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首页> 外文期刊>Journal of Materials Science >Size effects in polyurethane bonds: experiments, modelling and parameter identification
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Size effects in polyurethane bonds: experiments, modelling and parameter identification

机译:聚氨酯键的尺寸效应:实验,建模和参数识别

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In this study we examine polyurethane bonds of varying thickness between anodised aluminium substrates. The performed shear tests showed an intriguing size effect of the kind “thinner equals softer”. This size effect occurs not only in the basic elasticity (relaxed state), but also in the viscoelastic behaviour of the tested material. The cause of such size effects is supposed to be found in the existence of so-called interphases or boundary layers, which may differ considerably from the bulk in terms of mechanical behaviour, thus having an enormous impact on thin bonds. In thick bonds, however, these interphases or boundary layers have a minor effect on the overall mechanical behaviour. To account for these experimental results in bond modelling, an extended phenomenological continuum mechanics-based model, which explicitly includes such size effects in its calculation, is developed and presented. For this purpose, an abstract structure parameter with its corresponding balance equation is established describing the formation of the interphases by means of a phase transition. This makes it possible to define the bond stiffness at a macroscopic level, without entering into the microstructure. The extended model brings up a set of model parameters, which are determined efficiently by an ES (evolution strategy). The study concludes with a summary and an outlook on our further research work.
机译:在这项研究中,我们研究了阳极氧化铝基材之间不同厚度的聚氨酯键。进行的剪切测试显示出“更薄等于更柔软”的迷人尺寸效果。这种尺寸效应不仅在基本弹性(松弛状态)中发生,而且在被测材料的粘弹性行为中也发生。认为存在这种尺寸效应的原因是存在所谓的中间相或边界层,它们在机械性能方面可能与整体相差很大,因此对薄键具有巨大的影响。但是,在厚粘结中,这些中间相或边界层对整体机械性能的影响较小。为了考虑这些在债券建模中的实验结果,开发并提出了一种扩展的基于现象学连续论力学的模型,该模型在计算中明确包括了这种尺寸效应。为此,建立了一个带有相应平衡方程的抽象结构参数,该参数描述了通过相变形成相间的过程。这使得可以在宏观水平上定义粘结刚度,而无需进入微观结构。扩展模型带来了一组模型参数,这些参数由ES(演化策略)有效地确定。本研究以总结和对我们进一步研究工作的展望作为结束。

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