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High resolution ply-by-ply ultrasound imaging of impact damage in thick CFRP laminates by high-frequency acoustic microscopy

机译:高频声学显微镜厚CFRP层压板在厚CFRP层压板上的高分辨率底层超声成像

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摘要

Impact behavior of the carbon fiber reinforced polymers (CFRP) is still actual issue despite long history of laminate application and investigation of impact resistance. Expansion of knowledge on fracture mechanisms in reinforced composites could be related to development of methods for composite material investigations. In this work the high-frequency (50 MHz) impulse acoustic microscopy has been proposed for visualization and investigation of microstructure damages in the volume of CFRP laminates under low-velocity impact. Short probing pulses of high-frequency focused ultrasound provide both high lateral and axial resolution in layered structures. It has been shown possibilities of the acoustic microscopy to high-resolution imaging of delamination, matrix cracking and fiber fractures through the thickness of thick laminates. Mechanisms of highresolution acoustical image formation have been described. The results of ply-by-ply ultrasound imaging of carbon fiber reinforced laminates with [+45 degrees/0 degrees/-45 degrees/90 degrees]NS lay-up have been supplemented by impact force histories and calculated values of the energies.
机译:尽管层压应用和抗冲击性调查,但碳纤维增强聚合物(CFRP)的影响行为仍然是实际问题。扩大增强复合材料中骨折机制的知识可能与复合材料研究的方法的开发有关。在这项工作中,已经提出了高频(50MHz)脉冲声学显微镜用于在低速撞击下CFRP层压板体积中的微观结构损伤的可视化和研究。高频聚焦超声波的短探测脉冲在层状结构中提供高横向和轴向分辨率。已经显示了声学显微镜的可能性,通过厚层厚度的厚度,基质裂化和纤维骨折的高分辨率成像。已经描述了高次化声学图像形成的机制。碳纤维增强层压层的吡咯次超声成像的结果与[+ 45摄氏度/ -45度/ 90度] NS叠层进行了补充,并通过冲击力历史和能量计算值补充。

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