首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >MICRO-TEXTURED SURFACES WITH PARALLEL WALL-LIKE STRUCTURES: 'MODULATION' OF ADHESION PROPERTIES WITH THE DIRECTION OF THE APPLIED EXTERNAL MOMENT
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MICRO-TEXTURED SURFACES WITH PARALLEL WALL-LIKE STRUCTURES: 'MODULATION' OF ADHESION PROPERTIES WITH THE DIRECTION OF THE APPLIED EXTERNAL MOMENT

机译:微纹理表面具有平行壁状结构:“调制”的粘合性能与所施加的外部时刻的方向

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The aim of the present work is to investigate the adhesive properties of a biomimetic micro-structured surface with strongly direction-dependent adhesion properties. The system is constituted by parallel elastic wall-like structures topped with a thin film. The micro-walls are assumed in perfect contact with a rigid substrate and the adhesive interaction is modeled by considering full adhesion. In a previous work of the authors, it is shown that this geometry, when loaded with an external moment acting perpendicularly to the walls direction, enhances the adhesive properties with respect to a simple flat surface as a result of its crack trapping behavior. In the present paper we investigate what happens when the crack propagates with a generic angle with respect to the walls, in order to determine the variation of the critical conditions for detachment with the direction of the applied moment. Results show that the crack trapping can occur only when the crack propagates perpendicularly to the walls. In all the other cases, the system compliance linearly increases with the crack length. As a result, the energy release rate at the crack tip is constant during the crack propagation and the crack trapping phenomenon cannot occur.
机译:本作作品的目的是探讨具有强方向依赖性粘合性能的仿生微结构表面的粘合性能。该系统由具有薄膜的平行弹性壁状结构构成。假设微壁以与刚性基板的完美接触,并且通过考虑完全粘附来建模粘合剂相互作用。在先前的作者的工作中,示出了当由于其裂纹捕获行为而加载垂直于壁方向的外部力矩时,该几何形状增强了相对于简单的平坦表面的粘合性能。在本文中,我们调查裂缝与相对于墙壁的泛角传播时会发生什么,以便确定与所施加的时刻的方向脱离的临界条件的变化。结果表明,仅当裂缝垂直于墙壁传播时才能发生裂纹捕集。在所有其他情况下,系统顺应性随着裂缝长度线性增加。结果,在裂纹传播期间裂纹尖端的能量释放速率是恒定的,并且不能发生裂纹捕获现象。

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