首页> 外文期刊>The European physical journal, E. Soft matter >Surface oscillations and slow crack growth controlled by creep dynamics of necking instability in a glassy film
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Surface oscillations and slow crack growth controlled by creep dynamics of necking instability in a glassy film

机译:由玻璃状薄膜颈缩不稳定性的蠕变动力学控制的表面振荡和缓慢的裂纹扩展

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We study experimentally the slow growth of a single crack in a glassy film of polycarbonate submitted to uniaxial and constant imposed load. Flame-shaped macroscopic zones of plastic deformation appear at the tips of the crack and the formation of these plastic zones involves a necking instability. In order to understand the crack growth dynamics, we study first the growth dynamics of the plastic zones alone, i.e. without crack, at constant imposed load. We find that the growth velocity of the neck can be very well described by the same Eyring's factor as the one describing the creep flow of polycarbonate. In addition, we discover that a surface oscillation with a very large wavelength-to-amplitude ratio occurs during the neck propagation, and that both wavelength and amplitude are proportional to the film thickness. Finally, we succeed in modelling analytically the dependence of the instantaneous crack velocity on experimental variables using Dugdale-Barenblatt static description of crack tip plastic zones associated to Eyring's law and an empirical dependence on the crack length that may come from a residual elastic field.
机译:我们通过实验研究了在单轴和恒定施加载荷下聚碳酸酯玻璃状薄膜中单个裂纹的缓慢增长。塑性变形的火焰状宏观区域出现在裂纹的尖端,这些塑性区域的形成涉及颈缩不稳定性。为了理解裂纹的生长动力学,我们首先研究在恒定施加载荷下仅塑性区的生长动力学,即无裂纹。我们发现,与描述聚碳酸酯的蠕变流动的相同的艾尔因数,可以很好地描述颈部的生长速度。此外,我们发现在颈部传播期间会发生具有非常大的波长振幅比的表面振荡,并且波长和振幅均与薄膜厚度成比例。最后,我们成功地使用了与Eyring定律相关的裂纹尖端塑性区的Dugdale-Barenblatt静态描述,对瞬时裂纹速度对实验变量的依赖性进行了建模,并得出了残余弹性场对裂纹长度的经验依赖性。

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