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首页> 外文期刊>International Journal of Solids and Structures >Carbon fiber-reinforced rectangular isolators with compressible elastomer: Analytical solution for compression and bending
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Carbon fiber-reinforced rectangular isolators with compressible elastomer: Analytical solution for compression and bending

机译:具有可压缩弹性体的碳纤维增强矩形隔离器:压缩和弯曲的解析解决方案

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摘要

The behavior of multilayer elastomeric isolators employing carbon fibers as reinforcement material rather than steel has been considered. This kind of reinforcement is used to make the isolators lighter and cheaper, since carbon fibers (or Kevlar) are much more resistant per unit weight than steel. From the mechanical point of view, the main difference is that the fiber reinforcement cannot be considered rigid in extension as it is usually done for steel plates. In this paper an analytical model to analyze the compression and bending behavior of fiber-reinforced rectangular isolators is presented. The model takes into account, for the first time, both the reinforcement extensibility and the compressibility of the elastomer. An analytical solution to predict deformations, stresses and stiffness is here determined in terms of Fourier series, both for compression and bending.
机译:已经考虑了采用碳纤维而不是钢作为增强材料的多层弹性体隔离器的性能。由于碳纤维(或凯夫拉尔)每单位重量的耐力比钢高得多,因此这种增强材料可使隔离器更轻,更便宜。从机械角度来看,主要区别在于不能像通常在钢板上那样将纤维增强材料视为延伸刚性的。本文提出了一种分析模型,用于分析纤维增强矩形隔离器的压缩和弯曲行为。该模型首次考虑了弹性体的增强性和可压缩性。在此,根据压缩和弯曲的傅里叶级数确定预测变形,应力和刚度的解析解。

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