Chen Shaohua, Wang Tzuchiang
Biomechanics Group, LNM, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, People's Republic of China.
J Colloid Interface Sci. 2006 Oct 1;302(1):363-9. doi: 10.1016/j.jcis.2006.06.014. Epub 2006 Jun 15.
In this paper, a generalized JKR model is investigated, in which an elastic cylinder adhesively contacts with an elastic half space and the contact region is assumed to be perfect bonding. An external pulling force is acted on the cylinder in an arbitrary direction. The contact area changes during the pull-off process, which can be predicted using the dynamic Griffith energy balance criterion as the contact edge shifts. Full coupled solution with an oscillatory singularity is obtained and analyzed by numerical calculations. The effect of Dundurs' parameter on the pull-off process is analyzed, which shows that a nonoscillatory solution can approximate the general one under some conditions, i.e., larger pulling angle (pi/2 is the maximum value), smaller a/R or larger nondimensional parameter value of Deltagamma/E*R. Relations among the contact half width, the external pulling force and the pulling angle are used to determine the pull-off force and pull-off contact half width explicitly. All the results in the present paper as basic solutions are helpful and applicable for experimenters and engineers.
本文研究了一种广义JKR模型,其中弹性圆柱体与弹性半空间发生粘结接触,且假定接触区域为完全粘结。在圆柱体上沿任意方向施加一个外部拉力。在分离过程中接触面积会发生变化,当接触边缘移动时,可利用动态格里菲斯能量平衡准则对其进行预测。通过数值计算得到并分析了具有振荡奇点的全耦合解。分析了邓德尔斯参数对分离过程的影响,结果表明,在某些条件下,即较大的拉力角(最大值为π/2)、较小的a/R或较大的无量纲参数值Δγ/E*R时,非振荡解可以近似一般解。利用接触半宽度、外部拉力和拉力角之间的关系明确确定分离力和分离接触半宽度。本文所有结果作为基本解,对实验人员和工程师具有帮助和适用性。