使用激光多普勒振动计测量激光距离对铝板疲劳裂纹检测的影响

Tino Hermanto, Arya Rudi Nasution, Habib Satria, Hermansyah Hermasnyah, Yopan Rahmad Aldori, Ruztamreen bin Jenal, Abd Rahman Bin Dullah, Adly Zulqarnain bin Mohamad
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引用次数: 0

摘要

由于材料无法承受反复施加的载荷,因此会出现疲劳裂纹。为了解决这个问题,我们引入了非线性振动声学方法。这是因为这种方法是最佳解决方案之一,因为它适用于检测疲劳裂纹,其灵敏度足以检测到小裂纹。研究的目的是确定激光测距对使用振声法检测疲劳裂纹的影响。因此,研究步骤或程序包括测试对象准备、拉伸测试、动态拉伸测试和模态分析。选择三种不同的振动模式来激发低频模式。振动声学方法是一种基于高频声波在固体结构中传播的低频激励方法。在 MATLAB 软件的支持下,经过训练的输出信号将从时域转换到频域。分析结果表明,使用振动声学方法对铝疲劳裂纹的检测有显著影响。分析数据显示,测量激光距离会影响裂纹检测过程。疲劳裂纹的产生是因为材料无法承受反复施加的载荷。疲劳裂纹的产生是因为材料无法承受反复施加的载荷。为解决这一问题,引入了非线性振动声学方法。非线性振动声学方法是最佳解决方案之一,因为这种方法适用于检测疲劳裂纹,其灵敏度足以检测出细小裂纹。研究的目的是确定激光测距对使用振声法检测疲劳裂纹的影响。因此,研究步骤或程序包括测试对象准备、拉伸测试、动态拉伸测试和模态分析。选择三种不同的振动模式来激发低频模式。振动声学方法是一种基于低频激励的高频声波在固体结构中传播的方法。在 MATLAB 软件的支持下,经过训练的输出信号将从时域转换到频域。分析结果表明,使用振动声学方法对铝疲劳裂纹的检测有显著影响。分析数据显示,测量激光距离会影响裂纹检测过程。
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Effect of Laser Distance Measurement for Fatigue Crack Detection on Aluminium Plate Using Laser Doppler Vibro-Meter
Fatigue cracks can occur because the material is unable to withstand the load applied repeatedly. A nonlinear vibroacoustic method was introduced to overcome this problem. This is because this method is one of the best solutions because it is suitable for detecting fatigue cracks which is sensitive enough to detect small cracks. The aim of the research is to determine the effect of laser distance measurements on fatigue crack detection using the vibroacoustic method. Therefore, there are steps or procedures that include test object preparation, tensile testing, dynamic tensile testing, and modal analysis. Three different vibration modes are selected to excite the low frequency modes. The vibroacoustic method is a method based on the propagation of high frequency sound waves in solid structures with low frequency excitation. The trained output signal will be converted from the time domain to the frequency domain supported by the use of MATLAB software. The analysis results show that there is a significant influence on the detection of fatigue cracks in aluminum using the vibration acoustic method. The analyzed data shows that measuring the laser distance will influence the crack detection process. Fatigue cracks can occur because the material is unable to withstand the load applied repeatedly. A nonlinear vibroacoustic method was introduced to overcome this problem. This is because this method is one of the best solutions because it is suitable for detecting fatigue cracks which is sensitive enough to detect small cracks. The aim of the research is to determine the effect of laser distance measurements on fatigue crack detection using the vibroacoustic method. Therefore, there are steps or procedures that include test object preparation, tensile testing, dynamic tensile testing, and modal analysis. Three different vibration modes are selected to excite the low frequency modes. The vibroacoustic method is a method based on the propagation of high frequency sound waves in solid structures with low frequency excitation. The trained output signal will be converted from the time domain to the frequency domain supported by the use of MATLAB software. The analysis results show that there is a significant influence on the detection of fatigue cracks in aluminum using the vibration acoustic method. The analyzed data shows that measuring the laser distance will influence the crack detection process.
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