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Full extended layerwise method for the simulation of laminated composite plates and shells

机译:完全扩展的分层方法用于层合复合板和壳的仿真

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In the extended layerwise method (XLWM) established in the previous studies (Li et al., 2015; Li, 2016), the delamination front has to be consistent with the element edges. However, the general delamination damage region detected by the nondestructive evaluation (NDE) has extremely complex front, it should be very difficult to exactly model and analysis general delamination damage region in the XLWM. A full extended layerwise method (Full-XLWM) is developed in this study to avoid the dependence of the delamination region on the finite elements. In the Full-XLWM, the delamination is simulated by the Heaviside function and branch function of the displacement field in the thickness direction, whilst transverse cracks are modeled by the extended finite element method (XFEM). The weak discontinuous function along the thickness direction is adopted to consider the interlaminar interfaces. The delamination front is independent on the meshing as the level set function is employed, so the analysis model of delamination can be established from 'a uniform finite element meshing. In the numerical examples, the static analysis of the composite plates and spherical shells are investigated for the straight and circular delamination front. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在先前研究中建立的扩展分层方法(XLWM)(Li等,2015; Li,2016),分层前沿必须与单元边缘一致。但是,通过非破坏性评估(NDE)检测到的一般分层损坏区域具有极其复杂的前沿,因此在XLWM中精确建模和分析一般分层损坏区域应该非常困难。为了避免分层区域对有限元的依赖性,本研究开发了一种完全扩展的分层方法(Full-XLWM)。在Full-XLWM中,分层是通过位移场在厚度方向上的Heaviside函数和分支函数进行模拟的,而横向裂纹则通过扩展有限元方法(XFEM)进行建模。沿厚度方向的弱不连续函数被用来考虑层间界面。由于采用了水平集功能,因此分层的前沿与网格无关,因此可以从统一的有限元网格建立分层的分析模型。在数值示例中,研究了复合板和球形壳的直线和圆形分层前沿的静力分析。 (C)2017 Elsevier Ltd.保留所有权利。

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