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首页> 外文期刊>American journal of applied sciences >Modified Center Interpolation Net for Classification of Composite Structures Tested Using Low Frequency Electronic Tapping | Science Publications
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Modified Center Interpolation Net for Classification of Composite Structures Tested Using Low Frequency Electronic Tapping | Science Publications

机译:改进的中心插值网络,用于分类使用低频电子攻丝测试的复合结构科学出版物

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> Problem statement: Most exhaustive NDT techniques require large capital equipment, are difficult to apply to complex geometric structures and, above all, are time-consuming to use and some take a considerable time to complete. As a solution to the problems associated with NDT applications, there is a need to establish an intelligent analysis system that supports a portable testing environment, which allows various types of inputs and provides sufficient data regarding damage severity in the tested structure. Approach: This research investigated possible fast NDT systems and algorithms and provides a novel approach that allows engineers and researchers to pinpoint defects in real time. The system was based on incident signals on a composite surface being detected and analyzed. Any damage in the composite causes a change in the detected signal. The proposed technique is suitable for high volume monitoring and inspection of safety critical components non-destructively. It unified through conversion the extracted information from irrelevant background using the developed Classification Algorithm with the ability to correlate obtained data to level of damage and it is effect on the structure overall performance. Results: The feasibility of using time measurements to establish the integrity of RIM composites using a handheld, low frequency, electronic tapping device has been studied. The relationship between damage and component thickness had also been established. Conclusion: A mathematical model describing the composite time response and its relation to both level of damage and tensile strength was presented. An excellent agreement between the model and the testing data was observed. Also the credibility of the measuring device and its promising future as a cheap on line NDT testing instrument was proved.
机译: > 问题陈述:大多数详尽的无损检测技术都需要大型固定设备,难以应用于复杂的几何结构,最重要的是使用起来很耗时,有些花费大量时间时间完成。作为与NDT应用相关的问题的解决方案,需要建立一种支持便携式测试环境的智能分析系统,该系统允许各种类型的输入并提供有关测试结构中损坏严重程度的足够数据。 方法:该研究调查了可能的快速NDT系统和算法,并提供了一种新颖的方法,使工程师和研究人员可以实时查明缺陷。该系统基于检测和分析复合表面上的入射信号。复合材料中的任何损坏都会导致检测到的信号发生变化。所提出的技术适用于无损检测和安全关键部件的大量检测。它使用开发的分类算法通过转换从无关背景中提取的信息进行统一,具有将获得的数据与损坏程度相关联的能力,并且对结构的整体性能有影响。 结果:研究了使用时间测量通过手持式低频电子攻丝装置确定RIM复合材料的完整性的可行性。损坏与零件厚度之间的关系也已建立。 结论:建立了描述复合材料时间响应及其与损伤水平和拉伸强度之间关系的数学模型。观察到模型与测试数据之间的极好的一致性。还证明了该测量仪的可靠性及其作为廉价在线NDT测试仪的有前途的未来。

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