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A new theoretical framework for the formulation of general, nonlinear, multiscale plate theories

机译:建立一般,非线性,多尺度板理论的新理论框架

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A new type of general, theoretical framework for the development of comprehensive, nonlinear, multiscale plate theories for laminated structures is presented. The theoretical framework utilizes a generalized two scale description of the displacement field based on a superposition of global and local effects where the functional forms for the global and local displacement fields are arbitrary. The two scale nature of theory allows it to explicitly consider the layered nature of the structure. The subsequent development of the governing equations for the theory is carried out using the general nonlinear equations of continuum mechanics referenced to the initial configuration. The equations of motion and the lateral surface boundary conditions for the theory are derived using the method of moments over the different scales subject to an orthogonality constraint. The theory satisfies the interfacial constraints and the top and bottom surface boundary conditions in a strong sense. Delamination effects are incorporated into the theory through the use of cohesive zone models (CZMs). Arbitrary CZMs can be incorporated into the theory without the need for reformulation of the governing equations. The theory is formulated in a sufficiently general fashion that any type of history-dependent material can be used to describe the inelastic response of the materials composing the layers. Furthermore, as a result of the multiscale nature of the theory it can be specialized to single scale theories of the equivalent single layer (ESL) or discrete layer (DL) types in a unified fashion and without the need for any reformulation. While the starting point for the proposed theory is the same as used by Williams [Williams, T.O., 1999. A generalized multilength scale nonlinear composite plate theory with delamination. Int. J. Solid Struct. 36, (20) 3015-3050; Williams, T.O., 2001. Efficiency and accuracy considerations in a unified plate theory with delaminations. Comp. Struct. 52, (1) 27-40; Williams, T.O., 2005. A generalized, multilength scale framework for thermo-diffusionally-mechanically coupled, nonlinear, laminated plate theories with delaminations. IJSS 42, (5-6) 1465-1490] the subsequent formulation is significantly different. The differences in the two theories allow the currently proposed theory to improve on the capabilities of the previous theory; particularly in the satisfaction of the traction continuity constraints at the interfaces. It is shown that the theory is capable of providing accurate predictions for all of the fields in perfectly bonded and delaminated plates even for relatively low orders of displacement approximations. In particular, the theory is shown to provide accurate predictions for the transverse stresses that are continuous across the interfaces directly from the constitutive relations. Published by Elsevier Ltd.
机译:提出了一种新型的通用理论框架,用于发展层压结构的全面,非线性,多尺度板理论。该理论框架基于全局效应和局部效应的叠加来利用位移场的广义两尺度描述,其中全局和局部位移场的功能形式是任意的。理论的两个尺度性质允许它明确考虑结构的分层性质。该理论的控制方程式的后续发展是使用参考初始配置的连续力学的一般非线性方程式进行的。该理论的运动方程和侧面边界条件是使用受正交性约束的不同尺度上的矩量法导出的。该理论在很强的意义上满足了界面约束以及顶部和底部表面边界条件。通过使用内聚区模型(CZM),将脱层效应纳入了理论。可以将任意CZM合并到理论中,而无需重新制定控制方程。该理论以足够普遍的方式制定,可以使用任何类型的历史依赖材料来描述组成层的材料的非弹性响应。此外,由于该理论的多尺度性质,它可以以统一的方式专门用于等效单层(ESL)或离散层(DL)类型的单尺度理论,而无需任何重新制定。虽然提出的理论的起点与威廉姆斯[Williams,T.O.,1999年使用的相同。具有分层的广义多长度尺度非线性复合板理论。诠释J.固体结构。 36(20)3015-3050; Williams,T.O.,2001年。在具有分层的统一平板理论中的效率和准确性考虑。比较结构。 52(1)27-40; Williams,T.O.,2005年。一种用于热扩散-机械耦合,非线性,分层的分层板理论的广义多尺度框架。 [IJSS 42,(5-6)1465-1490],其后的配方是明显不同的。两种理论的差异使当前提出的理论可以改进先前理论的能力;特别是在满足界面的牵引力连续性约束方面。结果表明,即使相对较低的位移近似值,该理论也能够为完美粘结和分层板中的所有场提供准确的预测。尤其是,该理论显示出可以直接根据本构关系对跨界面连续的横向应力提供准确的预测。由Elsevier Ltd.发布

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