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Digital image correlation, acoustic emission and in-situ microscopy in order to understand composite compression damage behavior

机译:数字图像相关,声发射和原位显微镜,以了解复合压缩损伤行为

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摘要

In this work, a description of carbon fiber reinforced polymers (CFRP) compression-damaging scenario from first micro-damages to final failure of the material and potential effect of matrix (resin) on compressive mechanical properties and the damaging scenario is given. For that, two types of CFRP with the same woven reinforcement but with different resin were tested. First, combined load compression (CLC) tests were performed and the macroscopic compression behavior was then compared between the different materials. Then, analysis of the CLC testing with the multi-instrumentation was conducted to describe all the damage steps progression. Digital image correlation (DIC), acoustic emission (AE) and in-situ microscopy were the three parts of the multi-instrumentation. By combining the data from each technique, it was possible to verify the minor effect of the resin on the global compression behavior of composites. Signal processing tools (K-means and KNN) were used to cluster the acoustic emission signals. Three main classes were obtained and were labeled according to the possible damage scenario. This allowed the identification of the beginning of a severe damage (indicated by a noticeable rise in the measured acoustic energy) which was different depending on the matrix.
机译:在这项工作中,给出了从第一次微损伤到最终失效的碳纤维增强聚合物(CFRP)压缩的损坏场景以及基质(树脂)对压缩力学性能的潜在效果和损坏场景。为此,测试了两种类型的CFRP,具有相同的编织增强物,但具有不同的树脂。首先,进行组合的负载压缩(CLC)测试,然后在不同材料之间比较宏观压缩行为。然后,进行了通过多仪器进行CLC测试的分析,以描述所有损坏步骤的进展。数字图像相关(DIC),声发射(AE)和原位显微镜是多仪器的三个部分。通过组合来自每种技术的数据,可以验证树脂对复合材料的全局压缩行为的微小效果。信号处理工具(K-MEALY和KNN)用于聚类声发射信号。获得了三个主要课程,并根据可能的损坏方案标记。这允许识别严重损坏的开始(所示的测量声能中明显上升),这取决于基质。

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