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首页> 外文期刊>Applied Sciences >Proof of Concept of Crack Localization Using Negative Pressure Waves in Closed Tubes for Later Application in Effective SHM System for Additive Manufactured Components
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Proof of Concept of Crack Localization Using Negative Pressure Waves in Closed Tubes for Later Application in Effective SHM System for Additive Manufactured Components

机译:使用负压波在封闭管中进行裂纹局部化的概念证明,以后在增材制造的有效SHM系统中应用

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摘要

Additive manufactured components have a different metallurgic structure and are more prone to fatigue cracks than conventionally produced metals. In earlier papers, an effective Structural Health Monitoring solution was presented to detect fatigue cracks in additive manufactured components. Small subsurface capillaries are embedded in the structure and pressurized (vacuum or overpressure). A crack that initiated at the component’s surface will propagate towards the capillary and finally breach it. One capillary suffices to inspect a large area of the component, which makes it interesting to locate the crack on the basis of the pressure measurements. Negative pressure waves (NPW) arise from the abrupt encounter of high pressure fluid with low pressure fluid and can serve as a basis to locate the crack. A test set-up with a controllable leak valve was built to investigate the feasibility of using NPW to localize a leak in closed tubes with small lengths. Reflections are expected to occur at the ends of the tube, possibly limiting the localization accuracy. In this paper, the results of the tests on the test set-up are reported. It will be shown that the crack could be localized with high accuracy (millimeter accuracy) which proves the concept of crack localization on basis of NPW in a closed tube of small length.
机译:增材制造的部件具有不同的冶金结构,比常规生产的金属更容易产生疲劳裂纹。在较早的论文中,提出了一种有效的“结构健康监测”解决方案,以检测增材制造部件中的疲劳裂纹。将小的地下毛细管嵌入结构中并加压(真空或超压)。从组件表面开始的裂纹将向毛细管传播,并最终使其破裂。一个毛细管足以检查部件的大面积,这使得根据压力测量结果确定裂缝位置变得有趣。高压流体与低压流体的突然相遇会产生负压力波(NPW),它可作为定位裂缝的基础。建立了带有可控泄漏阀的测试装置,以研究使用NPW在小长度的封闭管中定位泄漏的可行性。预计在管的末端会发生反射,这可能会限制定位精度。在本文中,报告了有关测试设置的测试结果。结果表明,裂纹可以以较高的精度(毫米精度)进行局部定位,这证明了基于NPW在较小长度的封闭管中进行裂纹定位的概念。

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