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Study on Propagation Characteristics of Refracted Longitudinal Waves in Carbon Fiber Composites

机译:碳纤维复合材料中折射纵向波的繁殖特性研究

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Based on the characteristics of non-destructive, efficient and accurate, the critical refraction longitudinal (LCR) wave method has high application value in the testing of composite materials. In this study, the finite element method was used to analyze the directivity of the refracted longitudinal wave in the carbon fibre reinforced plastics (CFRP) IIW test block. The relationship between the energy distribution of the ultrasonic sound field and the incident angle and frequency is studied. The influence of the anisotropy of CFRP in ultrasonic propagation was studied by comparing with isotropic materials. Using variable-angle wedges to excite LCR waves in different layered CFRP plates, the characteristics of the excitation angles of LCR waves in different directions in anisotropic materials are studied. This study provides guidance for future research on the detection of surface stress and structural health of carbon fiber composite materials using LCR waves.
机译:基于非破坏性,高效准确的特点,临界折射纵向(LCR)波方法在复合材料的测试中具有高应用值。 在该研究中,使用有限元方法来分析碳纤维增强塑料(CFRP)IIW试验块中折射纵向波的方向性。 研究了超声波声场的能量分布与入射角和频率之间的关系。 通过与各向同性材料进行比较,研究了CFRP在超声波繁殖中的各向异性的影响。 使用可变角度楔形在不同层状CFRP板中激发LCR波,研究了在各向异性材料中不同方向的LCR波的激发角度的特性。 本研究为未来研究了使用LCR波检测碳纤维复合材料的表面应力和结构健康的研究指导。

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