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3D Mixed-Mode Delamination Fracture Criteria - An Experimentalist's Perspective

机译:3D混合模式分层骨折标准 - 实验主义的观点

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Many delamination failure criteria based on fracture toughness have been suggested over the past few decades, but most only covered the region containing mode I and mode II components of loading because that is where toughness data existed. With new analysis tools, more 3D analyses are being conducted that capture a mode III component of loading. This has increased the need for a fracture criterion that incorporates mode III loading. The introduction of a pure mode III fracture toughness test has also produced data on which to base a full 3D fracture criterion. In this paper, a new framework for visualizing 3D fracture criteria is introduced. The common 2D power law fracture criterion was evaluated to produce unexpected predictions with the introduction of mode III and did not perform well in the critical high mode I region. Another 2D criterion that has been shown to model a wide range of materials well was used as the basis for a new 3D criterion. The new criterion is based on assumptions that the relationship between mode I and mode III toughness is similar to the relation between mode I and mode II and that a linear interpolation can be used between mode II and mode III. Until mixed-mode data exists with a mode III component of loading, 3D fracture criteria cannot be properly evaluated, but these assumptions seem reasonable.
机译:在过去的几十年中提出了基于骨折韧性的许多分层失效标准,但大多数只覆盖了包含模式I和模式II组件的区域,因为这是韧性数据存在的地方。通过新的分析工具,正在进行更多的3D分析,捕获加载模式III组件。这增加了需要掺入模式III负载的裂缝标准的需求。纯模式III裂缝韧性试验的引入还产生了基于完整的3D裂缝标准的数据。本文介绍了用于可视化3D骨折标准的新框架。常见的2D电力法骨折标准评估以产生与模式III的引入产生意外预测,并且在临界高模式I区域中没有良好。已经显示为型广泛材料的另一个2D标准用作新的3D标准的基础。新标准基于假设I和模式III韧性之间的关系类似于模式I和模式II之间的关系,并且可以在模式II和模式III之间使用线性插值。在使用Mode III的Mode III组件存在混合模式数据之前,不能适当地评估3D骨折标准,但这些假设似乎是合理的。

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