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首页> 外文期刊>Journal of Nondestructive Evaluation >Experimental Simultaneous Measurement of Ultrasonic Properties and Thickness for Defect Detection in Curved Polymer Samples
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Experimental Simultaneous Measurement of Ultrasonic Properties and Thickness for Defect Detection in Curved Polymer Samples

机译:超声物性能的实验同时测量弯曲聚合物样品中缺陷检测的厚度

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摘要

In the context of alternative energies, the French Alternative Energies and Atomic Energy Commission (CEA) is developing hyperbaric tanks for onboard hydrogen storage applications. The aim of these tanks is to increase the operating life of vehicles using hydrogen as primary energy source. These tanks are made of a polymer layer surrounded by a composite shell. The composite shell is the structure that allows the storage of hydrogen in hyperbaric mode, while the polymer layer acts as a barrier to hydrogen. The capacity of polymer to enclose hydrogen depends on the layer thickness and its physicochemical and mechanical properties. Therefore, the manufacturing process of these tanks could be advantageously optimized by using proper measurement techniques that allow estimating the characteristics of the polymer layer. The method hereby presented aims to study the feasibility of ultrasonic nondestructive evaluation of polymer liner properties. A measurement campaign was thus conducted using 3.5 MHz transducers in order to realize the mapping of ultrasonic properties and thickness of a polymer reservoir sample. The measurements are achieved using the analysis of transmitted and reflected echoes in normal incidence. The study was done in a sample with an artificial defect. Resolution was enhanced through proper experimental configuration and signal processing. Results are in agreement compared to literature values and the defect detection is discussed.
机译:在替代能量的背景下,法式替代能源和原子能委员会(CEA)正在开发用于船上储氢应用的高压罐。这些坦克的目的是使用氢作为主要能量来增加车辆的使用寿命。这些罐由由复合壳包围的聚合物层制成。复合壳是允许在高压模式下储存氢的结构,而聚合物层用作氢的屏障。将氢的聚合物容量取决于层厚度及其物理化学和机械性能。因此,可以通过使用允许估计聚合物层的特性的适当测量技术有利地优化这些罐的制造过程。特此提出了该方法,旨在研究超声波无损评估聚合物衬垫性质的可行性。因此,使用3.5MHz换能器进行测量运动,以实现聚合物储存器样品的超声性能和厚度的映射。使用正常发病率的透射和反射回声的分析来实现测量。该研究在具有人工缺陷的样品中进行。通过适当的实验配置和信号处理来提高分辨率。结果与文学值相比,讨论了与文学值相比,并讨论了缺陷检测。

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