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Management of the variability of vibration response levels in mistuned bladed discs using robust design concepts. Part 1 Parameter design

机译:使用健壮的设计理念管理雾化刀片式叶片中振动响应水平的变化。第1部分参数设计

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摘要

Small unavoidable differences (e.g. 5%) between blades on a bladed disc, called mistuning, can lead to a huge variation of forced vibration response levels, and some of them are extremely high (e.g. 500% of the level experienced on every blade is all blades are identical). In this first half of a two-part article, a novel approach of designing a bladed disc with a lower chance of encountering high vibration response levels is evaluated. A robust design concept is applied to manage the variability of the vibration response levels, and the new approach resembles parameter design in Taguchi method of robust design. A "robustness map" is created using simulations results of a 6-degree-of-freedom (6-DOF) system, and such a map is validated by two more complicated models. The robustness map is used to explain the behaviour of bladed discs investigated in previous studies and to give possible methods of delivering more robust bladed disc designs.
机译:叶片盘上的叶片之间的不可避免的微小差异(例如5%)会导致强制振动响应水平的巨大差异,其中一些极高(例如,每个叶片所经历的水平的500%都是叶片相同)。在一个由两部分组成的文章的前半部分中,评估了一种设计刀片式磁盘的新颖方法,该方法降低了遇到高振动响应水平的可能性。鲁棒性设计概念被应用来管理振动响应水平的可变性,并且该新方法类似于鲁棒性设计的Taguchi方法中的参数设计。使用6自由度(6-DOF)系统的模拟结果创建“鲁棒性图”,并通过两个更复杂的模型来验证这种图。健壮性图用于解释先前研究中研究的刀片式磁盘的性能,并提供交付更健壮的刀片式磁盘设计的可能方法。

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