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On the Influence of Ultimate Number of Cycles on Lifetime Prediction for Compression Springs Manufactured from VDSiCr Class Spring Wire

机译:关于vdsicr级弹簧丝制造的压缩弹簧寿命预测的终极数量的影响

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For the generation of fatigue curves by means of fatigue tests, an ultimate number of cycles must be chosen. This ultimate number of cycles also limits the permissible range of the fatigue curve for the design of components. This introduces extremely high costs for testing components that are to be used in the Very High Cycle Fatigue regime. In this paper, we examine the influence of the ultimate number of cycles of fatigue tests on lifetime prediction for compression springs manufactured from VDSiCr class spring wire. For this purpose, we propose a new kind of experiment, the Artificial Censoring Experiment (ACE). We show that ACEs may be used to permissibly extrapolate the results of fatigue tests on compression springs by ensuring that a batch-specific minimum ultimate number of cycles has been exceeded in testing. If the minimum ultimate number of cycles has not been exceeded, extrapolation is inadmissible. Extrapolated results may be highly non-conservative, especially for models assuming a pronounced fatigue limit.
机译:通过疲劳试验来产生疲劳曲线,必须选择最终的循环次数。这种最终的循环数量限制了组件设计的疲劳曲线的允许范围。这引入了测试组件的极高成本,以便在非常高的周期疲劳方案中使用。在本文中,我们研究了疲劳试验的最终循环循环循环循环的影响,对Vdsicr级弹簧线制造的压缩弹簧的寿命预测。为此目的,我们提出了一种新的实验,人工审查实验(ACE)。我们表明,通过确保在测试中超出了批量特异性最低最终循环,可以使用ACES允许推断压缩弹簧对压缩弹簧的结果。如果未超过最低循环循环次数,则推断不可受理。外推结果可能是高度保守的,特别是对于假设发音疲劳极限的模型。

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