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首页> 外文期刊>SAE International Journal of Aerospace >Investigation of Thermal Test Effectiveness for Spacecraft Electronic Units Using Precipitation Efficiencies of MIL-HDBK-344
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Investigation of Thermal Test Effectiveness for Spacecraft Electronic Units Using Precipitation Efficiencies of MIL-HDBK-344

机译:利用MIL-HDBK-344的降水效率研究航天器电子单元的热测试有效性

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Thermal testing of spacecraft electronic units prior to flight provides effective detection of design, process and workmanship defects. Thermal testing subjects units to cold and hot thermal environments beyond those expected in flight. The strength of screening effectiveness depends upon the number of cycles, the temperature range, and the temperature transition rate. MIL-HDBK-344 provides insight into the incurred stresses and quantitative value (precipitation efficiency) of the screening environment using these three test parameters. In this paper, MIL-HDBK-344 topics applicable to thermal testing of space hardware are summarized and comparisons are made between test environment strengths computed from MIL-HDBK-344 and MIL-STD- 1540E. The weighting of these aforementioned test parameters in the precipitation efficiency equation are discussed and assessed. It was found that the fatigue equivalency equations in MIL-STD-1540E specify a significantly larger number of required cycles for various test temperature ranges as compared to cycles computed from MIL-HDBK-344 equations.
机译:飞行前对航天器电子单元进行热测试可有效检测设计,工艺和工艺缺陷。散热测试使设备处于超出飞行中预期的冷热环境中。筛选效果的强度取决于循环次数,温度范围和温度转变速率。 MIL-HDBK-344使用这三个测试参数可以深入了解筛选环境的压力和定量值(沉淀效率)。在本文中,总结了适用于空间硬件热测试的MIL-HDBK-344主题,并对从MIL-HDBK-344和MIL-STD-1540E计算出的测试环境强度进行了比较。讨论并评估了降水效率方程中上述测试参数的权重。已经发现,与从MIL-HDBK-344方程计算出的循环相比,MIL-STD-1540E中的疲劳当量方程式指定了各种测试温度范围所需的循环数。

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