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Characterization of a Viscoplastic Constitutive Model and Its Application for the Finite Element Analyses of a Stirling Space Power Converter Heater Head

机译:粘塑性本构的表征 模型及其在有限元中的应用 斯特林空间功率变换器的分析 加热器头

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摘要

NASA has identified the Stirling power converter as a prime candidate for the next generation power system for space applications requiring 60,000 hours of operation. To meet this long-term goal, several critical components of the power converter were analyzed using advanced structural assessment methods. Perhaps the most critical component, because of its geometric complexity and operating environment, was the power converter’s heater head. Low-cycle fatigue and creep experiments on a nickelbase superalloy, Udimet 720 LI (lowinclusions) and viscoplastic analyses for the Stirling starfish heater head were conducted. All testing was performed at temperatures of 625 to 820±C in air. This work was initiated to generate a unique and consistent database in support of a life prediction modeling effort aimed at characterizing Freed’s viscoplastic model and verifying the key damage mechanisms. In general, this paper describes the life assessment of the heater head, which included the characterization of a viscoplastic material model, the thermal and structural analyses of the heater head, and the interpolation of fatigue and creep test results at several elevated temperatures for life prediction purposes.
机译:美国国家航空航天局(NASA)已将斯特林功率转换器确定为需要60,000小时运行的太空应用的下一代功率系统的主要候选产品。为了达到这个长期目标,使用先进的结构评估方法对功率转换器的几个关键组件进行了分析。由于其几何形状的复杂性和操作环境,最关键的组件也许是功率转换器的加热器头。对斯特林海星加热器头进行了镍基高温合金Udimet 720 LI(低夹杂物)的低周疲劳和蠕变实验以及粘塑性分析。所有测试均在空气中于625至820±C的温度下进行。开始这项工作是为了生成一个唯一且一致的数据库,以支持寿命预测建模工作,该工作旨在表征Freed的粘塑性模型并验证关键的损坏机制。总的来说,本文描述了加热器头的寿命评估,包括粘塑性材料模型的表征,加热器头的热分析和结构分析,以及在几种高温下的疲劳和蠕变测试结果的插值,以预测寿命目的。

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