一种用于实时裂纹检测的手持磁性摄像系统

Jongwoo Jun, Jungmin Kim, Jinyi Lee, Youngmin Park
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引用次数: 8

摘要

像铝合金这样的顺磁性金属由于重量轻而被用于飞机。磁光涡流成像仪(MOI)是一种用于检测飞机老化铝合金疲劳裂纹和腐蚀的无损磁光技术。然而,裂纹尖端畸变漏磁量的定量分布难以测量,因而难以定量评价裂纹的形状和大小。此外,根据工人的技能水平,检查结果会有很大差异。为了实现顺磁性材料的实时无损检测,研究中心研制了一种基于霍尔传感器阵列的手持式磁相机。在手持式磁摄像系统中,在试样上施加片状感应电流(STIC)时,裂纹尖端周围会产生畸变交变电流(DAC)。由DAC产生的备用MFL使用霍尔传感器阵列进行检测。使用高通滤波器后的均方根MFL通过模数转换器(ADC)转换为数字信号。并将其存储在计算机中,通过界面和操作软件进行处理。提出了一种对Al7075铝合金不同形状和尺寸裂纹进行定量无损检测和评价的算法。
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A hand held magnetic camera system for real time crack inspection
Paramagnetic metals like aluminum alloys are used in aircraft due to their light weight. Magneto-optical eddy current imager (MOI) is a nondestructive magneto-optical technique that is used to inspect fatigue cracks and corrosion in the aluminum alloy of aged aircraft. Unfortunately, the quantitative distribution of distorted magnetic flux leakage (MFL) from crack tips is difficult to measure, and therefore, the shapes and sizes of cracks are difficult to evaluate quantitatively. Additionally, the inspected results vary significantly according to the skill level of the worker. Hand-held magnetic camera using Hall sensor array for crack inspection in paramagnetic materials is developed by research center for real time NDT. Distorted alternate currents (DAC) are produced around the crack tips when the sheet type induced current (STIC) is induced on the specimen in the hand-held magnetic camera system. The alternate MFL resulting from the DAC is detected using a Hall sensor array. The root-mean-squared MFL after the use of high pass filter is converted to a digital signal by an analog-to-digital converter (ADC). And it is stored in a computer, and processed by interface and operation software. An algorithm for the quantitative nondestructive testing and evaluation of cracks of different shapes and sizes on the aluminum alloy, Al7075, is proposed in this paper.
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