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Feasibility study on integrated structural health monitoring system produced by metal three-dimensional printing

机译:金属三维印刷生产综合结构健康监测系统的可行性研究

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Numerous structural health monitoring systems have been investigated extensively in order to enhance safety level and reduce direct operational costs. This work demonstrates the feasibility study of a new concept, the effective structural health monitoring system. The effective structural health monitoring system detects cracks using a system of capillaries incorporated into a structure. The structure with the integrated capillaries is produced by additive manufacturing, a process of adding material layer by layer. The first objective of this study is to prove that the developed system has reached technological readiness level 3. In order to prove that, four-point bending specimens with the integrated effective structural health monitoring system were tested after being produced by additive manufacturing, more specifically by laser metal deposition. The second objective of the study is to indicate that during four-point bending fatigue tests, the integrated structural health monitoring system has no influence on the crack initiation behavior. To do so, the specimens were subjected to the so-called step method. We demonstrate that the effective structural health monitoring has reached technological readiness level 3 and that the presence of effective structural health monitoring did not negatively influence the fatigue initiation process. As higher technology readiness levels are required, further investigations are still in progress.
机译:为了提高安全水平并降低直接运营成本,已经对大量的结构健康监测系统进行了广泛的研究。这项工作证明了新概念(有效的结构健康监测系统)的可行性研究。有效的结构健康监测系统使用并入结构中的毛细管系统检测裂缝。带有集成毛细管的结构是通过增材制造(一种逐层添加材料的过程)来生产的。这项研究的第一个目标是证明开发的系统已达到技术准备水平3。为了证明具有集成有效结构健康监测系统的四点弯曲试样是在增材制造后进行测试的,更具体地说通过激光金属沉积。研究的第二个目的是表明在四点弯曲疲劳测试期间,集成的结构健康监测系统对裂纹萌生行为没有影响。为此,对样品进行所谓的阶梯法。我们证明有效的结构健康监测已达到技术准备水平3,并且有效的结构健康监测的存在不会对疲劳引发过程产生负面影响。由于需要更高的技术准备水平,因此进一步的研究仍在进行中。

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