>The aim of the work is to evaluate the effectiveness of analysis of a failure progress of the glass fiber reinforced polymer lami'/> Evaluation of the failure progress in the static bending of GFRP laminates reinforced with a classic plain‐woven fabric and a 3D fabric, by means of the vibrations analysis
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Evaluation of the failure progress in the static bending of GFRP laminates reinforced with a classic plain‐woven fabric and a 3D fabric, by means of the vibrations analysis

机译:通过振动分析,通过经典的纯织物和3D织物加固GFRP层压板的静态弯曲失效进展的评估

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>The aim of the work is to evaluate the effectiveness of analysis of a failure progress of the glass fiber reinforced polymer laminate (classic and 3D), during static bending, with the use of high frequency vibration analysis (the order of kHz). During the tests, the instantaneous velocity of the samples' vibrations was recorded. The 3D laminate showed a more favorable course of failure (mostly fiber fracture) than the classic laminate (mostly delamination), but only in the direction transverse to the translaminar interweave strands. In the direction parallel to the interweave, it was also characterized mainly by delamination. It was stated that the vibration measurements significantly broaden and supplement the characteristics of bending, by way of revealing the local degradation changes in the examined material, especially before the initiation of the main stage of failure. The work also describes the frequency bands in which the symptoms of the occurring failures of particular laminate components were observed and where the values of the basic point parameters were estimated, which points to the occurrence of structure failure. The obtained results confirm the effectiveness of the vibration analysis as a tool for the evaluation of the course of composite material failure under static loads. POLYM. COMPOS., 38:1070–1085, 2017. ? 2015 Society of Plastics Engineers
机译: >工作的目的是评估分析玻璃纤维增​​强聚合物的失效进展的有效性在静态弯曲期间,使用高频振动分析(KHz的顺序),层压(经典和3D)。在测试期间,记录样本振动的瞬时速度。 3D层压材料显示出比经典层压材料(大多数分层)更有利的失败(大多数纤维骨折),而是仅沿横向于转译曲线的方向。在平行于交织的方向上,它的特征在于分层。据据说振动测量显着拓宽并补充了弯曲的特点,通过揭示所检查材料中的局部降解变化,特别是在发生故障的主要阶段之前。该工作还描述了频带,其中观察到特定层压组分的发生故障的症状,并且估计基本点参数的值,这指向结构故障的发生。所获得的结果证实了振动分析作为评估静态负载下复合材料失效过程的工具的有效性。聚合物。 Compos。,38:1070-1085,2017。? 2015年塑料工程师协会

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