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Introduction of Fatigue Markers in Full Scale Fatigue Test of an Aircraft Structure

机译:在飞机结构的全面疲劳测试中引入疲劳标记

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Air Force Institute of Technology participates in the service life assessment programme SEWST. The aim of this programme, funded by the Polish Ministry of Defense, is to modify the operation system of PZL-130 "Orlik" TC-II turbo propelled trainer aircraft. The structural part of the programme is focused on the Full Scale Fatigue Test of the whole airframe to be conducted at the VZLU in the Czech Republic. The load spectrum for the test was developed by the AFIT based on the flight test results. The basic load block represents 200 simulated flight hours and consists of 194 flights showing different levels of severity.At the end of the Full Scale Fatigue Test a teardown inspection is planned during which it would be most beneficial to be able to determine crack propagation rate by means of a crack surface inspection. Markers are usually visible on most fatigue crack surfaces, however they occur randomly therefore it is almost impossible to conclude anything about the crack history. Since the preliminary load block consisted of separate flights (flight loads together with landing and taxing loads) showing significantly different levels of severity, the easiest way to modify the load block was to change the order of flights within the block. Hence a pilot programme was started at the AFIT which was focused on the determination of the influence of flight sequence on crack appearance. Several load blocks were determined using various techniques of rearranging the order of flights within the preliminary load spectrum.This approach ensured the preservation of the initial severity of the load block and simultaneously enabled a significant increase in the probability of the markers occurrence introducing neither artificial underloads nor overloads that would most probably affect the crack propagation rate.Fatigue crack surfaces were inspected using Scanning Electron Microscope. As a result of the investigations a series of images were obtained showing the specimen microstructure with visible markers arranged in the desired sequences. Based on the obtained pictures the most promising load block arrangements were chosen for the Full Scale Fatigue Test.
机译:空军技术学院参加了使用寿命评估计划SEWST。由波兰国防部资助的该计划的目的是修改PZL-130“ Orlik” TC-II涡轮螺旋桨教练机的操作系统。该计划的结构部分侧重于将在捷克共和国的VZLU进行的整个机身的全尺寸疲劳试验。 AFIT根据飞行测试结果制定了测试的载荷谱。基本载荷块代表200个模拟飞行小时,包括194个表现出不同严重程度的飞行。在全面疲劳试验结束时,计划进行拆解检查,在这种检查过程中,通过以下方法确定裂纹扩展速率将是最有益的:裂纹表面检查的手段。标记通常在大多数疲劳裂纹表面上可见,但是它们是随机出现的,因此几乎不可能得出有关裂纹历史的任何信息。由于初步负荷块由严重程度显着不同的单独航班组成(飞行负荷以及着陆和课税负荷),因此修改负荷块的最简单方法是更改​​负荷块内的飞行顺序。因此,AFIT开始了一项试点计划,该计划的重点是确定飞行顺序对裂纹外观的影响。使用各种技术在初始载荷谱内重新排列飞行顺序来确定几个载荷块,这种方法确保了载荷块的初始严重性得以保留,同时显着增加了不会引入人工欠载的标记出现的可能性也不存在最有可能影响裂纹扩展速率的过载。使用扫描电子显微镜检查疲劳裂纹表面。研究的结果是获得了一系列图像,这些图像显示了标本的微观结构,可见标记按所需顺序排列。根据获得的图片,为满负荷疲劳测试选择了最有希望的负载块布置。

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