首页> 外文会议>International conference on multibody systems, nonlinear dynamics, and control;ASME international design engineering technical conferences and computers and information in engineering conference >INNOVATIVE STRUCTURAL TOPOLOGY OPTIMIZATION APPROACH FOR ROTORDYNAMICS COMPONENTS USING INNOVATIVE MATERIALS AND NEW MANUFACTURING TECHNIQUES
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INNOVATIVE STRUCTURAL TOPOLOGY OPTIMIZATION APPROACH FOR ROTORDYNAMICS COMPONENTS USING INNOVATIVE MATERIALS AND NEW MANUFACTURING TECHNIQUES

机译:运用创新材料和新制造技术对转子动力学部件进行创新的结构拓扑优化方法

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Topology optimization is an innovative strategy applied in the turbomachinery field with the aim of substantially improving the performances of turbomachinery components in terms of weights, stress levels and rotation speed, with a very remarkable economic impact. Being very flexible, topology optimization allows to manage the structures topology, significantly improving material distribution within a given design space for a given set of loads and boundary conditions. In this paper, the authors, in cooperation with General Electric Nuovo Pignone, develop a new concept design of a turbine disk and the optimized component is compared to the benchmark, in order to verify the achieved improvements. Special attention is paid to the use of innovative materials with lattice structures, characterized by complex three-dimensional geometries. Thanks to advanced technologies, as additive manufacturing, it is now possible to effectively exploit topology optimization to develop new components featured by complex structures. The developed prototypes will be manufactured and tested in the near future together with the industrial partners.
机译:拓扑优化是一种应用于涡轮机械领域的创新策略,旨在从重量,应力水平和转速等方面显着改善涡轮机械组件的性能,并产生非常显着的经济影响。拓扑优化非常灵活,可以管理结构拓扑,对于给定的一组载荷和边界条件,可以显着改善给定设计空间内的材料分布。在本文中,作者与通用电气公司的Nuovo Pignone共同开发了涡轮盘的新概念设计,并将经过优化的组件与基准进行了比较,以验证所实现的改进。特别要注意使用具有复杂三维几何形状特征的具有晶格结构的创新材料。借助先进的技术,作为增材制造,现在可以有效地利用拓扑优化来开发具有复杂结构特征的新组件。所开发的原型将在不久的将来与工业合作伙伴一起制造和测试。

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