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首页> 外文期刊>Mechanics of composite materials >DETECTION OF MATRIX CRACKS IN COMPOSITE LAMINATES BY USING THE MODAL STRAIN ENERGY METHOD
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DETECTION OF MATRIX CRACKS IN COMPOSITE LAMINATES BY USING THE MODAL STRAIN ENERGY METHOD

机译:模态应变能法检测复合材料层合板中的基体裂纹

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摘要

As the foremost mechanism of damage development, matrix cracking is the critical damage found in the early stage of structural failure of composites. This study aims to nondestructively detect matrix cracks in composite laminates by using an experimental modal analysis (EMA). An AS4/PEEK composite was used to fabricate cross-ply [0_2/90_(12)/0_2] and quasi-isotropic [(±45/0/90)_]_s laminates. The damage in the form of a matrix crack in the laminates was created by using a tensile load. The EMA was conducted on the laminates to obtain the modal displacements before and after damage. The displacements were then employed to compute the modal strain energy and to define the damage index, which is used for detecting matrix cracks. Limited by the mesh points of measurements, we used the differential quadrature method to calculate the partial differentials in the strain energy formula. The results obtained were validated by using the X-ray radiography method and three-point bending tests. The experimental results showed that the damage index well identified the location of breadthwise matrix cracks inside the laminates. However, the resolution of the damage index became poor if the spans of matrix cracks were short or the matrix cracks were scattered over the laminates.
机译:作为破坏发展的最主要机制,基体开裂是复合材料结构破坏早期发现的关键破坏。这项研究旨在通过实验模态分析(EMA)来无损检测复合材料层压板中的基体裂纹。使用AS4 / PEEK复合材料制作交叉层压[0_2 / 90_(12)/ 0_2]和准各向同性[(±45/0/90)_] s层压板。层压材料中以基体裂纹形式出现的损坏是通过使用拉伸载荷造成的。在层压板上进行EMA,以获得损坏前后的模态位移。然后使用位移来计算模态应变能并定义损伤指数,该指数用于检测基体裂纹。受测量网格点的限制,我们使用微分求积法来计算应变能公式中的偏微分。通过使用X射线射线照相方法和三点弯曲试验验证了获得的结果。实验结果表明,损伤指数很好地识别了层压板内部的横向基体裂纹的位置。但是,如果基体裂纹的跨度较短或基体裂纹散布在层压板上,则损伤指数的分辨率变差。

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