Modeling the effect of the inclination angle on the dynamic response of a biaxially pre-stressed plate

IF 0.8 4区 工程技术 Q4 ENGINEERING, MECHANICAL Transactions of The Canadian Society for Mechanical Engineering Pub Date : 2022-02-04 DOI:10.1139/tcsme-2020-0111
Ahmet Daşdemir
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Abstract

In this study, I report on an investigation of the forced vibrations procured by an arbitrary angled time-harmonic loading from a plate based on a rigid foundation. The study was formulated according to the three-dimensional linearized theory of elasticity for solids under initial stress (TLTESIS). It was assumed throughout the investigation that there is a rigid clamped state between the system and the rigid ground; further, it was assumed that the plate was exposed to biaxially static initial stresses. Given this, a mathematical model was developed, and then solved using a three-dimensional finite element method (3D-FEM). Presented are numerical investigations that illustrate the influence of changes in the inclination of the force, as well as other important factors such as dimensionless frequency parameters, on the dynamic behavior of the system. In particular, the results indicate that the effect the initial stresses have on the dynamic stress distribution character increases with the aspect ratio but decreases with the thickness ratio.
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建立了倾角对双轴预应力板动力响应的影响模型
在这项研究中,我报告了对基于刚性基础的板的任意角度时间谐波载荷引起的强迫振动的研究。该研究是根据固体在初始应力下的三维线性弹性理论(TLTESIS)制定的。在整个调查过程中,假设系统和刚性地面之间存在刚性夹紧状态;此外,假设板暴露于双轴静态初始应力。考虑到这一点,建立了数学模型,然后使用三维有限元方法(3D-FEM)进行求解。给出了数值研究,说明了力的倾斜度变化以及无量纲频率参数等其他重要因素对系统动态行为的影响。结果表明,初始应力对动应力分布特性的影响随纵横比的增大而增大,但随厚度比的减小而减小。
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来源期刊
CiteScore
2.30
自引率
0.00%
发文量
53
审稿时长
5 months
期刊介绍: Published since 1972, Transactions of the Canadian Society for Mechanical Engineering is a quarterly journal that publishes comprehensive research articles and notes in the broad field of mechanical engineering. New advances in energy systems, biomechanics, engineering analysis and design, environmental engineering, materials technology, advanced manufacturing, mechatronics, MEMS, nanotechnology, thermo-fluids engineering, and transportation systems are featured.
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