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Thermal evaluation of the mean fatigue limit of a complex structure

机译:复杂结构平均疲劳极限的热评估

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The study deals with the long-term reliability of a high precision pressure sensor using bellows mainly made of electroplated Ni. Bellows are expected to stay in service for many decades. Their high cycle fatigue behavior has to be known to assess the probability of airtightness loss. A specific high cycle fatigue setup, put in a resonant machine that is displacement-controlled, has been designed. An infrared thermographic technique is used to determine the mean fatigue limit of bellows. Increases in the mean temperature of the bellows with the displacement range are monitored. Several authors empirically relate the mean fatigue limit of a flat specimen to a rapid temperature change. A similar analysis is performed in the present case by using the bellows mean temperature. Finite element computations allow us to estimate a mean fatigue stress threshold for electroplated Ni. This result is compared with those obtained mechanically in a Woehler diagram.
机译:该研究涉及使用主要由电镀镍制成的波纹管的高精度压力传感器的长期可靠性。波纹管预计将继续使用数十年。为了评估气密性损失的可能性,必须知道它们的高周疲劳行为。已经设计出一种特定的高周疲劳装置,该装置置于位移控制的共振机中。红外热成像技术用于确定波纹管的平均疲劳极限。波纹管的平均温度随位移范围的增加受到监控。几位作者根据经验将扁平试样的平均疲劳极限与温度的快速变化联系起来。在当前情况下,通过使用波纹管平均温度进行类似的分析。有限元计算使我们能够估计电镀镍的平均疲劳应力阈值。将该结果与在Woehler图中机械获得的结果进行比较。

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