A Survey of Computational Models for Adhesion

A Survey of Computational Models for Adhesion
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DOI:
10.1080/00218464.2014.1003210
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发表时间:
2016-02
期刊:
The Journal of Adhesion
影响因子:
--
通讯作者:
R. Sauer
R. Sauer
中科院分区:
其他
文献类型:
--
作者:
R. Sauer

文献摘要

被引文献

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这项工作对粘合接触的计算方法进行了调查,重点关注适用于描述任意物体的粘合和脱粘的固体之间有吸引力的相互作用的通用连续介质力学模型。最通用的方法是局部模型,无论物体的几何形状如何,都可以应用局部模型。可以区分两种情况:控制粘合剂本构行为的局部材料模型,以及以牵引-分离定律的形式控制界面处的粘附力和内聚力的局部界面模型。对于这两种模型,识别和描述了各种子类别,并用于组织有助于其进步的可用文献。由于其受欢迎程度和重要性,本次调查还概述了有效的粘附模型,这些模型是为描述特定粘附问题的整体行为而制定的。
This work presents a survey of computational methods for adhesive contact focusing on general continuum mechanical models for attractive interactions between solids that are suitable for describing bonding and debonding of arbitrary bodies. The most general approaches are local models that can be applied irrespective of the geometry of the bodies. Two cases can be distinguished: local material models governing the constitutive behavior of adhesives, and local interface models governing adhesion and cohesion at interfaces in the form of traction–separation laws. For both models various sub-categories are identified and described, and used to organize the available literature that has contributed to their advancement. Due to their popularity and importance, this survey also gives an overview of effective adhesion models that have been formulated to characterize the global behavior of specific adhesion problems.