用脉冲法测定金属表面涂层厚度

E. Nyaguly, D. Simoiu, I. Crâstiu, Calin Pop-Gozman, D. Vlădaia, L. Bereteu
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引用次数: 0

摘要

金属表面的涂料不仅具有增加美观的目的,而且具有防腐保护和提高机械质量的作用。油漆涂层的寿命取决于基材和涂料两种材料之间的附着力。在两种材料的分离边界处,在弯曲过程中,弯曲力发生跳跃,从而产生剪切应力。这种应力取决于两种材料的弹性,也取决于沉积层的厚度。因此,能够确定涂料层的厚度是很重要的。利用伯努利方程对涂漆前后试样的弯曲振动进行了分析,确定了两种材料的弹性模量、密度和几何尺寸的固有频率比。从这个比值可以确定涂料层的厚度,知道固有振动频率。该方法基于对涂层前后样品的脉冲激励振动信号的分析,具有非破坏性。通过快速傅里叶变换(FFT),得到了两种情况下的固有频率。实验结果验证了有限元分析的数值结果。
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Determination of the Thickness of the Paint Coating of Metal Surfaces by the Impulse Technique
Paint coating of metal surfaces has the purpose not only to increase the aesthetic value but also to provide anticorrosive protection, and improve the mechanical qualities. The life of a paint coating depends on the adhesion between the two materials, the substrate and the paint. At the boundary of separation between the two materials, in the bending process, a jump of the bending effort occurs, which results in a shear stress. This stress depends on the elasticity of the two materials, but also on the thickness of the deposited layer. It is therefore important to be able to determine the thickness of the paint layer. Based on the analysis of the bending vibrations of a sample, before and after coating with paint using the Bernoulli equation, a ratio of natural frequencies is determined as a function of the elasticity modules of the two materials, their densities and their geometric dimensions. From this ratio can be determined the thickness of the paint layer knowing the natural vibration frequencies. The proposed method is nondestructive and is based on the analysis of vibration signals obtained by impulse excitation of samples, before and after coating with paint. By applying the Fast Fourier Transform (FFT), natural frequencies are obtained in the two situations. The experimental results come to validate numerical results obtained by applying the Finite Element Analysis (FEA).
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