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Multi-prove electric potential change method for delamination monitoring of graphite/epoxy composite plates using normalized response surfaces

机译:使用归一化响应面的石墨/环氧复合板脱层监测的多重验证电势变化方法

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摘要

Delamination is a significant defect of laminated composites. The present study employs an electric potential change method in an attempt to identify internal delaminations experimentally. The method adopts reinforcing graphite fibres as sensors. In our previous paper, a two-prove method was adopted for the electric-resistance change measurements because of the simplicity. The two prove method is not appropriate for a precise measurement, and it tends to include a large experimental error in the electric resistance change owing to the electric resistance change at the electrodes. Instead, the present paper employs a multiple-prove method for the measurements. In the present study, high precise measurement system of electric voltage change is developed, and the electric voltage measurement method is adopted for identification of embedded delamination location and size. Measured electric potential data are normalized for creations of response surface to identify the delamination. As a result, the new multi-prove electric potential method is shown to be effective for the identifications of embedded delamination cracks of graphite/epoxy composite laminates.
机译:分层是层压复合材料的重大缺陷。本研究采用电势变化方法尝试通过实验识别内部分层。该方法采用增强石墨纤维作为传感器。在我们以前的论文中,由于简单,采用了两种证明方法来进行电阻变化测量。两次证明方法不适用于精确测量,并且由于电极处的电阻变化,它倾向于在电阻变化中包含较大的实验误差。相反,本文采用多次验证的方法进行测量。在本研究中,开发了一种高精度的电压变化测量系统,并采用电压测量方法来识别嵌入式分层位置和大小。将测量的电势数据归一化,以创建响应面以识别分层。结果,新的多重证明电势方法被证明对于识别石墨/环氧树脂复合层压板的嵌入分层裂纹是有效的。

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