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NONLINEAR ELASTIC ANALYSIS OF THE ADHESIVE STRENGTH BETWEEN RUBBER-LIKE MATERIALS AND RIGID SURFACES

机译:橡胶样材料与刚性表面粘结强度的非线性弹性分析

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A nonlinear elastic finite element analysis of the adhesive strength between rubber-like materials and rigid surfaces has been conducted based on fracture mechanics principles. The finite element model is an elastomer half sphere adhering to a rigid flat surface. An analytical solution for the system was first developed by Johnson, Kendall and Roberts (JKR) in 1971, which agrees well with experimental data for small contact area. The objective of this paper is to elucidate the relationship between the adhesive fracture energy, tensile loads and debonding process of the system when the contact area is large. A general analysis procedure for nonconforming adhesion-contact problem has been established in this study, which allows us to determine the adhesive fracture energy from measurements of the final pull-off force P-c or the zero-load contact radius ao. Our results agree well with JKR's prediction when the zero-load contact radius is less than 25% of tile radius of the sphere. However, as the contact radius increases, the debonding process deviates from JKR's prediction. [References: 21]
机译:基于断裂力学原理,对橡胶状材料与刚性表面之间的粘结强度进行了非线性弹性有限元分析。有限元模型是粘附到刚性平面上的弹性体半球。约翰逊,肯德尔和罗伯茨(JKR)于1971年首次开发了该系统的分析解决方案,该解决方案与小接触面积的实验数据非常吻合。本文的目的是阐明当接触面积较大时,胶粘剂断裂能,拉伸载荷与体系脱胶过程之间的关系。在这项研究中,已经建立了针对不合格粘着接触问题的通用分析程序,这使我们能够通过测量最终拉拔力P-c或零载荷接触半径ao来确定粘着力断裂能。当零载荷接触半径小于球体平铺半径的25%时,我们的结果与JKR的预测非常吻合。但是,随着接触半径的增加,脱胶过程会偏离JKR的预测。 [参考:21]

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