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Energy absorption assessment of conical composite structures subjected to quasi-static loading through optimization based method

机译:通过基于优化的方法对准静态加载进行锥形复合结构的能量吸收评估

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摘要

The geometry of a composite frusta-conical structure with 20 degrees apex angle was optimized using topology optimization method. The ATOM topology solver was used to perform optimization process. The structure was subjected to an axial compressive quasi-static loading where the criterion of optimization is the largest absorption of energy per unit volume. The optimization resulted in concave shell geometry with a volume reduction of 15%. To compare the effect of geometry on energy absorption capability, two types of GFRP specimen with different thickness were fabricated using filament winding and hand lay-up methods. The axial crushing test results were validated with numerical analysis using the commercial finite element software ABAQUS. The collapse mode and failure mechanism were investigated and identified. The presented methodology helps to find the better geometry instead of testing different geometries.
机译:使用拓扑优化方法优化具有20度顶点角度的复合截头圆锥结构的几何形状。 原子拓扑求解器用于进行优化过程。 该结构经受轴向压缩准静态负载,其中优化标准是每单位体积的最大能量吸收。 优化导致凹入壳几何体积减小15%。 为了比较几何形状对能量吸收能力的影响,使用长丝绕组和手动铺设方法制造两种具有不同厚度的GFRP样品。 使用商业有限元软件ABAQUS验证了轴向粉碎测试结果。 调查和识别崩溃模式和故障机制。 呈现的方法有助于找到更好的几何形状,而不是测试不同的几何形状。

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