对于太空辐射的影响,可靠性工程师应该知道多少啊

R. DiBari
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引用次数: 3

摘要

辐射引起的故障和退化模式严重依赖于应用和组件技术,因此辐射、组件、设计和系统工程师协同工作至关重要,最好在项目的早期开始,以确保及时解决关键应用,最大限度地提高任务成功的可能性。可靠性工程师应与辐射效应工程师合作,将辐射诱发的失效模式纳入他们的分析。在零件应力降额分析中,TID和位移损伤的测试与分析可以作为一个参数按测试确定的百分比进行位移。有几个破坏性的单事件模式(SEL, SEGR, SEB)需要包含在FMEA中,见表1。对于设计中的敏感部件以及特定的失效模式,请咨询您项目中的辐射效应工程师。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
What reliability engineers should know about space radiation effects
Radiation induced failure and degradation modes depend critically on the application as well as the component technology, so it is essential that radiation, component, design, and system engineers work together, preferably starting early in a program, to ensure critical applications are addressed in time to maximize the probability of mission success. Reliability engineers should work with the radiation effects engineer to incorporate radiation induced failure modes into their analysis. The TID and displacement damage testing and analysis can be incorporated into the parts stress derating analysis as a parameter shift by the percentage determined by testing. There are several destructive single event modes (SEL, SEGR, SEB) that need to be included in an FMEA, see table 1. For susceptible components in your design as well as specific failure modes, consult the radiation Effects Engineer on your project.
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