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Application of Automation Methods for Nonlinear Fracture Test Analysis

机译:自动化方法在非线性断裂试验分析中的应用

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As fracture mechanics material testing evolves, the governing test standards continue to be refined to better reflect the latest understanding of the physics of the fracture processes involved. The traditional format of ASTM fracture testing standards, utilizing equations expressed directly in the text of the standard to assess the experimental result, is self-limiting in the complexity that can be reasonably captured. The use of automated analysis techniques to draw upon a rich, detailed solution database for assessing fracture mechanics tests provides a foundation for a new approach to testing standards that enables routine users to obtain highly reliable assessments of tests involving complex, non-linear fracture behavior. Herein, the case for automating the analysis of tests of surface cracks in tension in the elastic-plastic regime is utilized as an example of how such a database can be generated and implemented for use in the ASTM standards framework. The presented approach forms a bridge between the equation-based fracture testing standards of today and the next generation of standards solving complex problems through analysis automation.
机译:由于裂缝力学材料测试演变,管理标准继续精致,以更好地反映对所涉及的骨折过程物理学的最新理解。传统的ASTM骨折检测标准格式,利用直接在标准文本中表达的方程来评估实验结果,是可以合理捕获的复杂性的自限制。使用自动分析技术绘制丰富的详细解决方案数据库,用于评估骨折力学测试为测试标准的新方法提供了一种基础,该方法可以获得常规用户获得涉及复杂的非线性断裂行为的高度可靠性评估。这里,利用用于自动分析弹性塑料制度中的表面裂缝的测试的情况作为如何在ASTM标准框架中生成和实现这样的数据库的示例。本方法在今天的基于等式的骨折测试标准和下一代标准通过分析自动化解决复杂问题的桥梁之间形成了桥梁。

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