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Optimal layout of internal stiffeners for three-dimensional box structures based on natural branching phenomena

机译:基于天然分支现象的三维箱体结构内加强筋的最佳布局

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摘要

Thin-wall box structures combine an outer wall and internal stiffeners. These stiffeners can improve the stiffness of box structures. The adaptive growth method based on natural branching phenomena is applied to solve this layout optimization problem, in which techniques of ground structure construction, stiffener growth direction control, 'seeding-line' selection and sensitivity filtering are studied. First, the ground structure with solid and shell elements is established. Then, an iteration formula based on Karush-Kuhn-Tucker optimum conditions is derived. Stiffeners start at the seeding line and grow gradually according to the design sensitivities. Finally, an optimum stiffener layout is obtained. Draft manufacturing constraints are also included in the design procedure. The validity of the method is verified by several design examples. An actual machine tool bed is redesigned, and the performance comparison between the original and optimized beds shows the superiority of the suggested method.
机译:薄壁盒结构组合外壁和内部加强件。这些加强剂可以改善盒子结构的刚度。基于天然分支现象的自适应生长方法应用于解决该布局优化问题,其中研究了地面结构结构,加强筋生长方向控制,“播种线”选择和灵敏度滤波的技术。首先,建立具有固体和壳体元件的地面结构。然后,推导出基于Karush-Kuhn-tucker最佳条件的迭代公式。加强筋从播种线开始,并根据设计敏感性逐渐生长。最后,获得了最佳的加强件布局。制造限制草案也包含在设计过程中。通过多个设计示例验证了该方法的有效性。重新设计实际的机床床,原始和优化床之间的性能比较显示了建议方法的优越性。

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