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Free vibration analysis of cracked thin plates by quasi-convex coupled isogeometric-meshfree method

机译:裂纹薄板自由振动的拟凸耦合等几何无网格法。

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摘要

The free vibration analysis of cracked thin plates via a quasi-convex coupled isogeometric-meshfree method is presented. This formulation employs the consistently coupled isogeometric-meshfree strategy where a mixed basis vector of the convex B-splines is used to impose the consistency conditions throughout the whole problem domain. Meanwhile, the rigid body modes related to the mixed basis vector and reproducing conditions are also discussed. The mixed basis vector simultaneously offers the consistent isogeometric-meshfree coupling in the coupled region and the quasi-convex property for the meshfree shape functions in the meshfree region, which is particularly attractive for the vibration analysis. The quasi-convex meshfree shape functions mimic the isogeometric basis function as well as offer the meshfree nodal arrangement flexibility. Subsequently, this approach is exploited to study the free vibration analysis of cracked plates, in which the plate geometry is exactly represented by the isogeometric basis functions, while the cracks are discretized by meshfree nodes and highly smoothing approximation is invoked in the rest of the problem domain. The efficacy of the present method is illustrated through several numerical examples.
机译:提出了通过拟凸耦合等几何无网格法对裂纹薄板的自由振动分析。该公式采用一致耦合的等距无网格策略,其中凸B样条的混合基向量用于在整个问题域中施加一致性条件。同时,还讨论了与混合基向量和再现条件有关的刚体模式。混合基向量同时在耦合区域中提供一致的等几何-无网格耦合以及在无网格区域中实现无网格形状函数的拟凸特性,这对于振动分析特别有吸引力。拟凸无网格形状函数模仿了等几何基函数,并提供了无网格节点布置的灵活性。随后,该方法被用于研究裂纹板的自由振动分析,其中板的几何形状由等几何基函数精确表示,而裂纹由无网格节点离散化,并在其余问题中调用高度平滑近似域。通过几个数字示例说明了本方法的有效性。

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