首页> 外文会议>Conference on proceedings and design issues in high temperature materials >FATIGUE LIFE PREDICTION OF TITANIUM MATRIX COMPOSITES UNDER MISSION SPECTRUM LOADING
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FATIGUE LIFE PREDICTION OF TITANIUM MATRIX COMPOSITES UNDER MISSION SPECTRUM LOADING

机译:任务谱荷载下钛基复合材料的疲劳寿命预测

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Fatigue life predictions are conducted for a high temperature composite for hypersonic vehicle structural applications. A SCS-6/Timelal?21S [0/90]s composite is evaluated under thermomechanical fatigue (TMF) as well as under typical hypersonic mission profiles and segments of those missions. The fatigue life analysis is based on micromechanical stresses which, in turn, are input into a damage summation model. Spectrum loading is decomposed into a series of in-phase and out-of-phase TMF segments whose lives are predicted from a life fraction model which was developed for isothermal and TMF data. Analytical predictions for the mission specttum and the simple mission profiles are compared with experimental data obtained here as well as in a previous study. The model is demonstrated to be able to predict fatigue life under mission spectrum loading based solely on calibration under simple isothermal fatigue and TMF conditions.
机译:疲劳寿命预测是用于高温载体结构应用的高温复合材料。 在热机械疲劳(TMF)以及根据这些任务的典型超声波任务配置文件下,评估SCS-6 /时间表组合材料。 疲劳寿命分析基于微机械应力,该应力又被输入到损坏求和模型中。 光谱载荷分解成一系列同期和异相TMF段,其寿命是从为等温和TMF数据开发的寿命级分模型预测的。 使命普遍的分析预测和简单的使命概况与此处获得的实验数据以及先前的研究进行了比较。 证明该模型能够在简单的等温疲劳和TMF条件下基于校准来预测任务光谱载荷下的疲劳寿命。

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