通过统一表述实现基于一阶位移的之字形理论等效性的新成果

M. Di Sciuva, M. Sorrenti
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引用次数: 0

摘要

本文对基于一阶位移的人字形理论在层状复合材料和夹层结构中的等效性进行了深入评述,并提出了新的研究成果。在过去几十年中,人字形理论(ZZTs)因其在预测多层复合材料和夹层结构响应方面的准确性而在研究人员中广为流传,同时还保留了其基础等效单层(ESL)理论的简洁性。位移场由两个主要部分组成:一个是能够描述整体结构行为的全局位移场,另一个是考虑层界面横向剪切连续性的局部层位移场,它描述了多层结构典型的 "之 "字形位移模式。在基于位移的线性 ZZT 框架中,对局部贡献做了各种假设,并推导出了不同的理论。本文旨在为一阶 ZZT 提供一个统一的表述,强调与现有表述的一些共同点和基本等价性。数学演示和数值示例证明了描述局部之字形富集的方法的等价性。最后,还证明了运动学假设是 ZZTs 精度的判别因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Accomplishments on the Equivalence of the First-Order Displacement-Based Zigzag Theories through a Unified Formulation
The paper presents a critical review and new accomplishments on the equivalence of the first-order displacement-based zigzag theories for laminated composite and sandwich structures. Zigzag theories (ZZTs) have widely spread among researchers over the last few decades thanks to their accuracy in predicting the response of multilayered composite and sandwich structures while retaining the simplicity of their underlying equivalent single-layer (ESL) theory. The displacement field consists of two main contributions: the global one, able to describe the overall structural behaviour, and the local layer-wise one that considers the transverse shear continuity at the layer interfaces that describe the “zigzag” displacement pattern typical of multilayered structures. In the framework of displacement-based linear ZZTs, various assumptions have been made on the local contribution, and different theories have been deduced. This paper aims to provide a unified formulation for first-order ZZTs, highlighting some common aspects and underlying equivalencies with existing formulations. The mathematical demonstrations and the numerical examples prove the equivalence of the approaches to characterising local zigzag enrichment. Finally, it is demonstrated that the kinematic assumptions are the discriminants of the ZZTs’ accuracy.
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