用结构设计方法对受横向均布荷载作用的加筋板进行数值分析

Q2 Materials Science Engineering Solid Mechanics Pub Date : 2022-01-01 DOI:10.5267/j.esm.2021.9.001
V. Pinto, L. Rocha, E. D. Santos, L. Isoldi
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引用次数: 1

摘要

当涉及到工程时,高性能总是一个理想的目标。在这种情况下,关于加强板,寻找更好的几何结构,能够最小化面外位移变得有趣。因此,本研究旨在分析几种由结构设计方法(CDM)定义的加筋板,并利用ANSYS®软件通过有限元法(FEM)进行求解。然后,通过穷举搜索(ES)技术对这些板块进行比较。为此,采用非加筋矩形板作为参考。然后,通过φ参数将其部分钢材体积转换为加强筋,φ参数表示加强筋体积与基准板总体积的比值。考虑到φ = 0.3,提出了75种不同的加筋板布置方式:25种矩形加筋板取向为0°;25具有定向45°的矩形加强筋和25具有定向0°的梯形加强筋。在保持材料总体积不变的情况下,研究了几何形状对加筋板最大挠度的影响。结果表明,0°方向的梯形加强筋比同样为0°方向的矩形加强筋更能有效地减小最大挠度。还观察到,与面向0°的梯形和矩形加强筋相比,面向45°的矩形加强筋在大多数分析情况下呈现最小的最大挠度。
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Numerical analysis of stiffened plates subjected to transverse uniform load through the constructal design method
When it comes to engineering, high performance is always a desired goal. In this context, regarding stiffened plates, the search for better geometric configurations able to minimize the out-of-plane displacements become interesting. So, this study aimed to analyze several stiffened plates defined by the Constructal Design Method (CDM) and solved through the Finite Element Method (FEM) using the ANSYS® software. After that, these plates are compared among each other through the Exhaustive Search (ES) technique. To do so, a non-stiffened rectangular plate was adopted as reference. Then, a portion of its steel volume was converted into stiffeners through the ϕ parameter, which represents the ratio between the volume of the stiffeners and the total volume of the reference plate. Taking into consideration the value of ϕ = 0.3, 75 different stiffened plates arrangements were proposed: 25 with rectangular stiffeners oriented at 0°; 25 with rectangular stiffeners oriented at 45° and 25 with trapezoidal stiffeners oriented at 0°. Maintaining the total volume of material constant, it was investigated the geometry influence on the maximum deflection of these stiffened plates. The results have shown trapezoidal stiffeners oriented at 0° are more effective to reduce the maximum deflections than rectangular stiffeners also oriented at 0°. It was also observed that rectangular stiffeners oriented at 45° presented the smallest maximum deflections for the majority of the analyzed cases, when compared to the trapezoidal and rectangular stiffeners oriented at 0°.
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来源期刊
Engineering Solid Mechanics
Engineering Solid Mechanics Materials Science-Metals and Alloys
CiteScore
3.00
自引率
0.00%
发文量
21
期刊介绍: Engineering Solid Mechanics (ESM) is an online international journal for publishing high quality peer reviewed papers in the field of theoretical and applied solid mechanics. The primary focus is to exchange ideas about investigating behavior and properties of engineering materials (such as metals, composites, ceramics, polymers, FGMs, rocks and concretes, asphalt mixtures, bio and nano materials) and their mechanical characterization (including strength and deformation behavior, fatigue and fracture, stress measurements, etc.) through experimental, theoretical and numerical research studies. Researchers and practitioners (from deferent areas such as mechanical and manufacturing, aerospace, railway, bio-mechanics, civil and mining, materials and metallurgy, oil, gas and petroleum industries, pipeline, marine and offshore sectors) are encouraged to submit their original, unpublished contributions.
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