Frictional Slippage of Annular Elastomeric Disks Compressed Between Rigid Platens

Raymond H. Plaut
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Abstract

Compression of compressible, linearly elastic, annular disks by flat rigid platens is analyzed. Coulomb (Amonton) friction is assumed to act at the interfaces between the disk and the platens. Slip may occur in an outer annular region while the inner annular (bonded, stick) region of the disk does not slip. The critical radius (slip boundary) is of major interest. The governing equilibrium equations in terms of the deflections are satisfied exactly. Approximations are made in some of the boundary conditions and the transition (matching) conditions at the critical radius. Numerical results are presented for nearly incompressible disks. The effects of the radius ratio, aspect ratio, and Poisson's ratio of the disk, and of the coefficient of friction at the platens, on the critical radius, effective compression modulus, stresses, and radial deflection are investigated. Applications include structural (especially bridge) bearings, seismic-isolation devices, mounting blocks and bushings, gaskets, and sealing components.
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在刚性压盘之间压缩的环形弹性盘的摩擦滑移
分析了平面刚性压盘对可压缩线性弹性环形盘的压缩。假设库仑(阿蒙顿)摩擦力作用于圆盘和压盘之间的界面。圆盘的外部环形区域可能发生滑移,而内部环形(粘合、粘连)区域不会发生滑移。临界半径(滑移边界)是主要关注点。以挠度为单位的支配平衡方程是精确满足的。对临界半径处的一些边界条件和过渡(匹配)条件进行了近似处理。对几乎不可压缩的圆盘给出了数值结果。研究了圆盘的半径比、长宽比和泊松比以及压盘摩擦系数对临界半径、有效压缩模量、应力和径向挠度的影响。其应用包括结构(尤其是桥梁)支座、地震隔离装置、安装块和衬套、垫圈和密封部件。
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