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Stress Analysis and Structural Diagnosis of Solid Rocket Motors Using Finite the Element Method

机译:基于有限元法的固体火箭发动机应力分析和结构诊断

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摘要

Stress analysis of Solid Rocket Motors (SRMs) using the finite element method provides insightful data that can be used to develop a structural diagnosis methodology. Finite element models with and without flaws were designed and subjected to thermal loads to simulate post-production storage cooling of SRMs. The models are designed with dimensions and material properties provided by researchers from the Air Force Research Laboratory (AFRL) at Edwards Air Force Base, CA. It was concluded that during the simulated cooling process, flaws create unique stress signatures dependent on flaw type, size, and location. These trends were then validated and contextualized using fracture and damage mechanic concepts. Existing methodologies for health diagnosis of SRMs are discussed and their limitations addressed. Specifically, limitations of a two-dimensional sensor-based methodology developed by AFRL and UC Irvine collaborators are critiqued for improvement. It is then proposed that a three-dimensional finite element analysis of SRMs with flaws produces more viable data for an improved health diagnosis method. In the future, results from the three-dimensional finite element analysis will serve as the basis for a new methodology supported by multi-sensor arrays and machine learning algorithms for a holistic health prognosis and diagnosis of SRMs.
机译:使用有限元方法对固体火箭发动机 (SRM) 进行应力分析提供了有洞察力的数据,可用于开发结构诊断方法。设计了有缺陷和无缺陷的有限元模型,并承受了热载荷,以模拟 SRM 的生产后存储冷却。这些模型的设计尺寸和材料属性由加利福尼亚州爱德华兹空军基地空军研究实验室 (AFRL) 的研究人员提供。得出的结论是,在模拟冷却过程中,缺陷会产生独特的应力特征,具体取决于缺陷类型、大小和位置。然后使用骨折和损伤机制概念对这些趋势进行验证和背景化。讨论了 SRM 健康诊断的现有方法并解决了它们的局限性。具体来说,AFRL 和加州大学欧文分校合作者开发的基于二维传感器的方法的局限性受到批评,以供改进。然后提出,对有缺陷的 SRM 进行三维有限元分析为改进的健康诊断方法提供了更多可行的数据。未来,三维有限元分析的结果将作为多传感器阵列和机器学习算法支持的新方法的基础,用于 SRM 的整体健康预后和诊断。

著录项

  • 作者

    Mark, Marquis Anthony;

  • 作者单位

    University of California, Irvine;

    University of California, Irvine;

    University of California, Irvine;

  • 授予单位 University of California, Irvine;University of California, Irvine;University of California, Irvine;
  • 学科 Engineering;Materials science;Physics
  • 学位
  • 年度 2021
  • 页码 54
  • 总页数 54
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Engineering; Materials science; Physics;

    机译:工程;材料科学;物理;
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