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Monitoring the fatigue crack growth behavior of composite joints using in situ 2D-digital image correlation

机译:用原位2D-数字图像相关监测复合关节的疲劳裂纹生长行为

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To predict lifetime and damage tolerance of adhesively bonded joints, crack growth behavior need to be understood, as it oftentimes serves as a basis or proof of, e.g., numerical models. Within this work, a method is presented to measure crack length in dynamically loaded adhesively bonded CFRP-joints by means of 2D digital image correlation. Automated picture acquisition at the maximum force level within a cycle allows measurements during the fatigue testing. The strain level in front of the crack tip was defined as maximum possible strain within the bond line. Higher strains were denoted as crack. Marking the crack path automatically led to the associated crack length and could afterward be derived to a crack propagation rate. Different destructive tests were carried out on composite single, double and crack lap shear specimens.
机译:为了预测粘合接头的寿命和损伤耐受性,需要理解裂缝的生长行为,因为它通常用作例如数值模型的基础或证据。 在该工作中,提出了一种方法以通过2D数字图像相关性通过2D数字图像相关测量动态加载的粘合的CFRP接头中的裂缝长度。 在循环内最大力水平的自动图像采集允许在疲劳测试期间测量。 裂缝尖端前面的应变水平被定义为键合线内的最大可能应变。 较高的菌株表示为裂缝。 标记裂缝路径自动导致相关的裂缝长度,然后可以推动到裂缝传播速率。 在复合单,双和裂缝剪切样品上进行不同的破坏性测试。

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