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不稳定性与本构模型。

Instabilities and constitutive modelling.

作者信息

Wilson Helen J

机构信息

Department of Mathematics, UCL, Gower Street, London WC1E 6BT, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2006 Dec 15;364(1849):3267-83. doi: 10.1098/rsta.2006.1892.

Abstract

The plastics industry today sees huge wastage through product defects caused by unstable flows during the manufacturing process. In addition, many production lines are throughput-limited by a flow speed threshold above which the process becomes unstable. Therefore, it is critically important to understand the mechanisms behind these instabilities. In order to investigate the flow of a molten plastic, the first step is a model of the liquid itself, a relation between its current stress and its flow history called a constitutive relation. These are derived in many ways and tested on several benchmark flows, but rarely is the stability of the model used as a criterion for selection. The relationship between the constitutive model and the stability properties of even simple flows is not yet well understood. We show that in one case a small change to the model, which does not affect the steady flow behaviour, entirely removes a known instability. In another, a change that makes a qualitative difference to the steady flow makes only tiny changes to the stability.The long-term vision of this research is to exactly quantify what are the important properties of a constitutive relation as far as stability is concerned. If we could understand that, not only could very simple stability experiments be used to choose the best constitutive models for a particular material, but our ability to predict and avoid wasteful industrial instabilities would also be vastly improved.

摘要

如今,塑料行业因制造过程中不稳定流动导致的产品缺陷而产生大量浪费。此外,许多生产线受到流速阈值的限制,超过该阈值,生产过程就会变得不稳定。因此,了解这些不稳定性背后的机制至关重要。为了研究熔融塑料的流动,第一步是建立液体本身的模型,即其当前应力与其流动历史之间的关系,称为本构关系。这些关系通过多种方式推导得出,并在几个基准流动上进行测试,但很少将模型的稳定性用作选择标准。即使是简单流动,本构模型与稳定性特性之间的关系也尚未得到很好的理解。我们表明,在一种情况下,对模型进行的微小更改(不影响稳定流动行为)完全消除了一种已知的不稳定性。在另一种情况下,对稳定流动产生定性差异的更改对稳定性仅产生微小变化。这项研究的长期目标是准确量化就稳定性而言本构关系的重要属性。如果我们能够理解这一点,那么不仅可以使用非常简单的稳定性实验为特定材料选择最佳本构模型,而且我们预测和避免浪费性工业不稳定性的能力也将大大提高。

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