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Cavity growth in soft adhesives

机译:软胶中的空洞增长

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摘要

The growth process of cavities nucleated at the interface between a rigid surface and a soft adhesive layer has been investigated with a probe method. A tensile stress was applied to the highly confined layer resulting in a negative hydrostatic pressure in the layer. The statistics of appearance and rate of growth of cavities as a function of applied negative stress were monitored with a CCD camera. If large germs of cavities were initially present, most of the cavities became optically visible above a critical level of stress independent of layer thickness. Cavities grew simultaneously and at the same expansion rate as a function of applied stress. In the absence of large germs, cavities became optically visible one after another, reaching a limiting size controlled by the thickness of the layer independently and very rapidly. Although, for each sample, we observed a statistical distribution of critical stress levels where a cavity expanded, the mean cavitation stress depended both on surface topography and more surprisingly on layer thickness. We believe that this new and somewhat surprising result can be interpreted with a model for the growth of small germs in finite size layers (J. Dollhofer, A. Chiche, V. Muralidharan et al., Int. J. Solids Struct. 41, 6111 (2004)). This model is mainly based on the dual notion of an energy activated transition from an unexpanded metastable state to an expanded stable state and to the proportionality of the activation energy with the elastic energy stored in the adhesive layer.
机译:已经用探针法研究了在刚性表面和软粘合剂层之间的界面上成核的空腔的生长过程。向高度受限的层施加拉应力,导致层中的流体静压力为负。用CCD摄像头监测腔的出现和空洞生长速率作为所施加负应力的函数的统计数据。如果最初存在大量的腔菌,则在高于应力的临界水平(与层厚度无关)时,大多数腔在光学上可见。腔体同时以相同的膨胀率增长,并随所施加的应力而变化。在没有大的细菌的情况下,空腔彼此之间在光学上是可见的,并且由层的厚度独立且非常迅速地达到了极限尺寸。尽管对于每个样品,我们观察到腔扩展处的临界应力水平的统计分布,但平均空化应力不仅取决于表面形貌,而且更取决于层厚。我们相信,这种新的结果有些令人惊讶,可以用模型来解释有限尺寸层中小细菌的生长(J. Dollhofer,A。Chiche,V。Muralidharan等人,Int。J. Solids Struct。41, 6111(2004))。该模型主要基于从未扩展的亚稳态到扩展的稳定状态的能量激活过渡以及激活能量与存储在粘合剂层中的弹性能的比例的双重概念。

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