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A comparative study of composite structures reinforced with carbon, glass or natural fibers

机译:碳纤维,玻璃纤维或天然纤维增强的复合结构的比较研究

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Purpose - The purpose of this paper is to propose a comparative study between different structures composed of fiber-reinforced composite materials. Plates, cylinders and cylindrical and spherical shell panels in symmetric 0°/90°/0° and antisymmetric 0°/90°/0°/90° configurations are analyzed considering carbon fiber, glass fiber and linoleum fiber reinforcements. Design/methodology/approach - A free vibration analysis is proposed for different materials, lamination sequences, vibration modes, half-wave numbers and thickness ratios. Such an analysis is conducted by means of an exact three-dimensional shell model which is valid for simply supported structures and cross-ply laminations. The employed model is based on a layer-wise approach and on three-dimensional shell equilibrium equations written in general orthogonal curvilinear coordinates. Findings - The proposed study confirms the well-known superiority of the carbon fiber-reinforced composites. Linoleum fiber-reinforced composites prove to be comparable to glass fiber-reinforced composites in the case of free vibration analysis. Therefore, similar frequencies are obtained for all the geometries, thickness ratios, laminations sequences, vibration modes and a large spectrum of half-wave numbers. This partial conclusion needs further confirmations via static, buckling and fatigue analyses. Originality/value - An exact three-dimensional shell model has been used to compare several geometries embedding carbon fiber composites and natural fiber composites.
机译:目的-本文的目的是对纤维增强复合材料组成的不同结构进行比较研究。分析了对称0°/ 90°/ 0°和反对称0°/ 90°/ 0°/ 90°构型的板,圆柱体以及圆柱和球面壳板,其中考虑了碳纤维,玻璃纤维和油毡纤维增强材料。设计/方法/方法-针对不同的材料,层压顺序,振动模式,半波数和厚度比,建议进行自由振动分析。这种分析是通过精确的三维壳模型进行的,该模型对于简单支撑的结构和交叉层板有效。所采用的模型基于分层方法和以一般正交曲线坐标编写的三维壳平衡方程。发现-拟议的研究证实了碳纤维增强复合材料的众所周知的优越性。在自由振动分析的情况下,油毡纤维增强的复合材料可与玻璃纤维增​​强的复合材料相媲美。因此,对于所有的几何形状,厚度比,叠片序列,振动模式和大范围的半波数,可以获得相似的频率。该部分结论需要通过静态,屈曲和疲劳分析进行进一步确认。创意/价值-精确的三维外壳模型已用于比较嵌入碳纤维复合材料和天然纤维复合材料的几种几何形状。

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