Vibrational analysis of finite plate on elastic foundation subjected to oblique impact

IF 0.9 4区 材料科学 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Weipeng Hu, Yangxin Zhou, Qianli Liu, Fan Zhang, Qiang Zhou, Chuan Xiao
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引用次数: 0

Abstract

As a typical nonsmooth strong coupling dynamic problem, the vibrational analysis on the plate subjected to the oblique impact requires us to develop the effective method that can be used to deal with the nonsmooth strong coupling problem well. Focusing on the local dynamic behaviors of the impact system, the generalized multisymplectic method is employed to reproduce the dynamic response of the finite plate on the elastic foundation subjected to an oblique impact in this paper. Firstly, the first-order approximate symmetric form of the dynamic equation describing the vibration of the finite plate on the elastic foundation subjected to an oblique impact is deduced based on the multisymplectic theory. Then, a generalized multisymplectic scheme equivalent to the Preissmann scheme for the first-order approximate symmetric form is constructed. The validity as well as the high precision of the generalized multisymplectic scheme are verified by the finite element method and the approximate theoretical solution in the numerical simulations finally. From the numerical results, the effects of the angle parameters for the oblique impact on the maximum transverse displacement of the plate are discussed in detail. The main contribution of this work is proposing a structure-preserving method to investigate the nonsmooth strong coupling dynamic problem effectively.

弹性地基上的有限平板受斜面冲击的振动分析
作为一个典型的非光滑强耦合动力学问题,对受到斜冲击的板进行振动分析,需要我们开发出能够很好地处理非光滑强耦合问题的有效方法。本文以冲击系统的局部动力学行为为重点,采用广义多折线法来重现弹性地基上的有限板受到斜冲击时的动力学响应。首先,根据多折射理论推导出描述弹性地基上的有限板受到斜冲击时振动的动态方程的一阶近似对称形式。然后,针对一阶近似对称形式构建了与普赖斯曼方案等效的广义多交点方案。最后,通过有限元法和数值模拟中的近似理论解,验证了广义多折中方案的有效性和高精度。根据数值结果,详细讨论了斜面冲击角度参数对板最大横向位移的影响。本研究的主要贡献在于提出了一种有效研究非光滑强耦合动力问题的结构保留方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Mechanics of Materials and Structures
Journal of Mechanics of Materials and Structures 工程技术-材料科学:综合
CiteScore
1.40
自引率
0.00%
发文量
8
审稿时长
3.5 months
期刊介绍: Drawing from all areas of engineering, materials, and biology, the mechanics of solids, materials, and structures is experiencing considerable growth in directions not anticipated a few years ago, which involve the development of new technology requiring multidisciplinary simulation. The journal stimulates this growth by emphasizing fundamental advances that are relevant in dealing with problems of all length scales. Of growing interest are the multiscale problems with an interaction between small and large scale phenomena.
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