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含粗糙表面和摩擦裂纹固体中弹性波传播的二维建模 - 第一部分:理论背景

Two dimensional modeling of elastic wave propagation in solids containing cracks with rough surfaces and friction - Part I: Theoretical background.

作者信息

Aleshin Vladislav, Delrue Steven, Trifonov Andrey, Bou Matar Olivier, Van Den Abeele Koen

机构信息

Joint International Laboratory LICS/LEMAC, Institute of Electronics, Microelectronics and Nanotechnologies, UMR CNRS 8520, Villeneuve d'Ascq, France.

Wave Propagation and Signal Processing Research Group, KU Leuven Kulak, Kortrijk, Belgium.

出版信息

Ultrasonics. 2018 Jan;82:11-18. doi: 10.1016/j.ultras.2017.07.002. Epub 2017 Jul 13.

Abstract

Our study aims at the creation of a numerical toolbox that describes wave propagation in samples containing internal contacts (e.g. cracks, delaminations, debondings, imperfect intergranular joints) of known geometry with postulated contact interaction laws including friction. The code consists of two entities: the contact model and the solid mechanics module. Part I of the paper concerns the modeling of internal contacts (called cracks for brevity), while part II is related to the integration of the developed contact model into a solid mechanics module that allows the description of wave propagation processes. The contact model is used to produce normal and tangential load-displacement relationships, which in turn are used by the solid mechanics module as boundary conditions at the internal contacts. Due to friction, the tangential reaction curve is hysteretic and memory-dependent. In addition, it depends on the normal reaction curve. An essential feature of the proposed contact model is that it takes into account the roughness of the contact faces. On one hand, accounting for roughness makes the contact model more complicated since it gives rise to a partial slip regime when some parts on the contact area experience slip and some do not. On the other hand, as we will show, the concept of contact surfaces covered by asperities receding under load makes it possible to formulate a consistent contact model that provides nonlinear load-displacement relationships for any value of the drive displacements and their histories. This is a strong advantage, since this way, the displacement-driven model allows for a simple explicit procedure of data exchange with the solid mechanics module, while more traditional flat-surface contacts driven by loads generate a complex iterative procedure. More specifically, the proposed contact model is based on the previously developed method of memory diagrams that allows one to automatically obtain memory-dependent solutions to frictional contact problems in the particular case of partial slip. Here we extend the solution onto cases of total sliding and contact loss which is possible while using the displacement-driven formulation. The method requires the knowledge of the normal contact response obtained in our case as a result of statistical consideration of roughness of contact faces.

摘要

我们的研究旨在创建一个数值工具箱,该工具箱可描述波在包含已知几何形状的内部接触(例如裂纹、分层、脱粘、不完全晶界接头)的样品中的传播情况,并采用包括摩擦在内的假定接触相互作用定律。该代码由两个部分组成:接触模型和固体力学模块。本文的第一部分涉及内部接触(简称为裂纹)的建模,而第二部分则涉及将开发的接触模型集成到一个固体力学模块中,该模块可描述波传播过程。接触模型用于生成法向和切向载荷 - 位移关系,而固体力学模块将其用作内部接触处的边界条件。由于摩擦,切向反应曲线具有滞后性且依赖于记忆。此外,它还取决于法向反应曲线。所提出的接触模型的一个基本特征是它考虑了接触面的粗糙度。一方面,考虑粗糙度会使接触模型更加复杂,因为当接触区域的某些部分发生滑动而某些部分不发生滑动时,会产生部分滑动状态。另一方面,正如我们将展示的,由在载荷作用下后退的粗糙峰覆盖的接触表面的概念使得制定一个一致的接触模型成为可能,该模型可为驱动位移的任何值及其历史提供非线性载荷 - 位移关系。这是一个很大的优势,因为通过这种方式,位移驱动模型允许与固体力学模块进行简单的显式数据交换过程,而更传统的由载荷驱动的平面接触会产生复杂的迭代过程。更具体地说,所提出的接触模型基于先前开发的记忆图方法,该方法允许在部分滑动的特定情况下自动获得摩擦接触问题的依赖于记忆的解。在这里,我们将该解扩展到完全滑动和接触损失的情况,这在使用位移驱动公式时是可能的。该方法需要了解在我们这种情况下由于对接触面粗糙度的统计考虑而获得的法向接触响应。

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