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Optimization design for sheet metal parts of mobile electron radar based on finite element analysis

机译:基于有限元分析的移动电子雷达钣金件优化设计

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Based on illuminating the structure, working principle and force analysis of mobile electron radar, the finite element analysis of sheet metal shell is carried out on ANSYS Workbench (AWE) platform. First, the structure of sheet metal shell is simplified, then the 3D entity model and meshing model of sheet metal parts both are established. Secondly, the material attribute, contact type, load and constraints of computation model are defined, and the total deformation, equivalent stress and safety factor of sheet metal shell are gained after numerical calculation. The results show that the local deformation of shell is too large, the safety factor being low, and the stiffness cannot satisfy the requirement. In order to improve the stiffness of sheet metal shell, the strengthen ribs are stamped on the plane of shell, and the plane supporting frame is made into steps. The analysis shows that the sheet metal shell has high safety factor, uniform stress, small deformation, superior performance after optimizing, and it also can fully meet the requirement of using.
机译:在阐述移动电子雷达的结构,工作原理和受力分析的基础上,在ANSYS Workbench(AWE)平台上进行了钣金壳体的有限元分析。首先简化钣金壳体的结构,然后建立钣金零件的3D实体模型和网格模型。其次,定义了计算模型的材料属性,接触类型,载荷和约束条件,并通过数值计算得出了金属薄板壳体的总变形,等效应力和安全系数。结果表明,壳体局部变形太大,安全系数低,刚度不能满足要求。为了提高钣金壳体的刚度,将加强筋冲压在壳体平面上,并将平面支撑架成阶梯状。分析表明,钣金壳体优化后的安全系数高,应力均匀,变形小,性能优越,也可以完全满足使用要求。

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