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Tensile Stiffness of Elastomeric Isolation Bearings Under Shear Deformation

机译:剪切变形下弹性体隔离轴承的拉伸刚度

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The compression-shear behavior of rubber bearings is investigated by theoretical analysis and confirmed by extensive experimental work. Nevertheless, whether theoretical analysis predicts the tension-shear behavior of isolators is unclear. To clarify the variation rule of the tensile stiffness of the bearing under shear deformation, Haringx's theory is extended and the tensile stiffness is presented considering shear deformation. The variation of the stiffness of the bearing in the shear deformation is analyzed based on the derived expressions. Results show that the magnitude of the shear strain does not affect the vertical tensile stiffness and the vertical tensile stiffness is equal to the pure tensile stiffness when the tension is equal to the critical value, which is the product of the shear modulus and the shear area of the bearing. When the tension is not equal to the critical value, the vertical tensile stiffness is less than the pure tensile stiffness, decreasing with increasing shear strain. The change rule of vertical tensile stiffness is different in the different tensile forces. When tensile force is less than the critical value, tensile stiffness increases with the increasing tensile force. When tensile force is more than critical value, tensile stiffness decreases with the increase of tensile force, and the mechanics of isolators in tension are not exactly the mirror image of those for the isolators in compression. In the tension-shear state, the tensile component perpendicular to the rubber layer is smaller than that in the pure tension state. Therefore, compared with pure tension, tensile failure does not easily occur in bearings experiencing a large horizontal displacement. This phenomenon is consistent with the shaking table test.
机译:的橡胶轴承的压缩剪切行为是由理论分析调查和通过广泛的试验工作证实。然而,理论分析是否预示隔离的拉剪的行为还不清楚。为了澄清剪切变形下的轴承的拉伸刚度的变化规则,Haringx的理论是延伸和拉伸刚度被呈现考虑剪切变形。在剪切变形的轴承的刚度的变化进行了分析基于所导出的表达式。结果表明,该剪切应变的大小不影响垂直拉伸刚度和垂直拉伸刚度等于纯拉伸刚度时的张力等于临界值,这是剪切模量的产物与剪切面积的轴承。当张力不等于临界值时,垂直拉伸刚度小于纯拉伸刚度,随着剪切应变减少。垂直拉伸刚度的变化规则在不同的拉伸力不同。当拉伸力小于临界值,抗拉刚度与增加的张力增加。当拉伸力超过临界值时,抗拉刚度与拉伸力的增加而降低,并且在张力隔离器的力学是不完全的那些用于压缩所述隔离器的镜像。在拉伸剪切状态下,垂直于所述橡胶层的抗拉成分是比在纯张力状态小。因此,与纯张力相比,拉伸破坏不容易发生在轴承经历大水平位移。这种现象是与振动台试验是一致的。

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