Kirchhoff’s Analogy between the Kapitza Pendulum Stability and Buckling of a Wavy Beam under Tensile Loading

IF 12.2 1区 工程技术 Q1 MECHANICS Applied Mechanics Reviews Pub Date : 2023-02-21 DOI:10.3390/applmech4010014
Rahul Ramachandran, Michael Nosonovsky
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Abstract

The Kirchhoff analogy between the oscillation of a pendulum (in the time domain) and the static bending of an elastic beam (in the spatial domain) is applied to the stability analysis of an inverted pendulum on a vibrating foundation (the Kapitza pendulum). The inverted pendulum is stabilized if the frequency and amplitude of the vibrating foundation exceed certain critical values. The system is analogous to static bending a wavy (patterned) beam subjected to a tensile load with appropriate boundary conditions. We analyze the buckling stability of such a wavy beam, which is governed by the Mathieu equation. Micro/nanopatterned structures and surfaces have various applications including the control of adhesion, friction, wettability, and surface-pattern-induced phase control.
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Kirchhoff对Kapitza摆稳定性和波浪梁在拉伸载荷下屈曲的类比
将钟摆的振荡(时域)和弹性梁的静态弯曲(空间)之间的Kirchhoff类比应用于振动基础上的倒立摆(Kapitza钟摆)的稳定性分析。当振动基础的频率和振幅超过一定的临界值时,倒立摆就稳定了。该系统类似于静态弯曲的波浪(图案)梁受到拉伸载荷与适当的边界条件。我们分析了这种由Mathieu方程控制的波浪形梁的屈曲稳定性。微/纳米图案结构和表面有各种各样的应用,包括控制粘附、摩擦、润湿性和表面图案诱导的相控制。
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来源期刊
CiteScore
28.20
自引率
0.70%
发文量
13
审稿时长
>12 weeks
期刊介绍: Applied Mechanics Reviews (AMR) is an international review journal that serves as a premier venue for dissemination of material across all subdisciplines of applied mechanics and engineering science, including fluid and solid mechanics, heat transfer, dynamics and vibration, and applications.AMR provides an archival repository for state-of-the-art and retrospective survey articles and reviews of research areas and curricular developments. The journal invites commentary on research and education policy in different countries. The journal also invites original tutorial and educational material in applied mechanics targeting non-specialist audiences, including undergraduate and K-12 students.
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