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IETeasy: An open source and low-cost instrument for impulse excitation technique, applied to materials classification by acoustical and mechanical properties assessment.

机译:iETEASY:用于脉冲励磁技术的开源和低成本仪器,应用于声学和机械性能评估的材料分类。

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In the past twenty years, impulse excitation technique (IET) has become a widely diffused non-destructive technique in metal industry field. This success resides in its capability to determine with high precision and accuracy some elastic properties of materials, such as Young’s modulus, shear modulus and Poisson’s ratio. The technique, which is very fast and non-destructive, consists in exciting a sample by a mechanical input and registering the acoustic output that, once analyzed by Fast Fourier-Transformation (FFT), provides the resonant frequencies of the sample, with a fast data analysis procedure. The approach is thus very easy to be applied to most materials and cost and time effective. Despite these many advantages, IET is still an under exploited technique in academic research centres, that mainly rely on traditional destructive methods for the evaluation of such properties, for instance by the measurement of strain-stress curves. Commercial IET instruments, similarly to traditional ones, have costs spanning from many hundreds to thousands of dollars, limiting their diffusion in academic world but also in small companies with limited R&D or quality control expenses. Non-professional instruments can also give very precise results and can be successfully used in basic research and in quality control even if not certified as commercial ones. Moreover they can be easily customized according to specific user needs and sample features. Since no examples of low cost IET designs can still be found in the scientific literature, we fill the gap in this paper, giving instructions for a self-assembled instrument for IET analysis, with a cost in the range of 70–85 USD. Moreover, the collected calibration data are analyzed to prove that the instrument can be used for other purposes than the common elastic properties determination, but also for a fast and cheap material characterization exploiting a multivariate analysis approach. Calibration results show that IETeasy can be used in both academic and industrial field for quality control purposes as a low-cost, fast and efficient alternative to tensometers. Principal component analysis, applied in this paper for the first time to IET data analysis, was able to distinguish and classify steel from Al or Cu alloys from polymers, but also different steel grades, demonstrating its potential in massive and eventually automatic IET data analysis. Calculated mechanical properties fitted with good approximation the ranges expected for each sample.
机译:在过去的二十年里,脉冲励磁技术(IET)已成为金属工业领域广泛扩散的非破坏性技术。这一成功率在其高精度和精度确定材料的高精度和精度的能力中,例如杨氏模量,剪切模量和泊松比的一些弹性性能。这种技术非常快速和无损,包括通过机械输入激励样品并注册声输出,一旦通过快速傅里叶变换(FFT)分析,提供了一个快速的样本的谐振频率数据分析程序。因此,该方法很容易应用于大多数材料和成本和时间有效。尽管存在这一优势,但IET仍然是在学术研究中心的开发技术,主要依赖于传统的破坏性方法,以评估这些属性,例如通过测量应变应力曲线。类似于传统传统的商用IET仪器,从数百到数千美元的成本上有成本,限制了他们在学术界的扩散,也限制了R& D有限的小公司或质量控制费用。非专业仪器还可以提供非常精确的结果,也可以成功地用于基本研究和质量控制,即使没有被证明为商业人士。此外,它们可以根据具体的用户需求和采样功能轻松定制。由于在科学文献中仍然没有找到低成本IET设计的例子,因此我们填补了本文的差距,为IET分析提供了一种自组装仪器的说明,其成本在70-85美元的范围内。此外,分析收集的校准数据以证明仪器可以用于其他目的而不是常见的弹性特性测定,而且还用于利用多变量分析方法的快速和廉价的材料表征。校准结果表明,IETEASY可用于学术和工业领域,以进行质量控制目的,作为张量计的低成本,快速,有效的替代品。本文第一次应用于IET数据分析的主成分分析,能够将钢从Al或Cu合金与聚合物区分开,而且也是不同的钢等级,展示其巨大和最终自动IET数据分析的潜力。计算的机械性能适用于每个样品的近似近似的范围。

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