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首页> 外文期刊>International journal of mechanics and materials in design >Effect of constrained layers on vibrational characteristics of a composite sandwich system-A finite element based critical investigation
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Effect of constrained layers on vibrational characteristics of a composite sandwich system-A finite element based critical investigation

机译:约束层对复合夹芯系统振动特性的影响-基于有限元的临界研究

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The main aim of this paper is to investigate the effect of various constrained layers (viscoelastic layer (VEL), electro-rheological fluid (ERF), and magneto-rheological fluid (MRF)) over natural frequency and the damping loss factor with two different fiber orientations (0° and 90°) for a Graphite/Epoxy (GR/E) composite sandwich shaft disc system. The finite element technique is used to investigate the natural frequency and loss factor for various combinations. Furthermore, the vibrational characteristics of the composite sandwich shaft disc system are compared with those of the base structure without constrained layers. The study shows that introducing various constrained layers reduces the magnitude of natural frequency by up to 80%. The results also show that GR/ E composite with 90° fiber orientation acquires the highest frequency reduction. Among the proposed layers, VEL has the highest damping loss factor.
机译:本文的主要目的是研究各种受约束层(粘弹性层(VEL),电流变流体(ERF)和磁流变流体(MRF))对固有频率的影响以及两种不同的阻尼损耗因子石墨/环氧树脂(GR / E)复合夹心轴盘系统的纤维取向(0°和90°)。有限元技术用于研究各种组合的固有频率和损耗因子。此外,将复合夹心轴盘系统的振动特性与没有约束层的基础结构的振动特性进行了比较。研究表明,引入各种约束层可将自然频率的幅度降低多达80%。结果还表明,纤维取向为90°的GR / E复合材料可获得最高的频率降低。在建议的层中,VEL具有最高的阻尼损耗因子。

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