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Large-displacement structural durability analyses of simple bend specimen emulating rocket nozzle liners

机译:模拟火箭喷嘴衬套的简单弯曲试样的大位移结构耐久性分析

摘要

Large-displacement elastic and elastic-plastic, finite-element stress-strain analyses of an oxygen-tree high-conductivity (OFHC) copper plate specimen were performed using an updated Lagrangian formulation. The plate specimen is intended for low-cost experiments that emulate the most important thermomechanical loading and failure modes of a more complex rocket nozzle. The plate, which is loaded in bending at 593 C, contains a centrally located and internally pressurized channel. The cyclic crack initiation lives were estimated using the results from the analyses and isothermal strain-controlled low-cycle fatigue data for OFHC copper. A comparison of the predicted and experimental cyclic lives showed that an elastic analysis predicts a longer cyclic life than that observed in experiments by a factor greater than 4. The results from elastic-plastic analysis for the plate bend specimen, however, predicted a cyclic life in close agreement with experiment, thus justifying the need for the more rigorous stress-strain analysis.
机译:使用更新的拉格朗日公式对氧树高电导率(OFHC)铜板样本进行了大位移弹性和弹塑性有限元应力应变分析。该板状样品旨在用于低成本实验,以模拟更复杂的火箭喷嘴的最重要的热机械载荷和破坏模式。该板在593 C时弯曲弯曲加载,包含一个位于内部且内部受压的通道。使用分析结果和OFHC铜的等温应变控制的低循环疲劳数据,估算了循环裂纹的萌生寿命。预测寿命与实验循环寿命的比较表明,弹性分析预测的循环寿命比实验观察到的循环寿命长4倍。然而,板弯曲试样的弹塑性分析结果预测了循环寿命。与实验非常吻合,因此有必要进行更严格的应力应变分析。

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