首页> 外文期刊>International journal of energetic materials and chemical propulsion >COUPLING OF TRANSIENT THERMAL AND MECHANICAL STRESSES COMPUTATIONS IN GRAPHITE NOZZLE MATERIALS
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COUPLING OF TRANSIENT THERMAL AND MECHANICAL STRESSES COMPUTATIONS IN GRAPHITE NOZZLE MATERIALS

机译:石墨喷嘴材料中瞬态热应力和机械应力的耦合计算

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摘要

In this work, a numerical simulation of the structural response of the graphite nozzle materials to the flow during the ignition transient of a solid rocket motor is considered. The measured pressure-time trace within the combustion chamber was used as an input parameter in the graphite-nozzle erosion minimization (GNEM) code to calculate gas-phase pressure, temperature, velocity, etc. in the graphite nozzle. The calculated pressure and convective heat flux from GNEM were applied as loading conditions in an associated thermo-structural model to obtain response of graphite nozzle materials to the transient pressure and thermal loading. The combined aero-thermo-structural response of the graphite rocket nozzle showed that the thermal stresses were significantly higher than the mechanical stresses. The radial displacements of inner nozzle surface showed that the nozzle diameter increases in the beginning due to thermo-mechanical stresses. The axial displacements of several points on the inner nozzle surface showed that the surface tends to displace toward the entrance plane.
机译:在这项工作中,考虑了在固体火箭发动机点火瞬变期间石墨喷嘴材料对流动的结构响应的数值模拟。在燃烧室内测得的压力-时间轨迹在石墨喷嘴侵蚀最小化(GNEM)代码中用作输入参数,以计算石墨喷嘴中的气相压力,温度,速度等。将来自GNEM的计算压力和对流热通量用作相关热结构模型中的加载条件,以获得石墨喷嘴材料对瞬态压力和热加载的响应。石墨火箭喷嘴的组合空气-热-结构响应表明,热应力明显高于机械应力。喷嘴内表面的径向位移表明,由于热机械应力,喷嘴直径在开始时就增加了。喷嘴内表面上几个点的轴向位移表明,该表面趋向于向入口平面位移。

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