonlinear reduced order model (ROM) is extracted from the FEM using the implicit condensation and expansion method and its nonlinear normal modes are computed using a pseudo-arclength continuation algorithm. The nonlinear modes provide insight into the dynamics of the FEM/ROM and also provide a comparison that guides model updating and validation. Measurements from the structure using swept or stepped sine excitation are compared with the nonlinear mode backbones to assess their accuracy. Both structures show deformation shapes that change in specific ways with increasing response amplitude, so full-field measurements would be helpful in understanding how the underlying linear modes of the structure interact as the response amplitude increases. These concepts are illustrated on two structures, a cantilevered flat plate which was used in other works to study crack growth in titanium, and a curved exterior panel from a Lynx helicopter. These structures reveal the potential, as well as the limitations, of the current state of the art in modeling and testing these types of structures.
机译:这项工作探索了用于几何非线性结构的非线性建模,测试和非线性模型更新的技术。该方法论围绕结构的有限元模型(FEM)进行,该模型是使用商业软件创建和求解的。使用隐式压缩和展开方法从FEM中提取非线性降阶模型(ROM),并使用伪弧长连续算法计算其非线性法线模式。非线性模式不仅可以洞察FEM / ROM的动态,还可以提供比较结果,以指导模型更新和验证。使用扫频或步进正弦激励从结构获得的测量结果与非线性模式主干进行比较,以评估其准确性。两种结构都显示出随响应振幅增加而以特定方式变化的变形形状,因此,全场测量将有助于理解结构中潜在的线性模式如何随着响应振幅的增加而相互作用。这些概念在两个结构上进行了说明,其中一个悬臂平板用于其他工作中以研究钛中的裂纹扩展,另一个是Lynx直升机制造的弯曲外板。这些结构揭示了对这些类型的结构进行建模和测试的最新技术的潜力以及局限性。

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