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FATIGUE TEST PLAN TO OBTAIN S-N CURVES

机译:获得S-N曲线的疲劳试验计划

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摘要

S-N curves of structural materials are obtained through fatigue tests. These tests are often performed using five different stress levels, with fifteen test specimens for each stress level. This kind of test plan provides estimates that are less precise compared to other experimental plans, for example, the ones called optimum plan or compromise plan. The main reason for this drawback is the use of the same number of specimens for all stress levels. It has been observed that less precise results are obtained for lower stress levels because failure occurs less frequently. That is why more specimens should be used for lower stress levels as compared to higher stress levels. As long as the number of specimens to be tested at low stress levels is increased, the total number of failures will also increase, which allows one to develop a more precise data analysis. The objective of this work is to present an alternative experimental plan to obtain S-N curves, which intends to provide accurate estimators. A practical application is done for planning a fatigue test, in a flex-rotating machine, to obtain the S-N curve of SAE 8620 steel.
机译:结构材料的S-N曲线是通过疲劳试验获得的。这些测试通常使用五个不同的应力水平进行,每个应力水平有十五个试样。这种测试计划所提供的估计与其他实验计划(例如称为最佳计划或折衷计划)相比,其准确性较差。造成此缺陷的主要原因是,在所有应力水平下均使用相同数量的试样。已经观察到,较低的应力水平获得的精度较低,因为失效发生的频率较低。这就是为什么与较高应力水平相比,应将更多的试样用于较低应力水平的原因。只要在低应力水平下要测试的试样数量增加,失败的总数也会增加,这使人们可以进行更精确的数据分析。这项工作的目的是提出一种替代的实验计划以获得S-N曲线,目的是提供准确的估计量。完成了在挠性旋转机中计划疲劳测试的实际应用,以获得SAE 8620钢的S-N曲线。

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