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Automated monitoring of the crack propagation in mode I testing of thermoplastic composites by means of digital image correlation

机译:通过数字图像相关方式自动监测热塑性复合材料的模式I测试中的裂纹传播

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摘要

One of the main challenges of the mode I double cantilever beam (DCB) test is the simultaneous determination of the applied load and displacement with the developing delamination length. The present work addresses this issue by side-view tracking the crack propagation by means of digital image correlation (DIC). Two different reduction methods were developed to determine the crack length from the DIC data. On the one hand, the crack tip position was defined by the high strain concentration in the immediate vicinity of the crack tip, and on the other hand, by crack tip opening displacement (CTOD). The data obtained enabled the calculation of the energy release rate of carbon fibre reinforced thermoplastic specimens with either run-arrest or stable crack extension. For reasons of comparability, top surface analysis (TSA), as recently reported, was also carried out. Following this approach, the crack propagation was tracked applying DIC to the top specimen surface. The methods developed showed a good correlation with both the standardised procedure and TSA. It was shown that DIC can be used as an alternative to the conventional optical measuring tools to follow the crack propagation in the mode I DCB test.
机译:模式I双悬臂梁(DCB)测试的主要挑战之一是同时确定施加的负载和随着显影分层长度的载量。通过数字图像相关(DIC),通过侧视图跟踪裂缝传播来解决该问题。开发了两种不同的减少方法以确定来自DIC数据的裂缝长度。一方面,裂缝尖端位置由裂缝尖端的立即附近的高应变浓度限定,另一方面,通过裂纹尖端开口位移(CTOD)。获得的数据使得能够计算碳纤维增强热塑性标本的能量释放速率,其具有滞后或稳定的裂缝延伸。出于可比性的原因,最近报道,最近报道的顶部表面分析(TSA)也进行了。在这种方法之后,跟踪裂缝扩展,将DIC施加到顶部样品表面。该方法开发出与标准化程序和TSA的良好相关性。结果表明,DIC可以用作传统光学测量工具的替代方法,以遵循模式I DCB测试中的裂缝传播。

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