Experimental investigation for non-linear vibrations of free supported and cantilever FFF rectangular plates

E. Abdeddine, A. Majid, Z. Beidouri, K. Zarbane
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引用次数: 1

Abstract

The aim of this paper is to investigate experimentally the effect of large vibration of a cantilever and a fully free rectangular plate made by a Fused Filament Fabrication process. Furthermore, this investigation attempts to compare our measurements and those obtained in the literature experimentally. For this purpose, a test rig was designed and manufactured for all experimental trials. The plate was excited randomly and harmonically at large displacement respectively, to obtain the linear and non-linear frequencies parameter. The non-linear dynamic behaviour of our structure at forced vibration is figured by exciting the plate at large displacement. The dependence of frequency and amplitude vibration are examined for the first, second, and third mode shapes. The non-linear dynamic behaviour of cantilever plates is compared with literature to illustrate the convergence of our results by using our specific mechanical properties, printing parameters, and process. Furthermore, the non-dimensional comparison is shown by 33.38%, 5.83%, and 20.58% for the first, second, and third mode shapes, respectively. Experimental tests will be performed on a 3D-printed metal plate to improve the present work. This work is intended to determine the dynamic proprieties of our parts in order to manufacture a safe and comfort machine. Actually, the dynamic behaviour of our 3D printing plates is compared with the obtained in the case of the isotropic plate for the aim to predict the convergence of both structures.
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自由支承和悬臂FFF矩形板非线性振动的实验研究
本文的目的是实验研究大振动对悬臂梁和由熔丝制造工艺制成的完全自由矩形板的影响。此外,本研究试图将我们的测量结果与实验文献中获得的结果进行比较。为此,设计和制造了一个试验台,用于所有的实验试验。采用随机激励法和大位移下的谐波激励法,得到了板的线性频率参数和非线性频率参数。通过在大位移下对板进行激励,得到了结构在强迫振动下的非线性动力特性。频率和振幅振动的依赖关系进行了检查的第一,第二和第三模态振型。将悬臂板的非线性动态行为与文献进行比较,以说明我们使用特定的机械性能,印刷参数和工艺所得结果的收敛性。此外,第一、第二和第三阶振型的无量纲比较分别为33.38%、5.83%和20.58%。实验测试将在3d打印金属板上进行,以改进目前的工作。这项工作的目的是确定我们的零件的动态特性,以制造一个安全舒适的机器。实际上,为了预测两种结构的收敛性,我们将3D打印板的动态行为与各向同性板的动态行为进行了比较。
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来源期刊
Archives of materials science and engineering
Archives of materials science and engineering Materials Science-Materials Science (all)
CiteScore
2.90
自引率
0.00%
发文量
15
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