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Failure Progress of 3D Reinforced GFRP Laminate during Static Bending Evaluated by Means of Acoustic Emission and Vibrations Analysis

机译:通过声发射和振动分析评估3D增强GFRP层压板在静态弯曲过程中的破坏进展

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摘要

The work aimed to assess the failure progress in a glass fiber-reinforced polymer laminate with a 3D-woven and (as a comparison) plain-woven reinforcement, during static bending, using acoustic emission signals. The innovative method of the separation of the signal coming from the fiber fracture and the one coming from the matrix fracture with the use of the acoustic event’s energy as a criterion was applied. The failure progress during static bending was alternatively analyzed by evaluation of the vibration signal. It gave a possibility to validate the results of the acoustic emission. Acoustic emission, as well as vibration signal analysis proved to be good and effective tools for the registration of failure effects in composite laminates. Vibration analysis is more complicated methodologically, yet it is more precise. The failure progress of the 3D laminate is “safer” and more beneficial than that of the plain-woven laminate. It exhibits less rapid load capacity drops and a higher fiber effort contribution at the moment of the main laminate failure.
机译:这项工作旨在利用声发射信号评估在静态弯曲过程中具有3D编织和(作为比较)平纹编织增强材料的玻璃纤维增​​强聚合物层压板的破坏进展。应用了一种创新方法,该方法以声波事件的能量为标准来分离来自纤维断裂的信号和来自基质断裂的信号。通过评估振动信号,可以选择分析静态弯曲过程中的破坏过程。这提供了验证声发射结果的可能性。事实证明,声发射以及振动信号分析是记录复合材料层压板失效影响的良好且有效的工具。振动分析在方法上更加复杂,但更加精确。 3D层压板的故障进展比平纹层压板“更安全”并且更有利。在主层压板出现故障时,它的负荷能力下降较快,纤维作用力贡献较大。

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