纳米硅增强复合材料圆柱壳的自由振动分析:解析法和有限元法

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
M. Jweeg, E. Njim, O. S. Abdullah, M. Al-shammari, M. Al-Waily, S. Bakhy
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引用次数: 0

摘要

以往的研究主要介绍了不同体积分数效应下纳米材料对复合材料力学性能的影响;此外,他们的研究还展示了纳米材料对复合材料板结构的相同力学特性的影响,如振动和热屈曲行为。因此,由于壳结构的使用是大规模应用的,因此有必要研究纳米材料对其设计振动特性的影响,并研究其他增强纳米颗粒类型对其特性的影响。因此,在这项工作中,选择硅纳米颗粒来研究它们对壳结构振动行为的影响。因此,本工作包括利用振动试验机对壳体结构进行振动性能测试。此外,在制备不同硅体积分数的复合材料外壳后,对其力学性能进行了评价。此外,利用有限元技术和Ansys程序对壳结构的振动特性进行了数值分析和比较。结果比较,可接受的误差百分比不超过10.93%。最后,对结果进行了评价,结果表明,硅纳米材料对壳的力学性能和振动特性的改善效果非常好,提高了约65%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Free Vibration Analysis of Composite Cylindrical Shell Reinforced with Silicon Nano-Particles: Analytical and FEM Approach
Previous research presented the effect of nanomaterials on the mechanical properties of composite materials with various volume fraction effects; in addition, their research presented the effect of nanomaterials on the same mechanical characteristics for a composite plate structure, such as vibration and thermal buckling behavior. Therefore, since the use of shell structures is for large applications, it is necessary to investigate the modification of the vibration characteristics of its design with the effect of nanomaterials and study the influence of other reinforced nanoparticle types on its features. Therefore, in this work, silicon nanoparticles were selected to investigate their effect on the vibration behavior of a shell structure. As a result, this work included studying the vibration behavior by testing the shell structure with a vibration test machine. In addition, after manufacturing the composite material shell with various silicon volume fractions, the mechanical properties were evaluated. In addition, the finite element technique with the Ansys program was used to assess and compare the vibration behavior of the shell structure using the numerical technique. The comparison of the results gave an acceptable percentage error not exceeding 10.93%. Finally, the results evaluated showed that the modification with silicon nanomaterials gave very good results since the nanomaterials improved about 65% of the shell's mechanical properties and vibration characteristics.
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
83
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