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Structural Analysis and Strain Monitoring of the Filament Wound Motor Case

机译:纤维缠绕电机壳体的结构分析和应变监测

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摘要

Filament would structures such as pressure tanks, pipes and motor cases of rockets are widely used in aerospace applications. The determination of a proper winding angle and thickness is very important to decrease manufacturing difficulties and to increase structural efficiency. In this study, possible winding angles considering the slippage between a fiber and a mandrel surface are calculated using the semi-geodesic path equation. In addition, finite element analyses using ABAQUS are performed to predict the behavior or filament wound structures considering continuous change of the winding angle and thickness at the dome part due to fiber built-up near the metallic boss Water-pressuring tests of a third stage motor case are performed to verify the analysis procedure. The strain gages are attached n the surface in the fiber direction. progressive failure analysis predicted the burst pressure a little bit higher than the experiment and the weakest region of the motor case very well. The effect of reinforcement is also studied to increase its performance.
机译:细丝将诸如压力罐,管道和火箭发动机壳之类的结构广泛用于航空航天应用。确定适当的缠绕角度和厚度对于降低制造难度并提高结构效率非常重要。在这项研究中,考虑到纤维和心轴表面之间的滑移,可能的缠绕角度是使用半测地路径方程计算的。此外,考虑到由于金属凸台附近的纤维堆积而导致圆顶部分的缠绕角度和厚度连续变化,使用ABAQUS进行有限元分析以预测行为或细丝缠绕结构。第三级电动机的水压测试执行案例以验证分析程序。应变计沿纤维方向附着在表面上。渐进式故障分析预测爆破压力比实验高一点,并且电机壳体的最薄弱区域也很好。还研究了增强效果以提高其性能。

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