Buckling and Vibration of a Stepped Plate

IF 1.4 4区 工程技术 Q3 ENGINEERING, MECHANICAL Transactions of FAMENA Pub Date : 2021-01-22 DOI:10.21278/TOF.444013820
M. Đelosević, G. Tepić
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引用次数: 1

Abstract

This study analyses the elastic stability and free vibration of a simply supported stepped plate under combined loading conditions defined by the parameter α. Mathematical identification of these phenomena has been made using Levy's method as implemented in the conditions of equivalent fictitious load. The buckling coefficient k and the frequency parameter λ of the stepped plate were verified according to literature sources. Influential parameters of stability and the free vibration of the stepped plate under combined load were identified. It has been concluded that the buckling coefficient primarily depends on the relative thickness Δt, while the frequency parameter λ was significantly affected by the position of discontinuity Δb. Pure bending (α=2) induces several buckling modes for the same plate geometry with respect to uniform compression (α=0), thus creating a considerable technological stability reserve, particularly at higher discontinuities. Formulation of the frequency parameter enables us to choose the optimum geometry with minimal susceptibility to the appearance of free vibration in the plate.
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阶梯板的屈曲与振动
本文分析了简支阶梯板在参数α定义的组合荷载条件下的弹性稳定性和自由振动。在等效虚拟载荷条件下,使用Levy方法对这些现象进行了数学识别。根据文献资料对阶梯板的屈曲系数k和频率参数λ进行了验证。确定了阶梯板在组合载荷作用下的稳定性和自由振动的影响参数。得出的结论是,屈曲系数主要取决于相对厚度Δt,而频率参数λ受不连续位置Δb的显著影响。纯弯曲(α=2)对于相同的板几何形状,在均匀压缩(α=0)方面引发了几种屈曲模式,从而产生了相当大的技术稳定性储备,尤其是在较高的不连续性下。频率参数的公式使我们能够选择对板中自由振动出现的敏感性最小的最佳几何形状。
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来源期刊
Transactions of FAMENA
Transactions of FAMENA 工程技术-材料科学:综合
CiteScore
2.20
自引率
30.80%
发文量
15
审稿时长
>12 weeks
期刊介绍: The journal publishes research and professional papers in the following fields: Aerospace Engineering; Automotive Engineering; Biomechanics; Energetics; Engineering Design; Experimental Methods; Industrial Engineering; Machine Tools and Machining; Materials Science; Mathematical Modelling and Simulation; Mechanical Design; Mechanics & Fluid Mechanics; Nanotechnology; Naval Architecture; Numerical Methods; Process Planning; Quality Assurance; Robotics & Mechatronics; Thermodynamics.
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