Vibration of an axially loaded heterogeneous pinned-pinned beam with an intermediate roller support

IF 2.8 Q2 MECHANICS
L. Kiss, G. Szeidl, Messaudi Abderrazek
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引用次数: 1

Abstract

The present paper is devoted to the issue of what effect the axial load (compressive or tensile) has on the eigenfrequencies of a heterogeneous pinned-pinned beam with an intermediate roller support (called a PrsP beam). This problem is a three point boundary value problem (eigenvalue problem) associated with homogeneous boundary conditions. If the Green functions of the three point boundary value problem (BVP) are known the eigenvalue problem that provide the eigenfrequencies for the beam loaded axially can be transformed into an eigenvalue problem governed by a homogeneous Fredholm integral equation. The later eigenvalue problems can be reduced to an algebraic eigenvalue problem which then can be solved numerically by using an effective solution algorithm which is based on the boundary element method.
具有中间滚轮支承的轴向载荷非均质钉钉梁的振动
本文致力于轴向载荷(压缩或拉伸)对具有中间滚轮支撑的非均质钉钉梁(称为PrsP梁)的特征频率的影响。该问题是一个具有齐次边界条件的三点边值问题(特征值问题)。如果三点边值问题(BVP)的格林函数已知,则提供轴向加载梁的本征频率的本征值问题可以转化为由齐次Fredholm积分方程控制的本征值问题。之后的特征值问题可以简化为代数特征值问题,然后利用基于边界元法的有效求解算法进行数值求解。
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
CiteScore
6.90
自引率
3.20%
发文量
0
审稿时长
8 weeks
期刊介绍: The Journal of Applied and Computational Mechanics aims to provide a medium for dissemination of innovative and consequential papers on mathematical and computational methods in theoretical as well as applied mechanics. Manuscripts submitted to the journal undergo a blind peer reviewing procedure conducted by the editorial board. The Journal of Applied and Computational Mechanics devoted to the all fields of solid and fluid mechanics. The journal also welcomes papers that are related to the recent technological advances such as biomechanics, electro-mechanics, advanced materials and micor/nano-mechanics. The scope of the journal includes, but is not limited to, the following topic areas: -Theoretical and experimental mechanics- Dynamic systems & control- Nonlinear dynamics and chaos- Boundary layer theory- Turbulence and hydrodynamic stability- Multiphase flows- Heat and mass transfer- Micro/Nano-mechanics- Structural optimization- Smart materials and applications- Composite materials- Hydro- and aerodynamics- Fluid-structure interaction- Gas dynamics
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