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Prediction of mechanical behavior of spatially reinforced composites for kick motor nozzle

机译:脚踏电机喷嘴空间增强复合材料力学性能的预测

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摘要

This paper predicts the material properties of spatially reinforced composites (SRCs) and analyzes the mechanical behavior of a kick motor nozzle manufactured from that material. To find the appropriate SRC structure for the nozzle throat that satisfies given design conditions, the equivalent material properties of the SRC are predicted using the superposition of rod and matrix stiffnesses. The kick motor nozzle considered in this study consists of graphite or SRC as the throat part, carbon/phenol as the outer surface of the entrance part and inner surface of the expansion part, and steel as the outer surface of the expansion part. The material properties in arbitrary spatial directions are predicted and compared for 3-D and 4-D SRCs suitable to an axisymmetric kick motor nozzle structure. The 4-D SRC shows the smallest and uniform deformation in the nozzle throat, which has a favorable effect on the rocket thrust. The equivalent material properties of SRC are input to analyze the mechanical behavior of the kick motor nozzle using finite element method.
机译:本文预测了空间增强复合材料(SRC)的材料性能,并分析了用该材料制造的反冲式电机喷嘴的机械性能。为了找到满足给定设计条件的适合喷嘴喉道的SRC结构,可使用杆和基体刚度的叠加来预测SRC的等效材料属性。本研究中考虑的反冲电动机喷嘴由石墨或SRC作为喉部,由碳/苯酚作为入口部的外表面和膨胀部的内表面以及由钢作为膨胀部的外表面组成。预测并比较了适合于轴对称反冲马达喷嘴结构的3-D和4-D SRC在任意空间方向上的材料特性。 4-D SRC在喷嘴喉道中显示出最小且均匀的变形,这对火箭推力产生有利影响。输入SRC的等效材料属性,以使用有限元方法分析反冲电动机喷嘴的机械性能。

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