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On multi-scale approaches to composites and heterogeneous solids with damage

机译:对复合材料和非均质固体进行破坏的多尺度方法

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摘要

The explosive increase in computational power and the paradigm of computer-based engineering practice have prompted analyses that claim to carry knowledge of material physics at small scales to the performance observed at the structural level. This hierarchical multi-scale approach has logical appeal and some mathematical formulation to support it for heterogeneous solids. However, when such solids suffer damage in the form of multiple cracks, the length scale hierarchy is no longer fixed or simple. Connecting multiple scales is then a challenge that needs addressing for given material systems, such as composite laminates, accounting for the pertinent damage. This paper describes damage in fiber-reinforced composites, illustrating the characteristic length scales of damage and their relationship with the fixed scales of heterogeneities. Hierarchical versus top-down approaches are discussed and a case is made for the so-called synergistic approach that combines continuum damage mechanics and micro-damage mechanics.
机译:计算能力的爆炸性增长和基于计算机的工程实践范式已促使分析者声称,该研究声称将小范围的材料物理知识运用于结构水平上观察到的性能。这种分层的多尺度方法具有逻辑吸引力,并提供了一些数学公式来支持非均质固体。但是,当此类固体遭受多个裂纹形式的损坏时,长度标度层次不再固定或简单。因此,连接多个秤是一个挑战,需要解决给定材料系统(例如复合材料层压板)的相关损坏的问题。本文描述了纤维增强复合材料的损伤,说明了损伤的特征长度尺度及其与固定异质性尺度的关系。讨论了分层方法与自顶向下方法,并提出了将连续损伤机制和微损伤机制相结合的所谓协同方法。

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  • 来源
    《Philosophical Magazine》 |2010年第32期|p.4333-4348|共16页
  • 作者

    Ramesh Talrejaa*;

  • 作者单位

    a Department of Aerospace Engineering, Texas A&M University, College Station, Texas 77843-3141, USA;

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  • 正文语种 eng
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