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An experimental and simulation study of impact resistance in sandwich structures casing

机译:夹层结构套管抗冲击性能的实验与仿真研究

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As the main force component on the aeroengine, casing is one of bases of the whole aeroengine, but it is extremely difficult to analyze the capacity of aeroengine casing impact resistance. An experimental and simulation study of impact resistance has been conducted on sandwich structures casing with aluminum honeycombs to identify and improve aeroengine casing impact resistance. Firstly, a Rent-Ipson model has been applied to analyze the energy of broken blades with impacting casing. Based on a sensing test technology, the experimental research on the impact of aluminum honeycomb sandwich panel with a conical head shape bullet and a hemispherical head shape bullet have been carried out. The experimental results provide a basis for subsequent simulation research. Then the impact resistance have been compared and analyzed from single structure casing, double layer structure casing, and sandwich structure casing, according to their loss of blade kinetic energy, casing deformation, and the variation of casing internal energy. Finally, the variation of energy has been discussed during blade impacting casing with various oblique angles. Our results show that the impact resistance of sandwich structure casing is better than single structure casing and double layer structure casing. Most importantly, the impact resistance of casing has been improved with the increase of blade impact oblique angle.
机译:机壳是航空发动机的主要动力部件,是整个航空发动机的基础之一,但分析航空发动机机壳的抗冲击能力非常困难。通过对铝蜂窝夹层结构壳体的抗冲击性进行了实验和仿真研究,以识别和提高航空发动机壳体的抗冲击性。首先,使用Rent-Ipson模型分析了带有冲击壳体的破碎叶片的能量。基于传感测试技术,对锥形头形子弹头和半球形头形子弹对铝蜂窝夹芯板的冲击进行了实验研究。实验结果为后续的仿真研究提供了依据。然后根据叶片动能的损失,壳体变形以及壳体内部能量的变化,对单结构壳体,双层结构壳体和夹心结构壳体的抗冲击性进行了比较分析。最后,已经讨论了在具有各种倾斜角度的叶片冲击壳体期间的能量变化。我们的结果表明,夹层结构套管的抗冲击性能优于单结构套管和双层结构套管。最重要的是,随着叶片冲击斜角的增加,壳体的抗冲击性得到了提高。

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