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首页> 外文期刊>Journal of Engineering Mechanics >Simplified Approximations for Critical Design Parameters of Rectangular Fiber-Reinforced Elastomeric Isolators
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Simplified Approximations for Critical Design Parameters of Rectangular Fiber-Reinforced Elastomeric Isolators

机译:矩形纤维增强弹性体隔离器的关键设计参数的简化近似

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Analytical solutions for critical design properties of elastomeric bearings, such as the compression modulus, bending modulus, and maximum shear strain due to compression or rotation, including the compressibility of the elastomer, have been developed for most basic laminated elastomeric bearing geometries. Due to the introduction of extensible fiber reinforcement, these analytical solutions have been expanded to include the extensibility of the reinforcement as an additional design parameter. Extensible reinforcement can have a pronounced effect on these design properties, comparable to the compressibility of the elastomer. These analytical solutions have previously been used to derive simplified approximations appropriate for use in design codes and standards. Thus far, a rectangular bearing geometry, which is in fact the most common in bridge bearing applications, has been largely omitted from these derivations. Simplified approximations for the compression modulus, maximum shear strain due to compression, and bending modulus of a rectangular laminated bearing with extensible reinforcement are proposed and evaluated against the analytical solution, including the effects of compressibility of the elastomer and extensibility of the reinforcement. (C) 2017 American Society of Civil Engineers.
机译:为大多数基本的层压弹性体轴承几何形状开发了弹性轴承的临界设计性能,例如由于压缩或旋转引起的压缩模量,弯曲模量和最大剪切菌,包括弹性体的可压缩性。由于引入可伸长的纤维增强,这些分析解决方案已经扩展,包括加强作为附加设计参数的增强性。可伸长的增强可以对这些设计性质具有明显的影响,与弹性体的可压缩性相当。这些分析解决方案先前已被用于推导适合于设计代码和标准的简化近似。到目前为止,矩形轴承几何形状实际上是在桥梁轴承应用中最常见的几何形状,从而省略了这些衍生。压缩模量,由于压缩引起的最大剪切应变以及具有可伸长型加强件的矩形层叠轴承的最大剪切应变的简化近似,并针对分析溶液评估,包括弹性体可压缩性和增强剂的伸展性的影响。 (c)2017美国土木工程师协会。

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